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Design-based stereological estimation of hepatocyte number, by combining the smooth optical fractionator and immunocytochemistry with anti-carcinoembryonic antigen polyclonal antibodies.

机译:通过将平滑光学分馏仪和免疫细胞化学与抗癌胚抗原多克隆抗体相结合,基于设计的肝细胞数目的立体估计。

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Background/Aims: Hepatocytes (HEP) have been the major target for structural quantification in the liver, but an estimation of their total number (N), their percentage in relation to the global number of liver cells and the evaluation of the percentage of binucleated hepatocytes (BnHEPs) have never been performed with modern design-based stereological techniques. The establishment of sound technical guidelines and baseline quantitative data in non-pathological conditions are relevant to properly evaluate HEP hyperplasia and BnHEP responses. Methods: In this study, we combined immunocytochemistry with sound design-based stereology for estimating the N of HEP and the N of non-hepatocytic cells (NHCs). For obtaining systematic uniform random sections (30 mum thick), a smooth fractionator sampling scheme was applied to the liver of five male Wistar rats (3 month old). Those sections were immunostained with polyclonal antibodies against carcinoembryonic antigen. Because biliary canaliculi were then marked, an unequivocal counting of mononucleated hepatocytes (MnHEP) and BnHEP was allowed. Results: The N of HEP was estimated to be 1.93 x 10(9), with a coefficient of error (CE) of 0.02, corresponding to 129 x 10(6) HEP/g of liver. BnHEP represented 26% of total HEP number. The N of NHC was estimated as 1.31 x 10(9) (CE=0.02). Conclusion: The strategy here presented provides a reliable method for accessing the N of HEP (distinguishing MnHEP from BnHEP) in situations in which these parameters are relevant, namely for evaluating the magnitude of an hyperplastic liver response from its very early onset.
机译:背景/目的:肝细胞(HEP)是肝脏中结构定量的主要目标,但要估计其总数(N),其相对于肝细胞总数的百分比以及对双核百分比的评估肝细胞(BnHEPs)从未使用基于现代设计的立体技术进行过。在非病理条件下建立合理的技术指南和基线定量数据与正确评估HEP增生和BnHEP反应有关。方法:在这项研究中,我们将免疫细胞化学与基于声音设计的立体学相结合,以评估HEP和非肝细胞(NHC)的N。为了获得系统的均匀随机切片(30毫米厚),将平滑的分馏器采样方案应用于五只雄性Wistar大鼠(3个月大)的肝脏。这些切片用针对癌胚抗原的多克隆抗体免疫染色。由于然后标记了胆管小管,因此可以明确计数单核肝细胞(MnHEP)和BnHEP。结果:HEP的N估计为1.93 x 10(9),误差系数(CE)为0.02,相当于129 x 10(6)HEP / g肝脏。 BnHEP占HEP总数的26%。 NHC的N估计为1.31 x 10(9)(CE = 0.02)。结论:此处提出的策略为在这些参数相关的情况下获取HEP N(区分MnHEP与BnHEP)提供了一种可靠的方法,即从早期就评估增生性肝反应的程度。

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