phosphatidylcholines has been researched along with Pain in 11 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 3 (27.27) | 18.7374 |
1990's | 3 (27.27) | 18.2507 |
2000's | 1 (9.09) | 29.6817 |
2010's | 3 (27.27) | 24.3611 |
2020's | 1 (9.09) | 2.80 |
Authors | Studies |
---|---|
Kartha, S; Quindlen-Hotek, JC; Winkelstein, BA | 1 |
Blum, R; Brack, A; Filipovic, MR; Hill, K; Kistner, K; Kloka, J; Malcangio, M; Martin, C; Mayer, R; Mohammadi, M; Nieto, FR; Oehler, B; Pflücke, D; Reeh, PW; Rittner, HL; Sauer, RS; Schaefer, M; Schiller, J | 1 |
Natsheh, H; Touitou, E | 1 |
Blum, R; Brack, A; Kloka, J; Martin, C; Mohammadi, M; Oehler, B; Rittner, HL | 1 |
Chander, J; Changez, M; Dinda, AK | 1 |
Babl, J; Doenicke, AW; Kellermann, W; Rau, J; Roizen, MF | 1 |
Arnet, B; Doran, JE; Koster, F; Lerch, PG; Pajkrt, D; ten Cate, JW; van der Poll, T; van Deventer, SJ | 1 |
Cicero, MR; Fioravanti, A; Manopulo, R; Marcolongo, R; Nerucci, F | 1 |
Arshavskiĭ, IA; Rozanova, VD; Shaĭkemeleva, US | 1 |
Oster, KA; Ross, DJ | 1 |
Jaisle, F | 1 |
3 trial(s) available for phosphatidylcholines and Pain
Article | Year |
---|---|
Reducing pain during propofol injection: the role of the solvent.
Topics: Adsorption; Anesthesia, Intravenous; Anesthetics, Intravenous; Fat Emulsions, Intravenous; Glycerol; Hand; Humans; Injections, Intravenous; Pain; Pain Measurement; Patient Satisfaction; Phosphatidylcholines; Propofol; Single-Blind Method; Solvents; Soybean Oil; Triglycerides | 1996 |
Antiinflammatory effects of reconstituted high-density lipoprotein during human endotoxemia.
Topics: Adult; Antigens, CD; Apolipoprotein A-I; Cholesterol; Cross-Over Studies; Double-Blind Method; Endotoxemia; Endotoxins; Granulocytes; Humans; Inflammation; Infusions, Intravenous; Interleukin-6; Interleukin-8; Leukocyte Count; Lipopolysaccharides; Lipoproteins, HDL; Male; Monocytes; Nausea; Pain; Phosphatidylcholines; Placebos; Shivering; Time Factors; Tumor Necrosis Factor-alpha; Vomiting | 1996 |
Double-blind controlled clinical study of the efficacy and tolerability of diclofenac-N-(2-hydroxyethyl)-pyrrolidine lecithin gel compared with diclofenac-N-(2-hydroxyethyl)-pyrrolidine gel in patients with peri and extraarticular inflammatory diseases.
Topics: Adolescent; Adult; Aged; Aged, 80 and over; Anti-Inflammatory Agents, Non-Steroidal; Chemistry, Pharmaceutical; Diclofenac; Double-Blind Method; Edema; Female; Gels; Humans; Inflammation; Male; Middle Aged; Pain; Phosphatidylcholines; Rheumatic Diseases | 1999 |
8 other study(ies) available for phosphatidylcholines and Pain
Article | Year |
---|---|
Immediate inhibition of spinal secretory phospholipase A2 prevents the pain and elevated spinal neuronal hyperexcitability and neuroimmune regulatory genes that develop with nerve root compression.
Topics: Animals; Genes, Regulator; Injections, Spinal; Male; Nerve Compression Syndromes; Neuroimmunomodulation; Pain; Peripheral Nervous System Diseases; Phosphatidylcholines; Phospholipases A2, Secretory; Radiculopathy; Rats; Rats, Sprague-Dawley; Spinal Nerve Roots | 2020 |
Inflammatory pain control by blocking oxidized phospholipid-mediated TRP channel activation.
Topics: Animals; Antibodies, Monoclonal; Apolipoprotein A-I; Arthritis, Experimental; Calcium; Calcium Signaling; Collagen Type II; Female; Gene Expression; HEK293 Cells; Hindlimb; Humans; Hyperalgesia; Male; Nociception; Pain; Patch-Clamp Techniques; Phosphatidylcholines; Rats; Rats, Inbred Lew; Rats, Wistar; TRPA1 Cation Channel; TRPV Cation Channels | 2017 |
Phospholipid Magnesome-a nasal vesicular carrier for delivery of drugs to brain.
Topics: Administration, Intranasal; Alginates; Animals; Brain; Brain Chemistry; Disease Models, Animal; Drug Carriers; Drug Delivery Systems; Female; Glucuronic Acid; Hexuronic Acids; Hyperglycemia; Insulin; Mice; Oxytocin; Pain; Particle Size; Phosphatidylcholines; Rats | 2018 |
Antinociception by the anti-oxidized phospholipid antibody E06.
Topics: Aldehydes; Analgesics; Animals; Anti-Inflammatory Agents; Antibodies, Monoclonal; Autoantibodies; Capsaicin; Ganglia, Spinal; HEK293 Cells; Humans; Hyperalgesia; Irritants; Isothiocyanates; Male; Mice; Mice, Inbred C57BL; Neurons; Oxidation-Reduction; Pain; Phosphatidylcholines; Rats, Wistar; TRPA1 Cation Channel; TRPV Cation Channels | 2018 |
Transdermal permeation of tetracaine hydrochloride by lecithin microemulsion: in vivo.
Topics: 1-Propanol; Administration, Cutaneous; Anesthetics, Local; Animals; Catalase; Drug Carriers; Emulsions; Lipid Peroxidation; Male; Malondialdehyde; Mice; Microscopy, Confocal; Myristates; Pain; Permeability; Phosphatidylcholines; Proteins; Rats; Rats, Wistar; Skin; Skin Irritancy Tests; Solvents; Subcellular Fractions; Tetracaine; Water | 2006 |
[Correlation between cholesterol and lecithin in the blood and muscles and physiologic indices in rats developing in various stress states].
Topics: Acetylcholinesterase; Age Factors; Animals; Cholesterol; Female; Growth; Heart Rate; Muscles; Oxygen Consumption; Pain; Phosphatidylcholines; Rats; Stress, Physiological | 1979 |
An enzyme mechanism in explanation of pain in angina pectoris.
Topics: Angina Pectoris; Animals; Bees; Enzyme Activation; Epinephrine; Humans; Nitroglycerin; Norepinephrine; Pain; Phosphatidylcholines; Phospholipases; Propranolol; Venoms | 1975 |
[Effects and side-effects of lipid and phospatide infusions at the end of gravidity].
Topics: Adult; Animals; Cottonseed Oil; Emulsions; Female; Gestational Age; Humans; Infusions, Parenteral; Lipids; Oils; Pain; Phlebitis; Phosphatidylcholines; Phospholipids; Pregnancy; Pregnancy, Animal; Sorbitol | 1967 |