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  1. 1.   Novel Peptide Nanoparticle Biased Antagonist of CCR3 Blocks Eosinophil Recruitment and Airway Hyperresponsiveness
  2. Grozdanovic, Milica; Laffey, Kimberly G; Abdelkarim, Hazem; Hitchinson, Ben; Harijith, Anantha; Moon, Hyung-Geon; Park, Gye Young; Rousslang, Lee K; Masterson, Joanne C; Furuta, Glenn T; Tarasova, Nadya; Gaponenko, Vadim; Ackerman, Steven J
  3. The Journal of allergy and clinical immunology. 2019, Feb; 143(2): 669-680.e12.
  1. 2.   Regulation of inflammation by members of the formyl-peptide receptor family
  2. Chen, Keqiang; Bao, Zhiyao; Gong, Wang; Tang, Peng; Yoshimura, Teizo; Wang, Jiming
  3. JOURNAL OF AUTOIMMUNITY. 2017, DEC; 85: 64-77.
  1. 3.   Molecular profiling of the human nasal epithelium: A proteomics approach
  2. Simoes, T.; Charro, N.; Blonder, J.; Faria, D.; Couto, F. M.; Chan, K. C.; Waybright, T.; Isaaq, H. J.; Veenstra, T. D.; Penque, D.
  3. Journal of Proteomics. 2011, Dec; 75(1): 56-69.
  1. 4.   The active contribution of Toll-like receptors to allergic airway inflammation
  2. Chen, K. Q.; Xiang, Y.; Yao, X. H.; Liu, Y.; Gong, W. H.; Yoshimura, T.; Wang, J. M.
  3. International Immunopharmacology. 2011, Oct; 11(10): 1391-1398.
  1. 5.   The split personality of NKT cells in malignancy, autoimmune and allergic disorders
  2. Subleski, J. J.; Jiang, Q.; Weiss, J. M.; Wiltrout, R. H.
  3. Immunotherapy. 2011, Oct; 3(10): 1167-1184.
  1. 6.   A potential new target for asthma therapy: A Disintegrin and Metalloprotease 10 (ADAM10) involvement in murine experimental asthma
  2. Mathews, J. A.; Ford, J.; Norton, S.; Kang, D.; Dellinger, A.; Gibb, D. R.; Ford, A. Q.; Massay, H.; Kepley, C. L.; Scherle, P.; Keegan, A. D.; Conrad, D. H.
  3. Allergy. 2011, Sep; 66(9): 1193-1200.
  1. 7.   Secretoglobin 3A2 Suppresses Bleomycin-induced Pulmonary Fibrosis by Transforming Growth Factor beta Signaling Down-regulation
  2. Kurotani, R.; Okumura, S.; Matsubara, T.; Yokoyama, U.; Buckley, J. R.; Tomita, T.; Kezuka, K.; Nagano, T.; Esposito, D.; Taylor, T. E.; Gillette, W. K.; Ishikawa, Y.; Abe, H.; Ward, J. M.; Kimura, S.
  3. Journal of Biological Chemistry. 2011, Jun; 286(22): 19682-19692.
  1. 8.   CpG-conjugated apoptotic tumor cells elicit potent tumor-specific immunity
  2. Shirota, H.; Klinman, D. M.
  3. Cancer Immunology Immunotherapy. 2011, May; 60(5): 659-669.
  1. 9.   Broad-Spectrum In Vitro Activity and In Vivo Efficacy of the Antiviral Protein Griffithsin against Emerging Viruses of the Family Coronaviridae
  2. O'Keefe, B. R.; Giomarelli, B.; Barnard, D. L.; Shenoy, S. R.; Chan, P. K. S.; McMahon, J. B.; Palmer, K. E.; Barnett, B. W.; Meyerholz, D. K.; Wohlford-Lenane, C. L.; McCray, P. B.
  3. Journal of Virology. 2010, Mar; 84(5): 2511-2521.
  1. 10.   Trafficking, Persistence, and Activation State of Adoptively Transferred Allogeneic and Autologous Simian Immunodeficiency Virus-Specific CD8(+) T Cell Clones during Acute and Chronic Infection of Rhesus Macaques
  2. Bolton, D. L.; Minang, J. T.; Trivett, M. T.; Song, K. M.; Tuscher, J. J.; Li, Y.; Piatak, M.; O'Connor, D.; Lifson, J. D.; Roederer, M.; Ohlen, C.
  3. Journal of Immunology. 2010, Jan; 184(1): 303-314.
  1. 11.   Metal Ions-Stimulated Iron Oxidation in Hydroxylases Facilitates Stabilization of HIF-1 alpha Protein
  2. Kaczmarek, M.; Cachau, R. E.; Topol, I. A.; Kasprzak, K. S.; Ghio, A.; Salnikow, K.
  3. Toxicological Sciences. 2009 107(2): 394-403.
  1. 12.   Transcriptome of hypoxic immature dendritic cells: Modulation of chemokine/receptor expression
  2. Ricciardi, A.; Elia, A. R.; Cappello, P.; Puppo, M.; Vann, C.; Fardin, P.; Eva, A.; Munroe, D.; Wu, X. L.; Giovarelli, M.; Varesio, L.
  3. Molecular Cancer Research. 2008 6(2): 175-185.
  1. 13.   Toll-like receptors in inflammation, infection and cancer
  2. Chen, K. Q.; Huang, J.; Gong, W. H.; Iribarren, P.; Dunlop, N. M.; Wang, J. M.
  3. International Immunopharmacology. 2007, Oct; 7(10): 1271-1285.
  1. 14.   Pulmonary inflammation and emphysema - Role of the Cytokines IL-18 and IL-13
  2. Hoshino, T.; Kato, S.; Oka, N.; Imaoka, H.; Kinoshita, T.; Takei, S.; Kitasato, Y.; Kawayama, T.; Imaizumi, T.; Yamada, K.; Young, H. A.; Aizawa, H.
  3. American Journal of Respiratory and Critical Care Medicine. 2007, Jul; 176(1): 49-62.
  1. 15.   Defensin participation in innate and adaptive immunity
  2. Yang, D.; Liu, Z. H.; Tewary, P.; Chen, Q.; De la Rosa, G.; Oppenheim, J. J.
  3. Current Pharmaceutical Design. 2007 13(30): 3131-3139.
  1. 16.   Human beta-defensins
  2. Pazgier, M.; Hoover, D. M.; Yang, D.; Lu, W.; Lubkowski, J.
  3. Cellular and Molecular Life Sciences. 2006, Jun; 63(11): 1294-1313.
  1. 17.   Multiple roles of antimicrobial defensins, cathelicidins, and eosinophil-derived neurotoxin in host defense
  2. Yang, D.; Biragyn, A.; Hoover, D. M.; Lubkowski, J.; Oppenheim, J. J.
  3. Annual Review of Immunology. 2004 22: 181-215.
  1. 18.   Induction of monocyte- and T-cell-attracting chemokines in the lung during the generation of idiopathic pneumonia syndrome following allogeneic murine bone marrow transplantation
  2. Panoskaltsis-Mortari, A.; Strieter, R. M.; Hermanson, J. R.; Fegeding, K. V.; Murphy, W. J.; Farrell, C. L.; Lacey, D. L.; Blazar, B. R.
  3. Blood. 2000 96(3): 834-839.
  1. 19.   Anti-inflammatory actions of interleukin-13 - Suppression of tumor necrosis factor-alpha and antigen-induced leukocyte accumulation in the guinea pig lung
  2. Watson, M. L.; White, A. M.; Campbell, E. M.; Smith, A. W.; Uddin, J.; Yoshimura, T.; Westwick, J.
  3. American Journal of Respiratory Cell and Molecular Biology. 1999 20(5): 1007-1012.
  1. 20.   Interleukin 8 and Monocyte Chemoattractant Protein 1 Production By Cultured Human Airway Smooth Muscle Cells
  2. Watson, M. L.; Grix, S. P.; Jordan, N. J.; Place, G. A.; Dodd, S.; Leithead, J.; Poll, C. T.; Yoshimura, T.; Westwick, J.
  3. Cytokine. 1998 10(5): 346-352.
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