Tekade Muktika, Pingale Prashant, Gupta Rachna, Pawar Bhakti, Tekade Rakesh Kumar, Sharma Mukesh Chandra
School of Pharmacy, Devi Ahilya Vishwavidyalaya, Takshila Campus, Khandwa Road, Indore 452001, Madhya Pradesh, India.
Department of Pharmaceutics, Sir Dr. M.S. Gosavi College of Pharmaceutical Education and Research, Nashik 422005, Maharashtra, India.
Pharmaceutics. 2023 Feb 22;15(3):735. doi: 10.3390/pharmaceutics15030735.
To date, nanomaterials have been widely used for the treatment and diagnosis of rheumatoid arthritis. Amongst various nanomaterials, polymer-based nanomaterials are becoming increasingly popular in nanomedicine due to their functionalised fabrication and easy synthesis, making them biocompatible, cost-effective, biodegradable, and efficient nanocarriers for the delivery of drugs to a specific target cell. They act as photothermal reagents with high absorption in the near-infrared region that can transform near-infrared light into localised heat with fewer side effects, provide easier integration with existing therapies, and offer increased effectiveness. They have been combined with photothermal therapy to understand the chemical and physical activities behind the stimuli-responsiveness of polymer nanomaterials. In this review article, we provide detailed information regarding the recent advances in polymer nanomaterials for the non-invasive photothermal treatment of arthritis. The synergistic effect of polymer nanomaterials and photothermal therapy has enhanced the treatment and diagnosis of arthritis and reduced the side effects of drugs in the joint cavity. In addition, further novel challenges and future perspectives must be resolved to advance polymer nanomaterials for the photothermal therapy of arthritis.
迄今为止,纳米材料已被广泛用于类风湿性关节炎的治疗和诊断。在各种纳米材料中,基于聚合物的纳米材料因其功能化制备和易于合成,在纳米医学中越来越受欢迎,使其成为生物相容、经济高效、可生物降解且高效的纳米载体,用于将药物递送至特定靶细胞。它们作为光热试剂,在近红外区域具有高吸收,可将近红外光转化为局部热,副作用较少,能更轻松地与现有疗法整合,并提高疗效。它们已与光热疗法相结合,以了解聚合物纳米材料刺激响应背后的化学和物理活性。在这篇综述文章中,我们提供了有关聚合物纳米材料用于关节炎非侵入性光热治疗的最新进展的详细信息。聚合物纳米材料与光热疗法的协同作用增强了关节炎的治疗和诊断,并减少了关节腔内药物的副作用。此外,为推进聚合物纳米材料用于关节炎的光热治疗,还必须解决进一步的新挑战和未来前景。