利用免疫微环境治疗多发性骨髓瘤。

IF 4.6 Q1 ONCOLOGY 癌症耐药(英文) Pub Date : 2022-06-22 eCollection Date: 2022-01-01 DOI:10.20517/cdr.2022.23
James J Ignatz-Hoover, James J Driscoll
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引用次数: 7

摘要

多发性骨髓瘤(MM)仍然是一种无法治愈的遗传异质性疾病,其特征是在允许的骨髓(BM)微环境中培养的转化浆细胞不受控制的增殖。目前的治疗方法利用MM细胞独特的生物学特性,并针对驱动肿瘤生长和促进免疫逃避的免疫微环境。蛋白酶体抑制剂和免疫调节药物最初用于补充,现在已取代细胞毒性化疗作为一线抗骨髓瘤药物。最近,单克隆抗体、双特异性抗体和嵌合抗原受体T细胞被开发出来,以改造免疫系统,克服免疫抑制,改善患者的反应。虽然目前的MM治疗显着延长了患者的生存期,但获得性耐药不可避免地出现并推动疾病进展。下一代MM治疗的逻辑进展将是设计和验证预防和/或克服免疫治疗获得性耐药的药物。复杂的骨髓微环境促进了对当前抗骨髓瘤药物和新兴免疫疗法的耐药性。骨髓瘤细胞与复杂的骨髓免疫微环境交织在一起,有助于适应性耐药的发展。在这里,我们描述了最近fda批准的和正在研究的抗骨髓瘤药物,这些药物直接或间接地靶向骨髓微环境来预防或克服耐药性。抗骨髓瘤药物的协同作用可能促进合理设计的药物鸡尾酒的发展,以防止脑脊髓瘤介导的免疫疗法耐药。
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Therapeutics to harness the immune microenvironment in multiple myeloma.

Multiple myeloma (MM) remains an incurable, genetically heterogeneous disease characterized by the uncontrolled proliferation of transformed plasma cells nurtured within a permissive bone marrow (BM) microenvironment. Current therapies leverage the unique biology of MM cells and target the immune microenvironment that drives tumor growth and facilitates immune evasion. Proteasome inhibitors and immunomodulatory drugs were initially introduced to complement and have now supplanted cytotoxic chemotherapy as frontline anti-myeloma agents. Recently, monoclonal antibodies, bispecific antibodies, and chimeric antigen receptor T cells were developed to revamp the immune system to overcome immune suppression and improve patient responses. While current MM therapies have markedly extended patient survival, acquired drug resistance inevitably emerges and drives disease progression. The logical progression for the next generation of MM therapies would be to design and validate agents that prevent and/or overcome acquired resistance to immunotherapies. The complex BM microenvironment promotes resistance to both current anti-myeloma agents and emerging immunotherapies. Myeloma cells are intertwined with a complex BM immune microenvironment that contributes to the development of adaptive drug resistance. Here, we describe recently FDA-approved and investigational anti-myeloma agents that directly or indirectly target the BM microenvironment to prevent or overcome drug resistance. Synergistic effects of anti-myeloma agents may foster the development of rationally-designed drug cocktails that prevent BM-mediated resistance to immunotherapies.

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