Zhang Yingfeng, Tian Jing
University-Town Hospital of Chongqing Medical University, Chongqing 401331, China.
ACS Omega. 2024 Aug 23;9(36):37459-37504. doi: 10.1021/acsomega.4c04573. eCollection 2024 Sep 10.
Gynecologic cancers are a significant health issue for women globally. Early detection and successful treatment of these tumors are crucial for the survival of female patients. Conventional therapies are often ineffective and harsh, particularly in advanced stages, necessitating the exploration of new therapy options. Nanotechnology offers a novel approach to biomedicine. A novel biosensor utilizing bionanotechnology can be employed for early tumor identification and therapy due to the distinctive physical and chemical characteristics of nanoparticles. Nanoparticles have been rapidly applied in the field of gynecologic malignancies, leading to significant advancements in recent years. This study highlights the significance of nanoparticles in treating gynecological cancers. It focuses on using nanoparticles for precise diagnosis and continuous monitoring of the disease, innovative imaging, and analytic methods, as well as multifunctional drug delivery systems and targeted therapies. This review examines several nanocarrier systems, such as dendrimers, liposomes, nanocapsules, and nanomicelles, for gynecological malignancies. The review also examines the enhanced therapeutic potential and targeted delivery of ligand-functionalized nanoformulations for gynecological cancers compared to nonfunctionalized anoformulations. In conclusion, the text also discusses the constraints and future exploration prospects of nanoparticles in chemotherapeutics. Nanotechnology will offer precise methods for diagnosing and treating gynecological cancers.
妇科癌症是全球女性面临的一个重大健康问题。这些肿瘤的早期检测和成功治疗对于女性患者的生存至关重要。传统疗法往往无效且严苛,尤其是在晚期,因此需要探索新的治疗方案。纳米技术为生物医学提供了一种新方法。由于纳米颗粒独特的物理和化学特性,一种利用生物纳米技术的新型生物传感器可用于早期肿瘤识别和治疗。纳米颗粒已在妇科恶性肿瘤领域迅速应用,近年来取得了重大进展。本研究强调了纳米颗粒在治疗妇科癌症中的重要性。它专注于使用纳米颗粒进行疾病的精确诊断和持续监测、创新的成像和分析方法,以及多功能药物递送系统和靶向治疗。这篇综述研究了几种用于妇科恶性肿瘤的纳米载体系统,如树枝状大分子、脂质体、纳米胶囊和纳米胶束。该综述还研究了与未功能化的纳米制剂相比,配体功能化纳米制剂对妇科癌症的增强治疗潜力和靶向递送。总之,本文还讨论了纳米颗粒在化疗中的局限性和未来探索前景。纳米技术将为诊断和治疗妇科癌症提供精确方法。