不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Follicular lymphoma and the microenvironment: potential targets and biomarkers.
Follicular lymphoma and the microenvironment: potential targets and biomarkers.
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滤泡性淋巴瘤(FL)是一种惰性B细胞恶性肿瘤,以反复出现的遗传学改变为特征,但其临床病程高度可变,仅凭肿瘤内在特征无法完全解释。越来越多的证据强调肿瘤微环境(TME)是疾病进展、治疗反应和免疫逃逸的关键调控因素。涵盖领域:FL的TME由多种细胞成分组成,包括T细胞亚群、肿瘤相关巨噬细胞、基质细胞和滤泡树突状细胞,它们共同提供生存信号并塑造免疫功能障碍。这些相互作用促成了潜在治疗靶点的发现,如免疫检查点分子、巨噬细胞极化通路和基质-肿瘤信号轴。与此同时,微环境来源的生物标志物,包括特定免疫细胞组成、空间组织模式和基因表达特征,正逐渐成为预后和治疗结局的重要预测因子。单细胞和空间分析技术的进步进一步深化了我们对TME异质性的理解,使得发现具有临床相关性的靶点和生物标志物成为可能。专家意见:综合来看,这些见解支持一个更为整合的FL生物学模型,并为开发微环境导向疗法和精准医学方法奠定了基础。
INSTRUCTION: Follicular lymphoma (FL) is an indolent B cell malignancy characterized by recurrent genetic alterations, yet its clinical course is highly variable and not fully explained by tumor-intrinsic features alone. Increasing evidence highlights the tumor microenvironment (TME) as a critical regulator of disease progression, therapeutic response, and immune escape. AREAS COVERED: FL TME is composed of diverse cellular elements, including T cell subsets, tumor-associated macrophages, stromal cells, and follicular dendritic cells, which collectively provide survival signals and shape immune dysfunction. These interactions have led to the identification of potential therapeutic targets, such as immune checkpoint molecules, macrophage polarization pathways, and stromal-tumor signaling axes.
In parallel, microenvironment-derived biomarkers, including specific immune cell compositions, spatial organization patterns, and gene expression signatures, are emerging as important predictors of prognosis and treatment outcomes.
Advances in single-cell and spatial profiling technologies have further refined our understanding of TME heterogeneity, enabling the discovery of clinically relevant targets and biomarkers. EXPERT OPINION: Together, these insights support a more integrated model of FL biology and provide a foundation for developing microenvironment-directed therapies and precision medicine approaches.
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