CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Improved CAR-T cell activity associated with increased mitochondrial function primed by galactose.
Improved CAR-T cell activity associated with increased mitochondrial function primed by galactose.
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CD19 CAR-T 已使复发/难治性 B 细胞恶性肿瘤患者实现持久缓解,但多数患者最终仍会远期复发。人们已报告许多改善现有 CAR-T 产品的干预方式,其中部分直接或间接涉及 CAR-T 细胞代谢状态。
本研究评估了正在进行的一项临床试验中急性淋巴细胞白血病患者的 CD19-28z CAR-T 产品。达到完全缓解的 CAR-T 临床产品具有显著较高的线粒体功能(以氧耗率衡量),且与线粒体含量无关。随后研究将培养基碳源从葡萄糖换为半乳糖以影响细胞代谢。含半乳糖培养基提高 CAR-T 细胞线粒体活性,并改善体外疗效,但记忆表型未发生一致改变。
最后,在不含葡萄糖、以半乳糖为基础的培养基中制备 CAR-T 细胞,发现线粒体活性增加。在 Nalm6 接种小鼠体内模型中,与标准葡萄糖培养 CAR-T 相比,半乳糖预处理 CAR-T 显著延长无白血病生存期。结果证实线粒体代谢对 CAR-T 疗效的重要性,并提出改善临床产品的转化路径。
CD19 CAR-T cells have led to durable remissions in patients with refractory B-cell malignancies; nevertheless, most patients eventually relapse in the long term. Many interventions aimed at improving current products have been reported, with a subset of them focusing on a direct or indirect link to the metabolic state of the CAR-T cells.
We assessed clinical products from an ongoing clinical trial utilizing CD19-28z CAR-T cells from patients with acute lymphoblastic leukemia. CAR-T clinical products leading to a complete response had significantly higher mitochondrial function (by oxygen consumption rate) irrespective of mitochondrial content.
Next, we replaced the carbon source of the media from glucose to galactose to impact cellular metabolism. Galactose-containing media increased mitochondrial activity in CAR-T cells, and improved in in-vitro efficacy, without any consistent phenotypic change in memory profile.
Finally, CAR-T cells produced in galactose-based glucose-free media resulted in increased mitochondrial activity. Using an in-vivo model of Nalm6 injected mice, galactose-primed CAR-T cells significantly improved leukemia-free survival compared to standard glucose-cultured CAR-T cells.
Our results prove the significance of mitochondrial metabolism on CAR-T cell efficacy and suggest a translational pathway to improve clinical products.
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