CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor-restricted activation of Vγ9Vδ2 T cells via bispecific Evobodies: a novel strategy for safe and potent immunotherapy in ovarian cancer.
Tumor-restricted activation of Vγ9Vδ2 T cells via bispecific Evobodies: a novel strategy for safe and potent immunotherapy in ovarian cancer.
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因此,Evobodies 代表了一种新型的、首创的实体瘤治疗生物制剂类别,非常适合进一步的临床开发。
Vγ9Vδ2 T细胞已在临床中通过体内和体外方式对其抗实体瘤疗效进行了数十年的评估。尽管近期的治疗方法重新燃起了希望,但对实体瘤患者的显著且可重复的获益仍有待证实。材料与方法
我们开发了IgG延长形式的双特异性生物制剂,既能结合在大多数卵巢癌中高表达的叶酸受体α(FOLR1),也能结合激活型butyrophilin(BTN)3A。通过降低BTN3A激动剂的亲和力,并利用四价双特异性抗体增强的亲和力,BTN3A的激活被限制在FOLR1阳性肿瘤中,从而避免了对非肿瘤细胞的脱靶激活。
使用RTCA共培养试验,将Vγ9Vδ2 T细胞与肿瘤细胞系共培养,我们鉴定出“Evobodies”,其对FOLR1阳性细胞表现出强大的治疗窗口和高效力,同时不损伤健康的FOLR1阴性组织。此外,先导分子在未改变/生理性效靶比(E:T)下,在人自体、患者来源的离体肿瘤组织模型中展现出高疗效。重要的是,我们表明,在缺乏FOLR1阳性肿瘤细胞的情况下,我们的肿瘤结合分子避免了过早的免疫细胞激活、脱颗粒和细胞因子释放。它们很可能从肿瘤部位建立细胞因子梯度,充分利用天然局部抗感染反应的潜力来靶向癌细胞。
We have developed bispecific biologics in an IgG-extended format that bind both to Folate Receptor alpha (FOLR1), which is highly expressed in the majority of ovarian cancers, and to the activating butyrophilin (BTN)3A. By reducing the affinity of the BTN3A agonist and leveraging the increased avidity of the tetravalent, bispecific antibody, activation of BTN3A is restricted to FOLR1-positive tumors, thereby avoiding off-target activation of non-tumor cells.
Using RTCA co-culture assays with Vγ9Vδ2 T cells and tumor cell lines, we identified "Evobodies" that exhibit a strong therapeutic window and high potency against FOLR1-positive cells, while sparing healthy, FOLR1-negative tissue. Moreover, the lead molecule demonstrates high efficacy in a human autologous, patient-derived ex vivo tumor tissue model at unaltered/physiological effector-to-target (E:T) ratios. Importantly, we show that our tumor-engaging molecules avoid premature immune cell activation, degranulation, and cytokine release in the absence of FOLR1-positive tumor cells. They likely establish a cytokine gradient from the tumor site, harnessing the full potential of the natural local anti-infection response to target cancer cells. DISCUSSION: Thus, Evobodies represent a novel, first-in class of biologics for solid tumor treatment and are well-suited for further clinical development.
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