靶向巨噬细胞的癌症治疗策略
Macrophage-directed therapeutic strategies in cancer.
肿瘤相关巨噬细胞(TAMs)是肿瘤微环境的主要组成部分,具有显著的功能可塑性,根据所处的微环境信号,既可表现为促进肿瘤进展的免疫抑制细胞,也可表现为支持抗肿瘤免疫的免疫刺激细胞。
英文原题:Redirecting Polyclonal T Cells against Cancer with Soluble T-Cell Receptors.
TCR TCE的靶点池比抗体治疗药物更大,包括超过90%的人类细胞内或细胞外蛋白。
癌细胞在编码蛋白中积累基因突变,这些突变可能以新抗原肽(肽-HLA,pHLA)的形式由HLA呈递。T细胞通过T细胞受体(TCR):CD3复合物扫描新抗原性pHLA。该复合物具有双重功能:通过TCR结合pHLA,并通过CD3触发T细胞活化。检查点治疗可激活耗竭的T细胞以杀伤癌细胞,通常对具有高新抗原负荷的肿瘤以及具有新抗原反应性T细胞的患者效果最佳。TCR T细胞衔接器(TCE)是一类新型免疫疗法,它绕过了这两个要求,通过重定向多克隆T细胞(无论其天然特异性如何)来杀伤癌细胞,且不依赖于新抗原负荷。这是通过将膜结合的TCR:CD3复合物解构为一种可溶性双特异性蛋白来实现的,该蛋白由靶向结构域(TCR)和活化结构域(通常为抗CD3单链可变片段)组成。TCR TCE的靶点池比抗体治疗药物更大,包括超过90%的人类胞内或胞外蛋白。实体瘤的大多数肿瘤相关抗原位于细胞内,只有TCR治疗药物才能触及。Tebentafusp是一种TCR TCE,靶向由HLA*A02:01呈递的gp100黑色素瘤蛋白衍生肽,在转移性葡萄膜黑色素瘤(mUM)中显示出生存获益。这一生存获益凸显了TCR TCE的前景,因为mUM是一种新抗原负荷极低的实体瘤,对检查点和化疗反应不佳。其他TCR TCE项目目前正在临床研究中,用于更广泛的肿瘤类型。
Cancer cells accumulate genetic mutations in coding proteins that may be presented by HLA as neoantigenic peptides (peptide HLA, pHLA). T cells scan for neoantigenic pHLA by the T-cell receptor (TCR):CD3 complex. This complex has the dual function of binding pHLA, by the TCR, and triggering T-cell activation by CD3. Checkpoint therapy activates exhausted T cells to kill cancer cells and generally work best against tumors with high neoantigen burden and in patients with neoantigenic-reactive T cells. TCR T-cell engagers (TCE) are a novel class of immunotherapy that bypasses these two requirements by redirecting polyclonal T cells, regardless of their native specificity, to kill a cancer cell independent of neoantigen burden. This is accomplished through deconstructing the membrane-bound TCR:CD3 complex into a soluble bispecific protein comprised of a targeting domain (TCR) and activating domain (usually anti-CD3 single-chain variable fragment). The pool of targets for TCR TCE is larger than for antibody therapeutics and includes >90% of human intra- or extracellular proteins. Most tumor-associated antigens for solid tumors are intracellular and accessible only by a TCR therapeutic. Tebentafusp, a TCR TCE directed to a peptide derived from the gp100 melanoma protein presented by HLA*A02:01, demonstrated a survival benefit in metastatic uveal melanoma (mUM). This survival benefit highlights the promise of TCR TCEs because mUM is a solid tumor with a very low neoantigen burden and has poor response to checkpoints and chemotherapy. Other TCR TCE programs are now in clinical studies for a broader range of tumors.
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