Labanieh Louai, Mackall Crystal L
Department of Bioengineering, Stanford University, Stanford, CA, USA.
Center for Cancer Cell Therapy, Stanford Cancer Institute, Stanford University, Stanford, CA, USA.
Nature. 2023 Feb;614(7949):635-648. doi: 10.1038/s41586-023-05707-3. Epub 2023 Feb 22.
The remarkable clinical activity of chimeric antigen receptor (CAR) therapies in B cell and plasma cell malignancies has validated the use of this therapeutic class for liquid cancers, but resistance and limited access remain as barriers to broader application. Here we review the immunobiology and design principles of current prototype CARs and present emerging platforms that are anticipated to drive future clinical advances. The field is witnessing a rapid expansion of next-generation CAR immune cell technologies designed to enhance efficacy, safety and access. Substantial progress has been made in augmenting immune cell fitness, activating endogenous immunity, arming cells to resist suppression via the tumour microenvironment and developing approaches to modulate antigen density thresholds. Increasingly sophisticated multispecific, logic-gated and regulatable CARs display the potential to overcome resistance and increase safety. Early signs of progress with stealth, virus-free and in vivo gene delivery platforms provide potential paths for reduced costs and increased access of cell therapies in the future. The continuing clinical success of CAR T cells in liquid cancers is driving the development of increasingly sophisticated immune cell therapies that are poised to translate to treatments for solid cancers and non-malignant diseases in the coming years.
嵌合抗原受体(CAR)疗法在B细胞和浆细胞恶性肿瘤中展现出的显著临床活性,已证实了这一治疗类别在液体癌症治疗中的应用价值,但耐药性和可及性有限仍是其更广泛应用的障碍。在此,我们回顾当前原型CAR的免疫生物学和设计原则,并介绍有望推动未来临床进展的新兴平台。该领域正见证旨在提高疗效、安全性和可及性的下一代CAR免疫细胞技术的迅速扩展。在增强免疫细胞适应性、激活内源性免疫、使细胞具备抵抗肿瘤微环境抑制的能力以及开发调节抗原密度阈值的方法等方面已取得了实质性进展。日益复杂的多特异性、逻辑门控和可调节CAR显示出克服耐药性和提高安全性的潜力。隐身、无病毒和体内基因递送平台取得进展的早期迹象为未来降低细胞疗法成本和提高其可及性提供了潜在途径。CAR T细胞在液体癌症治疗中持续取得的临床成功,正推动着日益复杂的免疫细胞疗法的发展,这些疗法有望在未来几年转化为实体癌症和非恶性疾病的治疗方法。