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Use of Animal Models in Understanding Cancer-induced Bone Pain

机译:在理解癌症引起的骨痛中使用动物模型

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Many common cancers have a propensity to metastasize to bone. Although malignancies often go undetected in their native tissues, bone metastases produce excruciating pain that severely compromises patient quality of life. Cancer-induced bone pain (CIBP) is poorly managed with existing medications, and its multifaceted etiology remains to be fully elucidated. Novel analgesic targets arise as more is learned about this complex and distinct pain state. Over the past two decades, multiple animal models have been developed to study CIBP’s unique pathology and identify therapeutic targets. Here, we review animal models of CIBP and the mechanistic insights gained as these models evolve. Findings from immunocompromised and immunocompetent host systems are discussed separately to highlight the effect of model choice on outcome. Gaining an understanding of the unique neuromolecular profile of cancer pain through the use of appropriate animal models will aid in the development of more effective therapeutics for CIBP.
机译:许多常见的癌症都有转移到骨骼的倾向。尽管恶性肿瘤常常在其天然组织中未被发现,但骨转移会产生严重的疼痛,严重损害患者的生活质量。现有药物治疗癌症引起的骨痛(CIBP)效果不佳,其多方面的病因仍有待充分阐明。随着人们对这种复杂而独特的疼痛状态的了解越来越多,新型的止痛药也应运而生。在过去的二十年中,已经开发出多种动物模型来研究CIBP的独特病理学并确定治疗靶标。在这里,我们回顾了CIBP的动物模型,以及随着这些模型的发展而获得的机械洞察力。分别讨论了免疫受损和免疫能力强的宿主系统的发现,以强调模型选择对预后的影响。通过使用适当的动物模型来了解癌症疼痛的独特神经分子特征,将有助于开发更有效的CIBP疗法。

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