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Pain ; 160(3): 619-631, 2019 Mar.
Article in English | MEDLINE | ID: mdl-30422869

ABSTRACT

Bone cancer metastasis is extremely painful and decreases the quality of life of the affected patients. Available pharmacological treatments are not able to sufficiently ameliorate the pain, and as patients with cancer are living longer, new treatments for pain management are needed. Decitabine (5-aza-2'-deoxycytidine), a DNA methyltransferases inhibitor, has analgesic properties in preclinical models of postsurgical and soft-tissue oral cancer pain by inducing an upregulation of endogenous opioids. In this study, we report that daily treatment with decitabine (2 µg/g, intraperitoneally) attenuated nociceptive behavior in the 4T1-luc2 mouse model of bone cancer pain. We hypothesized that the analgesic mechanism of decitabine involved activation of the endogenous opioid system through demethylation and reexpression of the transcriptionally silenced endothelin B receptor gene, Ednrb. Indeed, Ednrb was hypermethylated and transcriptionally silenced in the mouse model of bone cancer pain. We demonstrated that expression of Ednrb in the cancer cells lead to release of ß-endorphin in the cell supernatant, which reduced the number of responsive dorsal root ganglia neurons in an opioid-dependent manner. Our study supports a role of demethylating drugs, such as decitabine, as unique pharmacological agents targeting the pain in the cancer microenvironment.


Subject(s)
Antimetabolites, Antineoplastic/therapeutic use , Bone Neoplasms/complications , Cancer Pain/drug therapy , Cancer Pain/etiology , Decitabine/therapeutic use , Animals , Bone Density , Bone Neoplasms/diagnostic imaging , Bone Neoplasms/pathology , Cancer Pain/diagnostic imaging , Cell Line, Tumor , Culture Media, Conditioned/pharmacology , Disease Models, Animal , Endothelin-1/metabolism , Female , Ganglia, Spinal/cytology , Locomotion/drug effects , Mice , Mice, Inbred BALB C , Naloxone/analogs & derivatives , Naloxone/therapeutic use , Neurons/drug effects , Quaternary Ammonium Compounds/therapeutic use , Receptor, Endothelin B/genetics , Receptor, Endothelin B/metabolism , Weight-Bearing/physiology , beta-Endorphin/metabolism
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