PO.IM01.03 · 免疫学

B7-H3疫苗诱导强效体液和细胞免疫并抑制小鼠肿瘤生长

B7-H3 vaccine induces robust humoral and cellular immunity and inhibits tumor growth in mice

海报缩略图:B7-H3疫苗诱导强效体液和细胞免疫并抑制小鼠肿瘤生长
编号 4369 展板 9 时间 4/21 09:00–12:00 区域 Section 10 主讲 Kenneth Nansheng Lin, PhD
分会场 Vaccine Platforms and Target Identification
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作者与单位 Authors & Affiliations

Kenneth Nansheng Lin, Melvin Toh, HONG WANG

Sequencio Therapeutics, Hong Kong, Hong Kong

摘要 Abstract

中文摘要
背景:B7-H3(CD276)是一种免疫检查点分子,在多种癌症中频繁过表达,在免疫逃逸、肿瘤进展和转移中发挥关键作用,凸显了其作为癌症免疫治疗有前景靶点的潜力。在此,我们开发了一种新型蛋白疫苗以诱导针对B7-H3的体液和细胞免疫,并在同基因小鼠结肠癌模型中评估了其抗肿瘤疗效。 方法:制备了一种重组疫苗蛋白,由人B7-H3的FG环片段的串联重复组成——FG环是连接B7家族蛋白F和G β折叠链的结构基序,对配体-受体相互作用至关重要(尽管尚未鉴定出B7-H3的配体)——并结合N端细胞穿透肽以增强免疫原性。在BALB/c和C57BL/6小鼠中研究了这种以CpG ODN 1826佐剂化的B7-H3疫苗的免疫原性,小鼠每周经皮下接种共6周。对照为仅给予佐剂的小鼠。在多个时间点采集血清样本,通过ELISA测定anti-B7-H3抗体滴度。收获脾细胞,采用IFNgamma ELISPOT实验评估细胞免疫。分别在BALB/c和C57BL/6小鼠中使用B7-H3人源化小鼠结肠癌细胞系CT26-hB7-H3和MC38-hB7-H3,在预防性和治疗性研究中评估疫苗的抗肿瘤疗效。记录肿瘤生长。通过流式细胞术表征肿瘤浸润淋巴细胞(TIL)。 结果:B7-H3疫苗在BALB/c和C57BL/6小鼠中均诱导了针对人B7-H3的强效体液和细胞免疫。在预防性研究中,疫苗表现出显著的抗肿瘤活性:1)在CT26-hB7-H3模型中,接种小鼠相较于对照的肿瘤生长抑制(TGI)为99.8%,且90%的接种小鼠在终点时无肿瘤;2)在MC38-hB7-H3模型中,TGI为72.4%。使用从MC38-hB7-H3研究中收集的肿瘤,采用流式细胞术进行的TIL表征显示,活化的CD4+IFNgamma+和CD8alpha+IFNgamma+ T细胞分别增加了1.2倍和4.3倍。在治疗性研究中,CT26-hB7-H3荷瘤小鼠的TGI为91.2%,其中7/12的小鼠在终点时变为无肿瘤,MC38-hB7-H3荷瘤小鼠的TGI为85%。在MC38-hB7-H3肿瘤中,TIL分析显示CD8alpha+IFNgamma+ T细胞增加了2.8倍。 结论:我们的研究证明B7-H3疫苗诱导了强效的体液和细胞免疫,有效抑制了小鼠中B7-H3阳性肿瘤的生长。这些发现凸显了其作为治疗人类B7-H3过表达癌症的治疗策略进行临床转化的潜力。
查看英文原文 English abstract
Background B7-H3 (CD276) is an immune checkpoint molecule frequently overexpressed in a wide range of cancers, where it plays critical roles in immune evasion, tumor progression, and metastasis, underscoring its potential as a promising target for cancer immunotherapy. Here, we developed a novel protein vaccine to induce humoral and cellular immunity against B7-H3 and evaluated its anti-tumor efficacy in syngeneic mouse colon cancer models. Methods A recombinant vaccine protein was generated, consisting of tandem repeats of the FG loop fragment of human B7-H3 - a structural motif linking the F and G beta-strands of B7 family proteins that is critical for ligand-receptor interactions (though no ligand has yet been identified for B7-H3) - combined with an N-terminal cell-penetrating peptide to enhance immunogenicity. Immunogenicity of this B7-H3 vaccine, adjuvanted with CpG ODN 1826, was studied in BALB/c and C57BL/6 mice vaccinated subcutaneously weekly for 6 weeks. Controls were mice administered adjuvant only. Serum samples was collected at multiple time points to determine anti-B7-H3 antibody titer by ELISA. Splenocytes were harvested to assess cellular immunity using IFNgamma ELISPOT assay. Anti-tumor efficacy of vaccine was evaluated in both prophylactic and therapeutic studies using B7-H3-humanized mouse colon cancer cell lines, CT26-hB7-H3 and MC38-hB7-H3, in BABL/c and C57BL/6 mice, respectively. Tumor growth was recorded. Tumor-infiltrating lymphocytes (TILs) were characterized by flow cytometry. Results The B7-H3 vaccine induced robust humoral and cellular immunity against human B7-H3 in both BALB/c and C57BL/6 mice. In prophylactic studies, the vaccine demonstrated significant anti-tumor activity: 1) in the CT26-hB7-H3 model, tumor growth inhibition (TGI) in vaccinated mice was 99.8%, compared to controls and 90% of vaccinated mice were tumor-free at the endpoint; 2) in the MC38-hB7-H3 model, TGI was 72.4%. Using tumors collected from the MC38-hB7-H3 study, TIL characterization using flow cytometry revealed 1.2-fold and 4.3-fold increases of activated CD4+IFNgamma+ and CD8alpha+IFNgamma+ T-cells, respectively. In therapeutic studies, TGI in CT26-hB7-H3 tumor-bearing mice was 91.2%, with 7/12 of mice becoming tumor-free at the end point, and TGI in MC38-hB7-H3 tumor-bearing mice was 85%. In MC38-hB7-H3 tumors, TIL analysis showed a 2.8-fold increase in CD8alpha+IFNgamma+ T cells. Conclusions Our study demonstrates that the B7-H3 vaccine induces robust humoral and cellular immunity, effectively suppressing the growth of B7-H3-positive tumors in mice. These findings highlight its potential for clinical translation as a therapeutic strategy for B7-H3-overexpressing cancers in humans.
利益披露 Disclosure
K. Lin, None.. M. Toh, None.. H. Wang, None.

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