PO.CL01.13 · 临床研究
通过GlycoScope-IN-DEPTH对滤泡性淋巴瘤进行空间多组学解析,揭示galectin-8L驱动的补体富集、免疫耗竭的微环境
Spatial multi-omics dissection of follicular lymphoma by GlycoScope-IN-DEPTH reveals a galectin-8L-driven complement-enriched, immune-exhausted microenvironment
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
滤泡性淋巴瘤(FL)是一种源自生发中心B细胞的惰性恶性肿瘤,约占非霍奇金淋巴瘤的40%。尽管大多数患者进展缓慢,但有一部分会发生转化,且CD20阴性复发带来了治疗上的挑战。FL的特征是BCL2过表达以及高度甘露糖化的表面免疫球蛋白,后者与抗原呈递细胞上的凝集素结合,以维持B细胞受体信号传导并促进免疫逃逸。然而,对于FL微环境中聚糖介导的相互作用的系统性理解仍然有限。
为填补这一空白,我们开发了GlycoScope,一个可在原位以单细胞分辨率共检测聚糖和蛋白质的多模态空间分析平台。将GlycoScope应用于扁桃体、滤泡增生(FH)和初治FL组织,我们发现Galectin-8L在B细胞中选择性富集,且在FL中表达显著更高。在扁桃体和FH中,Galectin-8L定位于BCL2⁺套区,而在FL中它则扩展至滤泡中心和套区,提示其有可能作为一种结构性标志物来解析淋巴组织的组织构成和局部细胞结构。
以Galectin-8L+套区-边缘区边缘为锚点的逐步邻域分析揭示了表达检查点分子的T细胞与Galectin-8L高表达B细胞的局部富集。为进一步探究这些生态位的功能状态,我们将GlycoScope与同一切片上的空间转录组学相结合(GlycoScope-IN-DEPTH)。按Galectin-8L表达对滤泡进行分层显示,Galectin-8L高表达B细胞采用了富集于免疫突触形成和补体激活的转录程序,两者均与Galectin-8L水平呈正相关。同一组织芯中的CD4 T细胞表现出终末耗竭,而巨噬细胞则显示出增强的吞噬和补体级联特征,共同表明免疫微环境发生了协调一致的、与Galectin-8L相关的重塑。
额外的聚糖-凝集素成像表明,Galectin-8L独特的滤泡内分布增强了其与同源凝集素Galectin-8的相互作用,我们发现Galectin-8表达于巨噬细胞和T细胞。这些观察结果支持在B-T-巨噬细胞区室之间存在一条Gal8L-Gal8相互作用轴,其协调形成了FL中补体富集、免疫耗竭的微环境。
总之,这一整合的空间框架凸显了FL中聚糖依赖性的免疫调控网络,并将Galectin-8L定位为一种功能性标志物,用于绘制乃至潜在靶向淋巴系恶性肿瘤中失调的免疫生态位。
查看英文原文 English abstract
Follicular lymphoma (FL), an indolent malignancy of germinal center B cells, accounts for ~40% of non-Hodgkin lymphomas. Although most patients experience slow progression, a subset undergoes transformation, and CD20-negative relapses pose a therapeutic challenge. FL is characterized by BCL2 overexpression and highly mannosylated surface immunoglobulins that engage lectins on antigen-presenting cells to sustain B-cell receptor signaling and promote immune evasion. Yet, a systematic understanding of glycan-mediated interactions within the FL microenvironment remains limited.
To address this gap, we developed GlycoScope, a multimodal spatial profiling platform that co-detects glycans and proteins at single-cell resolution in situ. Applying GlycoScope to tonsil, follicular hyperplasia (FH), and treatment-naive FL tissues, we identified selective enrichment of Galectin-8L in B cells, with significantly higher expression in FL. In tonsil and FH, Galectin-8L localized to the BCL2⁺ mantle zone, whereas in FL it extended across both follicular center and mantle zones, suggesting its potential as a structural landmark to dissect the organization and local cellular architecture of lymphoid tissues.
Stepwise neighborhood analyses anchored on Galectin-8L + mantle-marginal zone rims revealed localized enrichment of checkpoint-expressing T cells with Galectin-8L High B cells. To further probe the functional states of these niches, we integrated GlycoScope with spatial transcriptomics on the same slide (GlycoScope-IN-DEPTH). Stratifying follicles by Galectin-8L expression showed that Galectin-8L High B cells adopt transcriptional programs enriched for immune synapse formation and complement activation, both positively correlated with Galectin-8L levels. CD4 T cells in the same cores exhibited terminal exhaustion, while macrophages displayed enhanced phagocytic and complement-cascade signatures, together indicating a coordinated, Galectin-8L-associated remodeling of the immune microenvironment.
Additional glycan-lectin imaging demonstrated that the distinct intrafollicular distribution of Galectin-8L potentiates interactions with its cognate lectin Galectin-8, which we found expressed on macrophages and T cells. These observations support a Gal8L-Gal8 interaction axis across B-T-macrophage compartments that orchestrates a complement-enriched, immune-exhausted microenvironment in FL.
Together, this integrated spatial framework highlights glycan-dependent immunoregulatory networks in FL and positions Galectin-8L as a functional landmark for mapping, and potentially targeting, dysregulated immune niches in lymphoid malignancy.
利益披露 Disclosure
S. P. T. Yiu, None..
A. Basak, None..
C. Ortiz-Cordero, None..
A. K. Shalek, None..
L. Kiessling, None..
S. Jiang, None.