免疫监视
癌症研究
髓系白血病
白血病
造血
免疫系统
化学
生物
药理学
免疫学
干细胞
细胞生物学
作者
Changzheng Li,Xinru You,Xi Xu,Binghuo Wu,Yuye Liu,Tong Tong,Jie Chen,Yishan Li,Chunlei Dai,Zhitao Ye,Xiaobin Tian,Wei Yan,Zechen Hao,Linjia Jiang,Jun Wu,Meng Zhao
出处
期刊:Advanced Science
[Wiley]
日期:2022-01-26
卷期号:9 (9): e2104134-e2104134
被引量:58
标识
DOI:10.1002/advs.202104134
摘要
Abstract Compromised immunosurveillance leads to chemotherapy resistance and disease relapse of hematological malignancies. Amino acid metabolism regulates immune responses and cancer; however, a druggable amino acid metabolite to enhance antitumor immunosurveillance and improve leukemia targeting‐therapy efficacy remains unexplored. Here, an L ‐phenylalanine polymer, Metabolic Reprogramming Immunosurveillance Activation Nanomedicine (MRIAN), is invented to effectively target bone marrow (BM) and activate the immune surveillance in T‐cell acute lymphoblastic leukemia (T‐ALL) by inhibiting myeloid‐derived suppressor cells (MDSCs) in T‐ALL murine model. Stable‐isotope tracer and in vivo drug distribution experiments show that T‐ALL cells and MDSCs have enhanced cellular uptake of L ‐phenylalanine and MRIANs than normal hematopoietic cells and progenitors. Therefore, MRIAN assembled Doxorubicin (MRIAN‐Dox) specifically targets T‐ALL cells and MDSCs but spare normal hematopoietic cells and hematopoietic stem and progenitor cells with enhanced leukemic elimination efficiency. Consequently, MRIAN‐Dox has reduced cardiotoxicity and myeloablation side effects in treating T‐ALL mice. Mechanistically, MRIAN degrades into L ‐phenylalanine, which inhibits PKM2 activity and reduces ROS levels in MDSCs to disturb their immunosuppressive function and increase their differentiation toward normal myeloid cells. Overall, a novel amino acid metabolite nanomedicine is invented to treat T‐ALL through the combination of leukemic cell targeting and immunosurveillance stimulation.
科研通智能强力驱动
Strongly Powered by AbleSci AI