1,697 results on '"FitzGerald, Garret A"'
Search Results
352. The Cardiovascular Pharmacology of Nonsteroidal Anti-Inflammatory Drugs
353. Origins of the Anaerobic Gut Lumen: Microbes vs. Chemistry
354. Time for nonaddictive relief of pain
355. Imprecision
356. Editorial: Streaming inflammation: From damage to healing and resilience–Volume II.
357. Simulation-based comprehensive benchmarking of RNA-seq aligners
358. Dietary factors in thrombosis and hemostasis: summary and conclusions
359. Parsing an enigma: the pharmacodynamics of aspirin resistance. (Commentary)
360. Time-Dependent Hypotensive Effect of Aspirin in Mice.
361. Need for new IP approaches to facilitate collaborative (Academic-Industrial) drug development.
362. Designer high-density lipoprotein particles enhance endothelial barrier function and suppress inflammation
363. Vitamin E Supplementation in Healthy Persons
364. Acceleration of atherogenesis by COX-1-dependent prostanoid formation in low density lipoprotein receptor knockout mice
365. Immunotargeting of glucose oxidase to endothelium in vivo causes oxidative vascular injury in the lungs
366. Quantitative high performance liquid chromatography/tandem mass spectrometric analysis of the four classes of [F.sub.2]-isoprostanes in human urine
367. COX inhibition abrogates aeroallergen-induced immune tolerance by suppressing PGI2 IP signaling
368. Causal Effects of Body Mass Index on Cardiometabolic Traits and Events: A Mendelian Randomization Analysis
369. A broad-spectrum lipidomics screen of antiinflammatory drug combinations in human blood
370. Cardiovascular Consequences of Prostanoid I Receptor Deletion in Microsomal Prostaglandin E Synthase-1–Deficient Hyperlipidemic Mice
371. Measure for Measure: Biomarker standards and transparency
372. Human Platelet Lipidomics: Variance, Visualization, Flux, and Fuel
373. Conflict or Confluence of Interest?—Reply
374. Aspirin prevents colorectal cancer metastasis in mice by splitting the crosstalk between platelets and tumor cells
375. Pharmacological Perturbations of Eicosanoids in vitro and ex vivo in a Novel, Broad‐spectrum, Plasma Lipidomics Assay
376. Distinct vascular effects of celecoxib and rofecoxib in vivo
377. Timing of expression of the core clock gene Bmal1 influences its effects on aging and survival
378. Bidirectional interactions between indomethacin and the murine intestinal microbiota
379. Author response: Bidirectional interactions between indomethacin and the murine intestinal microbiota
380. Effects of thromboxane synthase inhibitors on renal function
381. Drug Resistance and Pseudoresistance
382. Differential compensation of two cyclooxygenases in renal homeostasis is independent of prostaglandin-synthetic capacity under basal conditions.
383. Protective Role of mPGES-1 (Microsomal Prostaglandin E Synthase-1)–Derived PGE2 (Prostaglandin E2) and the Endothelial EP4 (Prostaglandin E Receptor) in Vascular Responses to Injury.
384. Niacin and biosynthesis of PGD₂ by platelet COX-1 in mice and humans
385. Reflections on an Anniversary Albert McDonnell
386. Abstract 14122: Myeloid Cell mPGES-1 Depletion Attenuates Mortality After Myocardial Infarction in Mice
387. Confluence, Not Conflict of Interest
388. Personalization in practice
389. Bioactive products formed in humans from fish oils
390. Rhythmicity of the intestinal microbiota is regulated by gender and the host circadian clock
391. PharmGKB summary
392. Abstract 469: mPGES1 deletion and the mechanisms of tumor growth suppression
393. Targeted Deletions of COX-2 and Atherogenesis in Mice
394. Bringing PGE 2 in from the cold
395. Circadian control of innate immunity in macrophages by miR-155 targeting Bmal1
396. Abstract 238: Distinct Vascular Effects of Celecoxib and Rofecoxib in vivo
397. Abstract 682: Pharmacological Inhibition of COX and LOX Pathways Leads to Substrate Rediversion: A Novel Plasma Lipidomics Assay to Screen Drugs in Human Blood
398. Understanding multicellular function and disease with human tissue-specific networks
399. Evolution in translational science: Whither the CTSAs?
400. Circadian clocks and vascular function: Paschos Circadian clocks and vascular function
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