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鼻内基因送递可以治疗胶原诱导的小鼠关节炎
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《透析与人工器官》 2008年第1期38-38,共1页
关键词 鼻内治疗 基因送递 关节炎 小鼠 胶原诱导 IL-10 全身不良反应 MRNA水平
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基因治疗的进展、问题和展望 被引量:1
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作者 Blau H 陈明洁 《国外医学(预防.诊断.治疗用生物制品分册)》 1998年第3期123-124,共2页
1997年4月13~19日,在美国犹他州斯诺伯德召开了基因治疗的分子和细胞生物学会议。会议报告了在基因送递、基因调控及避免免疫应答等新技术方面取得的进展。此外,会议还讨论了应用新基因治疗特定遗传病和获得性疾病的进展以及基因治疗... 1997年4月13~19日,在美国犹他州斯诺伯德召开了基因治疗的分子和细胞生物学会议。会议报告了在基因送递、基因调控及避免免疫应答等新技术方面取得的进展。此外,会议还讨论了应用新基因治疗特定遗传病和获得性疾病的进展以及基因治疗的问题和前景。 展开更多
关键词 基因治疗 载体 基因送递
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Biomimetic gold nanocomplexes for gene knockdown: Will gold deliver dividends for small interfering RNA nanomedicines?
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作者 Jianfeng Guo Kamil Rahme +2 位作者 Kathleen A. Fitzgerald Justin D. Holmes Caitriona M. O'Driscoll 《Nano Research》 SCIE EI CAS CSCD 2015年第10期3111-3140,共30页
RNA interference (RNAi) effectors such as small interfering RNA (siRNA) and micro RNA (miRNA) can selectively downregulate any gene implicated in the pathology of a disease. Therefore, RNAi-based therapies have ... RNA interference (RNAi) effectors such as small interfering RNA (siRNA) and micro RNA (miRNA) can selectively downregulate any gene implicated in the pathology of a disease. Therefore, RNAi-based therapies have immense potential for the treatment of a wide range of diseases. However, pharmacokinetic and pharmacodynamic studies have revealed that these therapeutic agents have poor bioactivity due to a number of factors, including insufficient plasma drug levels, short plasma half-lives, renal clearance, and hepatic metabolism. Non-viral delivery may facilitate the clinical application of siRNA-based therapeutics by helping to overcome these barriers. Recently, the potential of gold nanoparticles (AuNPs) as multifunctional carriers for transporting drugs, proteins, and genetic materials has been demonstrated. In this review, some of the key properties of AuNPs relevant to siRNA delivery, such as physical properties and surface chemistry have been described. In addition, the ability of AuNP-based formulation strategies to successfully overcome delivery barriers associated with siRNA, and the potential for this material to translate into safe and effective nanomedicines are critically discussed. 展开更多
关键词 siRNA delivery RNA interference (RNAi)-based therapeutics mulfifunctionalnanoparficles nanotoxicity of goldnanoparticles
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