Tayebi-Khorrami Vahid, Fadaei Mohammad Reza, Fallahianshafiei Shiva, Askari Vahid Reza
Department of Pharmaceutics, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.
Department of Pharmacy, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran.
Naunyn Schmiedebergs Arch Pharmacol. 2025 May 2. doi: 10.1007/s00210-025-04171-2.
Cancer is a challenging issue requiring new strategies for management and control. Immune checkpoint blockades (ICBs) increase the body's immune response against cancer by targeting specific receptors on T-lymphocytes. The FDA approved different ICBs for cancer treatment: anti-PD-1, PDL-1, and CTLA-4 inhibitors. Many immune checkpoint inhibitors (ICIs) are in clinical trials, highlighting their significance. Challenges like resistance and side effects have led researchers to explore new delivery strategies for ICIs. Thermosensitive hydrogels can change from sol to gel and vice versa due to their structure. They interact with aqueous medium through groups like ethyl, methyl, and propyl, forming hydrogen bonds. These bonds of hydrogen are temperature-sensitive and cause the change of the polymer from sol to gel at a temperature named critical solution temperature (CST). The using temperature-responsive polymers and ICBs showed a promising approach to sustained localized cancer therapy with lowering side effects on normal tissues. In this paper, we first define new investigations on immune therapy in cancer via ICBs. Then, we present recent studies of thermosensitive polymers in cancer therapy and the most used thermosensitive polymers in studies. Eventually, we discuss studies that used thermosensitive polymers in the delivery of ICBs and discuss new investigations in this field.
癌症是一个具有挑战性的问题,需要新的管理和控制策略。免疫检查点阻断剂(ICB)通过靶向T淋巴细胞上的特定受体来增强机体对癌症的免疫反应。美国食品药品监督管理局(FDA)批准了不同的ICB用于癌症治疗:抗PD-1、PDL-1和CTLA-4抑制剂。许多免疫检查点抑制剂(ICI)正在进行临床试验,凸显了它们的重要性。诸如耐药性和副作用等挑战促使研究人员探索ICI的新递送策略。热敏水凝胶由于其结构可以从溶胶转变为凝胶,反之亦然。它们通过乙基、甲基和丙基等基团与水性介质相互作用,形成氢键。这些氢键对温度敏感,会在一个称为临界溶解温度(CST)的温度下导致聚合物从溶胶转变为凝胶。使用温度响应性聚合物和ICB显示出一种有前景的方法,可实现持续的局部癌症治疗,同时降低对正常组织的副作用。在本文中,我们首先定义通过ICB进行癌症免疫治疗的新研究。然后,我们介绍热敏聚合物在癌症治疗中的最新研究以及研究中最常用的热敏聚合物。最后,我们讨论在ICB递送中使用热敏聚合物的研究,并探讨该领域的新研究。