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Biocompatibility of liposomes derived from microbial cells: an assesment towards Nanomedicine applications

机译:来源于微生物细胞的脂质体的生物相容性:对纳米医学应用的评估

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The emergence of Nanotechnology in Medicine has resulted in the development of a wide set of nanocarriers. One of the most popular approaches in drug delivery is the use of liposomes, which are self-assembled lipid bilayers. Mammalian-derived liposomes are known to be highly biocompatible. However, the toxicity of liposomes prepared with microbial lipids is still to be clarified. Strains from the genus Mycobacterium are able to induce a high immune response in humans, which is known to involve the responses towards the amphipathic lipids they synthesize, and various reports have proposed the use of mycobacterial liposomes as adjuvants and vaccine boosts. In this work, M. fortuitum and M. tuberculosis lipids were used to produce mycobacterial-derived liposomes, and their physical and chemical characterization, as well as biocompatibility vis-¿¿¿-vis human cells are addressed.
机译:纳米技术在医学中的出现导致了一系列纳米载体的发展。药物递送中最流行的方法之一是使用脂质体,脂质体是自组装的脂质双层。已知哺乳动物来源的脂质体具有高度生物相容性。然而,用微生物脂质制备的脂质体的毒性仍有待澄清。来自分枝杆菌属的菌株能够在人类中诱导高免疫应答,已知该应答涉及对它们合成的两亲性脂质的应答,并且各种报道提出使用分枝杆菌脂质体作为佐剂和疫苗加强剂。在这项工作中,Fortuitum和结核分枝杆菌脂质被用于生产分枝杆菌来源的脂质体,并探讨了它们的理化特性以及与人细胞的生物相容性。

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