Bone cancer pain: causes, consequences, and therapeutic opportunities.
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Use of Animal Models in Understanding Cancer-induced Bone PainNociceptive TRP Channels: Sensory Detectors and Transducers in Multiple Pain PathologiesAAPT Diagnostic Criteria for Chronic Cancer Pain ConditionsQuality of life after palliative radiotherapy in bone metastases: A literature reviewContribution of acidic extracellular microenvironment of cancer-colonized bone to bone painInvolvement of Spinal Bv8/Prokineticin 2 in a Rat Model of Cancer-Induced Bone Pain.PAR2-mediated upregulation of BDNF contributes to central sensitization in bone cancer pain.Anti-rheumatic drug iguratimod protects against cancer-induced bone pain and bone destruction in a rat modelPain regulation by non-neuronal cells and inflammation.The neurobiology of skeletal painA Functional Role for VEGFR1 Expressed in Peripheral Sensory Neurons in Cancer PainNGF blockade at early times during bone cancer development attenuates bone destruction and increases limb useTopical Treatment with Xiaozheng Zhitong Paste (XZP) Alleviates Bone Destruction and Bone Cancer Pain in a Rat Model of Prostate Cancer-Induced Bone Pain by Modulating the RANKL/RANK/OPG Signaling.Acidic microenvironment and bone pain in cancer-colonized boneBehavioral and neurochemical analysis of ongoing bone cancer pain in rats.Enhanced binding capability of nuclear factor-κB with demethylated P2X3 receptor gene contributes to cancer pain in rats.Minocycline attenuates bone cancer pain in rats by inhibiting NF-κB in spinal astrocytes.Pamidronate functionalized nanoconjugates for targeted therapy of focal skeletal malignant osteolysis.Induction of thermal and mechanical hypersensitivity by parathyroid hormone-related peptide through upregulation of TRPV1 function and trafficking.MicroRNA-93-5p may participate in the formation of morphine tolerance in bone cancer pain mouse model by targeting Smad5.NFκB-mediated CXCL1 production in spinal cord astrocytes contributes to the maintenance of bone cancer pain in mice.Effects of miR-338 on morphine tolerance by targeting CXCR4 in a rat model of bone cancer pain.New insights of nociceptor sensitization in bone cancer pain.Sensory TRP channels: the key transducers of nociception and pain.Teniposide ameliorates bone cancer nociception in rats via the P2X7 receptor.JNK in spinal cord facilitates bone cancer pain in rats through modulation of CXCL1.Connexin 43 Mediates CXCL12 Production from Spinal Dorsal Horn to Maintain Bone Cancer Pain in Rats.Multidimensional Treatment of Cancer Pain.Simultaneous inhibition of NMDA and mGlu1/5 receptors by levo-corydalmine in rat spinal cord attenuates bone cancer pain.Mediation of Movement-Induced Breakthrough Cancer Pain by IB4-Binding Nociceptors in Rats.Ultrasound-Guided Proximal Suprascapular Nerve Block With Radiofrequency Lesioning for Patients With Malignancy-Associated Recalcitrant Shoulder Pain.Blocking mammalian target of rapamycin alleviates bone cancer pain and morphine tolerance via µ-opioid receptor.Engagement of signaling pathways of protease-activated receptor 2 and μ-opioid receptor in bone cancer pain and morphine tolerance.Modulation of Nav1.8 by Lysophosphatidic Acid in the Induction of Bone Cancer Pain.Bone Pain Induced by Multiple Myeloma Is Reduced by Targeting V-ATPase and ASIC3.Reactive oxygen species scavengers ameliorate mechanical allodynia in a rat model of cancer-induced bone pain.Combined application of diclofenac and celecoxib with an opioid yields superior efficacy in metastatic bone cancer pain: a randomized controlled trial.The analgesic effects of triptolide in the bone cancer pain rats via inhibiting the upregulation of HDACs in spinal glial cells.Breast cancer induced nociceptor aberrant growth and collateral sensory axonal branching.Disease modifying actions of interleukin-6 blockade in a rat model of bone cancer pain.
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P2860
Bone cancer pain: causes, consequences, and therapeutic opportunities.
description
article científic
@ca
article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
@pt
artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
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artículo científico
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name
Bone cancer pain: causes, consequences, and therapeutic opportunities.
@en
type
label
Bone cancer pain: causes, consequences, and therapeutic opportunities.
@en
prefLabel
Bone cancer pain: causes, consequences, and therapeutic opportunities.
@en
P1433
P1476
Bone cancer pain: causes, consequences, and therapeutic opportunities.
@en
P2093
Patrick Mantyh
P304
P356
10.1016/J.PAIN.2013.07.044
P407
P478
154 Suppl 1
P577
2013-07-31T00:00:00Z