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  1. 1.   Soluble CD13 is a potential mediator of neutrophil-induced thrombogenic inflammation in SARS-CoV-2 infection
  2. Tsou, Pei-Suen; Ali, Ramadan A; Lu, Chenyang; Sule, Gautam; Carmona-Rivera, Carmelo; Lucotti, Serena; Ikari, Yuzo; Wu, Qi; Campbell, Phillip; Gurrea-Rubio, Mikel; Maeda, Kohei; Fox, Sharon E; Brodie, William D; Mattichak, Megan N; Foster, Caroline; Tambralli, Ajay; Yalavarthi, Srilakshmi; Amin, M Asif; Kmetova, Katarina; Mazetto Fonseca, Bruna; Chong, Emily; Zuo, Yu; Maile, Michael; Imberti, Luisa; Caruso, Arnaldo; Caccuri, Francesca; Quaresima, Virginia; Sottini, Alessandra; Kuhns,Douglas; Fink,Danielle; Castagnoli, Riccardo; Delmonte, Ottavia; Kenney, Heather; Zhang, Yu; Magliocco, Mary; Su, Helen C; Notarangelo, Luigi D; Zemans, Rachel L; Mao-Draayer, Yang; Matei, Irina; Salvatore, Mirella; Lyden, David C; Kanthi, Yogendra; Kaplan, Mariana J; Knight, Jason S; Fox, David A
  3. JCI Insight. 2025, Apr 01;
  1. 2.   Self-extinguishing relay waves enable homeostatic control of human neutrophil swarming
  2. Strickland, Evelyn; Pan, Deng; Godfrey, Christian; Kim, Julia S; Hopke, Alex; Ji, Wencheng; Degrange,Maureen; Villavicencio, Bryant; Mansour, Michael K; Zerbe, Christa S; Irimia, Daniel; Amir, Ariel; Weiner, Orion D
  3. Developmental Cell. 2024, Oct 7; 59(19): 2659-2671.
  1. 3.   A phase III randomized crossover trial of plerixafor versus G-CSF for treatment of WHIM syndrome
  2. McDermott, David H; Velez, Daniel; Cho, Elena; Cowen, Edward W; DiGiovanna, John J; Pastrana, Diana V; Buck, Christopher B; Calvo, Katherine R; Gardner, Pamela J; Rosenzweig, Sergio D; Stratton, Pamela; Merideth, Melissa A; Kim, H Jeffrey; Brewer, Carmen; Katz, James D; Kuhns,Doug; Malech, Harry L; Follmann, Dean; Fay, Michael P; Murphy, Philip M
  3. The Journal of Clinical Investigation. 2023, Oct 2; 133(19): e164918.
  1. 4.   Phase I Study of Zotiraciclib in Combination with Temozolomide for Patients with Recurrent High-grade Astrocytomas
  2. Wu, Jing; Yuan, Ying; Long-Priel,Debra; Fink,Dani; Peer, Cody J.; Sissung, Tristan M.; Su, Yu-Ting; Pang, Ying; Yu, Guangyang; Butler, Madison K.; Mendoza, Tito R.; Vera, Elizabeth; Ahmad, Salman; Bryla, Christine; Lindsley, Matthew; Grajkowska, Ewa; Mentges, Kelly; Boris, Lisa; Antony, Ramya; Garren, Nancy; Siegel, Christine; Lollo, Nicole; Cordova, Christine; Aboud, Orwa; Theeler, Brett J.; Burton, Eric M.; Penas-Prado, Marta; Leeper, Heather; Gonzales, Javier; Armstrong, Terri S.; Calvo, Katherine R.; Figg, William D.; Kuhns,Doug; Gallin, John; Gilbert, Mark R.
  3. Clinical Cancer Research : an Official Journal of the American Association for Cancer Research. 2021, Jun 15; 27(12): 3298-3306.
  1. 5.   Formyl Peptide Receptor-1 Blockade Prevents Receptor Regulation by Mitochondrial Danger-Associated Molecular Patterns and Preserves Neutrophil Function After Trauma
  2. Itagaki, Kiyoshi; Kaczmarek, Elzbieta; Kwon, Woon Yong; Chen, Li; Vlková, Barbora; Zhang, Quanzhi; Riça, Ingred; Yaffe, Michael B; Campbell, Yan; Marusich, Michael F; Wang,Jiming; Gong,Wang; Gao, Ji-Liang; Jung, Françoise; Douglas, Garry; Otterbein, Leo E; Hauser, Carl J
  3. Critical care medicine. 2020, Feb; 48(2): e123-e132.
  1. 6.   Neutrophil activation in systemic capillary leak syndrome (Clarkson disease)
  2. Xie, Zhihui; Kuhns,Doug; Gu, Xuesong; Otu, Hasan H.; Libermann, Towia A.; Gallin, John I.; Parikh, Samir M.; Druey, Kirk M.
  3. JOURNAL OF CELLULAR AND MOLECULAR MEDICINE. 2019, AUG; 23(8): 5119-5127.
  1. 7.   Targeted Repair of CYBB in X-CGD iPSCs Requires Retention of Intronic Sequences for Expression and Functional Correction
  2. Sweeney, Colin L.; Zou, Jizhong; Choi, Uimook; Merling, Randall K.; Liu, Alexander; Bodansky, Aaron; Burkett, Sandra; Kim, Jung-Woong; De Ravin, Suk See; Malech, Harry L.
  3. MOLECULAR THERAPY. 2017, Feb 1; 25(2): 321-330.
  1. 8.   Isolation and Functional Analysis of Human Neutrophils
  2. Kuhns, D. B.; Long Priel, D. A.; Chu, J.; Zarember, K. A.
  3. Current Protocols in Immunology. 2015, 2-Nov; 111: 7.23.1-16.
  1. 9.   Innate Immunity against Granulibacter bethesdensis, an Emerging Gram-Negative Bacterial Pathogen
  2. Zarember, K. A.; Marshall-Batty, K. R.; Cruz, A. R.; Chu, J.; Fenster, M. E.; Shoffner, A. R.; Rogge, L. S.; Whitney, A. R.; Czapiga, M.; Song, H. H.; Shaw, P. A.; Nagashima, K.; Malech, H. L.; Deleo, F. R.; Holland, S. M.; Gallin, J. I.; Greenberg, D. E.
  3. Infection and Immunity. 2012, Mar; 80(3): 975-981.
  1. 10.   CD8 alpha(+) Dendritic Cells Are the Critical Source of Interleukin-12 that Controls Acute Infection by Toxoplasma gondii Tachyzoites
  2. Mashayekhi, M.; Sandau, M. M.; Dunay, I. R.; Frickel, E. M.; Khan, A.; Goldszmid, R. S.; Sher, A.; Ploegh, H. L.; Murphy, T. L.; Sibley, L. D.; Murphy, K. M.
  3. Immunity. 2011, Aug; 35(2): 249-259.
  1. 12.   Humanized monoclonal antibody against the chemokine CXCL-8 (IL-8) effectively prevents acute lung injury
  2. Bao, Z. Y.; Ye, Q. W.; Gong, W. H.; Xiang, Y.; Wan, H. Y.
  3. International Immunopharmacology. 2010, Feb; 10(2): 259-263.
  1. 13.   Increased Expression of Annexin A3 Is a Mechanism of Platinum Resistance in Ovarian Cancer
  2. Yan, X. D.; Yin, J.; Yao, H. Y.; Mao, N.; Yang, Y. L.; Pan, L. Y.
  3. Cancer Research. 2010, Feb; 70(4): 1616-1624.
  1. 14.   Chemerin reveals its chimeric nature
  2. Yoshimura, T.; Oppenheim, J. J.
  3. Journal of Experimental Medicine. 2008 205(10): 2187-2190.
  1. 15.   Toward understanding the cationicity of defensins - Arg and Lys versus their noncoded analogs
  2. Zou, G. Z.; de Leeuw, E.; Li, C.; Pazgier, M.; Li, C. Q.; Zeng, P. Y.; Lu, W. Y.; Lubkowski, J.; Lu, W. Y.
  3. Journal of Biological Chemistry. 2007, Jul; 282(27): 19653-19665.
  1. 16.   Cloning and characterization of guinea pig CXCR1
  2. Takahashi, M.; Jeevan, A.; Sawant, K.; McMurray, D. N.; Yoshimura, T.
  3. Molecular Immunology. 2007, Feb; 44(5): 878-888.
  1. 17.   Expression and purification of recombinant human alpha-defensins in Escherichia coli
  2. Pazgier, M.; Lubkowski, J.
  3. Protein Expression and Purification. 2006, Sep; 49(1): 1-8.
  1. 18.   Adenosine A2a receptors induce heterologous desensitization of chemokine receptors
  2. Zhang, N.; Yang, D.; Dong, H. F.; Chen, Q.; Dimitrova, D. I.; Rogers, T. J.; Sitkovsky, M.; Oppenheim, J. J.
  3. Blood. 2006, Jul; 108(1): 38-44.
  1. 19.   Correction of X-linked chronic granulomatous disease by gene therapy, augmented by insertional activation of MDS1-EVI1, PRDM16 or SETBP1
  2. Ott, M. G.; Schmidt, M.; Schwarzwaelder, K.; Stein, S.; Siler, U.; Koehl, U.; Glimm, H.; Kuhlcke, K.; Schilz, A.; Kunkel, H.; Naundorf, S.; Brinkmann, A.; Deichmann, A.; Fischer, M.; Ball, C.; Pilz, I.; Dunbar, C.; Du, Y.; Jenkins, N. A.; Copeland, N. G.; Luthi, U.; Hassan, M.; Thrasher, A. J.; Hoelzer, D.; von Kalle, C.; Seger, R.; Grez, M.
  3. Nature Medicine. 2006, Apr; 12(4): 401-409.
  1. 20.   Roles of macrophages and neutrophils in the early host response to Bacillus anthracis spores in a mouse model of infection
  2. Cote, C. K.; Van Rooijen, N.; Welkos, S. L.
  3. Infection and Immunity. 2006, Jan; 74(1): 469-480.
  1. 21.   Retroviral transduction of IL-7R alpha into IL-7R alpha(-/-) bone marrow progenitors: correction of lymphoid deficiency and induction of neutrophilia
  2. Jiang, Q.; Li, W. Q.; Aiello, F. B.; Klarmann, K.; Keller, J. R.; Durum, S. K.
  3. Gene Therapy. 2005, DEC; 12(24): 1761-1768.
  1. 22.   Neutrophil chemotactic factor produced by lipopolysaccharide (LPS)-stimulated human blood mononuclear leukocytes: Partial characterization and separation from interleukin 1 (IL 1)
  2. Yoshimura, T.; Matsushima, K.; Oppenheim, J. J.; Leonard, E. J.
  3. Journal of Immunology. 2005, NOV 1; 175(9): 5569-5574.
  1. 23.   Inhibitory effects of tumor necrosis factor on hematopoiesis seen in vitro are translated to increased numbers of both committed and multipotent progenitors in TNF-deficient mice
  2. Drutskaya, M. S.; Ortiz, M.; Liepinsh, D. J.; Kuprash, D. V.; Nedospasov, S. A.; Keller, J. R.
  3. Experimental Hematology. 2005, NOV; 33(11): 1348-1356.
  1. 24.   Autoantigens signal through chemokine receptors: uveitis antigens induce CXCR3- and CXCR5-expressing lymphocytes and immature dendritic cells to migrate
  2. Howard, O. M. Z.; Dong, H. F.; Su, S. B.; Caspi, R. R.; Chen, X.; Plotz, P.; Oppenheim, J. J.
  3. Blood. 2005, JUN 1; 105(11): 4207-4214.
  1. 25.   Mouse cathelin-related antimicrobial peptide chemoattracts leukocytes using formyl peptide receptor-like 1/mouse formyl peptide receptor-like 2 as the receptor and acts as immune adjuvant
  2. Kurosaka, K.; Chen, Q.; Yarovinsky, F.; Oppenheim, J. J.; Yang, D.
  3. Journal of Immunology. 2005, MAY 15; 174(10): 6257-6265.
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