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面向栓塞治疗的单分散高弹性可载药水凝胶微球的微流控制备及其性能研究
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作者 施超男 郭明雨 《高分子学报》 SCIE CAS CSCD 北大核心 2024年第3期328-337,共10页
面向栓塞治疗,利用单乳液毛细管微流控装置制备了粒径均一、尺寸可调节的载药弹性水凝胶微球.以丙烯酰胺(AM)和3-磺酸丙基甲基丙烯酸钾盐(SPMA)为单体,与光引发剂、自制大分子胶束多官能度交联剂(MM2),配制成水溶液作为分散相,以光引发... 面向栓塞治疗,利用单乳液毛细管微流控装置制备了粒径均一、尺寸可调节的载药弹性水凝胶微球.以丙烯酰胺(AM)和3-磺酸丙基甲基丙烯酸钾盐(SPMA)为单体,与光引发剂、自制大分子胶束多官能度交联剂(MM2),配制成水溶液作为分散相,以光引发剂、表面活性剂溶于液体石蜡作为连续相,在微流控通道内得到单分散内相液滴,随后通过紫外光照交联聚合,生成具有优异弹性的水凝胶微球.三维通道内的压缩实验表明,微球被压缩约60%而不破碎,且可快速恢复原貌.微球能够快速并大量负载阳离子抗癌药物盐酸阿霉素,20 min即可达到载药平衡,且包封率均超过97%,平衡载药量约648 mg/g(干球)、95mg/g(湿球).此外,还对不同粒径载药微球在不同介质中的药物释放行为进行了研究探讨.研究结果为单分散、高弹性和高载药量水凝胶微球的制备,特别是在栓塞微球方面的潜在应用研究奠定了一定的基础. 展开更多
关键词 微流控 单分散微球 弹性水凝胶微球 栓塞微球
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A Bunyavirus-Inducible Ubiquitin Ligase Targets RNA Polymerase IV for Degradation during Viral Pathogenesis in Rice 被引量:6
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作者 Chao Zhang Ying Wei +9 位作者 Le Xu Kang-Cheng Wu Liang Yang chao-nan shi Guo-Yi Yang Dong Chen Fei-Fei Yu Qi Xie Shou-Wei Ding Jian-Guo Wu 《Molecular Plant》 SCIE CAS CSCD 2020年第6期836-850,共15页
The ubiquitin-proteasome system(UPS)is an important post-translational regulatory mechanism that controls many cellular functions in eukaryotes.Here,we show that stable expression of P3 protein encoded by Rice grassy ... The ubiquitin-proteasome system(UPS)is an important post-translational regulatory mechanism that controls many cellular functions in eukaryotes.Here,we show that stable expression of P3 protein encoded by Rice grassy stunt virus(RGSV),a negative-strand RNA virus in the Bunyavirales,causes developmental abnormities similar to the disease symptoms caused by RGSV,such as dwarfing and excess tillering,in transgenic rice plants.We found that both transgenic expression of P3 and RGSV infection induce ubiquitination and UPS-dependent degradation of rice NUCLEAR RNA POLYMERASE D1a(OsNRPD1a),one of two orthologs of the largest subunit of plant-specific RNA polymerase IV(Pol IV),which is required for RNA-directed DNA methylation(RdDM).Furthermore,we identified a P3-inducible U-box type E3 ubiquitin ligase,designated as P3-inducible protein 1(P3IP1),which interacts with OsNRPD1a and mediates its ubiquitination and UPS-dependent degradation in vitro and in vivo.Notably,both knockdown of OsNRPD1 and overexpression of P3IP1 in rice plants induced developmental phenotypes similar to RGSV disease symptomss.Taken together,our findings reveal a novel virulence mechanism whereby plant pathogens target host RNA Pol IV for UPS-dependent degradation to induce disease symptoms.Our study also identified an E3 ubiquitin ligase,which targets the RdDM compotent NRPD1 for UPS-mediated degradation in rice. 展开更多
关键词 ubiquitin-proteasome system NRPD1 Rice grassy stunt virus E3 ligase
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