611 Publications (Page 4 of 25)
2015
Recombinant DEK Enhances Ex Vivo expansion of Human Cord Blood and Mouse Bone Marrow Hematopoietic Stem Cells in a CXCR2- and Hspg-Dependent MannerCapitano, Maegan L⋅Capitano, Maegan L⋅Mor-Vaknin, Nirit⋅Mor-Vaknin, Nirit⋅Legendre, Maureen⋅Legendre, Maureen⋅Cooper, Scott⋅Cooper, Scott⋅Markovitz, David⋅Markovitz, David⋅Broxmeyer, Hal E and Broxmeyer, Hal EBlood, vol. 126, (no. 23), pp. 779, 2015-12-03.
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Role for Megakaryocyte Phosphatidylinositol Transfer Proteins-Alpha and -Beta in TGF Beta-Mediated Regulation of Hematopoietic HomeostasisBroxmeyer, Hal E⋅Broxmeyer, Hal E⋅Capitano, Maegan L⋅Capitano, Maegan L⋅Zhao, Liang⋅Zhao, Liang⋅Cooper, Scott⋅Cooper, Scott⋅Abrams, Charles S and Abrams, Charles SBlood, vol. 126, (no. 23), pp. 780, 2015-12-03.
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SDF-1/CXCL12 Modulates Mitochondrial Respiration of Hematopoietic Stem and Progenitor Cells in a Bi-Phasic MannerMessina-Graham, Steven and Broxmeyer, Hal EBlood, vol. 126, (no. 23), pp. 2389, 2015-12-03.
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The importance of hypoxia and extra physiologic oxygen shock/stress for collection and processing of stem and progenitor cells to understand true physiology/pathology of these cells ex vivoBroxmeyer, Hal E⋅Broxmeyer, Hal⋅Broxmeyer, Hal E.⋅O’Leary, Heather⋅O Leary, Heather A⋅O’Leary, Heather A.⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Mantel, Charlie⋅Mantel, Charlie and Mantel, CharlieCurrent Opinion in Hematology, vol. 22, (no. 4), pp. 278, 2015-July.
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2014
Activation of OCT4 Enhances Ex Vivo Expansion of Phenotypically Defined and Functionally Engraftable Human Cord Blood Hematopoietic Stem and Progenitor Cells By Regulating HOXB4 ExpressionHuang, Xinxin⋅Huang, Xinxin⋅Cooper, Scott⋅Cooper, Scott⋅Broxmeyer, Hal E and Broxmeyer, Hal EBlood, vol. 124, (no. 21), pp. 4332, 2014-12-06.
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A WHIM satisfactorily addressedBroxmeyer, Hal EBlood, vol. 123, (no. 15), pp. 2288, 2014-Apr-10.
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CD166 regulates human and murine hematopoietic stem cells and the hematopoietic niche.Chitteti, Brahmananda R⋅Kobayashi, Michihiro⋅Cheng, Yinghua⋅Zhang, Huajia⋅Poteat, Bradley A⋅Broxmeyer, Hal E⋅Pelus, Louis M⋅Hanenberg, Helmut⋅Zollman, Amy⋅Kamocka, Malgorzata⋅Carlesso, Nadia⋅Cardoso, Angelo A⋅Kacena, Melissa A and Srour, Edward FBlood, vol. 124, (no. 4), pp. 519-29, 2014/Jul/24.
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Differentiation of human pluripotent stem cells to cells similar to cord-blood endothelial colony–forming cellsPrasain, Nutan⋅Prasain, Nutan⋅Prasain, Nutan⋅Prasain, Nutan⋅Prasain, Nutan⋅Prasain, Nutan⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Lee, Man R⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Vemula, Sasidhar⋅Meador, Jonathan Luke⋅Meador, Jonathan Luke⋅Meador, Jonathan Luke⋅Meador, Jonathan L⋅Meador, Jonathan Luke⋅Meador, Jonathan Luke⋅Yoshimoto, Momoko⋅Yoshimoto, Momoko⋅Yoshimoto, Momoko⋅Yoshimoto, Momoko⋅Yoshimoto, Momoko⋅Yoshimoto, Momoko⋅Ferkowicz, Michael J⋅Ferkowicz, Michael J⋅Ferkowicz, Michael J⋅Ferkowicz, Michael J⋅Ferkowicz, Michael J⋅Ferkowicz, Michael J⋅Fett, Alexa⋅Fett, Alexa⋅Fett, Alexa⋅Fett, Alexa⋅Fett, Alexa⋅Fett, Alexa⋅Gupta, Manav⋅Gupta, Manav⋅Gupta, Manav⋅Gupta, Manav⋅Gupta, Manav⋅Gupta, Manav⋅Rapp, Brian M⋅Rapp, Brian M⋅Rapp, Brian M⋅Rapp, Brian M⋅Rapp, Brian M⋅Rapp, Brian M⋅Saadatzadeh, Mohammad Reza⋅Saadatzadeh, Mohammad Reza⋅Saadatzadeh, Mohammad R⋅Saadatzadeh, Mohammad Reza⋅Saadatzadeh, Mohammad Reza⋅Saadatzadeh, Mohammad Reza⋅Ginsberg, Michael⋅Ginsberg, Michael⋅Ginsberg, Michael⋅Ginsberg, Michael⋅Ginsberg, Michael⋅Ginsberg, Michael⋅Elemento, Olivier⋅Elemento, Olivier⋅Elemento, Olivier⋅Elemento, Olivier⋅Elemento, Olivier⋅Elemento, Olivier⋅Lee, Younghee⋅Lee, Younghee⋅Lee, Younghee⋅Lee, Younghee⋅Lee, Younghee⋅Lee, Younghee⋅Voytik-harbin, Sherry L⋅Voytik-Harbin, Sherry L⋅Voytik Harbin, Sherry L⋅Voytik-Harbin, Sherry L⋅Voytik-Harbin, Sherry L⋅Voytik-Harbin, Sherry L⋅Chung, Hyung M⋅Chung, Hyung Min⋅Chung, Hyung Min⋅Chung, Hyung Min⋅Chung, Hyung Min⋅Chung, Hyung Min⋅Hong, Ki S⋅Hong, Ki Sung⋅Hong, Ki Sung⋅Hong, Ki Sung⋅Hong, Ki Sung⋅Hong, Ki Sung⋅Reid, Emma⋅Reid, Emma⋅Reid, Emma⋅Reid, Emma⋅Reid, Emma⋅Reid, Emma⋅O'Neill, Christina L⋅O'Neill, Christina L⋅O'Neill, Christina L⋅O'neill, Christina L⋅O'Neill, Christina L⋅O'Neill, Christina L⋅Medina, Reinhold J⋅Medina, Reinhold J⋅Medina, Reinhold J⋅Medina, Reinhold J⋅Medina, Reinhold J⋅Medina, Reinhold J⋅Stitt, Alan W⋅Stitt, Alan W⋅Stitt, Alan W⋅Stitt, Alan W⋅Stitt, Alan W⋅Stitt, Alan W⋅Murphy, Michael P⋅Murphy, Michael P⋅Murphy, Michael P⋅Murphy, Michael P⋅Murphy, Michael P⋅Murphy, Michael P⋅Rafii, Shahin⋅Rafii, Shahin⋅Rafii, Shahin⋅Rafii, Shahin⋅Rafii, Shahin⋅Rafii, Shahin⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Yoder, Mervin C⋅Yoder, Mervin C⋅Yoder, Mervin C⋅Yoder, Mervin C⋅Yoder, Mervin C and Yoder, Mervin CNature biotechnology, vol. 32, (no. 11), pp. 1157, 2014-Nov.
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DPP4 regulates in vitro and in vivo hematopoiesis mediated by myelosuppressive chemokinesBroxmeyer, Hal⋅Broxmeyer, Hal⋅Cooper, Scott⋅Cooper, Scott⋅Campbell, Timothy⋅Campbell, Timothy⋅O'Leary, Heather⋅O’Leary, Heather⋅Hangoc, Giao and Hangoc, GiaoExperimental Hematology, vol. 42, (no. 8), pp. S25, 2014.
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DPP4 truncation alters the signaling and functional activity of GM-CSF and LL-3 in normal and leukemic hematopoietic cellsO'Leary, Heather⋅O’Leary, Heather⋅Mantel, Charlie⋅Mantel, Charlie⋅Lee, Man⋅Lee, Man Ryul⋅Lai, Xianyin⋅Lai, Xianyin⋅Cooper, Scott⋅Cooper, Scott⋅Hangoc, Giao⋅Hangoc, Giao⋅Boswell, H. Scott⋅Boswell, H.⋅Broxmeyer, Hal and Broxmeyer, HalExperimental Hematology, vol. 42, (no. 8), pp. S55, 2014.
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Extracellular DEK Is a Novel Chemotactic Agent of Lineage Negative, Sca-1 Positive, c-Kit Positive Bone Marrow CellsCapitano, Maegan L⋅Capitano, Maegan L⋅Mor-Vaknin, Nirit⋅Mor-Vaknin, Nirit⋅Legendre, Maureen⋅Legendre, Maureen⋅Markovitz, David⋅Markovitz, David⋅Broxmeyer, Hal E and Broxmeyer, Hal EBlood, vol. 124, (no. 21), pp. 1583, 2014-12-06.
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Hyperbaric oxygen improves engraftment of ex-vivo expanded and gene transduced human CD34+ cells in a murine model of umbilical cord blood transplantationAljitawi, Omar S⋅Aljitawi, Omar S⋅Xiao, Yinghua⋅Xiao, Yinghua⋅Eskew, Jeff D⋅Eskew, Jeff D⋅Parelkar, Nikhil K⋅Parelkar, Nikhil K⋅Swink, Megan⋅Swink, Megan⋅Radel, Jeff⋅Radel, Jeff D⋅Lin, Tara⋅Lin, Tara L⋅Kimler, Bruce F⋅Kimler, Bruce F⋅Mahnken, Jonathan D⋅Mahnken, Jonathan D⋅McGuirk, Joseph P⋅Mc Guirk, Joseph P⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Vielhauer, George and Vielhauer, George ABlood Cells, Molecules and Diseases, vol. 52, (no. 1), pp. 67, January 2014.
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Inhibiting HDAC for human hematopoietic stem cell expansionBroxmeyer, Hal EJournal of Clinical Investigation, vol. 124, (no. 6), pp. 2365-8, Jun 2014.
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Inhibition of DPP4/CD26 and dmPGE2 treatment enhances engraftment of mouse bone marrow hematopoietic stem cellsBroxmeyer, Hal E⋅Broxmeyer, Hal E⋅Pelus, Louis M and Pelus, Louis MBlood Cells, Molecules and Diseases, vol. 53, (no. 1-2), pp. 38, June-August 2014.
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Mild heating of human CD34+ cord blood cells increases lipid raft aggregation resulting in an earlier engraftment in NSG mice following transplantationCapitano, Maegan⋅Capitano, Maegan⋅Hangoc, Giao⋅Hangoc, Giao⋅Broxmeyer, Hal and Broxmeyer, HalExperimental Hematology, vol. 42, (no. 8), pp. S27, 2014.
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Mitigation of a Newly Discovered Phenomenon, Extra Physiologic Oxygen Shock/Stress (EPHOSS), Mediated By the Mitochondria Permeability Transition Pore, Greatly Improves Stem Cell Collection and TransplantationMantel, Charlie⋅Mantel, Charlie⋅Mantel, Charlie⋅Mantel, Charlie⋅Mantel, Charlie⋅Mantel, Charlie⋅O'Leary, Heather A⋅O'Leary, Heather A⋅O'Leary, Heather A⋅O'Leary, Heather A⋅O'Leary, Heather A⋅O'Leary, Heather A⋅Chitteti, Brahmananda Reddy⋅Chitteti, Brahmananda Reddy⋅Chitteti, Brahmananda Reddy⋅Chitteti, Brahmananda Reddy⋅Chitteti, Brahmananda Reddy⋅Chitteti, Brahmananda Reddy⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Cooper, Scott⋅Cooper, Scott⋅Cooper, Scott⋅Cooper, Scott⋅Cooper, Scott⋅Cooper, Scott⋅Hangoc, Giao⋅Hangoc, Giao⋅Hangoc, Giao⋅Hangoc, Giao⋅Hangoc, Giao⋅Hangoc, Giao⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Brustovetsky, Nickolay⋅Srour, Edward F⋅Srour, Edward F⋅Srour, Edward F⋅Srour, Edward F⋅Srour, Edward F⋅Srour, Edward F⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Lee, Man Ryul⋅Messina-Graham, Steven⋅Messina-Graham, Steven⋅Messina-Graham, Steven⋅Messina-Graham, Steven⋅Messina-Graham, Steven⋅Messina-Graham, Steven⋅Falah, Nadia⋅Falah, Nadia⋅Falah, Nadia⋅Falah, Nadia⋅Falah, Nadia⋅Falah, Nadia⋅Kapur, Reuben⋅Kapur, Reuben⋅Kapur, Reuben⋅Kapur, Reuben⋅Kapur, Reuben⋅Kapur, Reuben⋅Pelus, Louis M⋅Pelus, Louis M⋅Pelus, Louis M⋅Pelus, Louis M⋅Pelus, Louis M⋅Pelus, Louis M⋅Ivan, Mircea⋅Ivan, Mircea⋅Ivan, Mircea⋅Ivan, Mircea⋅Ivan, Mircea⋅Ivan, Mircea⋅Kim, Kye-Seong⋅Kim, Kye-Seong⋅Kim, Kye-Seong⋅Kim, Kye-Seong⋅Kim, Kye-Seong⋅Kim, Kye-Seong⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E and Broxmeyer, Hal EBlood, vol. 124, (no. 21), pp. 2905, 2014-12-06.
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Modelling the sitagliptin effect on dipeptidyl peptidase-4 activity in adults with haematological malignancies after umbilical cord blood haematopoietic cell transplantation.De Mendizábal, Nieves⋅Vélez de Mendizábal, Nieves⋅Strother, Robert M⋅Farag, Sherif S⋅Broxmeyer, Hal E⋅Messina-Graham, Steven⋅Chitnis, Shripad D and Bies, Robert RClinical pharmacokinetics, vol. 53, (no. 3), pp. 247-59, 2014/Mar.
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Nonmarrow Hematopoiesis Occurs in a Hyaluronic-Acid-Rich Node and Duct System in MiceHwang, Sunhee⋅Hwang, Sunhee⋅Lee, Seung J⋅Lee, Seung J⋅Park, Sang H⋅Park, Sang H⋅Chitteti, Brahmananda R⋅Chitteti, Brahmananda R⋅Srour, Edward F⋅Srour, Edward F⋅Cooper, Scott⋅Cooper, Scott⋅Hangoc, Giao⋅Hangoc, Giao⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Kwon, Byoung S and Kwon, Byoung SStem Cells and Development, vol. 23, (no. 21), pp. 2671, 2014-11-01.
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Progesterone directly up-regulates vitamin D receptor gene expression for efficient regulation of T cells by calcitriol 1Thangamani, Shankar⋅Thangamani, Shankar⋅Thangamani, Shankar⋅Thangamani, Shankar⋅Thangamani, Shankar⋅Kim, Myughoo⋅Kim, Myughoo⋅Kim, Myughoo⋅Kim, Myughoo⋅Kim, Myughoo⋅Son, Youngmin⋅Son, Youngmin⋅Son, Youngmin⋅Son, Youngmin⋅Son, Youngmin⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Huang, Xinxin⋅Kim, Heejoo⋅Kim, Heejoo⋅Kim, Heejoo⋅Kim, Heejoo⋅Kim, Heejoo⋅Lee, Jee H⋅Lee, Jee H⋅Lee, Jee H⋅Lee, Jee H⋅Lee, Jee H⋅Cho, Jungyoon⋅Cho, Jungyoon⋅Cho, Jungyoon⋅Cho, Jungyoon⋅Cho, Jungyoon⋅Ulrich, Benjamin⋅Ulrich, Benjamin⋅Ulrich, Benjamin⋅Ulrich, Benjamin⋅Ulrich, Benjamin⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Kim, Chang H⋅Kim, Chang H⋅Kim, Chang H⋅Kim, Chang H and Kim, Chang HJournal of immunology (Baltimore, Md. : 1950), vol. 194, (no. 3), pp. 886, 2014-12-29.
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Recombinant DEK Regulates Hematopoietic Stem and Progenitor Cells in a CXCR2- GαI Protein-Dependent MannerCapitano, Maegan L⋅Capitano, Maegan L⋅Mor-Vaknin, Nirit⋅Mor-Vaknin, Nirit⋅Legendre, Maureen⋅Legendre, Maureen⋅Cooper, Scott⋅Cooper, Scott⋅Markovitz, David⋅Markovitz, David⋅Broxmeyer, Hal E and Broxmeyer, Hal EBlood, vol. 124, (no. 21), pp. 1582, 2014-12-06.
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Recombinant DEK regulates hematopoietic stem and progenitor cells in vivoCapitano, Maegan⋅Capitano, Maegan⋅Mor-Vaknin, Nirit⋅Mor-Vaknin, Nirit⋅Legendre, Maureen⋅Legendre, Maureen⋅Cooper, Scott⋅Cooper, Scott⋅Broxmeyer, Hal and Broxmeyer, HalExperimental Hematology, vol. 42, (no. 8), pp. S28, 2014.
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RHEX in the mix of erythropoietin signaling moleculesBroxmeyer, Hal EThe Journal of experimental medicine, vol. 211, (no. 9), pp. 1704, 2014-Aug-25.
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SIRT1 Positively Regulates Autophagy and Mitochondria Function in Embryonic Stem Cells Under Oxidative Stress.Ou, Xuan⋅Ou, Xuan⋅Lee, Man R⋅Lee, Man Ryul⋅Huang, Xinxin⋅Huang, Xinxin⋅Messina‐Graham, Steven⋅Messina-Graham, Steven⋅Broxmeyer, Hal E and Broxmeyer, Hal EStem cells (Dayton, Ohio), vol. 32, (no. 5), pp. 1183-94, 2014/May.
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The HMGB1-RAGE axis mediates traumatic brain injury–induced pulmonary dysfunction in lung transplantationWeber, Daniel J⋅Weber, Daniel J⋅Weber, Daniel J⋅Weber, Daniel J⋅Weber, Daniel J⋅Weber, Daniel J⋅Weber, Daniel J⋅Gracon, Adam S A⋅Gracon, Adam S A⋅Gracon, Adam S A⋅Gracon, Adam S A⋅Gracon, Adam S A⋅Gracon, Adam S A⋅Gracon, Adam S A⋅Ripsch, Matthew S⋅Ripsch, Matthew S⋅Ripsch, Matthew S⋅Ripsch, Matthew S⋅Ripsch, Matthew S⋅Ripsch, Matthew S⋅Ripsch, Matthew S⋅Fisher, Amanda J⋅Fisher, Amanda J⋅Fisher, Amanda J⋅Fisher, Amanda J⋅Fisher, Amanda J⋅Fisher, Amanda J⋅Fisher, Amanda J⋅Cheon, Bo M⋅Cheon, Bo M⋅Cheon, Bo M⋅Cheon, Bo M⋅Cheon, Bo M⋅Cheon, Bo M⋅Cheon, Bo M⋅Pandya, Pankita H⋅Pandya, Pankita H⋅Pandya, Pankita H⋅Pandya, Pankita H⋅Pandya, Pankita H⋅Pandya, Pankita H⋅Pandya, Pankita H⋅Vittal, Ragini⋅Vittal, Ragini⋅Vittal, Ragini⋅Vittal, Ragini⋅Vittal, Ragini⋅Vittal, Ragini⋅Vittal, Ragini⋅Capitano, Maegan L⋅Capitano, Maegan L⋅Capitano, Maegan L⋅Capitano, Maegan L⋅Capitano, Maegan L⋅Capitano, Maegan L⋅Capitano, Maegan L⋅Kim, Youngsong⋅Kim, Youngsong⋅Kim, Youngsong⋅Kim, Youngsong⋅Kim, Youngsong⋅Kim, Youngsong⋅Kim, Youngsong⋅Allette, Yohance M⋅Allette, Yohance M⋅Allette, Yohance M⋅Allette, Yohance M⋅Allette, Yohance M⋅Allette, Yohance M⋅Allette, Yohance M⋅Riley, Amanda A⋅Riley, Amanda A⋅Riley, Amanda A⋅Riley, Amanda A⋅Riley, Amanda A⋅Riley, Amanda A⋅Riley, Amanda A⋅McCarthy, Brian P⋅McCarthy, Brian P⋅McCarthy, Brian P⋅McCarthy, Brian P⋅McCarthy, Brian P⋅McCarthy, Brian P⋅McCarthy, Brian P⋅Territo, Paul R⋅Territo, Paul R⋅Territo, Paul R⋅Territo, Paul R⋅Territo, Paul R⋅Territo, Paul R⋅Territo, Paul R⋅Hutchins, Gary D⋅Hutchins, Gary D⋅Hutchins, Gary D⋅Hutchins, Gary D⋅Hutchins, Gary D⋅Hutchins, Gary D⋅Hutchins, Gary D⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Broxmeyer, Hal E⋅Sandusky, George E⋅Sandusky, George E⋅Sandusky, George E⋅Sandusky, George E⋅Sandusky, George E⋅Sandusky, George E⋅Sandusky, George E⋅White, Fletcher A⋅White, Fletcher A⋅White, Fletcher A⋅White, Fletcher A⋅White, Fletcher A⋅White, Fletcher A⋅White, Fletcher A⋅Wilkes, David S⋅Wilkes, David S⋅Wilkes, David S⋅Wilkes, David S⋅Wilkes, David S⋅Wilkes, David S and Wilkes, David SScience translational medicine, vol. 6, (no. 252), pp. 252ra124, 2014-Sep-03.
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The Role of CD11b+CX3CR1+ Cells in NeovascularizationKim, Jeong-A⋅Kwak, Jae-Yong⋅Noh, Kyoungmi⋅Lee, Joon⋅Park, Youngrok and Broxmeyer, Hal EBlood, vol. 124, (no. 21), pp. 4180, 2014-12-06.
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