An industry perspective on the role and utility of animal models of pain in drug discovery
暂无分享,去创建一个
[1] D. Lee,et al. Gabapentin for the Treatment of Postherpetic Neuralgia , 1999 .
[2] David Cella,et al. Interpreting the clinical importance of treatment outcomes in chronic pain clinical trials: IMMPACT recommendations. , 2008, The journal of pain : official journal of the American Pain Society.
[3] M. Danhof,et al. Translation of drug effects from experimental models of neuropathic pain and analgesia to humans. , 2012, Drug discovery today.
[4] M. Rowbotham,et al. Gabapentin for the treatment of postherpetic neuralgia: a randomized controlled trial. , 1998, JAMA.
[5] R Hill,et al. NK1 (substance P) receptor antagonists--why are they not analgesic in humans? , 2000, Trends in pharmacological sciences.
[6] A. Rice,et al. A clinically relevant rodent model of the HIV antiretroviral drug stavudine induced painful peripheral neuropathy , 2013, PAIN.
[7] T. Smart,et al. An efficient randomised, placebo-controlled clinical trial with the irreversible fatty acid amide hydrolase-1 inhibitor PF-04457845, which modulates endocannabinoids but fails to induce effective analgesia in patients with pain due to osteoarthritis of the knee , 2012, PAIN®.
[8] Glenn W. Stevenson,et al. Targeting pain-depressed behaviors in preclinical assays of pain and analgesia: drug effects on acetic acid-depressed locomotor activity in ICR mice. , 2009, Life sciences.
[9] Gillian L. Currie,et al. Transparency in the reporting of in vivo pre-clinical pain research: The relevance and implications of the ARRIVE (Animal Research: Reporting In Vivo Experiments) guidelines , 2013, Scandinavian journal of pain.
[10] J. Ioannidis. Why Most Published Research Findings Are False , 2005, PLoS medicine.
[11] D. Borsook,et al. Preclinical Assessment of Candidate Analgesic Drugs: Recent Advances and Future Challenges , 2006, Journal of Pharmacology and Experimental Therapeutics.
[12] G. Higgins,et al. A back translation of pregabalin and carbamazepine against evoked and non-evoked endpoints in the rat spared nerve injury model of neuropathic pain , 2013, Neuropharmacology.
[13] S. Tufik,et al. Sleep pattern in an experimental model of osteoarthritis , 2008, PAIN.
[14] W. Carlezon,et al. Effects of pain- and analgesia-related manipulations on intracranial self-stimulation in rats: Further studies on pain-depressed behavior , 2009, PAIN®.
[15] J. Vry,et al. Differential effects of morphine on the affective and the sensory component of carrageenan-induced nociception in the rat , 2008, PAIN.
[16] J. Arrowsmith. Trial watch: Phase II failures: 2008–2010 , 2011, Nature Reviews Drug Discovery.
[17] P. Lu,et al. The persistence of a long-term negative affective state following the induction of either acute or chronic pain , 2008, PAIN.
[18] I. Kola,et al. Can the pharmaceutical industry reduce attrition rates? , 2004, Nature Reviews Drug Discovery.
[19] K. Craig,et al. Coding of facial expressions of pain in the laboratory mouse , 2010, Nature Methods.
[20] J. Schouenborg,et al. Nociceptive Transmission to Rat Primary Somatosensory Cortex – Comparison of Sedative and Analgesic Effects , 2013, PloS one.
[21] D. Howells,et al. Can Animal Models of Disease Reliably Inform Human Studies? , 2010, PLoS medicine.
[22] M. Jarvis,et al. Disturbances in slow-wave sleep are induced by models of bilateral inflammation, neuropathic, and postoperative pain, but not osteoarthritic pain in rats , 2013, PAIN®.
[23] D. Howells,et al. Publication Bias in Reports of Animal Stroke Studies Leads to Major Overstatement of Efficacy , 2010, PLoS biology.
[24] A. Pande,et al. Analgesic Efficacy of the κ-Receptor Agonist, Enadoline, in Dental Surgery Pain , 1996 .
[25] M. Danhof,et al. Differences in the sensitivity of behavioural measures of pain to the selectivity of cyclo‐oxygenase inhibitors , 2009, European journal of pain.
[26] Mark J. Rose,et al. Pharmacological blockade of the vanilloid receptor TRPV1 elicits marked hyperthermia in humans , 2008, PAIN.
[27] G. Blackburn-Munro,et al. Pain-like behaviours in animals - how human are they? , 2004, Trends in pharmacological sciences.
[28] L. Blackshaw. Visceral pain readouts in experimental medicine , 2012, Neurogastroenterology and motility : the official journal of the European Gastrointestinal Motility Society.
[29] R. Baron,et al. Subgrouping of patients with neuropathic pain according to pain-related sensory abnormalities: a first step to a stratified treatment approach , 2012, The Lancet Neurology.
[30] Jörn Lötsch,et al. Clinical pharmacology of analgesics assessed with human experimental pain models: bridging basic and clinical research , 2013, British journal of pharmacology.
[31] Louis P. Vera-Portocarrero,et al. Unmasking the tonic-aversive state in neuropathic pain , 2009, Nature Neuroscience.
[32] L. Leventhal,et al. Predictive validity of animal pain models? A comparison of the pharmacokinetic–pharmacodynamic relationship for pain drugs in rats and humans , 2008, Neuropharmacology.
[33] J. Coyne,et al. Ability of the canine brief pain inventory to detect response to treatment in dogs with osteoarthritis. , 2008, Journal of the American Veterinary Medical Association.
[34] K. Sufka. Conditioned place preference paradigm: a novel approach for analgesic drug assessment against chronic pain , 1994, Pain.
[35] C. Vierck,et al. Clinical and pre-clinical pain assessment: Are we measuring the same thing? , 2008, PAIN®.
[36] J. Innes,et al. Evaluation of Construct and Criterion Validity for the ‘Liverpool Osteoarthritis in Dogs’ (LOAD) Clinical Metrology Instrument and Comparison to Two Other Instruments , 2013, PloS one.
[37] L. Leventhal,et al. Abnormal gait, due to inflammation but not nerve injury, reflects enhanced nociception in preclinical pain models , 2009, Brain Research.
[38] Jacques P. Brown,et al. A Double‐blind, Randomized, Placebo‐controlled Study of the Efficacy and Safety of Duloxetine for the Treatment of Chronic Pain Due to Osteoarthritis of the Knee , 2011, Pain practice : the official journal of World Institute of Pain.
[39] Andrew S.C. Rice,et al. Animal models and the prediction of efficacy in clinical trials of analgesic drugs: A critical appraisal and call for uniform reporting standards , 2008, PAIN.
[40] F. Prinz,et al. Believe it or not: how much can we rely on published data on potential drug targets? , 2011, Nature Reviews Drug Discovery.
[41] A. Pande,et al. Analgesic efficacy of the kappa-receptor agonist, enadoline, in dental surgery pain. , 1996, Clinical neuropharmacology.
[42] J. Mogil. Animal models of pain: progress and challenges , 2009, Nature Reviews Neuroscience.
[43] L. Webster,et al. TRPV1 antagonistic analgesic effect: A randomized study of AZD1386 in pain after third molar extraction , 2013, PAIN®.
[44] A. Rice,et al. Spontaneous burrowing behaviour in the rat is reduced by peripheral nerve injury or inflammation associated pain , 2012, European journal of pain.
[45] P. Honore,et al. Animal models of pain for drug discovery , 2006, Expert opinion on drug discovery.
[46] J. Farrar,et al. Clinical importance of changes in chronic pain intensity measured on an 11-point numerical pain rating scale , 2001, PAIN.
[47] Jianren Mao,et al. Current challenges in translational pain research. , 2012, Trends in pharmacological sciences.