CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting B7-H3-A Novel Strategy for the Design of Anticancer Agents for Extracranial Pediatric Solid Tumors Treatment.
Targeting B7-H3-A Novel Strategy for the Design of Anticancer Agents for Extracranial Pediatric Solid Tumors Treatment.
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近期科学数据提示,免疫检查点分子B7-H3可能成为儿童实体瘤(PST)的免疫治疗靶点。B7-H3在神经母细胞瘤、横纹肌肉瘤、肾母细胞瘤、骨肉瘤和尤文肉瘤等颅外儿童实体瘤中高表达,而在正常组织和器官中表达缺失或极低。B7-H3可通过多种分子机制影响儿童恶性实体瘤的生物学行为,包括促进免疫逃逸和肿瘤侵袭、扰乱细胞周期。研究显示,在某些儿童实体瘤中敲低B7-H3可降低肿瘤细胞增殖和迁移、抑制肿瘤生长并增强抗肿瘤免疫应答。靶向B7-H3的抗体药物偶联物在儿童实体瘤临床前模型中显示出显著抗肿瘤作用。
此外,靶向B7-H3的嵌合抗原受体(CAR)T细胞在神经母细胞瘤、尤文肉瘤和骨肉瘤的多种异种移植模型中均显示出显著体内活性。
最后,临床研究显示,靶向B7-H3的抗体放射免疫偶联物对转移性神经母细胞瘤具有较强抗肿瘤活性。本文总结儿童实体瘤相关体外、体内及临床研究的既有证据,并阐述针对儿童颅外恶性实体瘤开发新型免疫疗法时靶向B7-H3的优势和潜在障碍。
Recent scientific data recognize the B7-H3 checkpoint molecule as a potential target for immunotherapy of pediatric solid tumors (PSTs). B7-H3 is highly expressed in extracranial PSTs such as neuroblastoma, rhabdomyosarcoma, nephroblastoma, osteosarcoma, and Ewing sarcoma, whereas its expression is absent or very low in normal tissues and organs.
The influence of B7-H3 on the biological behavior of malignant solid neoplasms of childhood is expressed through different molecular mechanisms, including stimulation of immune evasion and tumor invasion, and cell-cycle disruption. It has been shown that B7-H3 knockdown decreased tumor cell proliferation and migration, suppressed tumor growth, and enhanced anti-tumor immune response in some pediatric solid cancers. Antibody-drug conjugates targeting B7-H3 exhibited profound anti-tumor effects against preclinical models of pediatric solid malignancies.
Moreover, B7-H3-targeting chimeric antigen receptor (CAR)-T cells demonstrated significant in vivo activity against different xenograft models of neuroblastoma, Ewing sarcoma, and osteosarcoma.
Finally, clinical studies demonstrated the potent anti-tumor activity of B7-H3-targeting antibody-radioimmunoconjugates in metastatic neuroblastoma. This review summarizes the established data from various PST-related studies, including in vitro, in vivo, and clinical research, and explains all the benefits and potential obstacles of targeting B7-H3 by novel immunotherapeutic agents designed to treat malignant extracranial solid tumors of childhood.
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