[HTML][HTML] Endothelial-specific inhibition of NF-κB enhances functional haematopoiesis

MG Poulos, P Ramalingam, MC Gutkin… - Nature …, 2016 - nature.com
MG Poulos, P Ramalingam, MC Gutkin, M Kleppe, M Ginsberg, MJP Crowley, O Elemento
Nature communications, 2016nature.com
Haematopoietic stem cells (HSCs) reside in distinct niches within the bone marrow (BM)
microenvironment, comprised of endothelial cells (ECs) and tightly associated perivascular
constituents that regulate haematopoiesis through the expression of paracrine factors. Here
we report that the canonical NF-κB pathway in the BM vascular niche is a critical signalling
axis that regulates HSC function at steady state and following myelosuppressive insult, in
which inhibition of EC NF-κB promotes improved HSC function and pan-haematopoietic …
Abstract
Haematopoietic stem cells (HSCs) reside in distinct niches within the bone marrow (BM) microenvironment, comprised of endothelial cells (ECs) and tightly associated perivascular constituents that regulate haematopoiesis through the expression of paracrine factors. Here we report that the canonical NF-κB pathway in the BM vascular niche is a critical signalling axis that regulates HSC function at steady state and following myelosuppressive insult, in which inhibition of EC NF-κB promotes improved HSC function and pan-haematopoietic recovery. Mice expressing an endothelial-specific dominant negative IκBα cassette under the Tie2 promoter display a marked increase in HSC activity and self-renewal, while promoting the accelerated recovery of haematopoiesis following myelosuppression, in part through protection of the BM microenvironment following radiation and chemotherapeutic-induced insult. Moreover, transplantation of NF-κB-inhibited BM ECs enhanced haematopoietic recovery and protected mice from pancytopenia-induced death. These findings pave the way for development of niche-specific cellular approaches for the treatment of haematological disorders requiring myelosuppressive regimens.
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