自身免疫
免疫学
主要组织相容性复合体
生物
免疫系统
人口
抗原
医学
抗体
自身免疫性疾病
环境卫生
作者
Xavier Clemente‐Casares,Jesús Blanco,Poornima Ambalavanan,Jun Yamanouchi,Santiswarup Singha,César Fandos,Sue Tsai,Jinguo Wang,Nahir Garabatos,Cristina Izquierdo,Smriti Agrawal,Michael B. Keough,V. Wee Yong,Eddie A. James,Anna Moore,Yang Yang,Thomas Stratmann,Pau Serra,Pere Santamaría
出处
期刊:Nature
[Nature Portfolio]
日期:2016-02-16
卷期号:530 (7591): 434-440
被引量:506
摘要
Regulatory T cells hold promise as targets for therapeutic intervention in autoimmunity, but approaches capable of expanding antigen-specific regulatory T cells in vivo are currently not available. Here we show that systemic delivery of nanoparticles coated with autoimmune-disease-relevant peptides bound to major histocompatibility complex class II (pMHCII) molecules triggers the generation and expansion of antigen-specific regulatory CD4(+) T cell type 1 (TR1)-like cells in different mouse models, including mice humanized with lymphocytes from patients, leading to resolution of established autoimmune phenomena. Ten pMHCII-based nanomedicines show similar biological effects, regardless of genetic background, prevalence of the cognate T-cell population or MHC restriction. These nanomedicines promote the differentiation of disease-primed autoreactive T cells into TR1-like cells, which in turn suppress autoantigen-loaded antigen-presenting cells and drive the differentiation of cognate B cells into disease-suppressing regulatory B cells, without compromising systemic immunity. pMHCII-based nanomedicines thus represent a new class of drugs, potentially useful for treating a broad spectrum of autoimmune conditions in a disease-specific manner.
科研通智能强力驱动
Strongly Powered by AbleSci AI