Delayed acetyl-L-carnitine administration and its effect on sensory neuronal rescue after peripheral nerve injury.
暂无分享,去创建一个
Mikael Wiberg | Giorgio Terenghi | M. Wiberg | G. Terenghi | Thomas Brännström | Andrew Hart | Andrew D H Wilson | A. Hart | Andrew D. H. Wilson | T. Brännström
[1] T. Gordon,et al. The cellular and molecular basis of peripheral nerve regeneration , 1997, Molecular Neurobiology.
[2] G. Terenghi,et al. Frozen-section fluorescence microscopy and stereology in the quantification of neuronal death within dorsal root ganglia , 2004, Journal of Molecular Histology.
[3] M. Youle,et al. Acetyl-l-carnitine: a pathogenesis based treatment for HIV-associated antiretroviral toxic neuropathy , 2004, AIDS.
[4] T. Shea,et al. Acetyl-l-Carnitine Protects Against Amyloid-Beta Neurotoxicity: Roles of Oxidative Buffering and ATP Levels , 2002, Neurochemical Research.
[5] P. Mecocci,et al. Pharmacokinetics of IV and oral acetyl-L-carnitine in a multiple dose regimen in patients with senile dementia of Alzheimer type , 2004, European Journal of Clinical Pharmacology.
[6] M. Wiberg,et al. Primary sensory neuronal rescue with systemic acetyl-L-carnitine following peripheral axotomy. A dose-response analysis. , 2003, British journal of plastic surgery.
[7] E. Nordh,et al. SENSORY RECOVERY AFTER HAND REIMPLANTATION: A CLINICAL, MORPHOLOGICAL, AND NEUROPHYSIOLOGICAL STUDY IN HUMANS , 2003, Scandinavian journal of plastic and reconstructive surgery and hand surgery.
[8] M. Wiberg,et al. Pharmacological enhancement of peripheral nerve regeneration in the rat by systemic acetyl-L-carnitine treatment , 2002, Neuroscience Letters.
[9] M. Wiberg,et al. Systemic acetyl-l-carnitine eliminates sensory neuronal loss after peripheral axotomy: a new clinical approach in the management of peripheral nerve trauma , 2002, Experimental Brain Research.
[10] James C Bartholomew,et al. Feeding acetyl-l-carnitine and lipoic acid to old rats significantly improves metabolic function while decreasing oxidative stress , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[11] D. Grandis,et al. Acetyl-L-Carnitine (Levacecarnine) in the Treatment of Diabetic Neuropathy , 2002 .
[12] Mark J West,et al. Design-based stereological methods for counting neurons. , 2002, Progress in brain research.
[13] M. Wiberg,et al. Primary sensory neurons and satellite cells after peripheral axotomy in the adult rat , 2002, Experimental Brain Research.
[14] Mark J. West,et al. Stereological methods for estimating the total number of neurons and synapses: issues of precision and bias , 1999, Trends in Neurosciences.
[15] G. Terenghi,et al. Peripheral nerve regeneration and neurotrophic factors , 1999, Journal of anatomy.
[16] P. Harris,et al. Hand Lacerations , 1998, Journal of hand surgery.
[17] D. Grandis. Tolerability and Efficacy of L-Acetylcarnitine in Patients with Peripheral Neuropathies , 1998, Clinical drug investigation.
[18] A. Fattorossi,et al. Protective actions of L-carnitine and acetyl-L-carnitine on the neurotoxicity evoked by mitochondrial uncoupling or inhibitors. , 1995, Pharmacological research.
[19] L. Santoro,et al. L-Acetylcarnitine in the Treatment of Patients with Peripheral Neuropathies , 1995, Clinical drug investigation.
[20] F. Tomasello,et al. L-acetylcarnitine as a new therapeutic approach for peripheral neuropathies with pain. , 1995, International journal of clinical pharmacology research.
[21] G. Lundborg,et al. Trophism, Tropism and Specificity in Nerve Regeneration , 1994, Journal of reconstructive microsurgery.
[22] J. Nicholl,et al. Audit of emergency throughput in a regional plastic surgery unit. , 1994, Annals of the Royal College of Surgeons of England.
[23] V. Vullo,et al. High dose L-carnitine improves immunologic and metabolic parameters in AIDS patients. , 1993, Immunopharmacology and immunotoxicology.
[24] G. Forloni,et al. Culture of dorsal root ganglion neurons from aged rats: Effects of acetyl-l-carnitine and NGF , 1992, International Journal of Developmental Neuroscience.
[25] S. Sorbi,et al. Protection from oxygen radical damage in human diploid fibroblasts by acetyl-L-carnitine , 1992 .
[26] D. De Grandis,et al. Idiopathic facial paralysis: new therapeutic prospects with acetyl-L-carnitine. , 1992, International journal of clinical pharmacology research.
[27] M. Alberoni,et al. Long‐term acetyl‐L‐carnitine treatment in Alzheimer's disease , 1991, Neurology.
[28] J. Swett,et al. Sensory neurons of the rat sciatic nerve , 1991, Experimental Neurology.
[29] G. Taglialatela,et al. Acetyl-L-carnitine enhances the response of PC12 cells to nerve growth factor. , 1991, Brain research. Developmental brain research.
[30] Richard E. Coggeshall,et al. Calibration of methods for determining numbers of dorsal root ganglion cells , 1990, Journal of Neuroscience Methods.
[31] J. Bremer. The role of carnitine in intracellular metabolism. , 1990, Journal of clinical chemistry and clinical biochemistry. Zeitschrift fur klinische Chemie und klinische Biochemie.
[32] J. Ygge. Neuronal loss in lumbar dorsal root ganglia after proximal compared to distal sciatic nerve resection: a quantitative study in the rat , 1989, Brain Research.
[33] A. Seaber,et al. Experimental nerve reconnection: Importance of initial repair , 1989, Microsurgery.
[34] R. Gandour,et al. Carnitine acetyltransferase: A review of its biology, enzymology, and bioorganic chemistry , 1988 .
[35] C. Hulsebosch,et al. Nerve growth factor binding in aged rat central nervous system: Effect of acetyl‐l‐carnitine , 1988, Journal of neuroscience research.
[36] H. J. G. Gundersen,et al. The new stereological tools: Disector, fractionator, nucleator and point sampled intercepts and their use in pathological research and diagnosis , 1988, APMIS : acta pathologica, microbiologica, et immunologica Scandinavica.
[37] H. J. G. GUNDERSEN,et al. Some new, simple and efficient stereological methods and their use in pathological research and diagnosis , 1988, APMIS : acta pathologica, microbiologica, et immunologica Scandinavica.
[38] P. Singer,et al. Glucose and leucine uptake in the hypoglossal nucleus after hypoglossal nerve transection with and without prevented regeneration in the Sprague-Dawley rat , 1986, Neuroscience Letters.