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:CAR-T Cells with Phytohemagglutinin (PHA) Provide Anti-Cancer Capacity with Better Proliferation, Rejuvenated Effector Memory, and Reduced Exhausted T Cell Frequencies.
CAR-T Cells with Phytohemagglutinin (PHA) Provide Anti-Cancer Capacity with Better Proliferation, Rejuvenated Effector Memory, and Reduced Exhausted T Cell Frequencies.
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基因修饰技术的发展开启了癌症治疗新时代,使治疗不再局限于传统化疗等方法。目前正大力研发癌症靶向疗法,以避免清除非癌细胞。其中最有前景的方法之一是基因修饰CAR-T 细胞疗法。CAR-T 细胞群体中中央记忆T细胞(Tcm)和干细胞样记忆T细胞(Tscm)比例较高,可提高免疫治疗效果。
因此,增加表达CAR的Tcm和Tscm细胞群体十分重要,以确保CAR-T 细胞长期存留并具备细胞毒性(抗肿瘤)效力。本研究旨在提高CAR-T 疗法随时间变化的疗效和稳定性,延长生存时间并降低癌细胞生长概率。为增加CAR-T 细胞中的Tcm和Tscm亚群,我们研究采用植物血凝素(PHA)进行细胞活化依赖性制备,能否生成长期稳定且高效的细胞毒性CAR-T 细胞。PHA是一种与T细胞膜结合并提高代谢活性和细胞分裂的凝集素;研究者考察其增加Tcm和Tscm细胞群体的作用。虽然已知PHA可显著增加Tcm细胞及CD19特异性CAR-T 细胞扩增,但与抗CD3/抗CD28扩增的CAR-T 细胞相比,其抗癌能力和记忆能力尚未得到评估。
本研究制备了表达两种不同CAR〔抗CD19 scFv-CD8-(CD28或4-1BB)-CD3ζ-EGFRt〕的T细胞,并测定其免疫原性表型、耗竭表型、Tcm/Tscm细胞群体和细胞毒活性。
我们观察到,PHA制备的CAR-T 细胞群体中T细胞记忆表型比例高于抗CD3/抗CD28扩增的CAR-T 细胞,同时具有相近或更强的增殖能力。
我们的结果显示,PHA有助于长期、高效地制备CAR-T 细胞,提示其可能成为抗CD3/抗CD28扩增CAR-T 细胞的替代方法。
The development of genetic modification techniques has led to a new era in cancer treatments that have been limited to conventional treatments such as chemotherapy. intensive efforts are being performed to develop cancer-targeted therapies to avoid the elimination of non-cancerous cells. One of the most promising approaches is genetically modified CAR-T cell therapy. The high central memory T cell (Tcm) and stem cell-like memory T cell (Tscm) ratios in the CAR-T cell population increase the effectiveness of immunotherapy.
Therefore, it is important to increase the populations of CAR-expressing Tcm and Tscm cells to ensure that CAR-T cells remain long-term and have cytotoxic (anti-tumor) efficacy. In this study, we aimed to improve CAR-T cell therapy's time-dependent efficacy and stability, increasing the survival time and reducing the probability of cancer cell growth. To increase the sub-population of Tcm and Tscm in CAR-T cells, we investigated the production of a long-term stable and efficient cytotoxic CAR-T cell by modifications in the cell activation-dependent production using Phytohemagglutinin (PHA). PHA, a lectin that binds to the membranes of T cells and increases metabolic activity and cell division, is studied to increase the Tcm and Tscm population.
Although it is known that PHA significantly increases Tcm cells, B-lymphocyte antigen CD19-specific CAR-T cell expansion, its anti-cancer and memory capacity has not yet been tested compared with aCD3/aCD28-amplified CAR-T cells.
Two different types of CARs (aCD19 scFv CD8-(CD28 or 4-1BB)-CD3z-EGFRt)-expressing T cells were generated and their immunogenic phenotype, exhausted phenotype, Tcm-Tscm populations, and cytotoxic activities were determined in this study. The proportion of T cell memory phenotype in the CAR-T cell populations generated by PHA was observed to be higher than that of aCD3/aCD28-amplified CAR-T cells with similar and higher proliferation capacity.
Here, we show that PHA provides long-term and efficient CAR-T cell production, suggesting a potential alternative to aCD3/aCD28-amplified CAR-T cells.
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