Mondal Amrita, Talukdar Ankita, Haque Rizwanul
Department of Biotechnology, School of Earth Biological and Environmental Sciences, Central University of South Bihar, Gaya, India.
Curr Stem Cell Res Ther. 2025;20(4):360-376. doi: 10.2174/011574888X294791240408055222.
Induced Pluripotent Stem Cells (iPSCs) are among the top versatile implements of biomedical research. Stem cell science has made strides over the past few years, emerging as a new opportunity to treat cancer, and many such continuous initiatives have been made into clinical trials. As the global mortality rate is too high despite the effectiveness of prevalent cancer therapies, this review explores the potential of iPSC in different aspects of cancer-related areas. The preparation of iPSCs, including their derivation from cancer stem cells, was covered after establishing the intricacy of current cancer treatments. This article highlights the potential of iPSC- based NK cells and dendritic cells for immunotherapy and delves into the role of iPSC-based mesenchymal cells in targeted therapy. The potential of iPSC-derived organoids as a vital tool for disease modeling and drug discovery has been showcased, and the importance of iPSC-based cancer vaccines is also emphasized. The ongoing clinical trials of iPSC-based cancer treatment have also been highlighted. Though much work remains to be done to implicate these iPSC-based therapeutic options from research labs to clinics and hospitals, ongoing studies and clinical/translational follow-ups raise hope for novel cancer therapies employing iPSC technology.
诱导多能干细胞(iPSC)是生物医学研究中最具通用性的工具之一。在过去几年里,干细胞科学取得了长足进展,成为治疗癌症的新契机,许多此类持续性举措已进入临床试验阶段。尽管现有癌症疗法行之有效,但全球死亡率依然居高不下,因此本综述探讨了iPSC在癌症相关领域不同方面的潜力。在阐述当前癌症治疗的复杂性之后,介绍了iPSC的制备方法,包括从癌症干细胞中衍生iPSC。本文重点介绍了基于iPSC的自然杀伤细胞和树突状细胞在免疫治疗中的潜力,并深入探讨了基于iPSC的间充质细胞在靶向治疗中的作用。展示了iPSC衍生类器官作为疾病建模和药物发现重要工具的潜力,同时也强调了基于iPSC的癌症疫苗的重要性。还重点介绍了基于iPSC的癌症治疗正在进行的临床试验。尽管要将这些基于iPSC的治疗方案从研究实验室应用到临床和医院仍有许多工作要做,但正在进行的研究以及临床/转化随访为采用iPSC技术的新型癌症治疗带来了希望。