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明亮半导体量子点为多种疾病的精准纳米医学带来新曙光。

Bright Semiconductor Quantum Dots Shed New Light on Precision Nanomedicine for Various Diseases.

作者信息

Zhang Peisen, Jiao Mingxia, Li Yilin, Ding Xiaoyan, McHugh Kevin J, Jing Lihong

机构信息

CAS Key Laboratory of Colloid, Interface and Chemical Thermodynamics CAS Research/Education Center for Excellence in Molecular Sciences Center for Carbon Neutral Chemistry Institute of Chemistry Chinese Academy of Sciences Bei Yi Jie 2 Zhong Guan Cun Beijing 100190 China.

Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science MOE College of Chemistry and Molecular Engineering Qingdao University of Science and Technology Qingdao 266042 China.

出版信息

Small Sci. 2023 Nov 27;4(1):2300081. doi: 10.1002/smsc.202300081. eCollection 2024 Jan.

Abstract

Nanomaterials with diagnostic and therapeutic functions have exciting potential to reshape the landscape of precision medicine. Impressive progress has been made toward the design and production of innovative theranostic nanomaterials that improve disease care, motivated by their ability to simultaneously provide diagnostic information and therapeutic benefits. Herein, the state-of-the-art theranostic semiconductor quantum dots (QDs) are summarized, and the diverse types of QDs designed for the diagnosis and treatment of different diseases are discussed. The opportunities and benefits of QDs are highlighted throughout using in vitro and in vivo examples aimed at addressing various clinical challenges, including cancer, vascular dysfunctions, microbial infections, and medical tattoos. Over the past several years, this area has experienced enormous growth, particularly in preclinical animal imaging and therapy, which has brought the field closer to reaching human patients. Unfortunately, several barriers to clinical translation remain. Therefore, in addition to summarizing the key results from previous in vivo studies, the lessons learned from these studies are synthesized, perspective on the future steps needed for both fundamental studies and the clinical translation of theranostic QD nanotechnology to inform future QD design is provided.

摘要

具有诊断和治疗功能的纳米材料在重塑精准医疗格局方面具有令人兴奋的潜力。受其能够同时提供诊断信息和治疗益处的推动,在设计和生产改善疾病治疗的创新型诊疗纳米材料方面已经取得了令人瞩目的进展。在此,总结了最先进的诊疗半导体量子点(QDs),并讨论了为诊断和治疗不同疾病而设计的各种类型的量子点。通过旨在应对各种临床挑战(包括癌症、血管功能障碍、微生物感染和医学纹身)的体外和体内实例,突出了量子点的机遇和益处。在过去几年中,该领域取得了巨大的发展,特别是在临床前动物成像和治疗方面,这使该领域更接近人类患者。不幸的是,临床转化仍存在一些障碍。因此,除了总结先前体内研究的关键结果外,还综合了从这些研究中吸取的经验教训,提供了关于基础研究和诊疗量子点纳米技术临床转化所需未来步骤的观点,以为未来量子点设计提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b08/11935123/41ce570417d7/SMSC-4-2300081-g012.jpg

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