Three-dimensional spatial quantitative analysis of cardiac lymphatics in the mouse heart

Author:

Phillips Evan H.ORCID,Bindokas Vytautas P.ORCID,Jung DaheeORCID,Teamer Jay,Kitajewski Jan K.ORCID,Solaro R. John,Wolska Beata M.ORCID,Lee Steve Seung-YoungORCID

Abstract

ABSTRACTObjective3D microscopy and image data analysis are necessary for studying the morphology of cardiac lymphatic vessels (LyVs) and association with other cell types. We aimed to develop a methodology for 3D multiplexed lightsheet microscopy and highly sensitive and quantitative image analysis to identify pathological remodeling in the 3D morphology of LyVs in young adult mouse hearts with familial hypertrophic cardiomyopathy (HCM).MethodsWe developed a 3D lightsheet microscopy workflow providing a quick turn-around (as few as 5-6 days), multiplex fluorescence detection, and preservation of LyV structure and epitope markers. Hearts from non-transgenic (NTG) and transgenic (TG) HCM mice were arrested in diastole, retrograde perfused, immunolabeled, optically cleared, and imaged. We built an image processing pipeline to quantify LyV morphological parameters at the chamber and branch levels.ResultsChamber-specific pathological alterations of LyVs were identified, but most significantly in the right atrium (RA). TG hearts had a higher volume fraction of ER-TR7+fibroblasts and reticular fibers. In the RA, we found associations between ER-TR7+volume fraction and both LyV segment density and median diameter.ConclusionsThis workflow and study enabled multi-scale analysis of pathological changes in cardiac LyVs of young adult mice, inviting ideas for research on LyVs in cardiac disease.

Publisher

Cold Spring Harbor Laboratory

Reference35 articles.

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