CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A novel polymer-conjugated human IL-15 improves efficacy of CD19-targeted CAR T-cell immunotherapy.
A novel polymer-conjugated human IL-15 improves efficacy of CD19-targeted CAR T-cell immunotherapy.
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靶向CD19的嵌合抗原受体(CAR)修饰T细胞疗法为复发/难治性(R/R)B细胞恶性肿瘤患者提供了一种新的治疗选择。然而,CAR-T 细胞疗法在相当一部分患者中未能产生持久缓解。输注CAR-T 细胞体内增殖和存活有限是治疗失败的关键原因。在一项针对B细胞恶性肿瘤的CD19 CAR-T 细胞1/2期临床试验(#NCT01865617)中,CAR-T 细胞输注后低血清白细胞介素15(IL-15)浓度与较差的CAR-T 细胞动力学相关。IL-15支持T细胞增殖和存活,因此,补充IL-15可能增强CAR-T 细胞疗法。
然而,天然IL-15的临床应用因其不利的药代动力学(PK)和毒性而具有挑战性。NKTR-255是一种聚合物偶联的IL-15,可结合整个IL-15受体复合物(IL-15R /IL-2R),并表现出降低的清除率,从而提供持续的药效学(PD)反应。
我们研究了接受NKTR-255治疗的非人灵长类动物的PK和免疫细胞PD,发现NKTR-255增强了T细胞和NK 细胞的体内增殖。在体外,NKTR-255诱导人CD19 CAR-T 细胞剂量依赖性增殖和积累,尤其是在靶细胞丰度较低时。在荷淋巴瘤免疫缺陷小鼠中的体内研究证明,人CD19 CAR-T 细胞的抗肿瘤疗效增强。与仅接受CAR-T 细胞治疗的小鼠相比,接受CAR-T 细胞和NKTR-255治疗的小鼠血液和骨髓中CAR-T 细胞计数显著更高,且在肿瘤清除后仍维持较高水平,通过Ki-67和抑制性受体共表达评估,未发现持续增殖或持续活化/耗竭的证据。这些数据支持一项正在进行的CD19 CAR-T 细胞与NKTR-255联合治疗R/R B细胞恶性肿瘤的1期临床试验。
Chimeric antigen receptor (CAR)-modified T-cell therapies targeting CD19 represent a new treatment option for patients with relapsed/refractory (R/R) B-cell malignancies.
However, CAR T-cell therapy fails to elicit durable responses in a significant fraction of patients. Limited in vivo proliferation and survival of infused CAR T cells are key causes of failure. In a phase 1/2 clinical trial of CD19 CAR T cells for B-cell malignancies (#NCT01865617), low serum interleukin 15 (IL-15) concentration after CAR T-cell infusion was associated with inferior CAR T-cell kinetics. IL-15 supports T-cell proliferation and survival, and therefore, supplementation with IL-15 may enhance CAR T-cell therapy.
However, the clinical use of native IL-15 is challenging because of its unfavorable pharmacokinetic (PK) and toxicity. NKTR-255 is a polymer-conjugated IL-15 that engages the entire IL-15 receptor complex (IL-15R /IL-2R ) and exhibits reduced clearance, providing sustained pharmacodynamic (PD) responses.
We investigated the PK and immune cell PDs in nonhuman primates treated with NKTR-255 and found that NKTR-255 enhanced the in vivo proliferation of T cells and natural killer cells. In vitro, NKTR-255 induced dose-dependent proliferation and accumulation of human CD19 CAR T cells, especially at low target cell abundance. In vivo studies in lymphoma-bearing immunodeficient mice demonstrated enhanced antitumor efficacy of human CD19 CAR T cells.
In contrast to mice treated with CAR T cells alone, those that received CAR T cells and NKTR-255 had markedly higher CAR T-cell counts in the blood and marrow that were sustained after tumor clearance, without evidence of persistent proliferation or ongoing activation/exhaustion as assessed by Ki-67 and inhibitory receptor coexpression. These data support an ongoing phase 1 clinical trial of combined therapy with CD19 CAR T cells and NKTR-255 for R/R B-cell malignancies.
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