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《Diabetes & Metabolic Syndrome: Clinical Research & Reviews》2019,13(2):1225-1229
Background and objectivesThe present review shows a list of anti-glycation plants with their anti-glycation activity mechanisms that can attract the attention of pharmacologist for further scientific research towards finding better remedy for diabetic complications.MaterialsGoogle scholar, Pubmed, Web of Science and Scopus were searched. The terms were advanced glycation end products (AGEs), medicinal plants, antiglycation products.Resultsplants that studied in this review inhibit glycation in several possible mechanisms. Some of these plants inhibit the production of shiff base and amadori products. The others inhibit the generation of amadori products in the advanced phase. Some others blocked the aggregation of AGEs and some plants have antioxidant activity and reduce AGEs formation by preventing oxidation of amadori product and metal-catalyzed glucoxidation.ConclusionThis review can help pharmacologist to find antiglycation natural substance that can be useful in treatment of diabetic complications. 相似文献
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Stephen Hanessian 《ACS medicinal chemistry letters》2016,7(1):6-9
Current major advances in drug discovery
can be traced back to
pioneering contributions originating from academics over a century
ago. Living in a symbiotic yet noninvasive coexistence, the academic
community and the pharmaceutical industry have strived, each in their
own way, to develop the modern medicines that benefit humankind today.
The subject is presented from a historical and personal perspective. 相似文献
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目的探讨中药当归、川芎、黄芪、丹参提取液对大鼠放射性骨髓损伤的防护作用.方法雄性SD大鼠60只,随机分为正常对照组、模型组、中药组,每组6只,在相同条件下饲养2周,模型组和中药组大鼠给予6.0 Gy 60Co γ射线一次性全身照射,继续饲养1周处死全部动物并取材.用骨髓细胞计数法计数骨髓有核细胞数,用Western blot法测定血管内皮生长因子(vascularendothelialgrowth factor,VEGF)、血小板衍生生长因子(ptatelet derived growth factor,PDGF)的蛋白含量.结果与正常对照组比较,模型组大鼠的骨髓有核细胞数、VEGF、PDGF蛋白含量明显减少(P<0.01),与模型组比较,中药组大鼠的骨髓有核细胞数、VEGF、PDGF蛋白含量明显增加(P<0.01或P<0.05).结论中药当归、黄芪、川芎、丹参对大鼠放射性骨髓损伤有一定防护作用. 相似文献
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Graham M Nicholson 《Toxicon》2007,49(4):413-422
Arthropod pests are responsible for major crop devastation and are vectors for the transmission of new and re-emerging diseases in humans and livestock. Despite many years of effective control by conventional agrochemical insecticides, a number of factors are threatening the effectiveness and continued use of these agents. These include the development of insecticide resistance and use-cancellation or de-registration of some insecticides due to human health and environmental concerns. Several approaches are being investigated for the design of new (bio)pesticides. These include the development of transgenic plants and recombinant baculoviruses as delivery systems for a variety of insect-selective toxins. Additional approaches for the development of foliar sprays include the rational design of peptidomimetics based on the key residues of these toxins that interact with the insect target. This special issue provides an overview of these phyletically selective animal, plant and microbial toxins and their diverse mechanisms of action to paralyze or kill arthropods. In addition, it reviews their potential for biopesticide discovery and validation of novel insecticide targets and provides an overview of the strengths and weaknesses of biopesticides in the global control of arthropod pests. 相似文献
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