Challenges and opportunities of poly(amino acid) nanomedicines in cancer therapy.

Yuce Li, Jing He, Jixiu Liu, Wooram Um, Jianxun Ding
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Abstract

Poly(amino acid) nanomedicines hold significant promise for cancer therapy. However, their clinical translation has not matched the extensive efforts of scientists or the burgeoning body of research. The therapeutic outcomes with most nanomedicines often fall short of the promising results observed in animal experiments. This review explores the challenges faced in cancer therapy using poly(amino acid) nanomedicines, particularly addressing the controversies surrounding the enhanced permeability and retention effect and the lack of methods for controlled and reproducible mass production of poly(amino acid) nanomedicines. Furthermore, this review examines the opportunities emerging in this field due to the rapid advancements in artificial intelligence.

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聚氨基酸纳米药物在癌症治疗中的挑战与机遇。
聚氨基酸纳米药物在癌症治疗方面大有可为。然而,科学家们的广泛努力和不断涌现的研究成果却未能将其应用于临床。大多数纳米药物的治疗效果往往达不到动物实验中观察到的良好结果。本综述探讨了使用聚(氨基酸)纳米药物治疗癌症所面临的挑战,特别是围绕增强渗透性和滞留效应的争议,以及缺乏可控和可重复大规模生产聚(氨基酸)纳米药物的方法。此外,本综述还探讨了人工智能的快速发展为这一领域带来的机遇。
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Hispolon-loaded lipid nanocapsules for the management of hepatocellular carcinoma: comparative study with solid lipid nanoparticles and suspension. Nanotechnology-based platforms for effective and versatile sonodynamic therapy in cancer treatment. Nanoformulations of amphotericin B to resolve challenges in antifungal therapy. Cetuximab-conjugated sodium selenite nanoparticles for doxorubicin targeted delivery against MCF-7 breast cancer cells. Challenges and opportunities of poly(amino acid) nanomedicines in cancer therapy.
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