首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Bioinspired nanocarriers designed to enhance intracellular delivery of biotherapeutics
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Bioinspired nanocarriers designed to enhance intracellular delivery of biotherapeutics

机译:受生物启发的纳米载体,旨在增强生物治疗药物的细胞内传递

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The biotechnology and pharmaceutical industries have developed a wide variety of potential therapeutics based on the molecules of biology: DNA, RNA and proteins. While these therapeutics have tremendous potential, effectively formulating and delivering them has also been a widely recognized challenge. A variety of viruses and toxins have evolved multi-functional biopolymer complexes to solve this problem by directing uptake and enhancing biomolecular transport to the cytoplasm from the low pH endosomal compartment. Here, we have designed and synthesized bio-inspired, pH-responsive polymeric carriers that mimic the multifunctional design of biology. These nanocarriers target and direct cellular uptake, as well as enhance cytosolic delivery by disrupting endosomal membranes in pH-dependent fashion. We show that the encrypted polymeric carriers significantly enhance the delivery oligonucleotides and peptides to the cytoplasm of cultured hepatocytes and macrophages, demonstrating the potential of this approach to therapeutic and vaccine development.
机译:生物技术和制药行业已经基于生物学分子:DNA,RNA和蛋白质开发了各种各样的潜在疗法。尽管这些疗法具有巨大的潜力,但是有效地配制和提供它们也是一个公认的挑战。多种病毒和毒素已经进化出多功能的生物聚合物复合物,通过引导摄取和增强生物分子从低pH值内体区室到细胞质的运输来解决该问题。在这里,我们设计并合成了模仿生物学多功能设计的受生物启发,pH响应的聚合物载体。这些纳米载体靶向并指导细胞摄取,并通过以pH依赖性方式破坏内体膜来增强细胞溶质的递送。我们表明,加密的聚合物载体显着增强了向培养的肝细胞和巨噬细胞的细胞质传递寡核苷酸和多肽的能力,证明了这种方法在治疗和疫苗开发中的潜力。

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