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Anti-GD2 with an FC point mutation reduces complement fixation and decreases antibody-induced allodynia

痛觉超敏 抗体依赖性细胞介导的细胞毒性 化学 药理学 抗体 补体系统 免疫学 受体 医学 单克隆抗体 痛觉过敏 生物化学 伤害
作者
Linda S. Sorkin,Mario Otto,William M. Baldwin,Emily A. Vail,Stephen D. Gillies,Rupert Handgretinger,Raymond Barfield,Hui Ming Yu,Alice L. Yu
出处
期刊:Pain [Lippincott Williams & Wilkins]
卷期号:149 (1): 135-142 被引量:133
标识
DOI:10.1016/j.pain.2010.01.024
摘要

Monoclonal antibodies against GD2 ganglioside, such as ch14.18, the human–mouse chimeric antibody, have been shown to be effective for the treatment of neuroblastoma. However, treatment is associated with generalized, relatively opiate-resistant pain. We investigated if a point mutation in ch14.18 antibody (hu14.18K332A) to limit complement-dependent cytotoxicity (CDC) would ameliorate the pain behavior, while preserving antibody-dependent cellular cytotoxicity (ADCC). In vitro, CDC and ADCC were measured using europium-TDA assay. In vivo, allodynia was evaluated by measuring thresholds to von Frey filaments applied to the hindpaws after injection of either ch14.18 or hu14.18K332 into wild type rats or rats with deficient complement factor 6. Other rats were pretreated with complement factor C5a receptor antagonist and tested following ch14.18 injection. The mutation reduces the antibody’s ability to activate complement, while maintaining its ADCC capabilities. Injection of hu14.18K322 (1 or 3 mg/kg) produced faster resolving allodynia than that engendered by ch14.18 (1 mg/kg). Injection of ch14.18 (1 mg/kg) into rats with C6 complement deficiency further reduced antibody-induced allodynia, while pre-treatment with complement factor C5a receptor antagonist completely abolished ch14.18-induced allodynia. These findings showed that mutant hu14.18 K322 elicited less allodynia than ch14.18 and that ch14.18-elicited allodynia is due to activation of the complement cascade: in part, to formation of membrane attack complex, but more importantly to release of complement factor C5a. Development of immunotherapeutic agents with decreased complement-dependent lysis while maintaining cellular cytotoxicity may offer treatment options with reduced adverse side effects, thereby allowing dose escalation of therapeutic antibodies.
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