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用于神经退行性疾病治疗学的杂化纳米结构:生物膜和非生物膜纳米结构结合的艺术。

Hybrid nanostructures for neurodegenerative disease theranostics: the art in the combination of biomembrane and non-biomembrane nanostructures.

机构信息

Department of Neurology, Second Affiliated Hospital (Shanghai Changzheng Hospital) of Naval Medical University, Shanghai, 200003, China.

Department of Neurology, Shanghai East Hospital, School of Medicine, Tongji University, Shanghai, 200120, China.

出版信息

Transl Neurodegener. 2024 Aug 27;13(1):43. doi: 10.1186/s40035-024-00436-7.

Abstract

The diagnosis of neurodegenerative diseases (NDDs) remains challenging, and existing therapeutic approaches demonstrate little efficacy. NDD drug delivery can be achieved through the utilization of nanostructures, hence enabling multimodal NDD theranostics. Nevertheless, both biomembrane and non-biomembrane nanostructures possess intrinsic shortcomings that must be addressed by hybridization to create novel nanostructures with versatile applications in NDD theranostics. Hybrid nanostructures display improved biocompatibility, inherent targeting capabilities, intelligent responsiveness, and controlled drug release. This paper provides a concise overview of the latest developments in hybrid nanostructures for NDD theranostics and emphasizes various engineering methodologies for the integration of diverse nanostructures, including liposomes, exosomes, cell membranes, and non-biomembrane nanostructures such as polymers, metals, and hydrogels. The use of a combination technique can significantly augment the precision, intelligence, and efficacy of hybrid nanostructures, therefore functioning as a more robust theranostic approach for NDDs. This paper also addresses the issues that arise in the therapeutic translation of hybrid nanostructures and explores potential future prospects in this field.

摘要

神经退行性疾病(NDDs)的诊断仍然具有挑战性,现有的治疗方法效果甚微。可以利用纳米结构来实现 NDD 的药物输送,从而实现多模态的 NDD 治疗。然而,生物膜和非生物膜纳米结构都存在内在的缺陷,必须通过杂交来创造具有多功能应用的新型纳米结构,以解决这些问题。杂交纳米结构具有更好的生物相容性、内在靶向能力、智能响应性和可控的药物释放。本文简要概述了用于 NDD 治疗的杂交纳米结构的最新进展,并强调了各种工程方法学,用于整合不同的纳米结构,包括脂质体、外泌体、细胞膜和非生物膜纳米结构,如聚合物、金属和水凝胶。组合技术的使用可以显著提高杂交纳米结构的精度、智能性和功效,因此可以作为治疗 NDD 的更强大的治疗方法。本文还讨论了在杂交纳米结构的治疗转化中出现的问题,并探讨了该领域的潜在未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a9f/11348682/df8fce9e07c0/40035_2024_436_Fig1_HTML.jpg

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