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Hormone Receptor Expression Analyses in Neoplastic and Non-Neoplastic Canine Mammary Tissue by a Bead Based Multiplex Branched DNA Assay: A Gene Expression Study in Fresh Frozen and Formalin-Fixed Paraffin-Embedded Samples

机译:基于珠粒的多重分支DNA检测在赘生性和非赘生性犬乳腺组织中激素受体表达的分析:在新鲜冷冻和福尔马林固定石蜡包埋样品中的基因表达研究

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摘要

Immunohistochemistry (IHC) is currently considered the method of choice for steroid hormone receptor status evaluation in human breast cancer and, therefore, it is commonly utilized for assessing canine mammary tumors. In case of low hormone receptor expression, IHC is limited and thus is complemented by molecular analyses. In the present study, a multiplex bDNA assay was evaluated as a method for hormone receptor gene expression detection in canine mammary tissues. Estrogen receptor (ESR1), progesterone receptor (PGR), prolactin receptor (PRLR) and growth hormone receptor (GHR) gene expressions were evaluated in neoplastic and non-neoplastic canine mammary tissues. A set of 119 fresh frozen and 180 formalin-fixed, paraffin-embedded (FFPE) was comparatively analyzed and used for assay evaluation. Furthermore, a possible association between the hormone receptor expression in different histological subtypes of canine malignant mammary tumors and the castration status, breed and invasive growth of the tumor were analyzed. The multiplex bDNA assay proved to be more sensitive for fresh frozen specimens. Hormone receptor expression found was significantly decreased in malignant mammary tumors in comparison to non-neoplastic tissue and benign mammary tumors. Among the histological subtypes the lowest gene expression levels of ESR1, PGR and PRLR were found in solid, anaplastic and ductal carcinomas. In summary, the evaluation showed that the measurement of hormone receptors with the multiplex bDNA assay represents a practicable method for obtaining detailed quantitative information about gene expression in canine mammary tissue for future studies. Still, comparison with IHC or quantitative real-time PCR is needed for further validation of the present method.
机译:免疫组织化学(IHC)目前被认为是人类乳腺癌中类固醇激素受体状态评估的首选方法,因此,它通常被用于评估犬乳腺肿瘤。在激素受体表达低的情况下,IHC受到限制,因此需要进行分子分析。在本研究中,评估了多重bDNA分析作为犬乳腺组织中激素受体基因表达检测的方法。在赘生性和非赘生性犬乳腺组织中评估了雌激素受体(ESR1),孕激素受体(PGR),催乳素受体(PRLR)和生长激素受体(GHR)基因的表达。对一组119份新鲜冷冻和180份福尔马林固定,石蜡包埋(FFPE)进行了比较分析,并用于测定评估。此外,分析了犬恶性乳腺肿瘤的不同组织学亚型中激素受体表达与肿瘤去势状态,繁殖和侵袭性生长之间的可能联系。事实证明,多重bDNA分析对新鲜冷冻标本更敏感。与非肿瘤组织和良性乳腺肿瘤相比,在恶性乳腺肿瘤中发现的激素受体表达显着降低。在组织学亚型中,在实体癌,间变性癌和导管癌中ESR1,PGR和PRL​​R的基因表达水平最低。总而言之,评估表明,用多重bDNA测定法测量激素受体代表了一种实用的方法,可获取有关犬乳腺组织中基因表达的详细定量信息,以备将来研究。仍然需要与IHC或定量实时PCR进行比较,以进一步验证本方法。

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