The effect of gut microbiome on tolerance to morphine mediated antinociception in mice

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作者
Minho Kang
Ryan A. Mischel
Sukhada Bhave
Essie Komla
Alvin Cho
Charity Huang
William L. Dewey
Hamid I. Akbarali
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[1] Virginia Commonwealth University,Department of Pharmacology and Toxicology
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Scientific Reports | / 7卷
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There is growing appreciation for the importance of gastrointestinal microbiota in many physiological and pathophysiological processes. While morphine and other narcotics are the most widely prescribed therapy for moderate to severe pain clinically, they have been noted to alter microbial composition and promote bacterial translocation to other tissues. Here we examined the pharmacodynamic properties of chronic morphine in mice following bacterial depletion with oral gavage of an antibiotic cocktail (ABX). ABX significantly reduced gut bacteria and prevented chronic morphine induced increases in gut permeability, colonic mucosal destruction, and colonic IL-1β expression. In addition, ABX prevented the development of antinociceptive tolerance to chronic morphine in both the tail-immersion and acetic acid stretch assays. Morphine tolerance was also reduced by oral vancomycin that has 0% bioavailability. These findings were recapitulated in primary afferent neurons isolated from dorsal root ganglia (DRG) innervating the lower gastrointestinal tract, wherein in-vivo administration of ABX prevented tolerance to morphine-induced hypoexcitability. Finally, though ABX repeatedly demonstrated an ability to prevent tolerance, we show that it did not alter susceptibility to precipitation of withdrawal by naloxone. Collectively, these finding indicate that the gastrointestinal microbiome is an important modulator of physiological responses induced by chronic morphine administration.
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  • [11] Eutamene H(2011)Depletion of murine intestinal microbiota: effects on gut mucosa and epithelial gene expression PLoS One 6 e17996-546
  • [12] Rousseaux C(2012)Pseudomonas aeruginosa virulence expression is directly activated by morphine and is capable of causing lethal gut-derived sepsis in mice during chronic morphine administration Annals of surgery 255 386-158
  • [13] Chiu IM(2012)Commensal bacteria-derived signals regulate basophil hematopoiesis and allergic inflammation Nature medicine 18 538-379
  • [14] Meng J(2010)Metagenomic analyses reveal antibiotic-induced temporal and spatial changes in intestinal microbiota with associated alterations in immune cell homeostasis Mucosal Immunol 3 148-496
  • [15] Jones JL(2011)Impaired mucosal barrier function in the small intestine of the cystic fibrosis mouse J Pediatr Gastroenterol Nutr 53 371-676
  • [16] Loftus EV(2014)Rifaximin alters intestinal bacteria and prevents stress-induced gut inflammation and visceral hyperalgesia in rats Gastroenterology 146 484-1161
  • [17] Cross RK(2015)Neomycin and bacitracin reduce the intestinal permeability in mice and increase the expression of some tight-junction proteins Revista espanola de enfermedades digestivas: organo oficial de la Sociedad Espanola de Patologia Digestiva 107 672-5845
  • [18] Wilson KT(2012)Opioid-induced hypernociception is associated with hyperexcitability and altered tetrodotoxin-resistant Na+ channel function of dorsal root ganglia Am J Physiol Cell Physiol 302 C1152-502
  • [19] Binion DG(2008)Activation of TRPV1 contributes to morphine tolerance: involvement of the mitogen-activated protein kinase signaling pathway J Neurosci 28 5836-2605
  • [20] Anitha M(2012)Neuroplastic alteration of TTX-resistant sodium channel with visceral pain and morphine-induced hyperalgesia Journal of pain research 5 491-948