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提高癌症治疗的精准度:基因治疗和免疫调节在肿瘤学中的作用。

Enhancing precision in cancer treatment: the role of gene therapy and immune modulation in oncology.

作者信息

Youssef Emile, Fletcher Brandon, Palmer Dannelle

机构信息

Kapadi, Inc., Raleigh, NC, United States.

出版信息

Front Med (Lausanne). 2025 Jan 13;11:1527600. doi: 10.3389/fmed.2024.1527600. eCollection 2024.

Abstract

Gene therapy has long been a cornerstone in the treatment of rare diseases and genetic disorders, offering targeted solutions to conditions once considered untreatable. As the field advances, its transformative potential is now expanding into oncology, where personalized therapies address the genetic and immune-related complexities of cancer. This review highlights innovative therapeutic strategies, including gene replacement, gene silencing, oncolytic virotherapy, CAR-T cell therapy, and CRISPR-Cas9 gene editing, with a focus on their application in both hematologic malignancies and solid tumors. CRISPR-Cas9, a revolutionary tool in precision medicine, enables precise editing of cancer-driving mutations, enhancing immune responses and disrupting tumor growth mechanisms. Additionally, emerging approaches target ferroptosis-a regulated, iron-dependent form of cell death-offering new possibilities for selectively inducing tumor cell death in resistant cancers. Despite significant breakthroughs, challenges such as tumor heterogeneity, immune evasion, and the immunosuppressive tumor microenvironment (TME) remain. To overcome these barriers, novel approaches like dual-targeting, armored CAR-T cells, and combination therapies with immune checkpoint inhibitors and ferroptosis inducers are being explored. Additionally, the rise of allogeneic "off-the-shelf" CAR-T therapies offers scalable and more accessible treatment options. The regulatory landscape is evolving to accommodate these advancements, with frameworks like RMAT (Regenerative Medicine Advanced Therapy) in the U.S. and ATMP (Advanced Therapy Medicinal Products) in Europe fast-tracking the approval of gene therapies. However, ethical considerations surrounding CRISPR-based gene editing-such as off-target effects, germline editing, and ensuring equitable access-remain at the forefront, requiring ongoing ethical oversight. Advances in non-viral delivery systems, such as lipid nanoparticles (LNPs) and exosomes, are improving the safety and efficacy of gene therapies. By integrating these innovations with combination therapies and addressing regulatory and ethical concerns, gene therapy is poised to revolutionize cancer treatment, providing durable, effective, and personalized solutions for both hematologic and solid tumors.

摘要

长期以来,基因治疗一直是治疗罕见病和遗传性疾病的基石,为曾经被认为无法治疗的疾病提供了针对性的解决方案。随着该领域的发展,其变革潜力如今正在扩展到肿瘤学领域,个性化疗法可应对癌症的遗传和免疫相关复杂性。本综述重点介绍了创新治疗策略,包括基因替代、基因沉默、溶瘤病毒疗法、嵌合抗原受体T细胞(CAR-T)疗法和CRISPR-Cas9基因编辑,重点关注它们在血液系统恶性肿瘤和实体瘤中的应用。CRISPR-Cas9是精准医学中的一项革命性工具,能够精确编辑驱动癌症的突变,增强免疫反应并破坏肿瘤生长机制。此外,新兴方法靶向铁死亡(一种受调控的、铁依赖性的细胞死亡形式),为在耐药性癌症中选择性诱导肿瘤细胞死亡提供了新的可能性。尽管取得了重大突破,但肿瘤异质性、免疫逃逸和免疫抑制性肿瘤微环境(TME)等挑战依然存在。为克服这些障碍,正在探索双靶点、武装CAR-T细胞以及与免疫检查点抑制剂和铁死亡诱导剂联合治疗等新方法。此外,同种异体“现成可用”CAR-T疗法的兴起提供了可扩展且更易获得的治疗选择。监管格局正在不断演变以适应这些进展,美国的再生医学先进疗法(RMAT)和欧洲的高级治疗药品(ATMP)等框架正在加速基因疗法的审批。然而,围绕基于CRISPR的基因编辑的伦理考量,如脱靶效应、生殖系编辑以及确保公平可及性等,仍然是首要问题,需要持续的伦理监督。脂质纳米颗粒(LNP)和外泌体等非病毒递送系统的进展正在提高基因疗法的安全性和有效性。通过将这些创新与联合疗法相结合并解决监管和伦理问题,基因疗法有望彻底改变癌症治疗方式,为血液系统和实体瘤提供持久、有效且个性化的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c392/11769984/5a2487f77951/fmed-11-1527600-g001.jpg

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