RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Beyond ADCs: harnessing bispecific antibodies to directly induce apoptosis for targeted tumor eradication.
Beyond ADCs: harnessing bispecific antibodies to directly induce apoptosis for targeted tumor eradication.
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双特异性凋亡触发抗体(BATs)是一种创新的双特异性抗体,设计用于同时靶向肿瘤相关抗原和癌细胞的死亡受体,从而直接激活外源性凋亡通路以诱导癌细胞死亡。这一独特机制使BATs区别于依赖细胞毒性药物的抗体-药物偶联物(ADCs),以及招募免疫细胞消灭靶癌细胞的双特异性免疫细胞衔接器,如双特异性T细胞衔接器(BiTEs)和双特异性NK 细胞衔接器(NKCEs)。BATs在临床疗效和安全性方面相较于ADCs和BiTEs具有显著的潜在优势。尽管该领域仍处于新兴阶段,但近期的进展极具前景,对靶向DR5抗体的临床前和临床数据的分析对于勾勒下一代有效且安全药物的标准起到了关键作用。在临床前测试中未显示活性的抗体在临床上也同样无效,而临床前结果有限的抗体则表现出中等的临床活性。所有临床阶段的靶向DR5抗体即使在较高剂量下也具有良好的患者耐受性(TAS266因其独特设计而例外)。这些发现强调了稳健的临床前模型对临床结局的预测价值。
值得注意的是,首创BAT药物Cancerlysin™ IMV-M在多种异种移植癌症模型中展现出强效的抗肿瘤活性,并在非人灵长类动物中表现出良好的安全性,标志着在开发安全有效的抗癌药物方面取得了重大进展。
Bispecific apoptosis triggers (BATs) are innovative bispecific antibodies designed to simultaneously target both a tumor-associated antigen and a cancer cell's death receptor, thereby directly activating the extrinsic apoptotic pathway to induce death of cancer cells. This unique mechanism distinguishes BATs from antibody-drug conjugates (ADCs), which rely on cytotoxic drugs, and bispecific immune cell engagers such as bispecific T-cell engagers (BiTEs) and bispecific natural killer cell engagers (NKCEs), which recruit immune cells to eliminate target cancer cells. BATs offer significant potential advantages in clinical efficacy and safety over ADCs and BiTEs.
Although the field is still emerging, recent advancements are highly promising, and analysis of preclinical and clinical data of DR5-targeting antibodies have been pivotal in outlining the criteria for the next generation of effective and safe medicines.
Antibodies found inactive in preclinical testing were also found to be clinically ineffective, whereas antibodies with minimal preclinical results demonstrated moderate clinical activity. All clinical DR5-targeting antibodies were well tolerated by patients even at high doses (with the exception of TAS266 due to its unique design).
These findings underscore the predictive value of robust preclinical models on clinical outcomes.
Notably, first-in-class BAT, Cancerlysin™ IMV-M, demonstrated potent efficacy in diverse xenograft cancer models and safety in non-human primates, marking a significant advancement in developing safe and effective anti-cancer drugs.
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