CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Fully human anti-B7-H3 recombinant antibodies inhibited tumor growth by increasing T cell infiltration.
Fully human anti-B7-H3 recombinant antibodies inhibited tumor growth by increasing T cell infiltration.
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恶性肿瘤导致的死亡率是影响全球人口预期寿命的主要因素之一。治疗性抗体是限制肿瘤生长的前沿治疗方法。B7-H3在肿瘤组织中高表达,但在正常组织中很少表达。B7-H3与肿瘤患者的不良预后密切相关。B7-H3是抗肿瘤治疗的重要靶点。
本研究以B7H3为靶点,从全人源噬菌体免疫库中分离并筛选全人源抗B7H3单链抗体(scFv)。从全人源噬菌体库中筛选的抗体具有低免疫原性和高亲和力,更有利于临床应用。以B7-H3 scFv为基础,我们构建了两种不同的重组抗体形式,scFv-Fc和IgG1,具有更高的亲和力和更长的半衰期。
结果表明,重组抗体对B7-H3抗原具有高特异性和亲和力,并通过增强ADCC抑制肿瘤细胞生长。抗B7H3重组抗体治疗后,体内肿瘤中浸润T细胞数量增加,浸润T细胞分泌IFN-γ增加。
此外,使用从肿瘤患者获得的胸腔积液样本揭示了抗B7-H3重组抗体逆转CD8+ T细胞耗竭的能力。总之,我们筛选了具有特异性和高亲和力的全人源抗B7H3重组抗体,可增加免疫细胞浸润和IFN-γ分泌,从而在一定程度上抑制肿瘤细胞生长。这一发现为治疗性肿瘤抗体的开发提供了理论基础,并有助于促进抗体药物的进一步发展。
Mortality due to malignant tumors is one of the major factors affecting the life expectancy of the global population. Therapeutic antibodies are a cutting-edge treatment method for restricting tumor growth. B7-H3 is highly expressed in tumor tissues, but rarely in normal tissues. B7-H3 is closely associated with poor prognosis in patients with tumors. B7-H3 is an important target for antitumor therapy. In this study, the fully human anti-B7H3 single-chain antibodies (scFvs) were isolated and screened from the fully human phage immune library with B7H3 as the target.
The antibodies screened from a fully human phage library had low immunogenicity and high affinity, which was more beneficial for clinical application. Leveraging B7-H3 scFvs as a foundation, we constructed two distinct recombinant antibody formats, scFv-Fc and IgG1, characterized by elevated affinity and a prolonged half-life.
The results demonstrated that the recombinant antibodies had high specificity and affinity for the B7-H3 antigen and inhibited tumor cell growth by enhancing the ADCC. After treatment with anti-B7H3 recombinant antibody, the number of infiltrating T cells in the tumor increased and the secretion of IFN- γ by infiltrating T cells increased in vivo.
Additionally, the use of pleural fluid samples obtained from tumor-afflicted patients revealed the ability of anti-B7-H3 recombinant antibodies to reverse CD8 + T cell exhaustion.
In summary, we screened the fully human anti-B7H3 recombinant antibodies with specificity and high affinity that increase immune cell infiltration and IFN-γ secretion, thereby inhibiting tumor cell growth to a certain extent. This finding provides a theoretical basis for the development of therapeutic tumor antibodies and could help promote further development of antibody-based drugs.
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