1.Protective Effect of Danhong Injection on Ischemia-reperfusion Injury in Rats After Kidney Transplantation
Kang XIA ; Xiaohou WU ; Jiabing LI
Traditional Chinese Drug Research & Clinical Pharmacology 1993;0(02):-
Objective To investigate the protective effect of Danhong Injection(DI) on rats ischemia-reperfusion(I/R) injury after kidney transplantation.Methods Ten normal SD rats were allocated into the sham-operation group,and they were only been anesthetized and exposed kidneys for 45 minutes.The allogeneic male SD rats model of kidney transplantation were established.The qualified rats were divided into 3 groups(10 in each group)at random:I/R model group,DI pretreatment group,and DI treatment group.B1ood urea nitrogen(Bun) and creatinine(Cr) levels in each group were determined at the 24th hour after operation.The expression of Bax and Bcl-2 in kidney were quantitatively detected by immunohistochemistry.Apoptotic index was measured by TUNEL method.Results Compared with the sham-operation group,the apoptosis rate(P
2.Expression and significance of peripheral CXCL9 and CXCR3 in rats with acute renal allografts rejection
Jiabing LI ; Yunfeng HE ; Kang XIA ; Xiaohou WU
Journal of Third Military Medical University 2003;0(09):-
Objective To evaluate dynamic changes of chemokine CXCL9 and chemokine receptor CXCR3 to predict the early acute rejection in rats after renal transplantation. MethodsRenal allogeneic grafting was performed on Brown Norway or Lewis rats as donors and Lewis rats as recipients. CXCL9 in serum was measured by ELISA and CXCR3 mRNA in peripheral blood lymphocytes by RT-PCR at the time points of just before and 1, 3, 5, and 7 d after operation. Serum creatinine (Cr) was measured simultaneously. ResultsThe serum contents of CXCL9 and Cr, and CXCR3 mRNA level in allograft group were significantly higher than those in isograft group (P
3.Deferoxamine mesylate improves the repair of jaw bone defects in an ovariectomized rat model of osteoporosis
Ai TIAN ; Li LI ; Tianjiao XIAO ; Jiabing KANG ; Jifan ZHAN ; Yan WEI ; Helin CHEN
Chinese Journal of Tissue Engineering Research 2024;28(20):3143-3149
BACKGROUND:Deferoxamine mesylate is a potential anti-osteoporosis drug with iron chelation,vascular regeneration,and antioxidant effects.Recent studies have shown that the application of deferoxamine mesylate can be extended to the field of tissue regeneration engineering. OBJECTIVE:To investigate whether deferoxamine mesylate can promote the repair effect of iron overload osteoporotic rats after bone grafting for mandibular bone defects by simulating the state of iron accumulation in patients with postmenopausal osteoporosis with high iron intervention in osteoporotic rats. METHODS:An iron accumulation ovariectomized osteoporosis model was firstly constructed.The model group underwent bilateral ovariectomy,and the intraperitoneal injection of ferric ammonium citrate(90 mg/kg,twice a week,for 11 weeks)was started in the 2nd week,while the sham-operated group had some fat around the ovaries removed and was given an equal amount of saline for 11 weeks.After the successful modeling,the experimental rats were divided into sham-operated group(n=6),high iron ovariectomtized group(n=6)and high iron ovariectomized deferoxamine mesylate treatment group(deferoxamine mesylate group,n=6).Bone defects of 5 mm in diameter were established in the rat's bilateral mandibles and implanted with Bio-Oss bone powder.Intraperitoneal injection of deferoxamine mesylate(100 mg/kg,3 times a week)was started on postoperative day 4 in the deferoxamine mesylate group,and equal volume of saline was given in the sham-operated and high iron ovariectomized groups.The bone samples of the mandible,liver and blood were taken at 2 and 12 weeks after bone grafting for Prussian blue staining of the jaw and liver and ELISA detection of serum ferritin to detect iron levels in various body tissues;hematoxylin-eosin staining and Masson staining were performed to observe inflammatory cell infiltration and early osteogenesis in the bone defect area;tartrate resistant acid phosphatase staining was performed to observe osteoclast differentiation;ELISA was performed to detect serum calcitonin and type I collagen C-terminal peptide levels;and Micro-CT and hematoxylin-eosin staining were performed to observe osteogenesis in the middle and late stages. RESULTS AND CONCLUSION:The number of tibial trabeculae was reduced and the trabeculae were sparsely arranged in the high iron ovariectomized group.Iron levels in the liver,jaw bone and serum were significantly higher in the high iron ovariectomized group than the sham-operated group at 2 weeks after bone grafting,while the iron levels were significantly decreased after deferoxamine mesylate intervention(P<0.05).In the early stage of bone defect repair,more inflammatory cell infiltration,less new bone matrix and less type I collagen fiber production were observed in the high iron ovariectomized group than in the sham-operated group(P<0.05);after deferoxamine mesylate treatment,inflammatory cell infiltration was reduced,a small amount of new bone matrix was produced and collagen fibers increased significantly(P<0.05).In the middle and late stages of bone defect repair,Micro-CT results showed a reduction in new bone production in the high iron ovariectomized group compared with the sham-operated group and increased new bone matrix after deferoxamine mesylate treatment(P<0.05).Compared with the sham-operated group,the osteoclast number,serum calcitonin level,and serum type I collagen C-terminal peptide level were increased in the high-iron ovariectomized group,while the osteoclast number was decreased and bone metabolic indexes were improved after treatment with deferoxamine mesylate.To conclude,in ovariectomized rats with high iron intervention,elevated iron levels can be seen in multiple tissues,accompanied by reduced new bone production in the mandibular bone defect area.Deferoxamine mesylate can improve bone metabolism and inhibit osteoclast activity by removing iron deposits in tissues,improve bone formation in iron-accumulated osteoporotic rats,and promote bone healing in the mandibular bone defect area.
4.Interleukin-4 regulates macrophage polarization and osteogenic differentiation of bone marrow mesenchymal stem cells
Jie ZHANG ; Tianjiao XIAO ; Li LI ; Jiabing KANG ; Jifan ZHAN ; Yan WEI ; Ai TIAN
Chinese Journal of Tissue Engineering Research 2024;28(25):3960-3966
BACKGROUND:Interleukin-4 can promote the osteogenic effect of bone substitute materials,but its molecular mechanism is not yet clear.Further elucidating the mechanism of interleukin-4 promoting osteogenic effect can help find safe,economical,and effective methods for the regeneration treatment of alveolar bone defects in patients. OBJECTIVE:To explore the effect of interleukin-4 intervention on polarization transformation of macrophages and osteogenic differentiation of bone marrow mesenchymal stem cells and its possible mechanism. METHODS:RAW264.7 cells in the M1 group were induced with interferon gamma + lipopolysaccharide for 24 hours.RAW264.7 cells in the interleukin-4+M1 group were induced with interferon gamma + lipopolysaccharide for 24 hours and then interleukin-4 was added for 24 hours.RAW264.7 cells in the interleukin-4+AG+M1 group were induced with interferon gamma + lipopolysaccharide for 24 hours,and then interleukin-4 and AG-490,a JAK/STAT pathway inhibitor,were added for 24 hours.After intervention,immunofluorescence staining was used to analyze the expression of inducible nitric oxide synthase and CD206,the phenotypic marker protein of macrophages.ELISA kit was used to detect the expression of interleukin-10 and tumor necrosis factor-α in the supernatant of cell culture.The gene expressions of nodular receptor protein-3(NLRP3),interleukin-1β,and caspase-1 were detected by RT-qPCR.The expression levels of tyrosine protein kinase 1(JAK1)/phosphorylated tyrosine protein kinase 1(p-JAK1),signal transduction and transcription activator 6(STAT6)/phosphorylated signal transduction and transcription activator 6(p-STAT6),NLRP3,pro-interleukin-1β and pro-caspase-1 were detected by western blot assay.Then,RAW264.7 cells in the above four groups were indirectly co-cultured with bone marrow mesenchymal stem cells by transwell for 24 hours,followed by alkaline phosphatase staining and alizarin red staining.The mRNA expressions of alkaline phosphatase,collagen type I,and osteocalcin were detected by RT-qPCR. RESULTS AND CONCLUSION:(1)Immunofluorescence and ELISA results showed that interleukin-4 intervention could promote the expression of CD206 and interleukin-10 in M2 macrophages,and inhibit the secretion of inducible nitric oxide synthase and tumor necrosis factor-α.(2)RT-qPCR results showed that interleukin-4 could suppress the expression of NLRP3,interleukin-1β,and caspase-1 mRNAs.(3)Western blot assay showed that interleukin-4 could promote the expression of JAK1/p-JAK1,STAT6/p-STAT6 and NLRP3 proteins.(4)The alkaline phosphatase staining and alizarin red staining of bone marrow mesenchymal stem cells co-cultured with the interleukin-4+M1 group were significantly enhanced,and the mRNA expressions of alkaline phosphatase,collagen type I,and osteocalcin were significantly increased.It is concluded that interleukin-4 may inhibit the activation of NLRP3 by up-regulating JAK1/STAT6 pathway,thus promoting the transformation of macrophages from M1 polarization to M2 polarization,and finally enhancing the osteogenic differentiation ability of bone marrow mesenchymal stem cells.