93 Publications (Page 2 of 4)
2010
Application of polychromatic flow cytometry to identify novel subsets of circulating cells with angiogenic potentialEstes, Myka L⋅Mund, Julie A⋅Mead, Laura E⋅Prater, Daniel N⋅Cai, Shanbao⋅Wang, Haiyan⋅Pollok, Karen E⋅Murphy, Michael P⋅An, Caroline S⋅Srour, Edward F⋅Ingram, David A and Case, JamieCytometry Part A, vol. 77A, (no. 9), pp. 831-839, 2010.
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Application of polychromatic flow cytometry to identify novel subsets of circulating cells with angiogenic potential.Estes, Myka L⋅Mund, Julie A⋅Mead, Laura E⋅Prater, Daniel N⋅Cai, Shanbao⋅Wang, Haiyan⋅Pollok, Karen E⋅Murphy, Michael P⋅An, Caroline S⋅Srour, Edward F⋅Ingram, David A and Case, JamieCytometry. Part A : the journal of the International Society for Analytical Cytology, vol. 77, (no. 9), pp. 831-9, 2010/Sep.
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Bone marrow-derived angiogenic cells restore lung alveolar and vascular structure after neonatal hyperoxia in infant miceBalasubramaniam, Vivek⋅Balasubramaniam, Vivek⋅Balasubramaniam, Vivek⋅Ryan, Sharon⋅Ryan, Sharon L⋅Ryan, Sharon L⋅Seedorf, Gregory J⋅Seedorf, Gregory J⋅Seedorf, Gregory⋅Roth, Emily V⋅Roth, Emily⋅Roth, Emily V⋅Heumann, Thatcher R⋅Heumann, Thatcher⋅Heumann, Thatcher R⋅Yoder, Mervin C⋅Yoder, Mervin⋅Yoder, Mervin C⋅Ingram, David⋅Ingram, David A⋅Ingram, David A⋅Hogan, Christopher J⋅Hogan, Christopher⋅Hogan, Christopher J⋅Markham, Neil E⋅Markham, Neil⋅Markham, Neil E⋅Abman, Steven H⋅Abman, Steven and Abman, Steven HAmerican Journal of Physiology - Lung Cellular and Molecular Physiology, vol. 298, (no. 3), pp. 323, 2010-03-01.
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Endothelial abnormalities in adolescents with type 1 diabetes: a biomarker for vascular sequelae?Di Meglio, Linda A⋅Tosh, Aneesh⋅Saha, Chandan K⋅Estes, Myka⋅Mund, Julie⋅Mead, Laura E⋅Lien, Izlin⋅Ingram, David A and Haneline, Laura SThe Journal of pediatrics, vol. 157, (no. 4), pp. 540-6, 2010/Oct.
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Expression of human papillomavirus type 16 E7 is sufficient to significantly increase expression of angiogenic factors but is not sufficient to induce endothelial cell migrationWalker, Joanna⋅Walker, Joanna⋅Smiley, Lucy⋅Smiley, Lucy C⋅Ingram, David⋅Ingram, David⋅Roman, Ann and Roman, AnnVirology, vol. 410, (no. 2), pp. 290, 2010.
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Genetic and cellular evidence of vascular inflammation in neurofibromin-deficient mice and humansLasater, EA⋅Li, F.⋅Bessler, WK⋅Estes, ML⋅Vemula, S.⋅Hingtgen, Cynthia M⋅Dinauer, Mary C⋅Kapur, Reuben⋅Conway, Simon and Ingram, David AJournal of Clinical Investigation, vol. 120, (no. 3), pp. 859-870, 2010.
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Identification of endothelial cells and progenitor cell subsets in human peripheral blood.Estes, Myka L⋅Mund, Julie A⋅Ingram, David A and Case, JamieCurrent protocols in cytometry, vol. Chapter 9, pp. Unit 9.33.1-11, April 2010.
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2009
Endothelial Colony-forming Cells from Preterm Infants Are Increased and More Susceptible to HyperoxiaBaker, Christopher⋅Baker, Christopher D⋅Ryan, Sharon⋅Ryan, Sharon L⋅Ingram, David⋅Ingram, David A⋅Seedorf, Gregory J⋅Seedorf, Gregory⋅Abman, Steven⋅Abman, Steven H⋅Balasubramaniam, Vivek and Balasubramaniam, VivekAmerican Journal of Respiratory and Critical Care Medicine, vol. 180, (no. 5), pp. 461, 20090901.
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Endothelial progenitor cell: ongoing controversy for defining these cells and their role in neoangiogenesis in the murine systemYoder, Mervin⋅Yoder, Mervin C⋅Ingram, David A and Ingram, DavidCurrent Opinion in Hematology, vol. 16, (no. 4), pp. 273, 2009-July.
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Endothelial progenitor cells and cardiovascular cell-based therapies.Mund, Julie A⋅Ingram, David A⋅Yoder, Mervin C and Case, JamieCytotherapy, vol. 11, (no. 2), pp. 103-13, 2009.
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Endothelial progenitor cells: identity defined?Timmermans, Frank⋅Plum, Jean⋅Yoder, Mervin C⋅Ingram, David A⋅Vandekerckhove, Bart and Case, JamieJournal of Cellular and Molecular Medicine, vol. 13, (no. 1), Jan 2009.
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Endothelial progenitors in the risk of developing bronchopulmonary dysplasia: can we include endothelial progenitor cells in BPD risk assessment?Balasubramaniam, Vivek and Ingram, David AAmerican journal of respiratory and critical care medicine, vol. 180, (no. 6), pp. 490, 2009-Sep-15.
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p21-activated kinase regulates mast cell degranulation via effects on calcium mobilization and cytoskeletal dynamics.Allen, Jayme D⋅Allen, Jayme D⋅Jaffer, Zahara M⋅Jaffer, Zahara M⋅Park, Su-Jung⋅Park, Su-Jung⋅Burgin, Sarah⋅Burgin, Sarah⋅Hofmann, Clemens⋅Hofmann, Clemens⋅Sells, Mary A⋅Sells, Mary Ann⋅Chen, Shi⋅Chen, Shi⋅Derr-Yellin, Ethel⋅Derr-Yellin, Ethel⋅Michels, Elizabeth G⋅Michels, Elizabeth G⋅McDaniel, Andrew⋅McDaniel, Andrew⋅Bessler, Waylan K⋅Bessler, Waylan K⋅Ingram, David A⋅Ingram, David A⋅Atkinson, Simon J⋅Atkinson, Simon J⋅Travers, Jeffrey B⋅Travers, Jeffrey B⋅Chernoff, Jonathan⋅Chernoff, Jonathan⋅Clapp, D Wade and Clapp, D. WBlood, vol. 113, (no. 12), pp. 2695-705, 2009/Mar/19.
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Premature senescence of highly proliferative endothelial progenitor cells is induced by tumor necrosis factor-alpha via the p38 mitogen-activated protein kinase pathway.Zhang, Yanmin⋅Zhang, Yanmin⋅Herbert, Brittney-Shea⋅Herbert, Brittney Shea⋅Rajashekhar, Gangaraju⋅Rajashekhar, Gangaraju⋅Ingram, David⋅Ingram, David A⋅Yoder, Mervin⋅Yoder, Mervin C⋅Clauss, Matthias⋅Clauss, Matthias⋅Rehman, Jalees and Rehman, JaleesThe FASEB journal : official publication of the Federation of American Societies for Experimental Biology, vol. 23, (no. 5), pp. 1358-65, 2009/May.
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Premature senescence of highly proliferative endothelial progenitor cells is induced by tumor necrosis factor-α via the p38 mitogen-activated protein kinase pathway.Zhang, Yanmin⋅Herbert, Brittney-Shea⋅Rajashekhar, Gangaraju⋅Ingram, David A⋅Yoder, Mervin C⋅Clauss, Matthias A and Rehman, JaleesFASEB journal., vol. 23, (no. 5), pp. 1358-1365, 2009.
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Release of proinflammatory mediators and expression of proinflammatory adhesion molecules by endothelial progenitor cellsMurphy, Michael⋅Mead, Laura⋅Prater, Daniel⋅Zhang, Yanmin⋅Rehman, Jalees⋅Saadatzadeh, M. and Ingram, DavidThe American Journal of Physiology, vol. 296, (no. 5), pp. H1675, 20090501.
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Release of proinflammatory mediators and expression of proinflammatory adhesion molecules by endothelial progenitor cells.Zhang, Yanmin⋅Ingram, David A⋅Murphy, Michael P⋅Saadatzadeh, M R⋅Mead, Laura E⋅Prater, Daniel N and Rehman, JaleesAmerican journal of physiology. Heart and circulatory physiology, vol. 296, (no. 5), pp. H1675-82, 2009/May.
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2008
Assessing Identity, Phenotype, and Fate of Endothelial Progenitor CellsHirschi, Karen K⋅Hirschi, Karen⋅Ingram, David A⋅Ingram, David⋅Yoder, Mervin and Yoder, Mervin CArteriosclerosis, Thrombosis, and Vascular Biology, vol. 28, (no. 9), pp. 1595, 20080901.
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Endothelial Colony Forming Cells and Mesenchymal Stem Cells are Enriched at Different Gestational Ages in Human Umbilical Cord BloodJaved, M Jawad⋅Javed, M J⋅Mead, Laura E⋅Mead, Laura E⋅Prater, Daniel⋅Prater, Daniel⋅Bessler, Waylan K⋅Bessler, Waylan K⋅Foster, David⋅Foster, David⋅Case, Jamie⋅Case, Jamie⋅Goebel, W S⋅Goebel, W Scott⋅Yoder, Mervin C⋅Yoder, Mervin C⋅Haneline, Laura S⋅Haneline, Laura S⋅Ingram, David A and Ingram, David APediatric research, vol. 64, (no. 1), pp. 73, 2008-Jul.
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Generation and characterization of Csrp1 enhancer-driven tissue-restricted Cre-recombinase miceSnider, Paige⋅Fix, Jana L⋅Rogers, Rhonda⋅Peabody-Dowling, Goldie⋅Ingram, David A⋅Lilly, Brenda and Conway, SimonGenesis, vol. 46, (no. 3), pp. 167-176, 2008.
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In Vitro Hyperglycemia or a Diabetic Intrauterine Environment Reduces Neonatal Endothelial Colony-Forming Cell Numbers and FunctionIngram, David A⋅Ingram, David⋅Lien, Izlin⋅Lien, Izlin Z⋅Mead, Laura⋅Mead, Laura E⋅Estes, Myka⋅Estes, Myka⋅Prater, Daniel⋅Prater, Daniel N⋅Derr-Yellin, Ethel⋅Derr-Yellin, Ethel⋅DiMeglio, Linda⋅Di Meglio, Linda A⋅Haneline, Laura and Haneline, Laura SDiabetes, vol. 57, (no. 3), pp. 724-31, Mar 2008.
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Isolation and Characterization of Endothelial Progenitor Cells from Human BloodMead, Laura E⋅Mead, Laura E⋅Prater, Daniel⋅Prater, Daniel⋅Yoder, Mervin C⋅Yoder, Mervin C⋅Ingram, David A and Ingram, David ACurrent Protocols in Stem Cell Biology, vol. 6, (no. 1), pp. 2C.1.27, September 2008.
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Nf1-dependent tumors require a microenvironment containing Nf1+/-- and c-kit-dependent bone marrow.Yang, Feng Chun⋅Yang, Feng-Chun⋅Yang, Feng Chun⋅Ingram, David A⋅Ingram, David A⋅Ingram, David A⋅Chen, Shi⋅Chen, Shi⋅Chen, Shi⋅Zhu, Yuan⋅Zhu, Yuan⋅Zhu, Yuan⋅Yuan, Jin⋅Yuan, Jin⋅Yuan, Jin⋅Li, Xiaohong⋅Li, Xiaohong⋅Li, Xiaohong⋅Yang, Xianlin⋅Yang, Xianlin⋅Yang, Xianlin⋅Knowles, Scott⋅Knowles, Scott⋅Knowles, Scott⋅Horn, Whitney⋅Horn, Whitney⋅Horn, Whitney⋅Li, Yan⋅Li, Yan⋅Li, Yan⋅Zhang, Shaobo⋅Zhang, Shaobo⋅Zhang, Shaobo⋅Yang, Yanzhu⋅Yang, Yanzhu⋅Yang, Yanzhu⋅Vakili, Saeed T⋅Vakili, Saeed T⋅Vakili, Saeed T⋅Yu, Menggang⋅Yu, Menggang⋅Yu, Menggang⋅Burns, Dennis⋅Burns, Dennis K⋅Burns, Dennis⋅Robertson, Kent⋅Robertson, Kent⋅Robertson, Kent⋅Hutchins, Gary⋅Hutchins, Gary⋅Hutchins, Gary⋅Parada, Luis F⋅Parada, Luis F⋅Parada, Luis F⋅Clapp, D. Wade⋅Clapp, D. W and Clapp, D. WadeCell, vol. 135, (no. 3), pp. 437-48, 2008/Oct/31.
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Nf1-Dependent Tumors Require a Microenvironment Containing Nf1 super(+) super(/) super(-)- and c-kit-Dependent Bone MarrowYang, Feng Chun⋅Ingram, David A⋅Chen, S.⋅Zhu, Y.⋅Yuan, J.⋅Li, X.⋅Yang, X.⋅Knowles, S.⋅Horn, W.⋅Li, Y.⋅Zhang, S.⋅Yang, Y.⋅Vakili, ST⋅Yu, Menggang⋅Burns, Dennis K⋅Robertson, K.⋅Hutchins, G.⋅Parada, Luis F and Clapp, David WCell, vol. 135, (no. 3), pp. 437-448, 2008.
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Nf1+/- mice have increased neointima formation via hyperactivation of a Gleevec sensitive molecular pathwayLasater, Elisabeth A⋅Lasater, Elisabeth A.⋅Bessler, Waylan K⋅Bessler, Waylan K.⋅Mead, Laura E⋅Mead, Laura E.⋅Horn, Whitney E⋅Horn, Whitney E.⋅Clapp, D. Wade⋅Clapp, David W⋅Conway, Simon⋅Conway, Simon J.⋅Ingram, David A⋅Ingram, David A.⋅Li, Fang and Li, FangHuman Molecular Genetics, vol. 17, (no. 15), pp. 2336-44, Aug 1, 2008.
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