肿瘤微环境穿透性壳聚糖纳米颗粒用于消除癌症复发和最小残留疾病
Tumor microenvironment penetrating chitosan nanoparticles for elimination of cancer relapse and minimal residual disease.
作者信息
Mahmudi Hossein, Adili-Aghdam Mohammad Amin, Shahpouri Mohammad, Jaymand Mehdi, Amoozgar Zohreh, Jahanban-Esfahlan Rana
机构信息
Department of Medical Biotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
Student Research Committee, Tabriz University of Medical Sciences, Tabriz, Iran.
出版信息
Front Oncol. 2022 Nov 30;12:1054029. doi: 10.3389/fonc.2022.1054029. eCollection 2022.
Chitosan and its derivatives are among biomaterials with numerous medical applications, especially in cancer. Chitosan is amenable to forming innumerable shapes such as micelles, niosomes, hydrogels, nanoparticles, and scaffolds, among others. Chitosan derivatives can also bring unprecedented potential to cross numerous biological barriers. Combined with other biomaterials, hybrid and multitasking chitosan-based systems can be realized for many applications. These include controlled drug release, targeted drug delivery, post-surgery implants (immunovaccines), theranostics, biosensing of tumor-derived circulating materials, multimodal systems, and combination therapy platforms with the potential to eliminate bulk tumors as well as lingering tumor cells to treat minimal residual disease (MRD) and recurrent cancer. We first introduce different formats, derivatives, and properties of chitosan. Next, given the barriers to therapeutic efficacy in solid tumors, we review advanced formulations of chitosan modules as efficient drug delivery systems to overcome tumor heterogeneity, multi-drug resistance, MRD, and metastasis. Finally, we discuss chitosan NPs for clinical translation and treatment of recurrent cancer and their future perspective.
壳聚糖及其衍生物是具有众多医学应用的生物材料之一,尤其是在癌症治疗方面。壳聚糖易于形成无数种形状,如胶束、脂质体、水凝胶、纳米颗粒和支架等。壳聚糖衍生物还具有跨越多种生物屏障的前所未有的潜力。与其他生物材料结合,可以实现用于多种应用的基于壳聚糖的混合和多任务系统。这些应用包括控释药物、靶向给药、术后植入物(免疫疫苗)、治疗诊断学、肿瘤衍生循环物质的生物传感、多模态系统以及具有消除大块肿瘤以及残留肿瘤细胞以治疗微小残留病(MRD)和复发性癌症潜力的联合治疗平台。我们首先介绍壳聚糖的不同形式、衍生物和特性。接下来,鉴于实体瘤治疗效果的障碍,我们综述壳聚糖模块作为高效药物递送系统的先进制剂,以克服肿瘤异质性、多药耐药性、MRD和转移。最后,我们讨论用于复发性癌症临床转化和治疗的壳聚糖纳米颗粒及其未来前景。