淋巴系统
生物
淋巴管内皮
细胞生物学
淋巴水肿
功能(生物学)
免疫系统
表型
转录组
平衡
神经科学
解剖
免疫学
基因
基因表达
遗传学
癌症
乳腺癌
作者
Pin‐Ji Lei,Katarina J. Ruscic,Kangsan Roh,Johanna J. Rajotte,Meghan J. O’Melia,Echoe M. Bouta,Marla Marquez,Ethel R. Pereira,Ashwin S. Kumar,Guillermo Arroyo‐Ataz,Mohammad S. Razavi,Hengbo Zhou,Lutz Menzel,Heena Kumra,Mark Duquette,Peigen Huang,James W. Baish,Lance L. Munn,Jessalyn M. Ubellacker,Dennis Jones,Timothy P. Padera
标识
DOI:10.1101/2023.11.18.567621
摘要
Abstract Lymphatic muscle cells (LMCs) within the wall of collecting lymphatic vessels exhibit tonic and autonomous phasic contractions, which drive active lymph transport to maintain tissue-fluid homeostasis and support immune surveillance. Damage to LMCs disrupts lymphatic function and is related to various diseases. Despite their importance, knowledge of the transcriptional signatures in LMCs and how they relate to lymphatic function in normal and disease contexts is largely missing. We have generated a comprehensive transcriptional single-cell atlas—including LMCs—of collecting lymphatic vessels in mouse dermis at various ages. We identified genes that distinguish LMCs from other types of muscle cells, characterized the phenotypical and transcriptomic changes in LMCs in aged vessels, and uncovered a pro-inflammatory microenvironment that suppresses the contractile apparatus in advanced-aged LMCs. Our findings provide a valuable resource to accelerate future research for the identification of potential drug targets on LMCs to preserve lymphatic vessel function as well as supporting studies to identify genetic causes of primary lymphedema currently with unknown molecular explanation.
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