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- W1976367639 abstract "In an experimental model of cancer pain, the hyperalgesia that occurs with osteolytic tumor growth is associated with the sensitization of nociceptors. We examined functional and molecular changes in small-diameter dorsal root ganglion (DRG) neurons to determine cellular mechanisms underlying this sensitization. The occurrence of a Ca 2+ transient in response to either KCl (25 m m ) or capsaicin (500 n m ) increased in small neurons isolated from murine L3–L6 DRGs ipsilateral to fibrosarcoma cell tumors. The increased responses were associated with increased mRNA levels for the Ca 2+ channel subunit α2δ1 and TRPV1 receptor. Pretreatment with gabapentin, an inhibitor of the α2δ1 subunit, blocked the increased response to KCl in vitro and the mechanical hyperalgesia in tumor-bearing mice in vivo . Similar increases in neuronal responsiveness occurred when DRG neurons from naive mice and fibrosarcoma cells were cocultured for 48 h. The CC chemokine ligand 2 (CCL2) may contribute to the tumor cell-induced sensitization because CCL2 immunoreactivity was present in tumors, high levels of CCL2 peptide were present in microperfusates from tumors, and treatment of DRG neurons in vitro with CCL2 increased the amount of mRNA for the α2δ1 subunit. Together, our data provide strong evidence that the chemical mediator CCL2 is released from tumor cells and evokes phenotypic changes in sensory neurons, including increases in voltage-gated Ca 2+ channels that likely underlie the mechanical hyperalgesia in the fibrosarcoma cancer model. More broadly, this study provides a novel in vitro model to resolve the cellular and molecular mechanisms by which tumor cells drive functional changes in nociceptors." @default.
- W1976367639 created "2016-06-24" @default.
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- W1976367639 date "2007-09-19" @default.
- W1976367639 modified "2023-09-22" @default.
- W1976367639 title "Chemical Interactions between Fibrosarcoma Cancer Cells and Sensory Neurons Contribute to Cancer Pain" @default.
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- W1976367639 doi "https://doi.org/10.1523/jneurosci.2851-07.2007" @default.
- W1976367639 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6672679" @default.
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