日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Anti-neutrophil cytoplasmic antibody-positive vasculitis presenting with periaortitis and muscle vasculitis in a patient with chronic Chagas disease: comment on the letter by Garcia-Bustos et al

慢性恰加斯病患者出现抗中性粒细胞胞浆抗体阳性血管炎,表现为主动脉周围炎和肌肉血管炎:对 Garcia-Bustos 等人来信的评论

Roffe, E; Murphy, P M

CXCR1 Regulates Pulmonary Anti-Pseudomonas Host Defense

CXCR1 调控肺部抗铜绿假单胞菌宿主防御

Carevic, M; Öz, H; Fuchs, K; Laval, J; Schroth, C; Frey, N; Hector, A; Bilich, T; Haug, M; Schmidt, A; Autenrieth, S E; Bucher, K; Beer-Hammer, S; Gaggar, A; Kneilling, M; Benarafa, C; Gao, J L; Murphy, P M; Schwarz, S; Moepps, B; Hartl, D

The Concise Guide to PHARMACOLOGY 2013/14: overview

《简明药理学指南 2013/14》:概述

Alexander, Stephen P H; Benson, Helen E; Faccenda, Elena; Pawson, Adam J; Sharman, Joanna L; McGrath, John C; Catterall, William A; Spedding, Michael; Peters, John A; Harmar, Anthony J; Abul-Hasn, N; Anderson, C M; Anderson, C M H; Araiksinen, M S; Arita, M; Arthofer, E; Barker, E L; Barratt, C; Barnes, N M; Bathgate, R; Beart, P M; Belelli, D; Bennett, A J; Birdsall, N J M; Boison, D; Bonner, T I; Brailsford, L; Bröer, S; Brown, P; Calo, G; Carter, W G; Catterall, W A; Chan, S L F; Chao, M V; Chiang, N; Christopoulos, A; Chun, J J; Cidlowski, J; Clapham, D E; Cockcroft, S; Connor, M A; Cox, H M; Cuthbert, A; Dautzenberg, F M; Davenport, A P; Dawson, P A; Dent, G; Dijksterhuis, J P; Dollery, C T; Dolphin, A C; Donowitz, M; Dubocovich, M L; Eiden, L; Eidne, K; Evans, B A; Fabbro, D; Fahlke, C; Farndale, R; Fitzgerald, G A; Fong, T M; Fowler, C J; Fry, J R; Funk, C D; Futerman, A H; Ganapathy, V; Gaisnier, B; Gershengorn, M A; Goldin, A; Goldman, I D; Gundlach, A L; Hagenbuch, B; Hales, T G; Hammond, J R; Hamon, M; Hancox, J C; Hauger, R L; Hay, D L; Hobbs, A J; Hollenberg, M D; Holliday, N D; Hoyer, D; Hynes, N A; Inui, K-I; Ishii, S; Jacobson, K A; Jarvis, G E; Jarvis, M F; Jensen, R; Jones, C E; Jones, R L; Kaibuchi, K; Kanai, Y; Kennedy, C; Kerr, I D; Khan, A A; Klienz, M J; Kukkonen, J P; Lapoint, J Y; Leurs, R; Lingueglia, E; Lippiat, J; Lolait, S J; Lummis, S C R; Lynch, J W; MacEwan, D; Maguire, J J; Marshall, I L; May, J M; McArdle, C A; McGrath, J C; Michel, M C; Millar, N S; Miller, L J; Mitolo, V; Monk, P N; Moore, P K; Moorhouse, A J; Mouillac, B; Murphy, P M; Neubig, R R; Neumaier, J; Niesler, B; Obaidat, A; Offermanns, S; Ohlstein, E; Panaro, M A; Parsons, S; Pwrtwee, R G; Petersen, J; Pin, J-P; Poyner, D R; Prigent, S; Prossnitz, E R; Pyne, N J; Pyne, S; Quigley, J G; Ramachandran, R; Richelson, E L; Roberts, R E; Roskoski, R; Ross, R A; Roth, M; Rudnick, G; Ryan, R M; Said, S I; Schild, L; Sanger, G J; Scholich, K; Schousboe, A; Schulte, G; Schulz, S; Serhan, C N; Sexton, P M; Sibley, D R; Siegel, J M; Singh, G; Sitsapesan, R; Smart, T G; Smith, D M; Soga, T; Stahl, A; Stewart, G; Stoddart, L A; Summers, R J; Thorens, B; Thwaites, D T; Toll, L; Traynor, J R; Usdin, T B; Vandenberg, R J; Villalon, C; Vore, M; Waldman, S A; Ward, D T; Willars, G B; Wonnacott, S J; Wright, E; Ye, R D; Yonezawa, A; Zimmermann, M

Involvement of the receptor for formylated peptides in the in vivo anti-migratory actions of annexin 1 and its mimetics

甲酰化肽受体参与膜联蛋白1及其类似物的体内抗迁移作用

Perretti, M; Getting, S J; Solito, E; Murphy, P M; Gao, J L

Viral antichemokines: from pathogenesis to drug discovery

病毒抗趋化因子:从发病机制到药物发现

Murphy, P M

Resistance to replication of human immunodeficiency virus challenge in SCID-Hu mice engrafted with peripheral blood mononuclear cells of nonprogressors is mediated by CD8(+) T cells and associated with a proliferative response to p24 antigen.

在移植了非进展者外周血单核细胞的 SCID-Hu 小鼠中,对人类免疫缺陷病毒攻击的复制的抵抗力是由 CD8(+) T 细胞介导的,并且与对 p24 抗原的增殖反应有关

de Quiros J C, Shupert W L, McNeil A C, Gea-Banacloche J C, Flanigan M, Savage A, Martino L, Weiskopf E E, Imamichi H, Zhang Y M, Adelsburger J, Stevens R, Murphy P M, Zimmerman P A, Hallahan C W, Davey R T Jr, Connors M

CCR8 on human thymocytes functions as a human immunodeficiency virus type 1 coreceptor.

人类胸腺细胞上的 CCR8 可作为人类免疫缺陷病毒 1 型辅助受体发挥作用

Lee S, Tiffany H L, King L, Murphy P M, Golding H, Zaitseva M B

Use of hydrostatic pressure for inactivation of microbial contaminants in cheese

利用静水压力灭活奶酪中的微生物污染物

O'Reilly, C E; O'Connor, P M; Kelly, A L; Beresford, T P; Murphy, P M

N-formylpeptides induce two distinct concentration optima for mouse neutrophil chemotaxis by differential interaction with two N-formylpeptide receptor (FPR) subtypes. Molecular characterization of FPR2, a second mouse neutrophil FPR

N-甲酰肽通过与两种N-甲酰肽受体(FPR)亚型的差异性相互作用,诱导小鼠中性粒细胞趋化作用的两个不同的浓度最适值。本文对第二种小鼠中性粒细胞FPR——FPR2进行了分子表征。

Hartt, J K; Barish, G; Murphy, P M; Gao, J L

Impaired antibacterial host defense in mice lacking the N-formylpeptide receptor

缺乏N-甲酰肽受体的小鼠抗菌宿主防御能力受损

Gao, J L; Lee, E J; Murphy, P M