Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Peirong Hu is active.

Publication


Featured researches published by Peirong Hu.


Nature | 2013

Differential Stem and Progenitor Cell Trafficking by Prostaglandin E2

Jonathan Hoggatt; Khalid S. Mohammad; Pratibha Singh; Amber F. Hoggatt; Brahmananda R. Chitteti; Jennifer M. Speth; Peirong Hu; Bradley Poteat; Kayla N. Stilger; Francesca Ferraro; Lev Silberstein; Frankie Wong; Sherif S. Farag; Magdalena Czader; Ginger L. Milne; Richard M. Breyer; Carlos H. Serezani; David T. Scadden; Theresa A. Guise; Edward F. Srour; Louis M. Pelus

To maintain lifelong production of blood cells, haematopoietic stem cells (HSCs) are tightly regulated by inherent programs and extrinsic regulatory signals received from their microenvironmental niche. Long-term repopulating HSCs reside in several, perhaps overlapping, niches that produce regulatory molecules and signals necessary for homeostasis and for increased output after stress or injury. Despite considerable advances in the specific cellular or molecular mechanisms governing HSC–niche interactions, little is known about the regulatory function in the intact mammalian haematopoietic niche. Recently, we and others described a positive regulatory role for prostaglandin E2 (PGE2) on HSC function ex vivo. Here we show that inhibition of endogenous PGE2 by non-steroidal anti-inflammatory drug (NSAID) treatment in mice results in modest HSC egress from the bone marrow. Surprisingly, this was independent of the SDF-1–CXCR4 axis implicated in stem-cell migration. Stem and progenitor cells were found to have differing mechanisms of egress, with HSC transit to the periphery dependent on niche attenuation and reduction in the retentive molecule osteopontin. Haematopoietic grafts mobilized with NSAIDs had superior repopulating ability and long-term engraftment. Treatment of non-human primates and healthy human volunteers confirmed NSAID-mediated egress in other species. PGE2 receptor knockout mice demonstrated that progenitor expansion and stem/progenitor egress resulted from reduced E-prostanoid 4 (EP4) receptor signalling. These results not only uncover unique regulatory roles for EP4 signalling in HSC retention in the niche, but also define a rapidly translatable strategy to enhance transplantation therapeutically.


Blood | 2012

Blockade of prostaglandin E2 signaling through EP1 and EP3 receptors attenuates Flt3L-dependent dendritic cell development from hematopoietic progenitor cells.

Pratibha Singh; Jonathan Hoggatt; Peirong Hu; Jennifer M. Speth; Seiji Fukuda; Richard M. Breyer; Louis M. Pelus

Dendritic cell (DC) homeostasis, like all mature blood cells, is maintained via hierarchal generation from hematopoietic precursors; however, little is known about the regulatory mechanisms governing DC generation. Here, we show that prostaglandin E(2) (PGE(2)) is required for optimal Flt3 ligand-mediated DC development and regulates expression of the Flt3 receptor on DC-committed progenitor cells. Inhibition of PGE(2) biosynthesis reduces Flt3-mediated activation of STAT3 and expression of the antiapoptotic protein survivin, resulting in increased apoptosis of DC-committed progenitor cells. Reduced DC development caused by diminished PGE(2) signaling is reversed by overexpression of Flt3 or survivin in DC progenitors and conversely is mimicked by STAT3 inhibition. PGE(2) regulation of DC generation is specifically mediated through the EP1 and EP3 G protein PGE(2) receptors. These studies define a novel DC progenitor regulatory pathway in which PGE(2) signaling through EP1/EP3 receptors regulates Flt3 expression and downstream STAT3 activation and survivin expression, required for optimal DC progenitor survival and DC development in vivo.


Leukemia | 2012

Expansion of bone marrow neutrophils following G-CSF administration in mice results in osteolineage cell apoptosis and mobilization of hematopoietic stem and progenitor cells

Pratibha Singh; Peirong Hu; Jonathan Hoggatt; Akira Moh; Louis M. Pelus

Proliferation and differentiation of hematopoietic stem/progenitor cells (HSPC) within bone marrow (BM) niches are regulated by adhesion molecules and cytokines produced by mesenchymal stem/progenitor cells (MPC) and osteoblasts (OB). HSPCs that egresses to peripheral blood are widely used for transplant and granulocyte-colony stimulating factor (G-CSF) is used clinically to induce mobilization. The mechanisms, through which G-CSF regulates HSPC trafficking, however, are not completely understood. Herein we show that G-CSF-driven neutrophil expansion alters the BM niche that leads to HSPC mobilization. Alcam−Sca-1+MPC and Alcam+Sca-1− OB are reduced coincident with mobilization, which correlates inversely with BM neutrophil expansion. In mice made neutropenic by the neutrophil-specific anti-Ly6G antibody, G-CSF-mediated reduction in MPC and OB is attenuated and mobilization reduced without an effect on monocytes/macrophages. Neutrophils, expanded in response to G-CSF-induced MPC and OB apoptosis leading to reduced production of BM HSPC retention factors, including stromal cell-derived factor-1, stem cell factor and vascular cell adhesion molecule-1. Blockade of neutrophil reactive oxygen species attenuates G-CSF-mediated MPC and OB apoptosis. These data show that the expansion of BM neutrophils by G-CSF contributes to the transient degradation of retention mechanisms within the BM niche, facilitating enhanced HSPC egress/mobilization.


Leukemia | 2015

Survivin modulates genes with divergent molecular functions and regulates proliferation of hematopoietic stem cells through Evi-1

Seiji Fukuda; Jonathan Hoggatt; Pratibha Singh; Mariko Abe; Jennifer M. Speth; Peirong Hu; Edward M. Conway; Giuseppina Nucifora; Seiji Yamaguchi; Louis M. Pelus

The inhibitor of apoptosis protein Survivin regulates hematopoiesis, although its mechanisms of regulation of hematopoietic stem cells (HSCs) remain largely unknown. While investigating conditional Survivin deletion in mice, we found that Survivin was highly expressed in phenotypically defined HSCs, and Survivin deletion in mice resulted in significantly reduced total marrow HSCs and hematopoietic progenitor cells. Transcriptional analysis of Survivin−/− HSCs revealed altered expression of multiple genes not previously linked to Survivin activity. In particular, Survivin deletion significantly reduced expression of the Evi-1 transcription factor indispensable for HSC function, and the downstream Evi-1 target genes Gata2, Pbx1 and Sall2. The loss of HSCs following Survivin deletion and impaired long-term HSC repopulating function could be partially rescued by ectopic Evi-1 expression in Survivin −/− HSCs. These data demonstrate that Survivin partially regulates HSC function by modulating the Evi-1 transcription factor and its downstream targets and identify new genetic pathways in HSCs regulated by Survivin.


Blood | 2013

Prostaglandin-modulated umbilical cord blood hematopoietic stem cell transplantation

Corey Cutler; Pratik S. Multani; David Robbins; Haesook T. Kim; Thuy Le; Jonathan Hoggatt; Louis M. Pelus; Caroline Desponts; Yi-Bin Chen; Betsy Rezner; Philippe Armand; John Koreth; Brett Glotzbecker; Vincent T. Ho; Edwin P. Alyea; Marlisa Isom; Grace Kao; Myriam Armant; Leslie E. Silberstein; Peirong Hu; Robert J. Soiffer; David T. Scadden; Jerome Ritz; Wolfram Goessling; Trista E. North; John Mendlein; Karen K. Ballen; Leonard I. Zon; Joseph H. Antin; Daniel Shoemaker


Blood | 2012

Sinusoidal Endothelial CD26 Cleavage of Neuropeptide Y Regulates Transendothelial Migration and Mobilization of Hematopoietic Stem and Progenitor Cells in Response to G-CSF.

Pratibha Singh; Jonathan Hoggatt; Peirong Hu; Louis M. Pelus


Blood | 2011

Bone Marrow Niche Attenuation by Non-Steroidal Anti-Inflammatory Drugs Mobilizes Hematopoietic Stem and Progenitor Cells by Differing Mechanisms

Jonathan Hoggatt; Khalid S. Mohammad; Brahmananda R. Chitteti; Pratibha Singh; Jennifer M. Speth; Peirong Hu; Bradley Poteat; Edward F. Srour; Theresa A. Guise; Louis M. Pelus


PMC | 2015

Survivin Modulates Genes with Divergent Molecular Functions and Regulates Proliferation of Hematopoietic Stem Cells through Evi-1

Seiji Fukuda; Jonathan Hoggatt; Pratibha Singh; Mariko Abe; Jennifer M. Speth; Peirong Hu; Edward M. Conway; Giuseppina Nucifora; Seiji Yamaguchi; Louis M. Pelus


Archive | 2014

transplantation Prostaglandin-modulated umbilical cord blood hematopoietic stem cell

E. North; John Mendlein; Karen K. Ballen; Leonard I. Zon; Joseph H. Antin; Peirong Hu; Robert J. Soiffer; David T. Scadden; Jerome Ritz; Wolfram Goessling; Vincent T. Ho; Edwin P. Alyea; Marlisa Isom; Grace Kao; Myriam Armant; Caroline Desponts; Yi-Bin Chen; Betsy Rezner; Philippe Armand; Pratik S. Multani; David Robbins; Haesook T. Kim; Jonathan Hoggatt


Blood | 2012

CD166 (ALCAM): A Functional Marker of Primitive Murine and Human Hematopoietic Stem Cells and Cellular Elements of Their Niche

Brahmananda R. Chitteti; Michihiro Kobayashi; Yinghua Cheng; Peirong Hu; Bradley Poteat; Hal E. Broxmeyer; Louis M. Pelus; Melissa A. Kacena; Edward F. Srour

Collaboration


Dive into the Peirong Hu's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge