一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Engineering PD-1-targeted small protein variants for in vitro diagnostics and in vivo PET imaging.
Engineering PD-1-targeted small protein variants for in vitro diagnostics and in vivo PET imaging.
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利用定向进化,我们开发了一组独特的小型结合蛋白,这些蛋白能够在体外改善 PD-1 诊断,并且利用 PET/CT 成像在体内也能改善 PD-1 诊断。
程序性细胞死亡1(PD-1)属于免疫检查点蛋白,确保免疫反应的负向调控。在非小细胞肺癌(NSCLC)中,对抗PD-1治疗药物的敏感性及其疗效,主要与肿瘤浸润PD-1+淋巴细胞的增加相关。由于PD-1+群体的实体瘤异质性,新型低分子量抗PD-1高亲和力诊断探针可以提高肿瘤组织活检中PD-1+TIL(肿瘤浸润淋巴细胞)(TILs)表达谱分析的可靠性,以及使用免疫-PET成像的体内映射效率。
我们通过随机化12个可突变残基设计了一个13 kDa的β-折叠Myomedin支架组合文库,并结合核糖体展示技术,鉴定出抗PD-1的Myomedin变体(MBA配体),这些变体特异性结合于转染人源和鼠源PD-1的HEK293T细胞以及自发过表达细胞表面PD-1的人源SUP-T1细胞。
通过LigandTracer荧光法测量了转染HEK293T细胞上细胞表面表达的人源和鼠源PD-1的结合亲和力,结果筛选出最有前景的变体MBA066(hPD-1 KD = 6.9 nM;mPD-1 KD = 40.5 nM)、MBA197(hPD-1 KD = 29.7 nM;mPD-1 KD = 21.4 nM)和MBA414(hPD-1 KD = 8.6 nM;mPD-1 KD = 2.4 nM)。使用标记了68镓同位素的去铁胺偶联MBA,证明了MBA蛋白用于体内PD-1+细胞群成像的潜力。68 Ga-MBA蛋白的放射化学纯度达到94.7-99.3%,在人血清中120分钟后的体外稳定性范围为94.6-98.2%。通过全身正电子发射断层扫描联合计算机断层扫描(PET/CT)成像监测了68 Ga-MBA蛋白在小鼠体内的分布,直至注射后90分钟,并在死后检查了12个小鼠器官。通过用抗PD-1抗体共染色人扁桃体和NSCLC组织活检的冷冻切片,证明了MBA蛋白的特异性,并展示了其在实体瘤中定位PD-1+细胞群的潜力。
Programmed cell death 1 (PD-1) belongs to immune checkpoint proteins ensuring negative regulation of the immune response. In non-small cell lung cancer (NSCLC), the sensitivity to treatment with anti-PD-1 therapeutics, and its efficacy, mostly correlated with the increase of tumor infiltrating PD-1 + lymphocytes. Due to solid tumor heterogeneity of PD-1 + populations, novel low molecular weight anti-PD-1 high-affinity diagnostic probes can increase the reliability of expression profiling of PD-1 + tumor infiltrating lymphocytes (TILs) in tumor tissue biopsies and in vivo mapping efficiency using immune-PET imaging.
We designed a 13 kDa β-sheet Myomedin scaffold combinatorial library by randomization of 12 mutable residues, and in combination with ribosome display, we identified anti-PD-1 Myomedin variants (MBA ligands) that specifically bound to human and murine PD-1-transfected HEK293T cells and human SUP-T1 cells spontaneously overexpressing cell surface PD-1.
Binding affinity to cell-surface expressed human and murine PD-1 on transfected HEK293T cells was measured by fluorescence with LigandTracer and resulted in the selection of most promising variants MBA066 (hPD-1 KD = 6.9 nM; mPD-1 KD = 40.5 nM), MBA197 (hPD-1 KD = 29.7 nM; mPD-1 KD = 21.4 nM) and MBA414 (hPD-1 KD = 8.6 nM; mPD-1 KD = 2.4 nM). The potential of MBA proteins for imaging of PD-1 + populations in vivo was demonstrated using deferoxamine-conjugated MBA labeled with 68 Galium isotope. Radiochemical purity of 68 Ga-MBA proteins reached values 94.7-99.3% and in vitro stability in human serum after 120 min was in the range 94.6-98.2%. The distribution of 68 Ga-MBA proteins in mice was monitored using whole-body positron emission tomography combined with computerized tomography (PET/CT) imaging up to 90 min post-injection and post mortem examined in 12 mouse organs. The specificity of MBA proteins was proven by co-staining frozen sections of human tonsils and NSCLC tissue biopsies with anti-PD-1 antibody, and demonstrated their potential for mapping PD-1 + populations in solid tumors.
Using directed evolution, we developed a unique set of small binding proteins that can improve PD-1 diagnostics in vitro as well as in vivo using PET/CT imaging.
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