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使用石墨烯量子点的光热疗法。

Photothermal therapy using graphene quantum dots.

作者信息

Dar Mohammad Suhaan, Tabish Tanveer A, Thorat Nanasaheb D, Swati G, Sahu Niroj Kumar

机构信息

Division of Cardiovascular Medicine, Radcliffe Department of Medicine, University of Oxford, Oxford OX3 7BN, United Kingdom.

Nuffield Department of Women's and Reproductive Health, Medical Science Division, John Radcliffe Hospital, University of Oxford, Oxford OX3 9DU, United Kingdom.

出版信息

APL Bioeng. 2023 Aug 21;7(3):031502. doi: 10.1063/5.0160324. eCollection 2023 Sep.

Abstract

The rapid development of powerful anti-oncology medicines have been possible because of advances in nanomedicine. Photothermal therapy (PTT) is a type of treatment wherein nanomaterials absorb the laser energy and convert it into localized heat, thereby causing apoptosis and tumor eradication. PTT is more precise, less hazardous, and easy-to-control in comparison to other interventions such as chemotherapy, photodynamic therapy, and radiation therapy. Over the past decade, various nanomaterials for PTT applications have been reviewed; however, a comprehensive study of graphene quantum dots (GQDs) has been scantly reported. GQDs have received huge attention in healthcare technologies owing to their various excellent properties, such as high water solubility, chemical stability, good biocompatibility, and low toxicity. Motivated by the fascinating scientific discoveries and promising contributions of GQDs to the field of biomedicine, we present a comprehensive overview of recent progress in GQDs for PTT. This review summarizes the properties and synthesis strategies of GQDs including top-down and bottom-up approaches followed by their applications in PTT (alone and in combination with other treatment modalities such as chemotherapy, photodynamic therapy, immunotherapy, and radiotherapy). Furthermore, we also focus on the systematic study of and toxicities of GQDs triggered by PTT. Moreover, an overview of PTT along with the synergetic application used with GQDs for tumor eradication are discussed in detail. Finally, directions, possibilities, and limitations are described to encourage more research, which will lead to new treatments and better health care and bring people closer to the peak of human well-being.

摘要

由于纳米医学的进步,强大的抗肿瘤药物得以迅速发展。光热疗法(PTT)是一种治疗方法,其中纳米材料吸收激光能量并将其转化为局部热量,从而导致细胞凋亡和肿瘤消除。与化疗、光动力疗法和放射疗法等其他干预措施相比,PTT更精确、危害更小且易于控制。在过去十年中,已经对用于PTT应用的各种纳米材料进行了综述;然而,对石墨烯量子点(GQDs)的全面研究却鲜有报道。由于其具有高水溶性、化学稳定性、良好的生物相容性和低毒性等各种优异特性,GQDs在医疗技术领域受到了极大关注。受GQDs在生物医学领域令人着迷的科学发现和有前景的贡献的推动,我们对GQDs用于PTT的最新进展进行了全面概述。本综述总结了GQDs的特性和合成策略,包括自上而下和自下而上的方法,随后介绍了它们在PTT中的应用(单独应用以及与化疗、光动力疗法、免疫疗法和放射疗法等其他治疗方式联合应用)。此外,我们还专注于对PTT引发的GQDs的 和 毒性进行系统研究。此外,还详细讨论了PTT以及与GQDs联合用于肿瘤消除的协同应用。最后,描述了方向、可能性和局限性,以鼓励更多研究,这将带来新的治疗方法和更好的医疗保健,并使人们更接近人类福祉的巅峰。 (注:原文中“ and ”处信息缺失)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78f3/10444203/3f234c73bd73/ABPID9-000007-031502_1-g001.jpg

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