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:Evolutionary regulation of human Fas ligand (CD95L) by plasmin in solid cancer immunotherapy.
Evolutionary regulation of human Fas ligand (CD95L) by plasmin in solid cancer immunotherapy.
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尽管基因组相似度超过98%,人类却比我们最亲近的现存祖先——非人灵长类——更容易罹患癌症。在此,我们意外发现,与黑猩猩及其他灵长类不同,人类体内一个关键的胚胎发育、免疫稳态及通用细胞死亡调控蛋白——Fas配体(FasL)——存在Pro153-Ser153的进化性替换。后者使人类FasL优先易被纤溶酶切割,而纤溶酶在实体瘤中过度升高。由于活化T淋巴细胞和CAR-T 细胞通过FasL介导杀伤肿瘤细胞对治疗效果至关重要,我们发现某些卵巢肿瘤中升高的纤溶酶水平会干扰T淋巴细胞表达的FasL死亡信号传导。无论是靶向抑制纤溶酶,还是阻断纤溶酶与膜FasL的可及性,均能恢复活化T淋巴细胞在免疫检查点受体靶向抗体应答中的FasL细胞死亡功能。这些具有进化意义的研究发现突出表明,转移性肿瘤中升高的纤溶酶可能促成实体瘤中T细胞免疫疗法疗效的差异。
Despite sharing >98% genomic similarity, humans are more likely to develop cancers than our closest living ancestors, the nonhuman primates.
Here, we unexpectedly discover that, unlike chimpanzee and other primates, a critical embryonic development, immune homeostasis, and general cell-death regulator protein called Fas Ligand (FasL) contains a Pro153-Ser153 evolutionary substitution in humans. The latter renders human FasL preferentially susceptible to cleavage by plasmin, an overly elevated protease in solid tumors.
Since FasL-mediated killing of tumor cells by activated T-lymphocytes and chimeric antigen receptor T-cells (CAR-T) is critical for therapeutic efficacy, we find that elevated plasmin levels in certain ovarian tumors interfere with the T-lymphocyte-expressed FasL death signaling. Either targeted inhibition or blocking plasmin accessibility to membrane FasL rescues the FasL cell-death function of activated T-lymphocytes in response to immune-checkpoint receptor targeting antibodies.
These findings of evolutionary significance highlight that elevated plasmin in metastatic tumors potentially contributes to differential outcomes of T-cell-based immunotherapies in solid tumors.
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