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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Functional cure and long-term survival in multiple myeloma: how to challenge the previously impossible.
Functional cure and long-term survival in multiple myeloma: how to challenge the previously impossible.
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多发性骨髓瘤(MM)是一种异质性疾病,生存期从数月到数十年不等。对大多数患者而言,“治愈”的目标仍然难以实现,但已被证明是可能的,表现为持久缓解并过渡到平台期(类似于意义未明的单克隆丙种球蛋白病/冒烟型骨髓瘤)。在这篇综述中,两个代表性病例为说明这如何成为可能以及为实现长期功能性疾病控制仍需确定哪些问题奠定了基础。目前已出现若干进展,例如诊断的改进,包括 SLiM-CRAB 标准的定义和使用,以及可测量残留病(MRD)与全基因组/单细胞测序和其他相关指标,以更好地理解疾病生物学。这些进展通过促进对遗传改变和克隆异质性的分析,使更早期检测、更准确的风险分层和更个性化的治疗策略成为可能。全基因组测序还可能识别驱动突变以及对免疫疗法和其他靶向治疗的耐药模式。
如今,对于适合移植(TE)的新诊断 MM(NDMM)患者,采用 CD38 抗体、蛋白酶体抑制剂、免疫调节药物和地塞米松进行诱导治疗,随后可能进行自体干细胞移植和来那度胺维持治疗,可被视为标准治疗。在不符合移植条件(NTE)的患者中实现长期疾病控制和功能性治愈,目前正逐渐成为一种明确的可能性:将 CD38 抗体纳入 NTE NDMM 患者治疗的 III 期试验数据显示出令人印象深刻的 MRD 阴性率,且似乎可维持数年。尽管CAR-T 细胞、双特异性抗体及其他免疫疗法的长期持久性正在评估中,但多项临床试验目前正在研究它们在新诊断TE和NTE患者一线治疗中的作用。这些试验将探讨CAR-T 细胞疗法是否会取代自体干细胞移植,以及此类免疫疗法是否会成为一种真正治愈性的选择。
我们得出结论:虽然治愈仍然难以实现,但操作性或功能性治愈的概念提供了一个值得追求的新基准,并且是MM领域中一个新兴的、活跃且可能实现的临床研究方向。
Multiple myeloma (MM) is a heterogeneous disease with survival ranging from months to decades. The goal of 'cure' remains elusive for most patients, but has been shown to be possible, with durable remission and a transition to a plateau phase (analogous to monoclonal gammopathy of uncertain significance/smoldering myeloma). In this review, two representative cases set the stage to illustrate how this might be possible and what still needs to be determined to achieve functional disease control over a prolonged period. Several developments have emerged, such as improved diagnostics including the definitions and use of SLiM-CRAB criteria and measurable residual disease (MRD) with whole-genome/single-cell sequencing as well as other correlates to better understand disease biology. These advances enable earlier detection, more accurate risk stratification and improved personalized treatment strategies by facilitating analysis of genetic alterations and clonal heterogeneity. Whole-genome sequencing may also identify driver mutations and modes of resistance to immunotherapies as well as other targeted therapies.
Today, induction with a CD38 antibody, proteasome inhibitor, immunomodulatory drug, and dexamethasone, potentially followed by autologous stem cell transplantation and lenalidomide maintenance, can be considered standard of care for transplant-eligible (TE) patients with newly diagnosed MM (NDMM). That prolonged disease control and functional cure can be achieved in non-transplant-eligible (NTE) patients is currently emerging as a distinct possibility: data from phase III trials that incorporate a CD38 antibody into the treatment of NTE NDMM patients demonstrate impressive MRD negativity rates that appear sustained over several years.
While the long-term durability of chimeric antigen receptor T cells, bi-specific antibodies and other immunotherapies are being evaluated, several clinical trials are now investigating their role in frontline treatment for TE and NTE patients. These trials will address whether chimeric antigen receptor T-cell therapy will replace autologous stem cell transplantation and whether such immunotherapies will represent a truly curative option.
We conclude that while cure remains elusive, the concept of operational or functional cure provides a new benchmark to strive for and is an emerging area of active and potentially achievable clinical research for MM.
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