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:Clinical Response to Anti-CD47 Immunotherapy Is Associated with Rapid Reduction of Exhausted Bystander CD4(+) BTLA(+) T Cells in Tumor Microenvironment of Mycosis Fungoides.
Clinical Response to Anti-CD47 Immunotherapy Is Associated with Rapid Reduction of Exhausted Bystander CD4(+) BTLA(+) T Cells in Tumor Microenvironment of Mycosis Fungoides.
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蕈样肉芽肿是最常见的皮肤T细胞淋巴瘤,其癌症进展遵循可预测的连续模式:从斑片开始,发展为斑块,随后形成肿瘤。因此,揭示蕈样肉芽肿微观结构与其临床表现之间的关系,是设计靶向治疗的重要步骤。研究利用多光谱荧光成像显示,蕈样肉芽肿从斑块进展为肿瘤,与表达TOX的恶性CD4⁺ T细胞在皮肤中扩增相平行。与斑块相比,肿瘤中恶性CD4⁺TOX⁺细胞周围耗竭型BTLA⁺CD4⁺ T细胞密度更高,提示肿瘤微环境中存在不良免疫制衡,阻碍免疫活化及后续癌症清除。通过瘤内注射SIRPαFc融合诱饵受体阻断CD47检查点,可使患者蕈样肉芽肿病灶消退,同时NK和CD8⁺ T细胞扩增增强,参与广泛细胞间相互作用的耗竭型BTLA⁺CD4⁺ T细胞减少。辅助给予干扰素α可进一步增强CD47阻断的治疗获益;干扰素α可刺激细胞毒效应细胞,凸显炎性微环境对促进免疫治疗应答的重要性。综合而言,这些发现支持将CD47作为蕈样肉芽肿治疗靶点,并显示干扰素α可协同利用相关临床获益。
Cancer progression in mycosis fungoides, the most common form of cutaneous T-cell lymphoma, occurs in a predictable, sequential pattern that starts from patches and that evolves to plaques and later to tumors.
Therefore, unlocking the relationship between the microarchitecture of mycosis fungoides and the clinical counterparts of that microstructure represents important steps for the design of targeted therapies. Using multispectral fluorescent imaging, we show that the progression of mycosis fungoides from plaque to tumor parallels the cutaneous expansion of the malignant CD4 + T cells that express TOX. The density of exhausted BTLA + CD4 + T cells around malignant CD4 + TOX + cells was higher in tumors than it was in plaques, suggesting that undesired safeguards are in place within the tumor microenvironment that prevent immune activation and subsequent cancer eradication.
Overriding the CD47 checkpoint with an intralesional SIRPαFc fusion decoy receptor induced the resolution of mycosis fungoides in patients that paralleled an amplified expansion of NK and CD8 + T cells in addition to a reduction of the exhausted BTLA + CD4 + T cells that were engaged in promiscuous intercellular interactions.
These therapeutic benefits of the CD47 blockade were further unleashed by adjuvant interferon-α, which stimulates cytotoxic cells, underscoring the importance of an inflamed microenvironment in facilitating the response to immunotherapy. Collectively, these findings support CD47 as a therapeutic target in treating mycosis fungoides and demonstrate a synergistic role of interferon-α in exploiting these clinical benefits.
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