医学
骨髓纤维化
鲁索利替尼
疾病
原发性血小板增多症
免疫疗法
骨髓增生性疾病
免疫学
聚乙二醇干扰素
髓样
癌症研究
细胞因子
Janus激酶2
干扰素
髓系白血病
髓系细胞
真性红细胞增多症
突变
临床试验
炎症
JAK2 V617F
进行性疾病
免疫系统
贾纳斯激酶
作者
Isabelle Plo,William Vainchenker
标识
DOI:10.1056/nejmra2507867
摘要
) that activate cytokine signaling. These mutations arise decades before clinical disease develops and confer a clonal advantage that is further shaped by comutations in epigenetic, splicing, or signaling genes. Inflammation enhances clonal dominance, favoring the development of myelofibrosis and thrombotic complications. Disease evolution may culminate in secondary acute myeloid leukemia, which has a poor prognosis. Current therapies primarily aim to control symptoms, thrombosis, and splenomegaly, but they have limited disease-modifying effects, except for pegylated interferon alfa and JAK2 inhibitors in some patients. Emerging therapies that selectively target mutant CALR and JAK2 V617F using immunotherapy and selective inhibitors could be a breakthrough in the treatment of persons with myeloproliferative neoplasms, with the expectation of achieving durable disease modification and potentially clonal eradication.
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