首页> 外文期刊>The journal of pain: official journal of the American Pain Society >Walker 256 tumor-bearing rats as a model to study cancer pain.
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Walker 256 tumor-bearing rats as a model to study cancer pain.

机译:Walker 256荷瘤大鼠作为研究癌症疼痛的模型。

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An animal model of cancer pain induced by injection of Walker 256 carcinoma cells into the plantar surface of rat hind paw is described. Tumor growth and the occurrence of metastasis were investigated by histopathological analysis. Tumor cell growth was also analyzed plethysmographically by the increase in paw volume. For characterization of pain symptoms, hyperalgesia, allodynia, and spontaneous pain were evaluated 5 to 8 days after cell injection. The volume of the inoculated paw started to increase on day 2 after inoculation, being 40% higher on day 5 after injection. At this time, there was a marked proliferation of tumor cells, with the presence of anaplastic and pleomorphic cells, nucleoli, and atypical mitotic features. On days 7 and 8 after injection, histopathological analysis of popliteal lymph nodes showed the presence of tumor cells. The intraplantar injection of Walker 256 cells caused hyperalgesia at day 5 after cell inoculation. Low-threshold mechanical allodynia was significant 2 days after cell injection, being increased on day 5. In addition, inoculation of tumor cells induced gross behavior, characterized by a significant increase in licking and lifting of the injected paw 5 days after injection. The pain-enhancing effect caused by cell inoculation was partially inhibited by indomethacin on day 2 after cell injection, whereas morphine blocked allodynia on days 2 and 5. These results indicate that intraplantar injection of Walker 256 cells cause pain symptoms characteristic of cancer pain. This experimental model can then be used to investigate new analgesic or anti-tumor drugs. PERSPECTIVE: This article presents a new animal model for studying cancer pain and metastasis. This model could help in understanding the mechanisms involved in cancer pain symptoms and may be used for the investigation of new analgesic or anti-tumor drugs.
机译:描述了通过向大鼠后爪的足底表面注射Walker 256个癌细胞诱导的癌症疼痛的动物模型。通过组织病理学分析肿瘤生长和转移的发生。体积描记法还通过爪体积的增加来分析肿瘤细胞的生长。为了表征疼痛症状,在注射细胞后5至8天评估了痛觉过敏,异常性疼痛和自发性疼痛。接种后第2天,接种爪的体积开始增加,注射后第5天增加40%。此时,肿瘤细胞明显增生,存在变性和多形性细胞,核仁和非典型的有丝分裂特征。注射后第7天和第8天,pop淋巴结的组织病理学分析显示存在肿瘤细胞。接种后第5天,足底内注射Walker 256细胞引起痛觉过敏。低阈值机械性异常性疼痛在细胞注射后第2天很明显,在第5天有所增加。此外,接种肿瘤细胞会诱发总体行为,其特征是在注射后第5天舔爪和抬举注射爪明显增加。注射消炎痛后第2天,细胞接种引起的疼痛增强作用被吲哚美辛部分抑制,而吗啡在第2天和第5天阻止了异常性疼痛。这些结果表明,intra骨内注射Walker 256细胞会引起癌症疼痛的疼痛症状。然后,该实验模型可用于研究新的止痛药或抗肿瘤药。观点:本文提出了一种研究癌症疼痛和转移的新动物模型。该模型可以帮助理解与癌症疼痛症状有关的机制,并且可以用于研究新的止痛药或抗肿瘤药。

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