Single-cell landscape of idiopathic multicentric Castleman disease in identical twins.
Jason Yongsheng ChanJui Wan LohJing-Quan LimHerty LianyElizabeth Chun Yong LeeJing Yi LeeBavani KannanBoon Yee LimZexi GuoKerry LimJeslin Chian Hung HaCedric Chuan Young NgTun Kiat KoDachuan HuangDominique Yuan Bin SeowChee Leong ChengSock Hoai ChanJoanne NgeowBin Tean TehSoon Thye LimChoon-Kiat OngPublished in: Blood (2024)
Idiopathic multicentric Castleman disease (iMCD) is a rare cytokine-driven disorder characterized by systemic inflammation, generalized lymphadenopathy, and organ dysfunction. Here, we present an unusual occurrence of iMCD in identical twins and examined the immune milieu within the affected lymphoid organs and the host circulation using multiomic high-dimensional profiling. Using spatial enhanced resolution omics sequencing (Stereo-seq) transcriptomic profiling, we performed unsupervised spatially constrained clustering to identify different anatomic structures, mapping the follicles and interfollicular regions. After a cell segmentation approach, interleukin 6 (IL-6) pathway genes significantly colocalized with endothelial cells and fibroblastic reticular cells, confirming observations using a single-cell sequencing approach (10× Chromium). Furthermore, single-cell sequencing of peripheral blood mononuclear cells revealed an "inflammatory" peripheral monocytosis enriched for the expression of S100A family genes in both twins. In summary, we provided evidence of the putative cell-of-origin of IL-6 signals in iMCD and described a distinct monocytic host immune response phenotype through a unique identical twin model.
Keyphrases
- single cell
- rna seq
- high throughput
- immune response
- endothelial cells
- genome wide
- oxidative stress
- high resolution
- induced apoptosis
- gestational age
- poor prognosis
- risk assessment
- cell cycle arrest
- gene expression
- convolutional neural network
- dendritic cells
- dna methylation
- single molecule
- signaling pathway
- cell therapy
- mesenchymal stem cells
- mass spectrometry
- bone marrow
- bioinformatics analysis
- inflammatory response
- cell proliferation
- fine needle aspiration
- chemotherapy induced