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Bioconjugates and Nanocarriers for Therapy, Imaging, Drug Design and Targeting

机译:生物共轭物和纳米载体的治疗,成像,药物设计和靶向

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Currently, bioconjugates and nanocarriers can be practically used in drug discovery, therapy, diagnosis, imaging, targeting, stability, etc. Also preparing nano drug carrier systems (NDCSs) is a common application of bio-conjugates. Current examples of bio-conjugates are nanoparticles, liposomes, micelles, dendrimers, quantum dots, carbon nanotubes, nano-fibers, but not limited to. As bioconjugates, nano drug carrier systems have important roles in the development of intelligent drugs such as tailor made drugs and drug targeting systems for early diagnosis steps and therapy. Currently, different drug carrier systems can be designed for improvement of the physico-chemical properties of drugs, controlling drug release, stability, in vivo performance and modification of the surface chemistry of drugs by using nanotechnology, bioconjugation and PEGylation. The anticancer efficacy of existing chemotherapeutic drugs can be improved by employing formulation, bioconjugation and nano-technological approaches. This current review focuses on the description of bioconjugates and nano drug carrier systems for diagnosis, imaging and therapy reported mainly in the last decade.
机译:当前,生物缀合物和纳米载体可实际用于药物发现,治疗,诊断,成像,靶向,稳定性等。另外,制备纳米药物载体系统(NDCS)是生物缀合物的普遍应用。生物缀合物的当前实例是纳米颗粒,脂质体,胶束,树状聚合物,量子点,碳纳米管,纳米纤维,但不限于此。作为生物结合物,纳米药物载体系统在智能药物的开发中具有重要作用,例如定制药物和用于早期诊断步骤和治疗的药物靶向系统。当前,可以使用纳米技术,生物缀合和PEG化来设计不同的药物载体系统以改善药物的物理化学性质,控制药物的释放,稳定性,体内性能以及改变药物的表面化学。现有的化疗药物的抗癌功效可以通过采用制剂,生物结合和纳米技术手段来提高。这篇综述主要集中在对生物缀合物和纳米药物载体系统的描述,以用于诊断,成像和治疗,主要报道于最近十年。

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