不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CLEC12A-directed immunocytokine with target cell-restricted IL-15 activity for treatment of acute myeloid leukemia.
CLEC12A-directed immunocytokine with target cell-restricted IL-15 activity for treatment of acute myeloid leukemia.
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尽管近期取得进展,急性髓系白血病(AML)仍是治疗难题。利用自然杀伤(NK)细胞进行抗体依赖性细胞毒作用的单克隆抗体虽显示出很大潜力,但尚无一种获批用于AML。免疫细胞因子是克服治疗性抗体疗效有限问题的一种有前景策略。IL-15可促进NK细胞活化、增殖和细胞毒作用,但其半衰期短、在肿瘤中蓄积不足,且全身性脱靶免疫活化会造成毒性,限制了临床应用。本文报告了改造型免疫细胞因子的构建及临床前表征:将经过Fc优化的CLEC12A(CLL-1)抗体与带E46K突变的IL-15片段融合。该突变消除了其与IL-15Rα的结合,使靶点结合能够替代生理性反式呈递,从而有条件地刺激IL-15受体并降低全身毒性。研究者根据对AML细胞系和患者白血病细胞的分析,从多种小鼠单克隆抗体中筛选出最佳CLEC12A结合抗体,并据此构建免疫细胞因子MIC12并进行功能表征。NK细胞活化、细胞因子释放、增殖和抗白血病活性分析显示,与Fc优化的CLEC12A抗体相比,MIC12诱导了更强的靶细胞杀伤和NK细胞扩增,且疗效依赖于靶抗原结合。
结果表明,具有条件性IL-15活性的新型免疫细胞因子能够诱导强效NK细胞抗AML反应,并提示MIC12是有前景的白血病治疗候选药物。
Despite recent advancements, acute myeloid leukemia (AML) remains a therapeutic challenge. While monoclonal antibodies (mAbs) leveraging natural killer (NK) cells through antibody-dependent cellular cytotoxicity show great potential, none have gained clinical approval for AML.
Immunocytokines have emerged as a promising strategy to overcome the limited efficacy of therapeutic antibodies. IL-15 stimulates activation, proliferation cytotoxic activity of NK cells, but its clinical use is prevented by short half-life, poor accumulation in the tumor, and toxicity due to systemic off-target immune activation.
Here we report on the generation and preclinical characterization of modified immunocytokines consisting of an Fc-optimized CLEC12A (CLL-1) antibody fused to an IL-15 moiety with E46K mutation. The mutation abrogates binding to IL-15R , thereby enabling substitution of physiological trans-presentation by target binding and thus conditional IL-15R / stimulation to reduce systemic toxicity. An optimal CLEC12A binder was selected from a range of murine mAbs, based on analysis of AML cell lines and leukemic cells from patients.
This antibody was then used to construct an immunocytokine (MIC12) that subsequently was characterized functionally. Analysis of NK cell activation, cytokine release, proliferation and anti-leukemia reactivity demonstrated that MIC12 induced superior target cell killing and NK cell expansion compared to Fc-optimized CLEC12A antibody, with efficacy being dependent on target antigen binding.
Our results show that novel immunocytokines with conditional IL-15 activity are capable of inducing potent NK cell responses against AML cells and identify MIC12 as promising therapeutic candidate for leukemia treatment.
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