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硒与金纳米颗粒联合光动力和光热消融前列腺癌肿瘤的综述。

A review on selenium and gold nanoparticles combined photodynamic and photothermal prostate cancer tumors ablation.

作者信息

Omiyale Olumakinde Charles, Musa Mariama, Otuyalo Adewunmi Ifeoluwa, Gbayisomore Tolulope Judah, Onikeku Damilola Zainab, George Solomon Damilare, Popoola Possible Okikiola, Olofin Olabimpe Oluwatoyin, Umunnam Kelechi Franklin, Nneji Patricia Okwuchi, Adnan Musa, Ogunjobi Taiwo Temitope

机构信息

Department of Pharmacology, Toxicology, and Therapeutics, College of Medicine, University of Lagos, Lagos, Nigeria.

Department of Biomedical Engineering, University of Ghana, Legon, Ghana.

出版信息

Discov Nano. 2023 Dec 7;18(1):150. doi: 10.1186/s11671-023-03936-z.

Abstract

The acceptance of nanoparticle technology in the quest for cancer treatment is due to its many potentials and possibilities of filling in the gaps in the limitations of the current treatment modalities. Insights into the possibilities of getting even more from this technology, as well as the synergistic properties of photothermal therapy (PTT) and photodynamic therapy (PDT)-the use of reactive oxygen species (ROS)-can also be exploited in the ablation of prostate cancer tumors. Therefore, the combination of gold and selenium photoactive nanoparticles as platforms for drug delivery via PTT/PDT in prostate cancer therapy, with a specific emphasis on the 'micro-carrier' based approach, was discussed and explored in this review under relevant subtopics ranging from understanding the complex chemistry and biology of the pharmacologically active Se/Au-containing agents to giving a thorough knowledge of these therapeutic agents' potential as a targeted and successful treatment strategy for prostate cancer by investigating the complex mechanisms behind their delivery, activation, and synergistic effects. Furthermore, this article presents a comprehensive overview of the current research environment, problems encountered, and future perspectives in the continuous war against prostate cancer.

摘要

纳米颗粒技术在癌症治疗探索中被接受,是因为其具有诸多潜力以及弥补当前治疗方式局限性的可能性。深入了解从该技术中获取更多成果的可能性,以及光热疗法(PTT)和光动力疗法(PDT)(利用活性氧(ROS))的协同特性,也可用于前列腺癌肿瘤的消融。因此,本综述讨论并探讨了金和硒光活性纳米颗粒作为通过PTT/PDT进行前列腺癌治疗药物递送平台的组合,特别强调基于“微载体”的方法,涵盖了从理解含药理活性硒/金制剂的复杂化学和生物学,到通过研究其递送、激活及协同效应背后的复杂机制,全面了解这些治疗剂作为前列腺癌靶向成功治疗策略的潜力等相关子主题。此外,本文全面概述了当前针对前列腺癌持续斗争中的研究环境、遇到的问题及未来展望。

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