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首页> 外文期刊>ACS nano >Cancer Cell-Derived, Drug-Loaded Nanovesicles Induced by Sulfhydryl-Blocking for Effective and Safe Cancer Therapy
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Cancer Cell-Derived, Drug-Loaded Nanovesicles Induced by Sulfhydryl-Blocking for Effective and Safe Cancer Therapy

机译:癌细胞衍生,由巯基诱导的药物负载的纳米粒子诱导有效和安全的癌症治疗

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Extracellular vesicles (EVs) pose great promise as therapeutic carriers due to their ideal size range and intrinsic biocompatibility. Limited scalability, poor quality control during production, and cumbersome isolation and purification processes have caused major setbacks in the progression of EV therapeutics to the clinic. Here, we overcome these setbacks by preparing cell-derived nanovesicles induced by sulfhydryl-blocking (NIbS), in the desirable size range for therapeutic delivery, that can be further loaded with the chemotherapeutic drug, doxorubicin (DOX), resulting in NIbS/DOX. Applicable to most cell types, this chemical blebbing approach enables efficient, quick, and simple harvest and purification as well as easily scalable production. Cellular uptake and intracellular release of DOX was improved using NIbS/DOX compared to a liposomal formulation. We also confirmed that in tumor-challenged C57BL/6 mice NIbS/DOX significantly slowed tumor growth and led to improved survival compared to treatment with free drug or liposomal drug. NIbS are a promising therapeutic carrier for improving cancer treatment outcomes since they are easy to prepare at a large scale, good candidates for drug loading, and capable of efficient administration of therapeutic agents with avoided nonspecific major distribution in vital organs. In addition, the utility of NIbS can be easily expanded to immunotherapy, gene therapy, and cell therapy when they are derived from applicable cell types.
机译:由于其理想的尺寸范围和内在生物相容性,细胞外囊(EVS)造成治疗载体的巨大希望。有限的可扩展性,生产过程中的质量差,繁琐的隔离和净化过程导致了诊所的EV治疗剂进展中的重大挫折。在此,我们通过制备由巯基封闭(NIBs)诱导的细胞衍生的纳米寡粒子,在治疗递送的所需尺寸范围内,可以进一步加载与化学治疗药物(DOX)进一步加载NiBs / dox来克服这些挫折。适用于大多数细胞类型,这种化学型Blebbing方法可以高效,快速,简单的收获和净化,以及易于可扩展的生产。与脂质体制剂相比,使用尖端/ dox改善了DOX细胞摄取和细胞内释放。我们还证实,在肿瘤攻击的C57BL / 6小鼠耳鼻喉耳中,肿瘤生长显着减缓,并导致与使用游离药物或脂质体药物治疗相比提高存活。 NIBS是一种有助的治疗载体,用于改善癌症治疗结果,因为它们易于以大规模制备,良好的药物载荷候选者,并且能够有效地施用治疗剂,以避免在重要器官中避免非特异性的主要分布。此外,当它们源自适用的细胞类型时,NIBs的效用可以很容易地扩展到免疫疗法,基因治疗和细胞疗法。

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