多功能碳量子点的生物成像和治疗应用:最新进展和挑战

Thakur Prasad Mishra Daby , Unnati Modi , Amit K. Yadav, Dhiraj Bhatia, Raghu Solanki
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摘要

碳量子点(CQDs)是纳米医学领域中极具发展前景的碳基纳米材料。它们的小尺寸和独特的物理化学性质,如生物相容性,可调节的表面功能(如氨基,羟基,羧基),稳定性和电子迁移率,使它们在生物医学应用中特别有利。CQDs作为药物递送的纳米载体在癌症、眼科疾病、传染病、心血管疾病和神经系统疾病的治疗中显示出巨大的潜力。此外,它们的多功能性促使人们对利用CQDs进行基因治疗、疫苗开发、干细胞治疗和组织工程越来越感兴趣。由于其优异的光学特性,包括高荧光、可调发射和光稳定性,CQDs还具有先进的生物成像和生物传感技术,使其成为体内成像、细胞跟踪和生物分子检测的理想选择。尽管有这些有前景的应用,但诸如不可生物降解性、高浓度下潜在的细胞毒性以及不一致的表面功能化等限制对其在生物医学应用中的有效性和安全性构成了挑战。这篇综述强调了CQDs治疗应用的最新进展,强调了它们通过提供精确和靶向给药来改变纳米医学的潜力。未来,基于cqd的系统可以促进更有效的治疗,减少脱靶效应,为精准医学的新时代铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioimaging and therapeutic applications of multifunctional carbon quantum dots: Recent progress and challenges
Carbon quantum dots (CQDs) have emerged as highly promising carbon-based nanomaterials in the field of nanomedicine. Their small size and unique physicochemical properties such as biocompatibility, tunable surface functionalities (such as amino, hydroxyl, carboxyl), stability and electron mobility, make them particularly advantageous for biomedical applications. CQDs show great potential as nanocarriers for drug delivery in the treatment of cancer, ophthalmic diseases, infectious diseases, cardiovascular diseases and neurological disorders. Additionally, their versatility has prompted growing interest in utilizing CQDs for gene therapy, vaccine development, stem cell therapy and tissue engineering. CQDs have also advanced bioimaging and biosensing due to their excellent optical properties, including high fluorescence, tunable emission, and photostability, making them ideal for in vivo imaging, cellular tracking, and biomolecule detection. Despite these promising applications, limitations such as non-biodegradability, potential cytotoxicity at higher concentrations, and inconsistent surface functionalization pose challenges to their efficacy and safety in biomedical applications. This review highlights recent advancements in the therapeutic use of CQDs, underscoring their potential to transform nanomedicine by offering precise and targeted drug delivery. In the future, CQD-based systems could facilitate more effective therapies with reduced off-target effects, paving the way for a new era of precision medicine.
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