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通过激光扫描共聚焦显微镜和流式细胞术评估分离的山羊胰岛细胞结构

Evaluation of isolated caprine pancreatic islets cytoarchitecture by laser scanning confocal microscopy and flow cytometry.

作者信息

Hani Homayoun, Nazariah Allaudin Zeenathul, Mohd-Lila Mohd-Azmi, Sarsaifi Kazhal, Tengku-Ibrahim Tengku-Azmi, Mazni Othman Abas

机构信息

Department of Veterinary Pathology and Microbiology, Faculty of Veterinary Medicine, Universiti Putra Malaysia, Serdang, Selangor, Malaysia.

Department of Veterinary Clinical Studies, Faculty of Veterinary Medicine, Universiti Putra Malaysia, Serdang, Selangor, Malaysia.

出版信息

Xenotransplantation. 2016 Mar;23(2):128-36. doi: 10.1111/xen.12220. Epub 2016 Jan 20.

Abstract

BACKGROUND

Pancreatic islets are composed of different hormone-secreting cell types. A finely balanced combination of endocrine cells in the islets regulates intraportal vein secretions and plasma nutrient levels. Every islet cell type is distinguished by its specific secretory granule pattern and hormone content, endocrine and cell signaling mechanisms, and neuronal interactions. The scarcity of pancreatic islet donors for patients with diabetes has caused a considerable interest in the field of islet xenotransplantation. Previous studies have shown that cell arrangement in the pancreatic islets of ruminants differs from that of other mammals; however, caprine islet cytoarchitecture has not yet been comprehensively described. This investigation aimed to characterize caprine islets in regard to better understanding of caprine islet structure and compare with previously reported species, by conducting a detailed analysis of islet architecture and composition using confocal microscopy and immunofluorescence staining for pancreatic islet hormones.

METHODOLOGY

After collection and purification of caprine islets with Euro-Ficoll density gradients, islets were considered for viability and functionality procedures with DTZ (dithizone) staining and GSIST (glucose-stimulated insulin secretion test) subsequently. Batches of islet were selected for immunostaining and study through confocal microscopy and flow cytometry.

RESULTS

Histological sections of caprine pancreatic islets showed that α-cells were segregated at the periphery of β-cells. In caprine islets, α- and δ-cells remarkably were intermingled with β-cells in the mantle. Such cytoarchitecture was observed in all examined caprine pancreatic islets and was also reported for the islets of other ruminants. In both small and large caprine islets (< 150 and > 150 μm in diameter, respectively), the majority of β-cells were positioned at the core and α-cells were arranged at the mantle, while some single α-cells were also observed in the islet center. We evaluated the content of β-, α-, and δ-cells by confocal microscopy (n = 35, mean ± SD; 38.01 ± 9.50%, 30.33 ± 10.11%, 2.25 ± 1.10%, respectively) and flow cytometry (n = 9, mean ± SD; 37.52 ± 9.74%, 31.72 ± 4.92%, 2.70 ± 2.81%, respectively). Our findings indicate that the caprine islets are heterogeneous in cell composition. The difference could be attributed to species-specific interaction between endocrine cells and blood.

CONCLUSIONS

Comparative studies of islet architecture may lead to better understanding of islet structure and cell type population arrangement. These results suggest the use of caprine islets as an addition to the supply of islets for diabetes research.

摘要

背景

胰岛由不同的激素分泌细胞类型组成。胰岛中内分泌细胞的精细平衡组合调节门静脉内的分泌和血浆营养水平。每种胰岛细胞类型都以其特定的分泌颗粒模式、激素含量、内分泌和细胞信号传导机制以及神经元相互作用而有所区别。糖尿病患者的胰岛供体稀缺,这引起了胰岛异种移植领域的广泛关注。先前的研究表明,反刍动物的胰岛细胞排列与其他哺乳动物不同;然而,山羊胰岛的细胞结构尚未得到全面描述。本研究旨在通过使用共聚焦显微镜和胰岛激素免疫荧光染色对胰岛结构和组成进行详细分析,以更好地了解山羊胰岛结构,并与先前报道的物种进行比较。

方法

用欧洲菲可密度梯度法收集和纯化山羊胰岛后,随后用双硫腙(DTZ)染色和葡萄糖刺激胰岛素分泌试验(GSIST)对胰岛进行活力和功能检测。选择一批胰岛进行免疫染色,并通过共聚焦显微镜和流式细胞术进行研究。

结果

山羊胰岛的组织学切片显示,α细胞分布在β细胞的外周。在山羊胰岛中,α细胞和δ细胞在胰岛被膜中与β细胞明显混合。在所有检查的山羊胰岛中均观察到这种细胞结构,其他反刍动物的胰岛也有类似报道。在直径分别小于150μm和大于150μm的小、大两种山羊胰岛中,大多数β细胞位于核心,α细胞排列在被膜,同时在胰岛中心也观察到一些单个的α细胞。我们通过共聚焦显微镜(n = 35,平均值±标准差;分别为38.01±9.50%、30.33±10.11%、2.25±1.10%)和流式细胞术(n = 9,平均值±标准差;分别为37.52±9.74%、31.72±4.92%、2.70±2.81%)评估了β细胞、α细胞和δ细胞的含量。我们的研究结果表明,山羊胰岛的细胞组成是异质性的。这种差异可能归因于内分泌细胞与血液之间的物种特异性相互作用。

结论

胰岛结构的比较研究可能有助于更好地理解胰岛结构和细胞类型的群体排列。这些结果表明,山羊胰岛可作为糖尿病研究中胰岛供应的补充。

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