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Pathological changes in the cellular structures of retina and choroidea in the early stages of alloxan-induced diabetes 被引量:6
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作者 Irina Danilova Svetlana Medvedeva +3 位作者 Svetlana Shmakova Margarita Chereshneva Alexey Sarapultsev Petr Sarapultsev 《World Journal of Diabetes》 SCIE CAS 2018年第12期239-251,共13页
AIM To investigate the temporal sequence of pathological changes in the cellular structures of retina and choroidea in the early stages of diabetes in laboratory animals.METHODS Experimental type 1 diabetes was modele... AIM To investigate the temporal sequence of pathological changes in the cellular structures of retina and choroidea in the early stages of diabetes in laboratory animals.METHODS Experimental type 1 diabetes was modeled by three intraperitoneal injections of an alloxan solution into 30 male nonlinear rats at 16 wk of age. The 30 th and 60 th days from the final alloxan injection were chosen as the endpoints. Light and electron microscopy and morphometric and immunohistochemical studies were performed on histological slices of eyeballs from experimental animals.RESULTS Diabetic disturbances progressed to 60 d of the experiment. Thus, in the retina, a partial destruction of photoreceptors accompanied by interstitial edema was observed. The morphometric analysis revealed a reduction in the thickness of the retina. A reduction in the number of blood vessels of the choroid with disturbances of the endothelial cells and the vascular walls and a persistent reduction in the number of melanocytes were observed. The number of proliferating Ki-67 positive cells decreased, and the number of macrophages increased with diabetes development.CONCLUSION The starting point in the development of destructive changes involves early reduction in the number of melanocytes of the choroidea and alterations in the retinal pigment epithelium. 展开更多
关键词 ALLOXAN Diabetes DIABETIC RETINOPATHY Early stage Morphology HISTOLOGICAL changes
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Liposome-encapsulated dimethyl curcumin inhibits over-activation of rat lymphocyte to relieve collagen-induced arthritis by regulating intracellular proteolysis and PCNA/p21/caspase-3 pathway
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作者 Ya-Ming Guo Zhi-Yuan Sun +1 位作者 Xiao-Qiang Sun Xiaoying Zhou 《Life Research》 2021年第3期39-49,共11页
Dimethyl curcumin,a synthetic derivative of curcumin,has good anti-cancer,anti-arthritis and anti-inflammatory properties,but underline mechanism was unclear.Activation,differentiation,proliferation and apoptosis of l... Dimethyl curcumin,a synthetic derivative of curcumin,has good anti-cancer,anti-arthritis and anti-inflammatory properties,but underline mechanism was unclear.Activation,differentiation,proliferation and apoptosis of lymphocytes have important functions during arthritis development and immune homeostasis.Over-activation of lymphocyte causes inflammatory cytokines storm,leading to an immune imbalance and tissue damages.The aim of this study was to investigate the anti-inflammation mechanism of liposome encapsulated dimethyl curcumin(Lipo-DiMC)on over-activated rat spleen lymphocytes.In this study,Lipo-DiMC was produced to increase the solubility;the primary rat spleen lymphocytes were extracted and the Concanavalin A induced cell activation model was established to study the cellular responses to Lipo-DiMC treatment in-vitro.The results showed that Lipo-DiMC suppressed Concanavalin A-induced cell proliferation,inhibited cells entering G2/M phase,and reduced the ratio of necrosis/apoptosis by manipulating intracellular p53/p21/PCNA/JNK-1 pathways.Furthermore,Lipo-DiMC increased the accumulations of intracellular matrix metalloproteinase-9 and reduced matrix metalloproteinase-9 secretion of rat spleen lymphocytes.Also,Lipo-DiMC increased intracellular caspase-3 expression and reduced Cat-C activity in activated rat spleen lymphocytes,involving in intracellular proteolysis.Our findings suggest that dimethyl curcumin effectively alleviates Concanavalin A induced over-activation of rat spleen lymphocytes,thereby inhibiting inflammatory cytokines storm and restoring cell homeostasis. 展开更多
关键词 Liposomes encapsulated dimethyl curcumin Rheumatoid arthritis Rat spleen lymphocytes Intracellular proteolysis
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