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Chlorogenic Acid Maintains Glucose Homeostasis through Modulating the Expression of SGLT-1,GLUT-2,and PLG in Different Intestinal Segments of Sprague-Dawley Rats Fed a High-Fat Diet 被引量:12
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作者 PENG Bing Jie ZHU Qi +2 位作者 ZHONG Ying Li XU Shi Hao WANG Zheng 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2015年第12期894-903,共10页
Objective To reveal the effects and related mechanisms of chlorogenic acid(CGA)on intestinal glucose homeostasis.Methods Forty male Sprague-Dawley rats were randomly and equally divided into four groups:normal chow(NC... Objective To reveal the effects and related mechanisms of chlorogenic acid(CGA)on intestinal glucose homeostasis.Methods Forty male Sprague-Dawley rats were randomly and equally divided into four groups:normal chow(NC),high-fat diet(HFD),HFD with low-dose CGA(20 mg/kg,HFD-LC),and HFD with high-dose CGA(90 mg/kg,HFD-HC).The oral glucose tolerance test was performed,and fast serum insulin(FSI)was detected using an enzyme-linked immunosorbent assay.The m RNA expression levels of glucose transporters(Sglt-1 and Glut-2)and proglucagon(Plg)in different intestinal segments(the duodenum,jejunum,ileum,and colon)were analyzed using quantitative real-time polymerase chain reaction.SGLT-1 protein and the morphology of epithelial cells in the duodenum and jejunum was localized by using immunofluorescence.Results At both doses,CGA ameliorated the HFD-induced body weight gain,maintained FSI,and increased postprandial 30-min glucagon-like peptide 1 secretion.High-dose CGA inhibited the HFD-induced elevation in Sglt-1 expression.Both CGA doses normalized the HFD-induced downregulation of Glut-2 and elevated the expression of Plg in all four intestinal segments.Conclusion An HFD can cause a glucose metabolism disorder in the rat intestine and affect body glucose homeostasis.CGA can modify intestinal glucose metabolism by regulating the expression of intestinal glucose transporters and Plg,thereby controlling the levels of blood glucose and insulin to maintain glucose homeostasis. 展开更多
关键词 Chlorogenic acid High-fat diet INTESTINE Glucose homeostasis SGLT-1 GLUT-2 plg GLP-1
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Dexamethasone-Loaded PLGA Microspheres Incorporated PLLA/PLGA/PCL Composite Scaffold for Bone Tissue Engineering
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作者 苗莹珂 聂伟 +2 位作者 王伟忠 周小军 何创龙 《Journal of Donghua University(English Edition)》 EI CAS 2017年第1期159-163,共5页
The combination of micro-carriers and polymer scaffolds as promising bone grafts have attracted considerable interest in recent decades.The poly(L-lactic acid)/poly(lactic-co-glycolic acid)/polycaprolactone(PLLA/PLGA/... The combination of micro-carriers and polymer scaffolds as promising bone grafts have attracted considerable interest in recent decades.The poly(L-lactic acid)/poly(lactic-co-glycolic acid)/polycaprolactone(PLLA/PLGA/PCL)composite scaffold with porous structure was fabricated by thermally induced phase separation(TIPS).Dexamethasone(DEX)was incorporated into PLGA microspheres and then loaded on the PLLA/PLGA/PCL scaffoldtopreparethedesiredcompositescaffold.The physicochemical properties of the prepared composite scaffold were characterized.The morphology of rat bone marrow mesenchymal stem cells(BMSCs)grown on scaffolds was observed using scanning electron microscope(SEM)and fluorescence microscope.The resultsshowedthatthePLLA/PLGA/PCLscaffoldhad interconnected macropores and biomimetic nanofibrous structure.In addition,DEX can be released from scaffold in a sustained manner.More importantly,DEX loaded composite scaffold can effectively support the proliferation of BMSCs as indicated by fluorescence observation and cell proliferation assay.The results suggested that the prepared PLLA/PLGA/PCL composite scaffold incorporating drug-loaded PLGA microspheres could hold great potential for bone tissue engineering applications. 展开更多
关键词 composite scaffold poly(lactic-co-glycolic acid)(plg A) microsphere DEXAMETHASONE bone tissue engineering
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酮洛芬可注射植入剂在酸性介质中的立体选择性释放行为
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作者 谢方 王胜浩 《中国药学杂志》 CAS CSCD 北大核心 2010年第3期199-202,共4页
目的研究外消旋体酮洛芬(rac—Ket)在酸性释放介质中的立体选择性释放行为。方法以专属性的手性HPLC考察酮洛芬可注射植入剂在pH2.5释放介质中的对映体选择性释放行为。结果体外释放实验结果表明,以可生物降解的乳酸-乙醇酸共聚物(... 目的研究外消旋体酮洛芬(rac—Ket)在酸性释放介质中的立体选择性释放行为。方法以专属性的手性HPLC考察酮洛芬可注射植入剂在pH2.5释放介质中的对映体选择性释放行为。结果体外释放实验结果表明,以可生物降解的乳酸-乙醇酸共聚物(D,L—PLG)为载体制成的外消旋体酮洛芬可注射植入剂,在pH2.5的酸性释放介质中可维持约2.5月的缓慢释放。从立体选择性的角度观察,S-(+)-Ket的释放略快于尺-(-).Ket,S/R—Ket的比值在1.01~1.03之间,但经独立样本的t检验,认为这种差异没有显著性(P〉0.05)。这与我们过去以pH7.4为介质的对映体释放结果不同,显示载体D,L—PLG在不同pH条件下的降解方式可能影响对映体的释放行为。结论与在pH7.4释放介质中的研究结果不同,7%rac—Ket可注射植入剂在酸性条件下(pH2.5)的对映体释放缺少选择性。 展开更多
关键词 立体选择性释放 酮洛芬对映体 乳酸-乙醇酸共聚物 可注射植入剂 反相高效液相色谱法 酸性释放介质
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