1.Impact of lithocholic acid on the osteogenic and adipogenic differentiation balance of bone marrow mesenchymal stem cells.
Cui WANG ; Jiao LI ; Lingyun LU ; Lu LIU ; Xijie YU
Chinese Journal of Reparative and Reconstructive Surgery 2024;38(1):82-90
		                        		
		                        			OBJECTIVE:
		                        			To Investigate the effects of lithocholic acid (LCA) on the balance between osteogenic and adipogenic differentiation of bone marrow mesenchymal stem cells (BMSCs).
		                        		
		                        			METHODS:
		                        			Twelve 10-week-old SPF C57BL/6J female mice were randomly divided into an experimental group (undergoing bilateral ovariectomy) and a control group (only removing the same volume of adipose tissue around the ovaries), with 6 mice in each group. The body mass was measured every week after operation. After 4 weeks post-surgery, the weight of mouse uterus was measured, femur specimens of the mice were taken for micro-CT scanning and three-dimensional reconstruction to analyze changes in bone mass. Tibia specimens were taken for HE staining to calculate the number and area of bone marrow adipocytes in the marrow cavity area. ELISA was used to detect the expression of bone turnover markers in the serum. Liver samples were subjected to real-time fluorescence quantitative PCR (RT-qPCR) to detect the expression of key genes related to bile acid metabolism, including cyp7a1, cyp7b1, cyp8b1, and cyp27a1. BMSCs were isolated by centrifugation from 2 C57BL/6J female mice (10-week-old). The third-generation cells were exposed to 0, 1, 10, and 100 μmol/L LCA, following which cell viability was evaluated using the cell counting kit 8 assay. Subsequently, alkaline phosphatase (ALP) staining and oil red O staining were conducted after 7 days of osteogenic and adipogenic induction. RT-qPCR was employed to analyze the expressions of osteogenic-related genes, namely ALP, Runt-related transcription factor 2 (Runx2), and osteocalcin (OCN), as well as adipogenic-related genes including Adiponectin (Adipoq), fatty acid binding protein 4 (FABP4), and peroxisome proliferator-activated receptor γ (PPARγ).
		                        		
		                        			RESULTS:
		                        			Compared with the control group, the body mass of the mice in the experimental group increased, the uterus atrophied, the bone mass decreased, the bone marrow fat expanded, and the bone metabolism showed a high bone turnover state. RT-qPCR showed that the expressions of cyp7a1, cyp8b1, and cyp27a1, which were related to the key enzymes of bile acid metabolism in the liver, decreased significantly ( P<0.05), while the expression of cyp7b1 had no significant difference ( P>0.05). Intervention with LCA at concentrations of 1, 10, and 100 μmol/L did not demonstrate any apparent toxic effects on BMSCs. Furthermore, LCA inhibited the expressions of osteogenic-related genes (ALP, Runx2, and OCN) in a dose-dependent manner, resulting in a reduction in ALP staining positive area. Concurrently, LCA promoted the expressions of adipogenic-related genes (Adipoq, FABP4, and PPARγ), and an increase in oil red O staining positive area.
		                        		
		                        			CONCLUSION
		                        			After menopause, the metabolism of bile acids is altered, and secondary bile acid LCA interferes with the balance of osteogenic and adipogenic differentiation of BMSCs, thereby affecting bone remodelling.
		                        		
		                        		
		                        		
		                        			Female
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Core Binding Factor Alpha 1 Subunit/pharmacology*
		                        			;
		                        		
		                        			PPAR gamma/metabolism*
		                        			;
		                        		
		                        			Steroid 12-alpha-Hydroxylase/metabolism*
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Cell Differentiation
		                        			;
		                        		
		                        			Osteogenesis
		                        			;
		                        		
		                        			Mesenchymal Stem Cells
		                        			;
		                        		
		                        			Bile Acids and Salts/pharmacology*
		                        			;
		                        		
		                        			Bone Marrow Cells
		                        			;
		                        		
		                        			Cells, Cultured
		                        			;
		                        		
		                        			Azo Compounds
		                        			
		                        		
		                        	
2.miR-877-3p causes osteoporosis in mice by inhibiting MCP-1 secretion from mouse bone marrow mesenchymal stem cells and the migration and apoptosis of T lymphocytes.
Chinese Journal of Cellular and Molecular Immunology 2023;39(6):481-487
		                        		
		                        			
		                        			Objective To investigate the effects of miR-877-3p on migration and apoptotic T lymphocytes of bone mesenchymal stem cells (BMSCs). Methods The model of osteoporosis induced by bilateral ovariectomy (OVX) and sham operation was established. At 8 weeks after operation, the bone parameters of the two groups were detected by micro-CT. The levels of monocyte chemotactic protein 1(MCP-1) in BMSCs were detected by ELISA. BMSC in OVX group and sham group were co-cultured with T lymphocytes, respectively. The migration ability of T lymphocytes in the two groups was observed by TranswellTM assay with PKH26 staining and apoptosis of T lymphocytes were detected by flow cytometry. Reverse transcription PCR was used to detect the expression of miR-877-3p in BMSCs. miR-877-3p was overexpressed or down-regulated by cell transfection. The level of MCP-1 secreted by BMSCs in each group was detected by ELISA. The migration and apoptosis of T lymphocytes were detected by the above methods. Results The number of trabecular bone and bone mineral density in OVX group were lower than those in sham group. The levels of MCP-1 secretion, chemotactic and apoptotic T lymphocyte ability of BMSCs in OVX group were also lower than those in sham group. The expression level of miR-877-3p in BMSC in OVX group was higher than that in sham group. After overexpression of BMSC miR-877-3p, the levels of MCP-1 secreted from BMSCs, and apoptotic T lymphocytes decreased, while the results were opposite after down-regulation of miR-877-3p. Conclusion miR-877-3p may be one of the causes of osteoporosis by inhibiting MCP-1 secretion of BMSCs and the migration and apoptosis of T lymphocytes.
		                        		
		                        		
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Female
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Apoptosis/genetics*
		                        			;
		                        		
		                        			Bone Marrow Cells/metabolism*
		                        			;
		                        		
		                        			Cell Differentiation
		                        			;
		                        		
		                        			Chemokine CCL2/metabolism*
		                        			;
		                        		
		                        			Mesenchymal Stem Cells/metabolism*
		                        			;
		                        		
		                        			MicroRNAs/metabolism*
		                        			;
		                        		
		                        			Osteogenesis
		                        			;
		                        		
		                        			Osteoporosis/genetics*
		                        			;
		                        		
		                        			T-Lymphocytes/metabolism*
		                        			
		                        		
		                        	
3.The Distribution and Significance of Activated T Cells and Lymphocyte Subsets in Myelodysplastic Syndrome.
Zhong-Li HU ; Yan-Li YANG ; Ping-Ping ZHANG ; Shao-Jun PAN
Journal of Experimental Hematology 2023;31(2):469-475
		                        		
		                        			OBJECTIVE:
		                        			To investigate the distribution of bone marrow lymphocyte subsets in patients with myelodysplastic syndrome(MDS),the proportion of activated T cells with immunophenotype CD3+HLA-DR+ in the lymphocytes and its clinical significance, and to understand the effects of different types of MDS, different immunophenotypes, and different expression levels of WT1 on the proportion of lymphocyte subsets and activated T cells.
		                        		
		                        			METHODS:
		                        			The immunophenotypes of 96 MDS patients, the subsets of bone marrow lymphocytes and activated T cells were detected by flow cytometry. The relative expression of WT1 was detected by real-time fluorescent quantitative PCR, and the first induced remission rate (CR1) was calculated, the differences of lymphocyte subsets and activated T cells in MDS patients with different immunophenotype, different WT1 expression, and different course of disease were analyzed.
		                        		
		                        			RESULTS:
		                        			The percentage of CD4+T lymphocyte in MDS-EB-2, IPSS high-risk, CD34+ cells >10%, and patients with CD34+CD7+ cell population and WT1 gene overexpression at intial diagnosis decreased significantly (P<0.05), and the percentage of NK cells and activated T cells increased significantly (P<0.05), but there was no significant difference in the ratio of B lymphocytes. Compared with the normal control group, the percentage of NK cells and activated T cells in IPSS-intermediate-2 group was significantly higher(P<0.05), but there was no significant difference in the percentage of CD3+T, CD4+T lymphocytes. The percentage of CD4+T cells in patients with complete remission after the first chemotherapy was significantly higher than in patients with incomplete remission(P<0.05), and the percentage of NK cells and activated T cells was significantly lower than that in patients with incomplete remission (P<0.05).
		                        		
		                        			CONCLUSION
		                        			In MDS patients, the proportion of CD3+T and CD4+T lymphocytes decreased, and the proportion of activated T cells increased, indicating that the differentiation type of MDS is more primitive and the prognosis is worse.
		                        		
		                        		
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Lymphocyte Subsets
		                        			;
		                        		
		                        			Myelodysplastic Syndromes/diagnosis*
		                        			;
		                        		
		                        			Bone Marrow
		                        			;
		                        		
		                        			B-Lymphocytes
		                        			;
		                        		
		                        			Killer Cells, Natural
		                        			;
		                        		
		                        			Flow Cytometry
		                        			;
		                        		
		                        			T-Lymphocyte Subsets
		                        			
		                        		
		                        	
4.Chronic Injury of Mice Bone Marrow Multipotent Hematopoietic Progenitor Cells Induced by Ionizing Radiation.
Ying-Ying LUAN ; Juan YANG ; Shuo YANG ; Han-Cheng FAN ; Zi-Hao YANG ; Jin-Fu ZHANG ; Rong DENG ; Hua WANG ; Hui-Hong ZENG ; Li-Jian SHAO
Journal of Experimental Hematology 2023;31(3):871-879
		                        		
		                        			OBJECTIVE:
		                        			To explore the chronic injury and its possible mechanism of ionizing radiation on multipotent hematopoietic progenitor cells (MPPs) by determining the related indicators of MPPs in bone marrow of mice post-radiation.
		                        		
		                        			METHODS:
		                        			Sixteen C57BL/6 adult mice were randomly divided into normal control and irradiation groups, 8 mice in each group. The mice in irradiation group were exposed to 6 Gy X-ray. The proportion of bone marrow MPPs, their apoptosis and proliferation 2 months after irradiation were detected by flow cytometry. Mitochondrial activity and levels of reactive oxygen species (ROS) in each MPPs population were detected by Mitotracker Red and DCFDA probes, and the senescent state of MPPs in the bone marrow was analyzed.
		                        		
		                        			RESULTS:
		                        			Ionizing radiation could reduce the proportion of MPPs in mouse bone marrow. The proportions and numbers of MPP1, MPP3 and MPP4 in the bone marrow were significantly decreased after whole-body irradiation with 6 Gy X-ray (P<0.05). In addition, radiation significantly reduced the colony-forming capacity of MPPs in bone marrow (P<0.05), the proportions of apoptotic cells in the MPP1 and MPP4 cell populations increased significantly in the bone marrow (P<0.05). The activity of mitochondria was significantly reduced in the bone marrow MPP2, MPP3 and MPP4 cell populations compared with that of the control group (P<0.05). It was also found that the radiation could significantly increase the ROS levels of MPPs in bone marrow, and the content of ROS in the MPP2, MPP3 and MPP4 cell population of the bone marrow was significantly increased(P<0.05). The senescent cells ratios of MPP1, MPP3 and MPP4 cells in the bone marrow after irradiation were significantly higher than those in the control group (P<0.05).
		                        		
		                        			CONCLUSION
		                        			Ionizing radiation can cause chronic MPPs damage in mice, which is closely associated with persistent oxidative stress, cells apoptosis, and cellular senescence.
		                        		
		                        		
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Bone Marrow
		                        			;
		                        		
		                        			Reactive Oxygen Species
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Hematopoietic Stem Cells
		                        			;
		                        		
		                        			Whole-Body Irradiation
		                        			;
		                        		
		                        			Radiation, Ionizing
		                        			;
		                        		
		                        			Bone Marrow Cells
		                        			
		                        		
		                        	
5.Effect of wheat-grain moxibustion on Wnt/β-catenin signaling pathway in bone marrow cell in mice with bone marrow inhibition.
Tao ZHU ; Yan-Ting CHENG ; Yan-Zhu MA ; Shuai ZHAO ; Xia LI
Chinese Acupuncture & Moxibustion 2023;43(1):67-71
		                        		
		                        			OBJECTIVE:
		                        			To observe the effect of wheat-grain moxibustion at "Dazhui" (GV 14), "Zusanli" (ST 36) and "Sanyinjiao" (SP 6) on Wnt/β-catenin signaling pathway in bone marrow cell in mice with bone marrow inhibition, and to explore the possible mechanism of wheat-grain moxibustion in treating bone marrow inhibition.
		                        		
		                        			METHODS:
		                        			Forty-five SPF male CD1(ICR) mice were randomly divided into a blank group, a model group and a wheat-grain moxibustion group, 15 mice in each group. The bone marrow inhibition model was established by intraperitoneal injection of 80 mg/kg of cyclophosphamide (CTX). The mice in the wheat-grain moxibustion group were treated with wheat-grain moxibustion at "Dazhui" (GV 14), "Zusanli" (ST 36) and "Sanyinjiao" (SP 6), 3 moxa cones per acupoint, 30 s per moxa cone, once a day, for 7 consecutive days. The white blood cell count (WBC) was measured before modeling, before intervention and 3, 5 d and 7 d into intervention. After intervention, the general situation of mice was observed; the number of nucleated cells in bone marrow was detected; the serum levels of interleukin-3 (IL-3), interleukin-6 (IL-6) and granulocyte macrophage colony stimulating factor (GM-CSF) were measured by ELISA; the protein and mRNA expression of β-catenin, cyclinD1 and C-Myc in bone marrow cells was measured by Western blot and real-time PCR method.
		                        		
		                        			RESULTS:
		                        			Compared with the blank group, the mice in the model group showed sluggish reaction, unstable gait, decreased body weight, and the WBC, number of nucleated cells in bone marrow as well as serum levels of IL-3, IL-6, GM-CSF were decreased (P<0.01), and the protein and mRNA expression of β-catenin, cyclinD1 and C-Myc was decreased (P<0.01). Compared with the model group, the mice in the wheat-grain moxibustion group showed better general condition, and WBC, the number of nucleated cells in bone marrow as well as serum levels of IL-3, IL-6, GM-CSF were increased (P<0.01, P<0.05), and the protein and mRNA expression of β-catenin, cyclinD1 and C-Myc was increased (P<0.05).
		                        		
		                        			CONCLUSION
		                        			Wheat-grain moxibustion shows therapeutic effect on bone marrow inhibition, and its mechanism may be related to activating Wnt/β-catenin signaling pathway in bone marrow cells, improving bone medullary hematopoiesis microenvironment and promoting bone marrow cell proliferation.
		                        		
		                        		
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Male
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			beta Catenin/metabolism*
		                        			;
		                        		
		                        			Bone Marrow/physiopathology*
		                        			;
		                        		
		                        			Bone Marrow Cells/physiology*
		                        			;
		                        		
		                        			Granulocyte-Macrophage Colony-Stimulating Factor/metabolism*
		                        			;
		                        		
		                        			Interleukin-3/metabolism*
		                        			;
		                        		
		                        			Interleukin-6/metabolism*
		                        			;
		                        		
		                        			Mice, Inbred ICR
		                        			;
		                        		
		                        			Moxibustion/methods*
		                        			;
		                        		
		                        			RNA, Messenger/metabolism*
		                        			;
		                        		
		                        			Triticum
		                        			;
		                        		
		                        			Wnt Signaling Pathway
		                        			;
		                        		
		                        			Hematopoiesis
		                        			
		                        		
		                        	
6.Connexin 43-modified bone marrow stromal cells reverse the imatinib resistance of K562 cells via Ca 2+ -dependent gap junction intercellular communication.
Xiaoping LI ; Yunshuo XIAO ; Xiaoqi WANG ; Ruihao HUANG ; Rui WANG ; Yi DENG ; Jun RAO ; Qiangguo GAO ; Shijie YANG ; Xi ZHANG
Chinese Medical Journal 2023;136(2):194-206
		                        		
		                        			BACKGROUND:
		                        			Imatinib mesylate (IM) resistance is an emerging problem for chronic myeloid leukemia (CML). Previous studies found that connexin 43 (Cx43) deficiency in the hematopoietic microenvironment (HM) protects minimal residual disease (MRD), but the mechanism remains unknown.
		                        		
		                        			METHODS:
		                        			Immunohistochemistry assays were employed to compare the expression of Cx43 and hypoxia-inducible factor 1α (HIF-1α) in bone marrow (BM) biopsies of CML patients and healthy donors. A coculture system of K562 cells and several Cx43-modified bone marrow stromal cells (BMSCs) was established under IM treatment. Proliferation, cell cycle, apoptosis, and other indicators of K562 cells in different groups were detected to investigate the function and possible mechanism of Cx43. We assessed the Ca 2+ -related pathway by Western blotting. Tumor-bearing models were also established to validate the causal role of Cx43 in reversing IM resistance.
		                        		
		                        			RESULTS:
		                        			Low levels of Cx43 in BMs were observed in CML patients, and Cx43 expression was negatively correlated with HIF-1α. We also observed that K562 cells cocultured with BMSCs transfected with adenovirus-short hairpin RNA of Cx43 (BMSCs-shCx43) had a lower apoptosis rate and that their cell cycle was blocked in G0/G1 phase, while the result was the opposite in the Cx43-overexpression setting. Cx43 mediates gap junction intercellular communication (GJIC) through direct contact, and Ca 2+ is the key factor mediating the downstream apoptotic pathway. In animal experiments, mice bearing K562, and BMSCs-Cx43 had the smallest tumor volume and spleen, which was consistent with the in vitro experiments.
		                        		
		                        			CONCLUSIONS
		                        			Cx43 deficiency exists in CML patients, promoting the generation of MRD and inducing drug resistance. Enhancing Cx43 expression and GJIC function in the HM may be a novel strategy to reverse drug resistance and promote IM efficacy.
		                        		
		                        		
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Apoptosis
		                        			;
		                        		
		                        			Bone Marrow Cells
		                        			;
		                        		
		                        			Cell Communication
		                        			;
		                        		
		                        			Connexin 43/genetics*
		                        			;
		                        		
		                        			Gap Junctions/metabolism*
		                        			;
		                        		
		                        			Imatinib Mesylate/therapeutic use*
		                        			;
		                        		
		                        			K562 Cells
		                        			;
		                        		
		                        			Leukemia, Myelogenous, Chronic, BCR-ABL Positive/pathology*
		                        			;
		                        		
		                        			Mesenchymal Stem Cells/metabolism*
		                        			;
		                        		
		                        			Tumor Microenvironment
		                        			;
		                        		
		                        			Calcium/metabolism*
		                        			
		                        		
		                        	
7.Bone Marrow Adipocytes Promote the Survival of Multiple Myeloma Cells and Up-Regulate Their Chemoresistance.
Xiao-Qian WEI ; Yang-Min ZHANG ; Yu SUN ; Hua-Yu LING ; Yuan-Ning HE ; Jin-Xiang FU
Journal of Experimental Hematology 2023;31(1):154-161
		                        		
		                        			OBJECTIVE:
		                        			To investigate the effect of adipocytes in the bone marrow microenvironment of patients with multiple myeloma (MM) on the pathogenesis of MM.
		                        		
		                        			METHODS:
		                        			Bone marrow adipocytes (BMA) in bone marrow smears of health donors (HD) and newly diagnosed MM (ND-MM) patients were evaluated with oil red O staining. The mesenchymal stem cells (MSC) from HD and ND-MM patients were isolated, and in vitro co-culture assay was used to explore the effects of MM cells on the adipogenic differentiation of MSC and the role of BMA in the survival and drug resistance of MM cells. The expression of adipogenic/osteogenic differentiation-related genes PPAR-γ, DLK1, DGAT1, FABP4, FASN and ALP both in MSC and MSC-derived adipocytes was determined with real-time quantitative PCR. The Western blot was employed to detect the expression levels of IL-6, IL-10, SDF-1α, TNF-α and IGF-1 in the supernatant with or without PPAR-γ inhibitor.
		                        		
		                        			RESULTS:
		                        			The results of oil red O staining of bone marrow smears showed that BMA increased significantly in patients of ND-MM compared with the normal control group, and the BMA content was related to the disease status. The content of BMA decreased in the patients with effective chemotherapy. MM cells up-regulated the expression of MSC adipogenic differentiation-related genes PPAR-γ, DLK1, DGAT1, FABP4 and FASN, but the expression of osteogenic differentiation-related gene ALP was significantly down-regulated. This means that the direct consequence of the interaction between MM cells and MSC in the bone marrow microenvironment is to promote the differentiation of MSC into adipocytes at the expense of osteoblasts, and the cytokines detected in supernatant changed. PPAR-γ inhibitor G3335 could partially reverse the release of cytokines by BMA. Those results confirmed that BMA regulated the release of cytokines via PPAR-γ signal, and PPAR-γ inhibitor G3335 could distort PPAR-γ mediated BMA maturation and cytokines release. The increased BMA and related cytokines effectively promoted the proliferation, migration and drug resistance of MM cells.
		                        		
		                        			CONCLUSION
		                        			The BMA and its associated cytokines are the promoting factors in the survival, proliferation and migration of MM cells. BMA can protect MM cells from drug-induced apoptosis and plays an important role in MM treatment failure and disease progression.
		                        		
		                        		
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Osteogenesis/genetics*
		                        			;
		                        		
		                        			Bone Marrow/metabolism*
		                        			;
		                        		
		                        			Multiple Myeloma/metabolism*
		                        			;
		                        		
		                        			Drug Resistance, Neoplasm
		                        			;
		                        		
		                        			Peroxisome Proliferator-Activated Receptors/pharmacology*
		                        			;
		                        		
		                        			Cell Differentiation
		                        			;
		                        		
		                        			Adipogenesis
		                        			;
		                        		
		                        			Cytokines/metabolism*
		                        			;
		                        		
		                        			Adipocytes/metabolism*
		                        			;
		                        		
		                        			Bone Marrow Cells/metabolism*
		                        			;
		                        		
		                        			Cells, Cultured
		                        			;
		                        		
		                        			PPAR gamma/pharmacology*
		                        			;
		                        		
		                        			Tumor Microenvironment
		                        			
		                        		
		                        	
8.Effect of PKM2 on Osteogenic and Adipogenic Differentiation of Bone Marrow Mesenchymal Stem Cells in Myeloma Bone Disease.
Jiang-Hua DING ; Shao-Lin YANG ; Shu-Lang ZHU
Journal of Experimental Hematology 2023;31(1):170-178
		                        		
		                        			OBJECTIVE:
		                        			To investigate the expression of pyruvate kinase M2 (PKM2) in bone marrow mesenchymal stem cells (BMSCs) in myeloma bone disease (MBD) and its effect on osteogenic and adipogenic differentiation of BMSCs.
		                        		
		                        			METHODS:
		                        			BMSCs were isolated from bone marrow of five patients with multiple myeloma (MM) (MM group) and five with iron deficiency anemia (control group) for culture and identification. The expression of PKM2 protein were compared between the two groups. The differences between osteogenic and adipogenic differentiation of BMSCs were assessed by using alkaline phosphatase (ALP) and oil red O staining, and detecting marker genes of osteogenesis and adipogenesis. The effect of MM cell line (RPMI-8226) and BMSCs co-culture on the expression of PKM2 was explored. Functional analysis was performed to investigate the correlations of PKM2 expression of MM-derived BMSCs with osteogenic and adipogenic differentiation by employing PKM2 activator and inhibitor. The role of orlistat was explored in regulating PKM2 expression, osteogenic and adipogenic differentiation of MM-derived BMSCs.
		                        		
		                        			RESULTS:
		                        			Compared with control, MM-originated BMSCs possessed the ability of increased adipogenic and decreased osteogenic differentiation, and higher level of PKM2 protein. Co-culture of MM cells with BMSCs markedly up-regulated the expression of PKM2 of BMSCs. Up-regulation of PKM2 expression could promote adipogenic differentiation and inhibit osteogenic differentiation of MM-derived BMSCs, while down-regulation of PKM2 showed opposite effect. Orlistat significantly promoted osteogenic differentiation in MM-derived BMSCs via inhibiting the expression of PKM2.
		                        		
		                        			CONCLUSION
		                        			The overexpression of PKM2 can induce the inhibition of osteogenic differentiation of BMSCs in MBD. Orlistat can promote the osteogenic differentiation of BMSCs via inhibiting the expression of PKM2, indicating a potential novel agent of anti-MBD therapy.
		                        		
		                        		
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Adipogenesis
		                        			;
		                        		
		                        			Bone Diseases/metabolism*
		                        			;
		                        		
		                        			Bone Marrow Cells
		                        			;
		                        		
		                        			Cell Differentiation
		                        			;
		                        		
		                        			Cells, Cultured
		                        			;
		                        		
		                        			Mesenchymal Stem Cells/physiology*
		                        			;
		                        		
		                        			Multiple Myeloma/metabolism*
		                        			;
		                        		
		                        			Orlistat/pharmacology*
		                        			;
		                        		
		                        			Osteogenesis/genetics*
		                        			
		                        		
		                        	
9.Expression Changes of Hypoxia-Inducible Factor-1α in G-CSF Induced Hematopoietic Stem Cell Mobilization.
Hui-Xuan YANG ; Qiao-Chuan LI ; Li-Li WEI ; Yong-Rong LAI
Journal of Experimental Hematology 2023;31(1):221-226
		                        		
		                        			OBJECTIVE:
		                        			To investigate the expression and its relative mechanism of hypoxia-inducible factor-1α(HIF-1α) in bone marrow(BM) of mice during G-CSF mobilization of hematopoietic stem cells (HSC) .
		                        		
		                        			METHODS:
		                        			Flow cytometry was used to detect the proportion of Lin-Sca-1+ c-kit+ (LSK) cells in peripheral blood of C57BL/6J mice before and after G-CSF mobilization. And the expression of HIF-1α and osteocalcin (OCN) mRNA and protein were detected by RQ-PCR and immunohistochemistry. The number of osteoblasts in bone marrow specimens of mice was counted under the microscope.
		                        		
		                        			RESULTS:
		                        			The proportion of LSK cells in peripheral blood began to increase at day 4 of G-CSF mobilization, and reached the peak at day 5, which was significantly higher than that of control group (P<0.05). There was no distinct difference in the expression of HIF-1α mRNA between bone marrow nucleated cells and osteoblasts of steady-state mice (P=0.073), while OCN mRNA was mainly expressed in osteoblasts, which was higher than that in bone marrow nucleated cells (P=0.034). After mobilization, the expression level of HIF-1α increased, but OCN decreased, and the number of endosteum osteoblasts decreased. The change of HIF-1α expression was later than that of OCN and was consistent with the proportion of LSK cells in peripheral blood.
		                        		
		                        			CONCLUSION
		                        			The expression of HIF-1α in bone marrow was increased during the mobilization of HSC mediated by G-CSF, and one of the mechanisms may be related to the peripheral migration of HSC induced by osteoblasts inhibition.
		                        		
		                        		
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Hematopoietic Stem Cell Mobilization
		                        			;
		                        		
		                        			Granulocyte Colony-Stimulating Factor/pharmacology*
		                        			;
		                        		
		                        			Hypoxia-Inducible Factor 1, alpha Subunit/metabolism*
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Bone Marrow Cells/metabolism*
		                        			;
		                        		
		                        			Osteocalcin/metabolism*
		                        			;
		                        		
		                        			RNA, Messenger/metabolism*
		                        			
		                        		
		                        	
10.Establishment and Evaluation of Intestinal Injury Model of Mouse Acute Graft Versus Host Disease Based on An Organoid Technology.
Meng-Yue HAN ; Pei-Lin LI ; Bo-Feng YIN ; Zhi-Ling LI ; Rui-Cong HAO ; Xiao-Tong LI ; Fei-Yan WANG ; Jia-Yi TIAN ; Li DING ; Hong-Mei NING ; Wen-Qing WU ; Heng ZHU
Journal of Experimental Hematology 2023;31(1):233-240
		                        		
		                        			OBJECTIVE:
		                        			To establish an intestinal organoid model that mimic acute graft versus host disease (aGVHD) caused intestinal injuries by using aGVHD murine model serum and organoid culture system, and explore the changes of aGVHD intestine in vitro by advantage of organoid technology.
		                        		
		                        			METHODS:
		                        			20-22 g female C57BL/6 mice and 20-22 g female BALB/c mice were used as donors and recipients for bone marrow transplantation, respectively. Within 4-6 h after receiving a lethal dose (8.0 Gy) of γ ray total body irradiation, a total of 0.25 ml of murine derived bone marrow cells (1×107/mice, n=20) and spleen nucleated cells (5×106/mice, n=20) was infused to establish a mouse model of aGVHD (n=20). The aGVHD mice were anesthetized at the 7th day after transplantation, and the veinal blood was harvested by removing the eyeballs, and the serum was collected by centrifugation. The small intestinal crypts of healthy C57BL/6 mice were harvested and cultivated in 3D culture system that maintaining the growth and proliferation of intestinal stem cells in vitro. In our experiment, 5%, 10%, 20% proportions of aGVHD serum were respectively added into the organoid culture system for 3 days. The formation of small intestinal organoids were observed under an inverted microscope and the morphological characteristics of intestinal organoids in each groups were analyzed. For further evaluation, the aGVHD intestinal organoids were harvested and their pathological changes were observed. Combined with HE staining, intestinal organ morphology evaluation was performed. Combined with Alcian Blue staining, the secretion function of aGVHD intestinal organoids was observed. The distribution and changes of Lgr5+ and Clu+ intestinal stem cells in intestinal organoids were analyzed under the conditions of 5%, 10% and 20% serum concentrations by immunohistochemical stainings.
		                        		
		                        			RESULTS:
		                        			The results of HE staining showed that the integrity of intestinal organoids in the 5% concentration serum group was better than that in the 10% and 20% groups. The 5% concentration serum group showed the highest number of organoids, the highest germination rate and the lowest pathological score among experimental groups, while the 20% group exhibited severe morphological destruction and almost no germination was observed, and the pathological score was the highest among all groups(t=3.668, 4.334,5.309,P<0.05). The results of Alican blue staining showed that the secretion function of intestinal organoids in serum culture of aGVHD in the 20% group was weaker than that of the 5% group and 10% of the organoids, and there was almost no goblet cells, and mucus was stainned in the 20% aGVHD serum group. The immunohistochemical results showed that the number of Lgr5+ cells of intestinal organoids in the 5% group was more than that of the intestinal organoids in the 10% aGVHD serum group and 20% aGVHD serum group. Almost no Clu+ cells were observed in the 5% group. The Lgr5+ cells in the 20% group were seriously injuried and can not be observed. The proportion of Clu+ cells in the 20% group significantly increased.
		                        		
		                        			CONCLUSION
		                        			The concentration of aGVHD serum in the culture system can affect the number and secretion function of intestinal organoids as well as the number of intestinal stem cells in organoids. The higher the serum concentration, the greater the risk of organoid injury, which reveal the characteristics of the formation and functional change of aGVHD intestinal organoids, and provide a novel tool for the study of intestinal injury in aGVHD.
		                        		
		                        		
		                        		
		                        			Mice
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		                        			Female
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		                        			Animals
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		                        			Mice, Inbred C57BL
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		                        			Bone Marrow Transplantation
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		                        			Graft vs Host Disease
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		                        			Stem Cells
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		                        			Organoids
		                        			
		                        		
		                        	
            
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