1.Mechanism of total flavone of Abelmoschus manihot in treating ulcerative colitis and depression via intestinal flora-glycerophospholipid metabolism- macrophage polarization pathway.
Chang-Ye LU ; Xiao-Min YUAN ; Lin-Hai HE ; Jia-Rong MAO ; Yu-Gen CHEN
China Journal of Chinese Materia Medica 2025;50(5):1286-1297
This study delves into the mechanism of total flavone of Abelmoschus manihot(TFA) in treating ulcerative colitis(UC) and depression via inhibiting M1 polarization of macrophages and reshaping intestinal flora and glycerolphospholipid metabolism. The study established a mouse model of UC and depression induced by chronic restraint stress(CRS) and dextran sulfate sodium(DSS). The fecal microbiota transplantation(FMT) experiment after TFA intervention was conducted. Mice in the FMT donor group were modeled and treated, and fecal samples were taken to prepare the bacterial solution. Mice in the FMT receptor group were treated with antibiotic intervention, and then administered bacterial solution by gavage from mice in the donor group, followed by UC depression modeling. After the experiment, behavioral tests were conducted to evaluate depressive-like behaviors by measuring the levels of 5-hydroxytryptamine(5-HT) and brain-derived neurotrophic factor(BDNF) in the hippocampus of mice. The levels of tumor necrosis factor-α(TNF-α),interleukin-6(IL-6),and interleukin-1β(IL-1β)in the brain and colon tissue of mice were also measured, and the polarization status of macrophages was evaluated by measuring the mRNA levels of CD86 and CD206. 16S ribosomal RNA(16S rRNA) sequencing technology was used to analyze changes in the intestinal flora of mice. Wide target lipidomics was used to detect serum lipid metabolite levels in mice after FMT,and correlation analysis was conducted between lipids and differential intestinal flora significantly regulated by TFA. In vitro experiments, representative glycerophospholipid metabolites and glycerophospholipid inhibitors were used to intervene in Raw264.7 macrophages, and the mRNA levels of TNF-α,IL-6,IL-1β,CD86,and CD206 were detected. The results showed that TFA and FMT after intervention could significantly improve depressive-like behavior and intestinal inflammation in mice with UC and depression, significantly downregulate pro-inflammatory cytokines and CD86 mRNA expression in brain and colon tissue, inhibiting M1 polarization of macrophages, and significantly upregulate CD206 mRNA expression, promoting M2 polarization of macrophages. In addition, the high-dose group had a more significant effect. After TFA intervention, FMT significantly corrected the metabolic disorder of glycerophospholipids in mice with UC and depression, and there was a significant correlation between differential intestinal flora and glycerophospholipids. In vitro experiments showed that glycerophospholipid metabolites, especially lysophosphatidylcholine(LPC),significantly upregulated pro-inflammatory cytokines and CD86 mRNA expression, promote M1 polarization of macrophages, while glycerophospholipid inhibitors had the opposite effect. The results indicate that TFA effectively treats depression and UC by correcting intestinal flora dysbiosis and reshaping glycerophospholipid metabolism, thereby inhibiting M1 polarization of macrophages.
Animals
;
Mice
;
Gastrointestinal Microbiome/drug effects*
;
Abelmoschus/chemistry*
;
Macrophages/metabolism*
;
Colitis, Ulcerative/immunology*
;
Flavones/administration & dosage*
;
Male
;
Depression/genetics*
;
Glycerophospholipids/metabolism*
;
Humans
;
Drugs, Chinese Herbal/administration & dosage*
;
Mice, Inbred C57BL
2.Study on protective effect of arbutin in yam on acute lung injury and its metabolic regulation mechanism.
Kai-Li YE ; Meng-Nan ZENG ; Feng-Xiao HAO ; Peng-Li GUO ; Yu-Han ZHANG ; Wei-Sheng FENG ; Xiao-Ke ZHENG
China Journal of Chinese Materia Medica 2025;50(15):4100-4109
This study investigated the protective effect of arbutin(Arb) in yam on lipopolysaccharide(LPS)-induced acute lung injury(ALI) in a mouse model and revealed its possible mechanism of action by metabolomics technology, providing a theoretical basis for clinical treatment of ALI. SPF BALB/c mice were randomly divided into normal control group, model group, resveratrol(Rv)-positive control group, Arb low-dose(15 mg·kg~(-1)) group, and Arb high-dose(30 mg·kg~(-1)) group. The LPS-induced ALI model was established in all groups except the normal control group. Hematoxylin-eosin(HE) staining, TUNEL staining, and WBP whole-body non-invasive pulmonary function testing were used to evaluate the degree of lung tissue damage and lung function changes. Enzyme-linked immunosorbent assay(ELISA) was used to detect the level of inflammatory factors in lung tissue. Flow cytometry was used to analyze the M1/M2 polarization status of macrophages in lung tissue. Western blot was used to detect the expression levels of the TLR4 signaling pathway and related apoptotic proteins. Liquid chromatograph-mass spectrometer(LC-MS) metabolomics was used to analyze the changes in serum metabolic profile after Arb intervention. The results showed that Arb pretreatment significantly alleviated LPS-induced lung tissue injury, improved lung function, reduced the levels of pro-inflammatory factors(IL-6, TNF-α, IL-18, and IL-1β), and regulated the polarization status of M1/M2 macrophages. In addition, Arb inhibited the activation of the TLR4 signaling pathway, reduced the expression of pro-apoptotic proteins such as Bax, caspase-3, and caspase-9, up-regulated the level of Bcl-2 protein, and inhibited apoptosis of lung cells. Metabolomic analysis showed that Arb significantly improved LPS-induced metabolic abnormalities, mainly involving key pathways such as galactose metabolism, phenylalanine metabolism, and lipid metabolism. In summary, Arb can significantly reduce LPS-induced ALI by regulating the release of inflammatory factors, inhibiting the activation of the TLR4 signaling pathway, improving metabolic disorders, and regulating macrophage polarization, indicating that Arb has potential clinical application value.
Animals
;
Acute Lung Injury/chemically induced*
;
Mice
;
Mice, Inbred BALB C
;
Arbutin/administration & dosage*
;
Male
;
Toll-Like Receptor 4/immunology*
;
Apoptosis/drug effects*
;
Lung/metabolism*
;
Signal Transduction/drug effects*
;
Protective Agents/administration & dosage*
;
Humans
;
Macrophages/immunology*
;
Drugs, Chinese Herbal/administration & dosage*
3.PM2.5-induced M2 Polarization and IL-1α Secretion by Tumor-associated Macrophages Promotes Lung Adenocarcinoma Progression.
Bomiao QING ; Xiaolan LI ; Qin RAN ; Guoping LI
Chinese Journal of Lung Cancer 2025;28(9):667-679
BACKGROUND:
Lung adenocarcinoma (LUAD) remains one of the leading causes of cancer morbidity and mortality worldwide, and its initiation and progression are closely associated with the tumor immune microenvironment. Increasing evidence suggests that environmental exposure is a critical factor influencing lung cancer development. Among these factors, fine particulate matter (PM2.5), a major component of air pollution, has been strongly linked to elevated lung cancer risk and unfavorable prognosis. However, the underlying immunoregulatory mechanisms by which PM2.5 drives LUAD progression remain poorly understood. Tumor-associated macrophages (TAMs), especially those polarized toward the M2 phenotype, are key components of the tumor microenvironment and play crucial roles in tumor growth, angiogenesis, and immune evasion. This study aims to investigate the effects of PM2.5 exposure on TAMs and to identify the key pro-tumorigenic factors mediating this process.
METHODS:
A mouse orthotopic lung cancer model under PM2.5 exposure was established to assess lung tumor growth and macrophage phenotypic alterations using in vivo imaging and flow cytometry. A subcutaneous tumor model involving co-inoculated macrophages and tumor cells was used to further verify the effects of PM2.5 on the function of TAMs and tumor malignancy. Combining in vitro experiments, flow cytometry, Western blot, reverse transcription quantitative polymerase chain reaction (RT-qPCR), cell counting kit-8 (CCK-8) assay, colony formation assay, and wound healing assay were employed to evaluate the regulatory effects of PM2.5 on the polarization of bone marrow-derived macrophages (BMDMs) as well as tumor cell proliferation, migration, and colony-forming ability. Transcriptome sequencing integrated with TISIDB (Tumor-immune System Interactions Database) and GEPIA (Gene Expression Profiling Interactive Analysis) databases was performed to identify key cytokines for further functional validation.
RESULTS:
In the mouse orthotopic lung cancer model, PM2.5 exposure significantly promoted tumor growth and increased the proportion of M2-type TAMs (P<0.05). Subcutaneous co-inoculation with PM2.5-treated BMDMs markedly enhanced tumor proliferation and elevated the intratumoral M2-type TAMs. PM2.5-pretreated BMDMs exhibited an immunosuppressive programmed cell death ligand 1 (PD-L1)+/arginase 1 (Arg1)+ phenotype, and their conditioned media significantly promoted proliferation, migration, and colony formation of Lewis lung carcinoma cells (LLC) and B16 melanoma cells (B16) (P<0.05). Transcriptome analysis revealed that PM2.5 substantially altered macrophage gene expression, with IL-1α identified as a key upregulated secreted cytokine enriched in immunosuppressive related signaling pathways. Clinical database analyses further indicated that IL-1α expression was positively correlated with macrophage and regulatory T cells (Treg) infiltration in the LUAD immune microenvironment, and that high IL-1α expression was associated with worse overall survival in LUAD patients (HR=1.5, P=0.0053). Western blot, RT-qPCR, and immunofluorescence confirmed that PM2.5 exposure significantly upregulated IL-1α expression and secretion in TAMs.
CONCLUSIONS
PM2.5 exposure facilitates LUAD progression by inducing an immunosuppressive phenotype in macrophages and enhancing the malignant behaviors of tumor cells. Mechanistically, IL-1α may serve as a key pro-tumorigenic cytokine secreted by macrophages under PM2.5 exposure. This study provides new insights into the pathogenesis of PM2.5-associated LUAD and suggests that IL-1α could serve as a potential therapeutic target.
Animals
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Mice
;
Tumor-Associated Macrophages/immunology*
;
Particulate Matter/toxicity*
;
Adenocarcinoma of Lung/metabolism*
;
Lung Neoplasms/genetics*
;
Humans
;
Disease Progression
;
Tumor Microenvironment/drug effects*
;
Cell Proliferation/drug effects*
;
Cell Line, Tumor
4.Caprylic Acid Improves Lipid Metabolism, Suppresses the Inflammatory Response and Activates the ABCA1/p-JAK2/p-STAT3 Signaling Pathway in C57BL/6J Mice and RAW264.7 Cells.
Xin Sheng ZHANG ; Peng ZHANG ; Ying Hua LIU ; Qing XU ; Yong ZHANG ; Hui Zi LI ; Lu LIU ; Yu Meng LIU ; Xue Yan YANG ; Chang Yong XUE
Biomedical and Environmental Sciences 2022;35(2):95-106
OBJECTIVE:
This study aimed to investigate the effects of caprylic acid (C8:0) on lipid metabolism and inflammation, and examine the mechanisms underlying these effects in mice and cells.
METHODS:
Fifty-six 6-week-old male C57BL/6J mice were randomly allocated to four groups fed a high-fat diet (HFD) without or with 2% C8:0, palmitic acid (C16:0) or eicosapentaenoic acid (EPA). RAW246.7 cells were randomly divided into five groups: normal, lipopolysaccharide (LPS), LPS+C8:0, LPS+EPA and LPS+cAMP. The serum lipid profiles, inflammatory biomolecules, and ABCA1 and JAK2/STAT3 mRNA and protein expression were measured.
RESULTS:
C8:0 decreased TC and LDL-C, and increased the HDL-C/LDL-C ratio after injection of LPS. Without LPS, it decreased TC in mice ( P < 0.05). Moreover, C8:0 decreased the inflammatory response after LPS treatment in both mice and cells ( P < 0.05). Mechanistic investigations in C57BL/6J mouse aortas after injection of LPS indicated that C8:0 resulted in higher ABCA1 and JAK2/STAT3 expression than that with HFD, C16:0 and EPA, and resulted in lower TNF-α, NF-κB mRNA expression than that with HFD ( P < 0.05). In RAW 264.7 cells, C8:0 resulted in lower expression of pNF-κBP65 than that in the LPS group, and higher protein expression of ABCA1, p-JAK2 and p-STAT3 than that in the LPS and LPS+cAMP groups ( P < 0.05).
CONCLUSION
Our studies demonstrated that C8:0 may play an important role in lipid metabolism and the inflammatory response, and the mechanism may be associated with ABCA1 and the p-JAK2/p-STAT3 signaling pathway.
ATP Binding Cassette Transporter 1/immunology*
;
Animals
;
Caprylates/chemistry*
;
Cholesterol/metabolism*
;
Diet, High-Fat/adverse effects*
;
Humans
;
Inflammation/metabolism*
;
Janus Kinase 2/immunology*
;
Lipid Metabolism/drug effects*
;
Macrophages/immunology*
;
Male
;
Mice
;
Mice, Inbred C57BL
;
RAW 264.7 Cells
;
STAT3 Transcription Factor/immunology*
;
Signal Transduction
5.Hesperetin derivative-12 (HDND-12) regulates macrophage polarization by modulating JAK2/STAT3 signaling pathway.
Ling-Na KONG ; Xiang LIN ; Cheng HUANG ; Tao-Tao MA ; Xiao-Ming MENG ; Chao-Jie HU ; Qian-Qian WANG ; Yan-Hui LIU ; Qing-Ping SHI ; Jun LI
Chinese Journal of Natural Medicines (English Ed.) 2019;17(2):122-130
Macrophages show significant heterogeneity in function and phenotype, which could shift into different populations of cells in response to exposure to various micro-environmental signals. These changes, also termed as macrophage polarization, of which play an important role in the pathogenesis of many diseases. Numerous studies have proved that Hesperidin (HDN), a traditional Chinese medicine, extracted from fruit peels of the genus citrus, play key roles in anti-inflammation, anti-tumor, anti-oxidant and so on. However, the role of HDN in macrophage polarization has never been reported. Additional, because of its poor water solubility and bioavailability. Our laboratory had synthesized many hesperidin derivatives. Among them, hesperidin derivatives-12 (HDND-12) has better water solubility and bioavailability. So, we evaluated the role of HDND-12 in macrophage polarization in the present study. The results showed that the expression of Arginase-1 (Arg-1), interleukin-10 (IL-10), transforming growth factor β (TGF-β) were up-regulated by HDND-12, whereas the expression of inducible Nitric Oxide Synthase (iNOS) was down-regulated in LPS- and IFN-γ-treated (M1) RAW264.7 cells. Moreover, the expression of p-JAK2 and p-STAT3 were significantly decreased after stimulation with HDND-12 in M1-like macrophages. More importantly, when we taken AG490 (inhibitor of JAK2/STAT3 signaling), the protein levels of iNOS were significantly reduced in AG490 stimulation group compare with control in LPS, IFN-γ and HDND-12 stimulation cells. Taken together, these findings indicated that HDND-12 could prevent polarization toward M1-like macrophages, at least in part, through modulating JAK2/STAT3 pathway.
Animals
;
Cytokines
;
genetics
;
metabolism
;
Enzyme Inhibitors
;
pharmacology
;
Gene Expression Regulation
;
drug effects
;
Hesperidin
;
chemistry
;
pharmacology
;
Inflammation
;
genetics
;
metabolism
;
Janus Kinase 2
;
antagonists & inhibitors
;
metabolism
;
Macrophages
;
drug effects
;
immunology
;
metabolism
;
Medicine, Chinese Traditional
;
Mice
;
Molecular Structure
;
Phosphorylation
;
drug effects
;
RAW 264.7 Cells
;
STAT3 Transcription Factor
;
antagonists & inhibitors
;
metabolism
;
Signal Transduction
;
drug effects
6.Pentoxifylline inhibits liver fibrosis via hedgehog signaling pathway.
Hui LI ; Juan HUA ; Chun-Xia GUO ; Wei-Xian WANG ; Bao-Ju WANG ; Dong-Liang YANG ; Ping WEI ; Yin-Ping LU
Journal of Huazhong University of Science and Technology (Medical Sciences) 2016;36(3):372-376
Infection of schistosomiasis japonica may eventually lead to liver fibrosis, and no effective antifibrotic therapies are available but liver transplantation. Hedgehog (HH) signaling pathway has been involved in the process and is a promising target for treating liver fibrosis. This study aimed to explore the effects of pentoxifylline (PTX) on liver fibrosis induced by schistosoma japonicum infection by inhibiting the HH signaling pathway. Phorbol12-myristate13-acetate (PMA) was used to induce human acute mononuclear leukemia cells THP-1 to differentiate into macrophages. The THP-1-derived macrophages were stimulated by soluble egg antigen (SEA), and the culture supernatants were collected for detection of activation of macrophages. Cell Counting Kit-8 (CCK-8) was used to detect the cytotoxicity of the culture supernatant and PTX on the LX-2 cells. The LX-2 cells were administered with activated culture supernatant from macrophages and(or) PTX to detect the transforming growth factor-β gene expression. The mRNA expression of shh and gli-1, key parts in HH signaling pathway, was detected. The mRNA expression of shh and gli-1 was increased in LX-2 cells treated with activated macrophages-derived culture supernatant, suggesting HH signaling pathway may play a key role in the activation process of hepatic stellate cells (HSCs). The expression of these genes decreased in LX-2 cells co-cultured with both activated macrophages-derived culture supernatant and PTX, indicating PTX could suppress the activation process of HSCs. In conclusion, these data provide evidence that PTX prevents liver fibrogenesis in vitro by the suppression of HH signaling pathway.
Animals
;
Antigens, Helminth
;
isolation & purification
;
pharmacology
;
Cell Culture Techniques
;
Cell Differentiation
;
drug effects
;
Cell Line
;
Culture Media, Conditioned
;
chemistry
;
pharmacology
;
Gene Expression Regulation
;
Hedgehog Proteins
;
agonists
;
antagonists & inhibitors
;
genetics
;
immunology
;
Hepatic Stellate Cells
;
cytology
;
drug effects
;
metabolism
;
Humans
;
Liver Cirrhosis
;
metabolism
;
parasitology
;
prevention & control
;
Macrophage Activation
;
drug effects
;
Macrophages
;
cytology
;
drug effects
;
immunology
;
Models, Biological
;
Monocytes
;
cytology
;
drug effects
;
metabolism
;
Pentoxifylline
;
pharmacology
;
Phosphodiesterase Inhibitors
;
pharmacology
;
RNA, Messenger
;
genetics
;
immunology
;
Schistosoma japonicum
;
chemistry
;
Signal Transduction
;
Tetradecanoylphorbol Acetate
;
pharmacology
;
Zinc Finger Protein GLI1
;
genetics
;
immunology
;
Zygote
;
chemistry
7.Angiotensin II induces expression of inflammatory mediators in vascular adventitial fibroblasts.
Wen-Dong CHEN ; Yu-Feng CHU ; Xiao-Dong LI ; Ping-Jin GAO
Acta Physiologica Sinica 2015;67(6):603-610
Vascular adventitial fibroblasts (AF) may play an important role in vascular inflammation. This study was aimed to investigate the expression pattern of inflammatory mediators in AF induced by angiotensin II (AngII) and to explore the effects of AF-derived inflammatory mediators on the adhesion and migration of macrophages both in vitro and in vivo. We used real-time RT-PCR to detect the mRNA expression of inflammatory mediators in cultured AF. The results showed that AngII (1 × 10(-7) mol/L) up-regulated mRNA expression of 4 inflammatory mediators, including P-selectin, ICAM-1, IL-6 and MCP-1, in cultured AF. Western blot analysis or ELISA revealed that AngII up-regulated P-selectin and ICAM-1 protein expression and IL-6 secretion in cultured AF, but did not alter MCP-1 secretion. We further detected the effects of AF-derived inflammatory mediators on the adhesion and chemotaxis of RAW264.7, a macrophage cell line. We found that AF stimulated with AngII could enhance the adhesion of RAW264.7 and the conditioned medium from AngII-stimulated AF could enhance the migration of RAW264.7. Immunofluorescence study showed an enhanced accumulation of CD68 positive cells and the up-regulation of P-selectin, ICAM-1, IL-6 and MCP-1 in aortic adventitia of AngII-infused (200 ng/kg per min for 2 weeks) rats. We concluded that AF may contribute to vascular inflammation via expression of certain inflammatory mediators and the subsequent adhesion and chemotaxis of macrophages.
Adventitia
;
drug effects
;
Angiotensin II
;
pharmacology
;
Animals
;
Cell Line
;
Chemokine CCL2
;
metabolism
;
Culture Media, Conditioned
;
Fibroblasts
;
drug effects
;
immunology
;
Inflammation
;
immunology
;
Intercellular Adhesion Molecule-1
;
metabolism
;
Interleukin-6
;
metabolism
;
Macrophages
;
drug effects
;
immunology
;
Mice
;
P-Selectin
;
metabolism
;
RAW 264.7 Cells
;
Rats
;
Up-Regulation
8.The polysaccharide isolated from Pleurotus nebrodensis (PN-S) shows immune-stimulating activity in RAW264.7 macrophages.
Hai-Yan CUI ; Chang-Lu WANG ; Yu-Rong WANG ; Zhen-Jing LI ; Ya-Nan ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2015;13(5):355-360
A novel Pleurotus nebrodensis polysaccharide (PN-S) was purified and characterized, and its immune-stimulating activity was evaluated in RAW264.7 macrophages. PN-S induced the proliferation of RAW264.7 cells in a dose-dependent manner, as determined by the MTT assay. After exposure to PN-S, the phagocytosis of the macrophages was significantly improved, with remarkable changes in morphology being observed. Flow cytometric analysis demonstrated that PN-S promoted RAW264.7 cells to progress through S and G2/M phases. PN-S treatment enhanced the productions of interleukin-6 (IL-6), nitric oxide (NO), interferon gamma (INF-γ), and tumor necrosis factor-α (TNF-α) in the macrophages, with up-regulation of mRNA expressions of interleukin-6 (IL-6), inducible nitric oxide synthase (iNOS), interferon gamma(INF-γ) and tumor necrosis factor-α (TNF-α) being observed in a dose-dependent manner, as measured by qRT-PCR. In conclusion, these results suggest that the purified PN-S can improve immunity by activating macrophages.
Animals
;
Cell Cycle
;
immunology
;
Cell Line
;
Cell Proliferation
;
drug effects
;
Fungal Polysaccharides
;
pharmacology
;
Immunity
;
drug effects
;
Interferon-gamma
;
biosynthesis
;
metabolism
;
Interleukin-6
;
biosynthesis
;
metabolism
;
Macrophages
;
immunology
;
metabolism
;
Mice
;
Nitric Oxide
;
biosynthesis
;
Nitric Oxide Synthase Type II
;
metabolism
;
Pleurotus
;
RNA, Messenger
;
metabolism
;
Reverse Transcriptase Polymerase Chain Reaction
;
Tumor Necrosis Factor-alpha
;
biosynthesis
;
metabolism
;
Up-Regulation
9.Pleurotus nebrodensis polysaccharide (PN-S) enhances the immunity of immunosuppressed mice.
Hai-Yan CUI ; Chang-Lu WANG ; Yu-Rong WANG ; Zhen-Jing LI ; Mian-Hua CHEN ; Feng-Juan LI ; Yan-Ping SUN
Chinese Journal of Natural Medicines (English Ed.) 2015;13(10):760-766
In the present study, the effects of Pleurotus nebrodensis polysaccharide (PN-S) on the immune functions of immunosuppressed mice were determined. The immunosuppressed mouse model was established by treating the mice with cyclophosphamide (40 mg/kg/2d, CY) through intraperitoneal injection. The results showed that PN-S administration significantly reversed the CY-induced weight loss, increased the thymic and splenic indices, and promoted proliferation of T lymphocyte, B lymphocyte, and macrophages. PN-S also enhanced the activity of natural killer cells and increased the immunoglobulin M (IgM) and immunoglobulin G (IgG) levels in the serum. In addition, PN-S treatment significantly increased the phagocytic activity of mouse peritoneal macrophages. PN-S also increased the levels of interleukin-6 (IL-6), tumor necrosis factor-α (TNF-α), interferon-γ (INF-γ), and nitric oxide (NOS) in splenocytes. qRT-PCR results also indicated that PN-S increased the mRNA expression of IL-6, TNF-α, INF-γ, and nitric oxide synthase (iNOS) in the splenocytes. These results suggest that PN-S treatment enhances the immune function of immunosuppressed mice. This study may provide a basis for the application of this fungus in adjacent immunopotentiating therapy against cancer and in the treatment of chemotherapy-induced immunosuppression.
Animals
;
Antineoplastic Agents, Alkylating
;
Biological Products
;
pharmacology
;
therapeutic use
;
Cell Line
;
Cyclophosphamide
;
Immunity
;
drug effects
;
Immunologic Factors
;
pharmacology
;
therapeutic use
;
Immunosuppression
;
Interferon-gamma
;
metabolism
;
Interleukin-6
;
metabolism
;
Macrophages
;
drug effects
;
metabolism
;
Male
;
Mice, Inbred BALB C
;
Neoplasms
;
drug therapy
;
immunology
;
Nitric Oxide
;
metabolism
;
Nitric Oxide Synthase Type II
;
metabolism
;
Phagocytosis
;
drug effects
;
Pleurotus
;
chemistry
;
Polysaccharides
;
pharmacology
;
therapeutic use
;
Tumor Necrosis Factor-alpha
;
metabolism
10.Mesenchymal stem cells reciprocally regulate the M1/M2 balance in mouse bone marrow-derived macrophages.
Dong Im CHO ; Mi Ra KIM ; Hye Yun JEONG ; Hae Chang JEONG ; Myung Ho JEONG ; Sung Ho YOON ; Yong Sook KIM ; Youngkeun AHN
Experimental & Molecular Medicine 2014;46(1):e70-
Mesenchymal stem cells (MSCs) have been widely studied for their applications in stem cell-based regeneration. During myocardial infarction (MI), infiltrated macrophages have pivotal roles in inflammation, angiogenesis and cardiac remodeling. We hypothesized that MSCs may modulate the immunologic environment to accelerate regeneration. This study was designed to assess the functional relationship between the macrophage phenotype and MSCs. MSCs isolated from bone marrow and bone marrow-derived macrophages (BMDMs) underwent differentiation induced by macrophage colony-stimulating factor. To determine the macrophage phenotype, classical M1 markers and alternative M2 markers were analyzed with or without co-culturing with MSCs in a transwell system. For animal studies, MI was induced by the ligation of the rat coronary artery. MSCs were injected within the infarct myocardium, and we analyzed the phenotype of the infiltrated macrophages by immunostaining. In the MSC-injected myocardium, the macrophages adjacent to the MSCs showed strong expression of arginase-1 (Arg1), an M2 marker. In BMDMs co-cultured with MSCs, the M1 markers such as interleukin-6 (IL-6), IL-1beta, monocyte chemoattractant protein-1 and inducible nitric oxide synthase (iNOS) were significantly reduced. In contrast, the M2 markers such as IL-10, IL-4, CD206 and Arg1 were markedly increased by co-culturing with MSCs. Specifically, the ratio of iNOS to Arg1 in BMDMs was notably downregulated by co-culturing with MSCs. These results suggest that the preferential shift of the macrophage phenotype from M1 to M2 may be related to the immune-modulating characteristics of MSCs that contribute to cardiac repair.
Animals
;
Biomarkers/metabolism
;
*Cell Differentiation
;
Cells, Cultured
;
Coculture Techniques
;
Culture Media, Conditioned/pharmacology
;
Humans
;
*Macrophage Activation
;
Macrophage Colony-Stimulating Factor/*pharmacology
;
Macrophages/drug effects/*immunology/metabolism
;
*Mesenchymal Stem Cell Transplantation
;
Mesenchymal Stromal Cells/*cytology/drug effects/metabolism
;
Mice
;
Mice, Inbred BALB C
;
Mice, Inbred C57BL
;
Myocardial Infarction/surgery
;
Rats

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