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@ARTICLE{Jakab:157521,
author = {M. V. Jakab$^*$ and H. Augustin$^*$},
title = {{U}nderstanding angiodiversity: insights from single cell
biology.},
journal = {Development},
volume = {147},
number = {15},
issn = {1477-9129},
address = {Cambridge},
publisher = {The Company of Biologists},
reportid = {DKFZ-2020-01677},
pages = {dev146621 -},
year = {2020},
note = {#EA:A190#LA:A190#DKFZ-ZMBH Alliance},
abstract = {Blood vessels have long been considered as passive conduits
for delivering blood. However, in recent years, cells of the
vessel wall (endothelial cells, smooth muscle cells and
pericytes) have emerged as active, highly dynamic components
that orchestrate crosstalk between the circulation and
organs. Encompassing the whole body and being specialized to
the needs of distinct organs, it is not surprising that
vessel lining cells come in different flavours. There is
calibre-specific specialization (arteries, arterioles,
capillaries, venules, veins), but also organ-specific
heterogeneity in different microvascular beds (continuous,
discontinuous, sinusoidal). Recent technical advances in the
field of single cell biology have enabled the profiling of
thousands of single cells and, hence, have allowed for the
molecular dissection of such angiodiversity, yielding a
hitherto unparalleled level of spatial and functional
resolution. Here, we review how these approaches have
contributed to our understanding of angiodiversity.},
subtyp = {Review Article},
cin = {A190 / HD01},
ddc = {570},
cid = {I:(DE-He78)A190-20160331 / I:(DE-He78)HD01-20160331},
pnm = {321 - Basic Concepts (POF3-321)},
pid = {G:(DE-HGF)POF3-321},
typ = {PUB:(DE-HGF)16},
pubmed = {pmid:32792338},
doi = {10.1242/dev.146621},
url = {https://inrepo02.dkfz.de/record/157521},
}