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C-Kit Expression Angiogenesis and Grading in Canine Mast Cell Tumour: A Unique Model to Study C-Kit Driven Human Malignancies

机译:C-Kit表达血管生成和犬肥大细胞瘤中的分级:研究C-Kit驱动的人类恶性肿瘤的独特模型。

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摘要

Canine cutaneous mast cell tumour (CMCT) is a c-Kit driven tumour sharing similar c-Kit aberrations found in human gastrointestinal stromal tumour. CMCT is classified into three forms: well- (G1), intermediately (G2) (more benign diseases), and poorly (G3) differentiated (malignant) forms. We assess a correlation between c-Kit status, grading, and angiogenesis in CMCTs to explore their potential significance in humans. C-Kit receptor (c-KitR) expression, microvascular density (MVD), and mast cell granulated and degranulated status density (MCGD and MCDD, resp.) were analyzed in 97 CMCTs, by means of histochemistry, immunohistochemistry double staining, and image analysis system. Data showed that predominantly diffuse cytoplasmic- and predominantly focal paranuclear- (Golgi-like) c-Kit protein (PDC-c-Kit and PFP-c-Kit, resp.) expression correlate with high MVD, G3 histopathological grade, and MCDD. Moreover, predominant cell membrane-c-KitR (PCM-c-KitR) expression status correlates with low MVD, G1-G2 histopathological grade, and MCGD. These findings underline the key role of c-Kit in the biopathology of canine MCTs, indicating a link between aberrant c-Kit expression, increased angiogenesis, and higher histopathological grade. CMCT seems to be a model to study contributions of c-Kit activated MCs in tumour angiogenesis and to evaluate the inhibition of MCs activation by means of c-Kit tyrosine kinase inhibitors, currently translated in humans.
机译:犬皮肤肥大细胞肿瘤(CMCT)是c-Kit驱动的肿瘤,与人类胃肠道间质瘤中的c-Kit异常相似。 CMCT分为三种形式:良好(G1),中等(G2)(较良性疾病)和较差(G3)分化(恶性)形式。我们评估CMCT中c-Kit的状态,分级和血管生成之间的相关性,以探索其在人类中的潜在意义。通过组织化学,免疫组织化学双重染色和图像分析了97个CMCT中的C-Kit受体(c-KitR)表达,微血管密度(MVD)以及肥大细胞的颗粒化和脱颗粒状态密度(MCGD和MCDD,分别)。分析系统。数据显示,主要是弥漫性的胞质和主要是局灶性副核(高尔基样)c-Kit蛋白(PDC-c-Kit和PFP-c-Kit,分别)表达与高MVD,G3组织病理学分级和MCDD相关。此外,主要的细胞膜c-KitR(PCM-c-KitR)表达状态与低MVD,G1-G2组织病理学分级和MCGD相关。这些发现强调了c-Kit在犬MCT的生物病理学中的关键作用,表明c-Kit异常表达,血管生成增加和组织病理学分级较高之间存在联系。 CMCT似乎是研究c-Kit激活的MCs在肿瘤血管生成中的作用并评估通过c-Kit酪氨酸激酶抑制剂(目前已在人类中转化)抑制MCs激活的模型。

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