下一代基于抗体的癌症治疗:抗体-药物偶联物和双特异性抗体在血液系统恶性肿瘤和实体瘤中的应用
Next-generation antibody-based therapeutics in cancer: antibody-drug conjugates bispecific antibodies across hematologic malignancies and solid tumors
肿瘤学的治疗范式正在经历由抗体药物偶联物(ADC)和双特异性抗体(bsAb)驱动的深刻变革。
英文原题:PSMA antibody, humanized PSMA.CAR10.3, or Cetuximab increases prostate cancer localization of NF-κB p50-deficient immature myeloid cells (p50-IMC) and phagocytosis by their macrophage progeny.
本研究表明,将肿瘤导向抗体或CAR(包括新型全人源化PSMA.CAR10.3)加入促炎性p50-IMC中,以优化前列腺癌及其他恶性肿瘤中抗肿瘤免疫的激活,具有潜在的临床实用性,并且理解PSMA在正常而非恶性前列腺上皮中的毒性可能揭示一种新的治疗机会。
缺乏抑制性NF-κB p50亚基的未成熟髓系细胞(p50-IMC)的过继转移可减缓同基因小鼠前列腺癌及其他肿瘤的生长。利用Fc受体结合抗体(Abs)或表面嵌合抗原受体(CARs)将p50-IMC导向肿瘤,可能增加肿瘤定位以及其成熟髓系后代对癌细胞的后续吞噬作用,从而增强抗肿瘤T细胞活化。PSMA和EGFR存在于侵袭性人前列腺癌上,而p50-IMC表达结合抗体Fc结构域的受体。p50-IMC联合PSMA Ab、EGFR Ab(西妥昔单抗)或全人源化PSMA.CAR10.3后,向表达PSMA或EGFR的Myc-CaP小鼠前列腺癌肿瘤的定位增加。当在给予p50-IMC之前先进行髓系清除性5-氟尿嘧啶处理时,肿瘤定位进一步增加。此外,我们发现PSMA Ab、EGFR Ab或PSMA.CAR10.3可增加p50-IMC衍生巨噬细胞对表达PSMA或EGFR的Myc-CaP细胞的体外吞噬作用,包括在促进M2的IL-4存在时,而IL-4是免疫抑制性肿瘤微环境的组成部分。免疫健全小鼠对人PSMA或EGFR缺乏耐受,以及AR 2 -Probasin-hPSMA转基因小鼠前列腺中不表达人PSMA蛋白,使我们无法确定人特异性PSMA或EGFR抗体或PSMA.CAR10.3是否会增加小鼠p50-IMC的抗肿瘤疗效。尽管如此,本研究表明,添加肿瘤导向抗体或CAR,包括新型、全人源化的PSMA.CAR10,具有潜在的临床实用性。3、转向促炎性 p50-IMC 以优化前列腺癌及其他恶性肿瘤中抗肿瘤免疫的激活,并且理解 PSMA 在正常而非恶性前列腺上皮中的毒性可能揭示一个新的治疗机会。
Adoptive transfer of immature myeloid cells lacking the repressive NF-κB p50 subunit (p50-IMC) slows the growth of syngeneic murine prostate cancer and other tumors. Directing p50-IMC to tumors using Fc receptor-bound antibodies (Abs) or surface chimeric antigen receptors (CARs) may increase tumor localization and subsequent phagocytosis of cancer cells by their mature myeloid progeny, potentiating anti-tumor T cell activation. PSMA and EGFR are found on aggressive human prostate cancers, and p50-IMC express receptors that bind the antibody Fc domain. p50-IMC combined with PSMA Ab, EGFR Ab (Cetuximab), or fully humanized PSMA.CAR10.3 manifest increased localization to Myc-CaP murine prostate cancer tumors expressing PSMA or EGFR. Tumor localization is further increased when myelo-depleting 5-fluorouracil precedes p50-IMC administration. Additionally, we find that PSMA Ab, EGFR Ab, or PSMA.CAR10.3 increase in vitro phagocytosis of Myc-CaP cells expressing PSMA or EGFR by p50-IMC-derived macrophages, including in M2-promoting IL-4, which is a component of the immune-suppressive tumor microenvironment. Lack of tolerance of human PSMA or EGFR by immune-competent mice and lack of expression of human PSMA protein in the prostate of AR 2 -Probasin-hPSMA transgenic mice precluded our ability to determine whether human-specific PSMA or EGFR antibody or PSMA.CAR10.3 increases anti-tumor efficacy of murine p50-IMC. Nevertheless, this study indicates the potential clinical utility of adding a tumor-directing antibody or CAR, including the novel, fully humanized PSMA.CAR10.3, to proinflammatory p50-IMC to optimize the activation of anti-tumor immunity in prostate cancer and other malignancies, and understanding PSMA toxicity in normal but not malignant prostate epithelium may reveal a novel therapeutic opportunity.
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