肿瘤细胞治疗研究
英文原题:Branched-chain keto acids promote an immune-suppressive and neurodegenerative microenvironment in leptomeningeal disease.
Branched-chain keto acids promote an immune-suppressive and neurodegenerative microenvironment in leptomeningeal disease.
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软脑膜疾病(LMD)发生于肿瘤播散至软脑膜间隙和脑脊液(CSF)时,导致严重的神经功能恶化和不良生存结局。我们利用对淋巴瘤LMD患者CSF的综合多组学分析,揭示了免疫抑制性细胞微环境,并鉴定出提示神经退行性过程的蛋白质和脂质失调。引人注目的是,我们发现LMD患者CSF中有毒支链酮酸(BCKA)显著蓄积。BCKA蓄积被发现在淋巴瘤、乳腺癌和黑色素瘤LMD患者中普遍存在,呈泛癌现象。在功能上,BCKA破坏了内源性T淋巴细胞、嵌合抗原受体(CAR)T细胞、神经元和脑膜细胞的活力和功能。用降低BCKA的苯丁酸钠治疗LMD小鼠,显著改善了神经功能、生存结局以及抗CD19 CAR-T 细胞疗法的疗效。这是LMD中BCKA蓄积的首次报道,并提供了临床前证据表明靶向这些毒性代谢物可改善结局。
Leptomeningeal disease (LMD) occurs when tumors seed into the leptomeningeal space and cerebrospinal fluid (CSF), leading to severe neurological deterioration and poor survival outcomes.
We utilized comprehensive multi-omics analyses of CSF from patients with lymphoma LMD to demonstrate an immunosuppressive cellular microenvironment and identified dysregulations in proteins and lipids indicating neurodegenerative processes. Strikingly, we found a significant accumulation of toxic branched-chain keto acids (BCKA) in the CSF of patients with LMD. The BCKA accumulation was found to be a pan-cancer occurrence, evident in lymphoma, breast cancer, and melanoma LMD patients.
Functionally, BCKA disrupted the viability and function of endogenous T lymphocytes, chimeric antigen receptor (CAR) T cells, neurons, and meningeal cells. Treatment of LMD mice with BCKA-reducing sodium phenylbutyrate significantly improved neurological function, survival outcomes, and efficacy of anti-CD19 CAR T cell therapy. This is the first report of BCKA accumulation in LMD and provides preclinical evidence that targeting these toxic metabolites improves outcomes.
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