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Physical Properties of Muga Silk and Its Application Potential in Biomaterials 被引量:2
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作者 ZHU Yu MA Yanxue +1 位作者 GUAN Guoping LI Yuling 《Journal of Donghua University(English Edition)》 EI CAS 2019年第5期483-486,共4页
The paper investigated the physical properties of muga silk.Surface properties,linear density,moisture regain and mechanical properties of muga silk were tested before and after degumming.The results show that muga si... The paper investigated the physical properties of muga silk.Surface properties,linear density,moisture regain and mechanical properties of muga silk were tested before and after degumming.The results show that muga silk has tiny fineness and high strength.The average fineness and the strength of the monofilament are 1.52 dtex and 5.62 cN/dtex,respectively.This makes up for the shortcomings of other kinds of silk,and has great potential in the application of biomaterials. 展开更多
关键词 muga SILK BIOMEDICAL material TENSILE STRENGTH
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班公湖—怒江缝合带中西段改则地区木嘎岗日岩群的孢粉型化石组合及时代 被引量:4
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作者 白培荣 熊兴国 《中国地质调查》 2020年第4期60-66,共7页
班公湖—怒江缝合带中西段改则地区木嘎岗日岩群的沉积时代,经历了班公湖—怒江洋盆的裂解拉张和挤压会聚阶段,沉积时代跨度较大,但其沉积时代上限尚无定论。为探讨木嘎岗日岩群沉积时代上限与班公湖—怒江洋闭合时限的关系,通过野外地... 班公湖—怒江缝合带中西段改则地区木嘎岗日岩群的沉积时代,经历了班公湖—怒江洋盆的裂解拉张和挤压会聚阶段,沉积时代跨度较大,但其沉积时代上限尚无定论。为探讨木嘎岗日岩群沉积时代上限与班公湖—怒江洋闭合时限的关系,通过野外地质调查及室内综合研究,在木嘎岗日岩群中发现了早白垩世早期典型花粉分子Dicheiropollis。这一发现表明:班公湖—怒江缝合带中西段改则地区木嘎岗日岩群在早白垩世早期还持续沉积,对探讨班公湖—怒江缝合带中西段中生代时期海域的古地理特征、沉积环境及其发展历史有重要的地质意义。 展开更多
关键词 孢粉化石 木嘎岗日岩群 早白垩世 班公湖—怒江缝合带
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Identification and structure-activity modeling of ACE inhibitory peptides demonstrating anti-inflammatory effects:Extracted from Antheraea assama and Philosomia ricnii pupae 被引量:2
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作者 Preeti Sarkar Nikita Bora Nemnunhoi Haokip 《Food Bioscience》 SCIE 2023年第3期1372-1386,共15页
Traditionally edible silkworm pupae abundantly available in North eastern region of India have a notable protein content and comprises vast scope of bioactive peptides with unrevealed possibilities.Therefore,in this s... Traditionally edible silkworm pupae abundantly available in North eastern region of India have a notable protein content and comprises vast scope of bioactive peptides with unrevealed possibilities.Therefore,in this study,peptides derived from Muga and Eri pupae with highest potential to inhibit ACE(Angiotensin converting enzyme)and scavenge free radicals have been characterized,followed by understanding molecular interaction mechanism behind inhibition action and anti-inflammatory potential in endothelial model.This study was proposed to generate most potent purified chromatography fractions comprising ACE-inhibitory peptides,identified to contain total 105 peptides in fraction F4 and 53 peptides in fraction F6,majorly acquired from haemolymph protein in pupae.96 peptides with length 5-12 amino acids were selected and exposed to peptide-ACE interaction by molecular docking and simulation.Among top 15 peptides,LTSDRDFYVSK,VIELPYGVENR and IYVSDQY acted as effective competitive ACE inhibitor,peptide QTLVPFMK indicated its non-competitive inhibition.Fraction F4 and F6 remarkably alleviated COX-2,iNOS expression along with NO release,IL-6(interleukin-6),IL-1β(interleukin-1 beta)and TNF-α(Tumor necrosis factor-alpha)generation.Additionally,peptide fractions showed significant potential to curb elevated free radical concentration and induced endoge-nous antioxidant enzymes expression.This conveyed that Muga and Eri pupae protein derived peptide fractions certainly carried an effective role in modulating the cross talk between ACE activity and inflammation mecha-nisms,supporting their therapeutic potency. 展开更多
关键词 Eri protein muga protein Molecular simulation FRACTIONATION Multi-functional activity
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