The Effect of Minocycline on Motor Neuron Recovery and Neuropathic Pain in a Rat Model of Spinal Cord Injury.
Dong Charn Cho, Jin Hwan Cheong, Moon Sul Yang, Se Jin Hwang, Jae Min Kim, Choong Hyun Kim
J Korean Neurosurg Soc. 2011;49(2):83-91.     DOI: https://doi.org/10.3340/jkns.2011.49.2.83
Citations to this article as recorded by Crossref logo
Intrathecal minocycline does not block the adverse effects of repeated, intravenous morphine administration on recovery of function after SCI
Josephina Rau, Lara Weise, Robbie Moore, Mabel Terminel, Kiralyn Brakel, Rachel Cunningham, Jessica Bryan, Alexander Stefanov, Michelle A. Hook
Experimental Neurology.2023; 359: 114255.     CrossRef
Insights into the roles of bacterial infection and antibiotics in Parkinson’s disease
Shuo Sheng, Shuo Zhao, Feng Zhang
Frontiers in Cellular and Infection Microbiology.2022;[Epub]     CrossRef
Sumatriptan improves the locomotor activity and neuropathic pain by modulating neuroinflammation in rat model of spinal cord injury
Khashayar Afshari, Amir Dehdashtian, Nazgol-Sadat Haddad, Seyedeh Zarifeh Jazaeri, Daniel C. Ursu, Mina Khalilzadeh, Arvin Haj-Mirzaian, Saeed Shakiba, Terry C Burns, Seyed Mohammad Tavangar, Mehdi Ghasemi, Ahmad Reza Dehpour
Neurological Research.2021; 43(1): 29.     CrossRef
Antibiotics with therapeutic effects on spinal cord injury: a review
Khashayar Afshari, Nazanin Momeni Roudsari, Naser‐Aldin Lashgari, Nazgol‐Sadat Haddadi, Arvin Haj‐Mirzaian, Malihe Hassan Nejad, Hamed Shafaroodi, Mehdi Ghasemi, Ahmad Reza Dehpour, Amir Hossein Abdolghaffari
Fundamental & Clinical Pharmacology.2021; 35(2): 277.     CrossRef
The gut-brain axis and beyond: Microbiome control of spinal cord injury pain in humans and rodents
Courtney A. Bannerman, Katya Douchant, Prameet M. Sheth, Nader Ghasemlou
Neurobiology of Pain.2021; 9: 100059.     CrossRef
Co-delivery of minocycline and paclitaxel from injectable hydrogel for treatment of spinal cord injury
Zahra Nazemi, Mohammad Sadegh Nourbakhsh, Sahar Kiani, Yasaman Heydari, Mohammad Kazemi Ashtiani, Hamed Daemi, Hossein Baharvand
Journal of Controlled Release.2020; 321: 145.     CrossRef
Minocycline Before Aortic Occlusion Reduces Hindlimb Motor Impairment, Attenuates Spinal Cord Damage and Spinal Astrocytosis, and Preserve Neuronal Cytoarchitecture in the Rat
Benjamin Drenger, Thomas J.J. Blanck, Boris Piskoun, E. Jaffrey, Esperanza Recio-Pinto, Alexandra Sideris
Journal of Cardiothoracic and Vascular Anesthesia.2019; 33(4): 1003.     CrossRef
Spontaneous and Stimulus-Evoked Respiratory Rate Elevation Corresponds to Development of Allodynia in Spinal Cord–Injured Rats
Donald J. Noble, Karmarcha K. Martin, Shangrila Parvin, Sandra M. Garraway
Journal of Neurotrauma.2019; 36(12): 1909.     CrossRef
Postirradiation Necrosis after Slow Microvascular Breakdown in the Adult Rat Spinal Cord is Delayed by Minocycline Treatment
Karen L. Lankford, Edgardo J. Arroyo, Jeffery D. Kocsis
Radiation Research.2018; 190(2): 151.     CrossRef
Minocycline Reduces the Severity of Autonomic Dysreflexia after Experimental Spinal Cord Injury
Jordan W. Squair, Ian Ruiz, Aaron A. Phillips, Mei M.Z. Zheng, Zoe K. Sarafis, Rahul Sachdeva, Rayshad Gopaul, Jie Liu, Wolfram Tetzlaff, Christopher R. West, Andrei V. Krassioukov
Journal of Neurotrauma.2018; 35(24): 2861.     CrossRef
Tetracycline repurposing in neurodegeneration: focus on Parkinson’s disease
Mariza Bortolanza, Glauce C. Nascimento, Sergio B. Socias, Diego Ploper, Rosana N. Chehín, Rita Raisman-Vozari, Elaine Del-Bel
Journal of Neural Transmission.2018; 125(10): 1403.     CrossRef
Effectiveness of minocycline and FK506 alone and in combination on enhanced behavioral and biochemical recovery from spinal cord injury in rats
Mohammad Ahmad, Abdulrahim Zakaria, Khalid M. Almutairi
Pharmacology Biochemistry and Behavior.2016; 145: 45.     CrossRef
Investigational drugs for the treatment of spinal cord injury: review of preclinical studies and evaluation of clinical trials from Phase I to II
Narihito Nagoshi, Michael G Fehlings
Expert Opinion on Investigational Drugs.2015; 24(5): 645.     CrossRef
Protective effects of minocycline on experimental spinal cord injury in rats
Mustafa Aras, Murat Altas, Sedat Motor, Recep Dokuyucu, Atilla Yilmaz, Erkin Ozgiray, Yurdal Seraslan, Nebi Yilmaz
Injury.2015; 46(8): 1471.     CrossRef
Recent advances in the pharmacologic treatment of spinal cord injury
April Cox, Abhay Varma, Naren Banik
Metabolic Brain Disease.2015; 30(2): 473.     CrossRef
Persistent At-Level Thermal Hyperalgesia and Tactile Allodynia Accompany Chronic Neuronal and Astrocyte Activation in Superficial Dorsal Horn following Mouse Cervical Contusion Spinal Cord Injury
Jaime L. Watson, Tamara J. Hala, Rajarshi Putatunda, Daniel Sannie, Angelo C. Lepore, Guglielmo Foffani
PLoS ONE.2014; 9(9): e109099.     CrossRef
The Effects of Minocycline or Riluzole Treatment on Spinal Root Avulsion–Induced Pain in Adult Rats
Daniel J. Chew, Thomas Carlstedt, Peter J. Shortland
The Journal of Pain.2014; 15(6): 664.     CrossRef
Remote Neurodegeneration: Multiple Actors for One Play
Maria Teresa Viscomi, Marco Molinari
Molecular Neurobiology.2014; 50(2): 368.     CrossRef
Prolonged Minocycline Treatment Impairs Motor Neuronal Survival and Glial Function in Organotypic Rat Spinal Cord Cultures
Josephine Pinkernelle, Hisham Fansa, Uwe Ebmeyer, Gerburg Keilhoff, Theodore John Price
PLoS ONE.2013; 8(8): e73422.     CrossRef
Minocycline: far beyond an antibiotic
N Garrido‐Mesa, A Zarzuelo, J Gálvez
British Journal of Pharmacology.2013; 169(2): 337.     CrossRef
Opioid administration following spinal cord injury: Implications for pain and locomotor recovery
Sarah A. Woller, Michelle A. Hook
Experimental Neurology.2013; 247: 328.     CrossRef
What is behind the non-antibiotic properties of minocycline?
N. Garrido-Mesa, A. Zarzuelo, J. Gálvez
Pharmacological Research.2013; 67(1): 18.     CrossRef
Effects of magnetic nanoparticle‐incorporated human bone marrow–derived mesenchymal stem cells exposed to pulsed electromagnetic fields on injured rat spinal cord
Hyunjin Cho, Yun‐Kyong Choi, Dong Heon Lee, Hee Jung Park, Young‐Kwon Seo, Hyun Jung, Soo‐Chan Kim, Sung‐Min Kim, Jung‐Keug Park
Biotechnology and Applied Biochemistry.2013; 60(6): 596.     CrossRef
Diagnóstico y tratamiento farmacológico del dolor neuropático del lesionado medular: del laboratorio a la clínica
Xavier Xifró, Teresa Puig, Pere Boadas-Vaello
Medicina Clínica.2013; 140(4): 175.     CrossRef
SEPARATION DIFFERENCES AMONG PHENYL HYDRIDE, UDC CHOLESTEROL, AND BIDENTATE C8 STATIONARY PHASES FOR STABILITY INDICATING METHODS OF TETRACYCLINES
Joshua E. Young, Maria T. Matyska, Anil K. Azad, Sergio E. Yoc, Joseph J. Pesek
Journal of Liquid Chromatography & Related Technologies.2013; 36(7): 926.     CrossRef
Toll-Like Receptor 4–Dependent Microglial Activation Mediates Spinal Cord Ischemia–Reperfusion Injury
Marshall T. Bell, Ferenc Puskas, Viktor A. Agoston, Joseph C. Cleveland, Kirsten A. Freeman, Fabia Gamboni, Paco S. Herson, Xianzhong Meng, Phillip D. Smith, Michael J. Weyant, David A. Fullerton, T. Brett Reece
Circulation.2013;[Epub]     CrossRef
Pain‐ameliorating effects of minocycline: An emerging treatment modality
Shailendra Kapoor
Journal of Neuroscience Research.2013; 91(1): 1.     CrossRef
Microglial encapsulation of motor neurons in models of neuropathic pain: A confound in pain assessment?
Philip W. Brownjohn, John C. Ashton
European Journal of Pain.2012; 16(3): 459.     CrossRef
Exposure to ELF- magnetic field promotes restoration of sensori-motor functions in adult rats with hemisection of thoracic spinal cord
Suman Das, Suneel Kumar, Suman Jain, Valery D. Avelev, Rashmi Mathur
Electromagnetic Biology and Medicine.2012; 31(3): 180.     CrossRef
The Effect of Minocycline on the Masticatory Movements following the Inferior Alveolar Nerve Transection in Freely Moving Rats
Rahman Md Mostafeezur, Hossain Md Zakir, Yoshiaki Yamada, Kensuke Yamamura, Koichi Iwata, Barry J Sessle, Junichi Kitagawa
Molecular Pain.2012; 8: 1744-8069-8-27.     CrossRef
The Neuroprotective Effect of Treatment of Valproic Acid in Acute Spinal Cord Injury
Song-Hee Yu, Dae-chul Cho, Kyoung-Tae Kim, Kyung-Hun Nam, Hee-Jung Cho, Joo-Kyung Sung
Journal of Korean Neurosurgical Society.2012; 51(4): 191.     CrossRef
Expression of inflammatory cytokines following acute spinal cord injury in a rodent model
A.T. Stammers, J. Liu, B.K. Kwon
Journal of Neuroscience Research.2012; 90(4): 782.     CrossRef
Neuropathic pain: An evolutionary hypothesis
John C. Ashton
Medical Hypotheses.2012; 78(5): 641.     CrossRef