重编程工程化自体 T 细胞以克服 Merkel 细胞癌患者的耐药性
Reprogramming engineered autologous T cells to overcome resistance in patients with Merkel cell carcinoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dysregulated expression of the tumor suppressor p14ARF in cancer provides an effective target for TCR-T cell therapeutics.
Dysregulated expression of the tumor suppressor p14ARF in cancer provides an effective target for TCR-T cell therapeutics.
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这些发现证明了用 TCR-T 细胞疗法靶向失调的抑癌蛋白的可行性,并确定 p14ARF 是未来治疗的一个有前景靶点。
**背景:**CDKN2A基因编码两种经典肿瘤抑制蛋白p16INK4A和p14ARF;在异常生长信号出现时,它们通过诱导细胞周期停滞和凋亡保护细胞免于恶性转化。具有反常性的是,当负责负反馈调控的下游效应分子缺失或失活时,许多癌症反而会过表达这两种蛋白。例如,在超过50%的p53失活突变肿瘤中,负责调控p53活化的p14ARF异常表达。
本研究评估使用TCR-T细胞疗法靶向异常表达的p16INK4A和p14ARF是否可行。**方法:**研究分析了一组来源于p16INK4A和p14ARF的肽段,评估其是否经HLA-A*02:01呈递并被CD8阳性T细胞识别。研究者从健康供者的免疫库中分离抗原特异性T细胞受体,并在原代T细胞中表达,通过体外T细胞功能实验、体内肿瘤模型及体内安全性模型评估其特异性、功能亲和力、肿瘤识别能力和安全性。**结果:**研究发现一种独特且呈递充分的p14ARF表位,该表位在癌症活检样本的HLA-A*02:01相关免疫肽组中稳定检出,而在正常组织中未检出。研究从健康供者的外周免疫库中分离出高功能亲和力的ARF特异性TCR;转导这些TCR的T细胞在临床前体内外模型中均能有效杀伤肿瘤细胞。
此外,在体内安全性模型中,靶向p14ARF表达细胞未引起可检测的靶向相关毒性。**结论:**研究证明可行通过TCR-T细胞疗法靶向异常调控的肿瘤抑制蛋白,并确定p14ARF是未来治疗的有前景靶点。
The CDKN2A gene encodes two canonical tumor suppressors, p16INK4A and p14ARF, which safeguard cells from malignant transformation by inducing cell cycle arrest and apoptosis in response to aberrant growth signals. Paradoxically, many cancers overexpress these proteins when downstream effectors that enforce negative feedback regulation are lost or inactivated. For example, p14ARF, which regulates p53 activation, is aberrantly expressed in more than 50% of tumors with inactivating p53 mutations. Here, we evaluated the feasibility of targeting dysregulated p16INK4A and p14ARF expression using TCR-T cell therapeutics.
We analyzed a panel of p16INK4A- and p14ARF-derived peptides for HLA-A*02:01-associated presentation and recognition by CD8 + T cells. Antigen-specific T cell receptors were isolated from healthy donor repertoires and expressed in primary T cells to assess specificity, functional avidity, tumor recognition, and safety using in vitro T cell functional assays, in vivo tumor models, and an in vivo safety model.
We identified a unique and well-presented p14ARF epitope that was consistently detected in the HLA-A*02:01-associated immunopeptidome of cancer biopsies but not in normal tissues. High-avidity ARF-specific TCRs were isolated from the peripheral repertoire of healthy donors, and TCR-transduced T cells mediated potent tumor cell killing in vitro and in vivo in preclinical models. Furthermore, targeting p14ARF-expressing cells did not result in detectable on-target toxicity in an in vivo safety model.
These findings demonstrate the feasibility of targeting dysregulated tumor suppressor proteins with TCR-T cell therapeutics and identify p14ARF as a promising target for future therapies.
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