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Current trends in the use of human serum albumin for drug delivery in cancer

机译:使用人血清白蛋白治疗癌症药物递送的当前趋势

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Introduction Human serum albumin is the most abundant transport protein in plasma, which has recently been extensively utilized to form nanoparticles for drug delivery in cancer. The primary reason for selecting albumin protein as drug delivery cargo is its excellent biocompatibility, biodegradability, and non-immunogenicity. Moreover, the albumin structure containing three homologous domains constituted of a single polypeptide (585 amino acid) incorporates various hydrophobic drugs by non-covalent interactions. Albumin shows active tumor targeting via their interaction with gp60 and SPARC proteins abundant in the tumor-associated endothelial cells and the tumor microenvironment. Areas covered The review discusses the importance of albumin as a drug-carrier system, general procedures to prepare albumin NPs, and the current trends in using albumin-based nanomedicines to deliver various chemotherapeutic agents. The various applications of albumin in the nanomedicines, such as NPs surface modifier and fabrication of hybrid/active-tumor targeted NPs, are delineated based on current trends. Expert opinion Nanomedicines have the potential to revolutionize cancer treatment. However, clinical translation is limited majorly due to the lack of suitable nanomaterials offering systemic stability, optimum drug encapsulation, tumor-targeted delivery, sustained drug release, and biocompatibility. The potential of albumin could be explored in nanomedicines fabrication for superior treatment outcomes in cancer.
机译:引言 人血清白蛋白是血浆中含量最丰富的转运蛋白,最近被广泛用于形成纳米颗粒,用于癌症药物递送。选择白蛋白作为药物递送货物的主要原因是其优异的生物相容性、生物降解性和非免疫原性。此外,含有由单个多肽(585个氨基酸)构成的三个同源结构域的白蛋白结构通过非共价相互作用掺入各种疏水药物。白蛋白通过与肿瘤相关内皮细胞和肿瘤微环境中丰富的 gp60 和 SPARC 蛋白的相互作用显示出活跃的肿瘤靶向性。涵盖的领域 本综述讨论了白蛋白作为药物载体系统的重要性、制备白蛋白NP的一般程序,以及使用基于白蛋白的纳米药物递送各种化疗药物的当前趋势。根据目前的趋势,描述了白蛋白在纳米药物中的各种应用,例如NPs表面改性剂和混合/活动性肿瘤靶向NPs的制备。专家意见 纳米药物有可能彻底改变癌症治疗。然而,临床转化受到限制的主要原因是缺乏合适的纳米材料,这些纳米材料具有全身稳定性、最佳药物包封、肿瘤靶向递送、药物持续释放和生物相容性。白蛋白在纳米药物制造中的潜力可以被探索,以获得更好的癌症治疗效果。

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