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  1. 1.   THE CONCISE GUIDE TO PHARMACOLOGY 2021/22: G protein-coupled receptors
  2. Alexander, Stephen P. H.; Christopoulos, Arthur; Davenport, Anthony P.; Kelly, Eamonn; Mathie, Alistair; Peters, John A.; Veale, Emma L.; Armstrong, Jane F.; Faccenda, Elena; Harding, Simon D.; Pawson, Adam J.; Southan, Christopher; Davies, Jamie A.; Abbracchio, Maria Pia; Alexander, Wayne; Al-hosaini, Khaled; Baeck, Magnus; Barnes, Nicholas M.; Bathgate, Ross; Beaulieu, Jean-Martin; Bernstein, Kenneth E.; Bettler, Bernhard; Birdsall, Nigel J. M.; Blaho, Victoria; Boulay, Francois; Bousquet, Corinne; Braeuner-Osborne, Hans; Burnstock, Geoffrey; Calo, Girolamo; Castano, Justo P.; Catt, KevinJ; Ceruti, Stefania; Chazot, Paul; Chiang, Nan; Chini, Bice; Chun, Jerold; Cianciulli, Antonia; Civelli, Olivier; Clapp, Lucie H.; Couture, Rejean; Csaba, Zsolt; Dahlgren, Claes; Dent, Gordon; Singh, Khuraijam Dhanachandra; Douglas, Steven D.; Dournaud, Pascal; Eguchi, Satoru; Escher, Emanuel; Filardo, Edward J.; Fong, Tung; Fumagalli, Marta; Gainetdinov, Raul R.; de Gasparo, Marc; Gerard, Craig; Gershengorn, Marvin; Gobeil, Fernand; Goodfriend, Theodore L.; Goudet, Cyril; Gregory, Karen J.; Gundlach, Andrew L.; Hamann, Joerg; Hanson, Julien; Hauger, Richard L.; Hay, Debbie L.; Heinemann, Akos; Hollenberg, Morley D.; Holliday, Nicholas D.; Horiuchi, Mastgugu; Hoyer, Daniel; Hunyady, Laszlo; Husain, Ahsan; IJzerman, Adriaan P.; Inagami, Tadashi; Jacobson, Kenneth A.; Jensen, Robert T.; Jockers, Ralf; Jonnalagadda, Deepa; Karnik, Sadashiva; Kaupmann, Klemens; Kemp, Jacqueline; Kennedy, Charles; Kihara, Yasuyuki; Kitazawa, Takio; Kozielewicz, Pawel; Kreienkamp, Hans-Juergen; Kukkonen, Jyrki P.; Langenhan, Tobias; Leach, Katie; Lecca, Davide; Lee, John D.; Leeman, Susan E.; Leprince, Jerome; Li, Xaria X.; Williams, Tom Lloyd; Lolait, Stephen J.; Lupp, Amelie; Macrae, Robyn; Maguire, Janet; Mazella, Jean; McArdle, Craig A.; Melmed, Shlomo; Michel, Martin C.; Miller, Laurence J.; Mitolo, Vincenzo; Mouillac, Bernard; Mueller, Christa E.; Murphy, Philip; Nahon, Jean-Louis; Ngo, Tony; Norel, Xavier; Nyimanu, Duuamene; Ocarroll, Anne-Marie; Offermanns, Stefan; Panaro, Maria Antonietta; Parmentier, Marc; Pertwee, Roger G.; Pin, Jean-Philippe; Prossnitz, Eric R.; Quinn, Mark; Ramachandran, Rithwik; Ray, Manisha; Reinscheid, Rainer K.; Rondard, Philippe; Rovati, G. Enrico; Ruzza, Chiara; Sanger, Gareth J.; Schoeneberg, Torsten; Schulte, Gunnar; Schulz, Stefan; Segaloff, Deborah L.; Serhan, Charles N.; Stoddart, Leigh A.; Sugimoto, Yukihiko; Summers, Roger; Tan, Valerie P.; Thal, David; Thomas, Walter (Wally); Timmermans, PieterB M. W. M.; Tirupula, Kalyan; Tulipano, Giovanni; Unal, Hamiyet; Unger, Thomas; Valant, Celine; Vanderheyden, Patrick; Vaudry, David; Vaudry, Hubert; Vilardaga, Jean-Pierre; Walker, Christopher S.; Wang,Jiming; Ward, Donald T.; Wester, Hans-Juergen; Willars, Gary B.; Woodruff, Trent M.; Yao, Chengcan; Ye, Richard D.
  3. British journal of pharmacology. 2021, Oct; 178 Suppl 1(1): S27-S156.
  1. 2.   FAM3D is essential for colon homeostasis and host defense against inflammation associated carcinogenesis
  2. Liang, Weiwei; Peng, Xinjian; Li, Qingqing; Wang, Pingzhang; Lv, Ping; Song, Quansheng; She, Shaoping; Huang, Shiyang; Chen,Keqiang; Gong, Wanghua; Yuan,Wuxing; Thovarai, Vishal; Yoshimura, Teizo; O'huigin, Colm; Trinchieri,Giorgio; Huang, Jiaqiang; Lin, Shuye; Yao, Xiaohong; Bian, Xiuwu; Kong, Wei; Xi, Jianzhong; Wang,Jiming; Wang, Ying
  3. Nature communications. 2020, NOV 20; 11(1): 5912.
  1. 3.   The G-Protein Coupled Formyl Peptide Receptors and Their Role in the Progression of Digestive Tract Cancer
  2. Tian, Cuimeng; Chen,Keqiang; Gong, Wanghua; Yoshimura, Teizo; Huang, Jiaqiang; Wang,Jiming
  3. Technology in cancer research & treatment. 2020, Jan-Dec; 19: pii: 1533033820973280.
  1. 4.   Chemotactic Ligands that Activate G-Protein-Coupled Formylpeptide Receptors
  2. Krepel,Stacey; Wang,Jiming
  3. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. 2019, Jul; 20(14):
  1. 5.   Copper regulates the interactions of antimicrobial piscidin peptides from fish mast cells with formyl peptide receptors and heparin
  2. Kim, So Young; Zhang, Fuming; Gong, Wang; Chen, Keqiang; Xia, Kai; Liu, Fei; Gross, Richard A; Wang, Jiming; Linhardt, Robert J; Cotten, Myriam L
  3. Journal of Biological Chemistry. 2018, Oct 5; 293(40): 15381-15396.
  1. 6.   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. 7.   Interleukin 4 induces the apoptosis of mouse microglial cells by a caspase-dependent mechanism
  2. Soria, J. A.; Arroyo, D. S.; Gaviglio, E. A.; Rodriguez-Galan, M. C.; Wang, J. M.; Iribarren, P.
  3. Neurobiology of Disease. 2011, Sep; 43(3): 616-624.
  1. 8.   Cutting Edge: A Critical Role for the G Protein-Coupled Receptor mFPR2 in Airway Inflammation and Immune Responses
  2. Chen, K. Q.; Le, Y. Y.; Liu, Y.; Gong, W. H.; Ying, G. G.; Huang, J.; Yoshimura, T.; Tessarollo, L.; Wang, J. M.
  3. Journal of Immunology. 2010, Apr; 184(7): 3331-3335.
  1. 9.   The G-protein-coupled formylpeptide receptor FPR confers a more invasive phenotype on human glioblastoma cells
  2. Huang, J.; Chen, K.; Chen, J.; Gong, W.; Dunlop, N. M.; Howard, O. M. Z.; Gao, Y.; Bian, X. W.; Wang, J. M.
  3. British Journal of Cancer. 2010, Mar 16; 102(6): 1052-1060.
  1. 10.   Synergy of TRIF-dependent TLR3 and MyD88-dependent TLR7 in up-regulating expression of mouse FPR2, a promiscuous G-protein-coupled receptor, in microglial cells
  2. Chen, K. Q.; Huang, J.; Liu, Y.; Gong, W. H.; Cui, Y. H.; Wang, J. M.
  3. Journal of Neuroimmunology. 2009 213(1-2): 69-77.
  1. 11.   Regulation of the leucocyte chemoattractant receptor FPR in glioblastoma cells by cell differentiation
  2. Huang, J.; Chen, K. Q.; Huang, J. Q.; Gong, W. H.; Dunlop, N. M.; Howard, O.; Bian, X. W.; Gao, Y. Q.; Wang, J. M.
  3. Carcinogenesis. 2009 30(2): 348-355.
  1. 12.   Glioblastoma stem cells produce vascular endothelial growth factor by activation of a G-protein coupled formylpeptide receptor FPR
  2. Yao, X. H.; Ping, Y. F.; Chen, J. H.; Xu, C. P.; Chen, D. L.; Zhang, R.; Wang, J. M.; Bian, X. W.
  3. Journal of Pathology. 2008 215(4): 369-376.
  1. 13.   A novel lipoxygenase inhibitor Nordy attenuates malignant human glioma cell responses to chemotactic and growth stimulating factors
  2. Chen, J. H.; Yao, X. H.; Gong, W.; Hu, J.; Zhou, X. D.; Chen, K.; Liu, H.; Ping, Y. F.; Wang, J. M.; Bian, X. W.
  3. Journal of Neuro-Oncology. 2007, Sep; 84(3): 223-231.
  1. 14.   Preferential expression of chemokine receptor CXCR4 by highly malignant human gliomas and its association with poor patient survival
  2. Bian, X. W.; Yang, S. X.; Chen, L. H.; Ping, Y. F.; Zhou, X. D.; Wang, Q. L.; Jiang, X. F.; Gong, W. H.; Xiao, H. L.; Du, L. L.; Chen, Z. Q.; Zhao, W.; Shi, L. Q.; Wang, J. M.
  3. Neurosurgery. 2007, Sep; 61(3): 570-578.
  1. 15.   Transactivation of the epidermal growth factor receptor by formylpeptide receptor exacerbates the malignant behavior of human glioblastoma cells
  2. Huang, J.; Hu, J. Y.; Bian, X. W.; Chen, K. Q.; Gong, W. H.; Dunlop, N. M.; Howard, O. M. Z.; Wang, J. M.
  3. Cancer Research. 2007, Jun; 67(12): 5906-5913.
  1. 16.   RNA interference as a novel and powerful tool in immunopharmacological research
  2. Kong, Y.; Ruan, L. F.; Ma, L. L.; Cui, Y. H.; Wang, J. M.; Le, Y. Y.
  3. International Immunopharmacology. 2007, Apr; 7(4): 417-426.
  1. 17.   IL-4 inhibits the expression of mouse formyl peptide receptor 2, a receptor for amyloid beta(1-42), in a TNF-alpha-Activated microglia
  2. Iribarren, P.; Chen, K. Q.; Hu, J. Y.; Zhang, X.; Gong, W. H.; Wang, J. M.
  3. Journal of Immunology. 2005, NOV 1; 175(9): 6100-6106.
  1. 18.   CpG-containing oligodeoxynucleotide promotes microglial cell uptake of amyloid beta 1-42 peptide by up-regulating the expression of the G-protein-coupled receptor mFPR2
  2. Iribarren, P.; Chen, K. Q.; Hu, J. Y.; Gong, W. H.; Cho, E. H.; Lockett, S.; Uranchimeg, B.; Wang, J. M.
  3. Faseb Journal. 2005, OCT; 19(12): Published as FJ Express article on October 11, 2005.
  1. 19.   ATP-regulated module (ARM) of the atrial natriuretic factor receptor guanylate cyclase
  2. Duda, T.; Venkataraman, V.; Ravichandran, S.; Sharma, R. K.
  3. Peptides. 2005, JUN; 26(6): 969-984.
  1. 20.   Formylpeptide receptor FPR and the rapid growth of malignant human gliomas
  2. Zhou, Y.; Bian, X. W.; Le, Y. Y.; Gong, W. H.; Hu, J. Y.; Zhang, X.; Wang, L. H.; Iribarren, P.; Salcedo, R.; Howard, O. M. Z.; Farrar, W.; Wang, J. M.
  3. Journal of the National Cancer Institute. 2005, JUN 1; 97(11): 823-835.
  1. 21.   Transduction of the gene coding for a human G-protein coupled receptor FPRL1 in mouse tumor cells increases host anti-tumor immunity
  2. Hu, J. Y.; Li, G. C.; Tong, Y. Q.; Li, Y. H.; Zhou, G. H.; He, X. J.; Xie, P. L.; Wang, J. M.; Sun, Q. B.
  3. International Immunopharmacology. 2005, JUN; 5(6): 971-980.
  1. 22.   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.
  1. 23.   Identification of functional domains in the formyl peptide receptor-like 1 for agonist-induced cell chemotaxis
  2. Le, Y. Y.; Ye, R. D.; Gong, W. H.; Li, J. X.; Iribarren, P.; Wang, J. M.
  3. Febs Journal. 2005, FEB; 272(3): 769-778.
  1. 24.   Role of formyl peptide receptor-like 1 (FPRL1/FPR2) in mononuclear phagocyte responses in Alzheimer disease
  2. Iribarren, P.; Zhou, Y.; Hu, J. Y.; Le, Y. Y.; Wang, J. M.
  3. Immunologic Research. 2005 31(3): 165-176.
  1. 25.   Silencing the formylpeptide receptor FPR by short-interfering RNA
  2. Le, Y. Y.; Iribarren, P.; Zhou, Y.; Gong, W. H.; Hu, J. Y.; Zhang, X.; Wang, J. M.
  3. Molecular Pharmacology. 2004, OCT; 66(4): 1022-1028.
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