CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting the 'Undruggable' Driver Protein, KRAS, in Epithelial Cancers: Current Perspective.
Targeting the 'Undruggable' Driver Protein, KRAS, in Epithelial Cancers: Current Perspective.
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本综述总结了靶向上皮癌细胞内驱动基因的合成药物和生物制剂的最新进展,重点关注 KRAS,并为该领域提供了当前视角和潜在方向。与生物制剂相比,小分子抑制剂(SMIs)易于穿透细胞,因此能够靶向细胞内蛋白。然而,SMIs 常受多效性效应、脱靶细胞毒性和不可避免地产生耐药性所困扰。相比之下,生物制剂是更大的分子,受限于细胞进入,但如果能够克服这一点,它们可能具有更特异性的效应和更少的治疗诱导耐药性。过去两年的令人振奋的突破包括非共价 KRAS G12D 特异性抑制剂的工程化、probody 双特异性抗体、作为 MHC 限制性新抗原的药物-肽偶联物以促使 T 细胞免疫应答,以及在乳腺癌和胰腺癌中过继细胞治疗领域的成功。
This review summarizes recent development in synthetic drugs and biologics targeting intracellular driver genes in epithelial cancers, focusing on KRAS, and provides a current perspective and potential leads for the field. Compared to biologics, small molecule inhibitors (SMIs) readily penetrate cells, thus being able to target intracellular proteins.
However, SMIs frequently suffer from pleiotropic effects, off-target cytotoxicity and invariably elicit resistance. In contrast, biologics are much larger molecules limited by cellular entry, but if this is surmounted, they may have more specific effects and less therapy-induced resistance.
Exciting breakthroughs in the past two years include engineering of non-covalent KRAS G12D-specific inhibitor, probody bispecific antibodies, drug-peptide conjugate as MHC-restricted neoantigen to prompt immune response by T-cells, and success in the adoptive cell therapy front in both breast and pancreatic cancers.
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