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对红耳龟(滑龟)四肢皮肤超微结构和免疫荧光特征的新见解。

Novel Insights Into the Ultrastructural and Immunofluorescence Characteristics of Limb Skin in the Red-Eared Slider Turtle (Trachemys scripta elegans).

作者信息

Alsafy Mohamed A M, El-Gendy Samir A A, Ez Elarab Samar M, El-Mansi Ahmed A, Eldesoqui Mamdouh B, Rashwan Ahmed M

机构信息

Anatomy and Embryology Department, Faculty of Veterinary Medicine, Alexandria University, Alexandria, Egypt.

Faculty of Veterinary Medicine, Department of Histology and Cytology, Alexandria University, Alexandria, Egypt.

出版信息

Microsc Res Tech. 2025 Mar;88(3):631-657. doi: 10.1002/jemt.24729. Epub 2024 Nov 7.

Abstract

The red-eared slider turtle, a species facing environmental challenges and habitat loss, exhibits a complex skin architecture that is crucial for its adaptation and survival. Our study aims to provide a comprehensive characterization of the turtle's skin structure and to elucidate the distribution and localization of its various cellular components, with a focus on understanding the skin's role in adaptation and ecological interactions. To achieve these goals, we employed light microscopy, transmission electron microscopy (TEM), and comprehensive immunofluorescence using 10 specific antibodies. The forelimb skin displays large- and moderate-sized scales with variations in color, including dark, yellow, and gray hues, likely contributing to camouflage and protection. The skin consists of corneous material, the epidermis, the dermis, and the hypodermis. The stratum basalis, stratum spinosum, and peri-corneous layer constitute the three distinct layers of the epidermis. There are four distinct types of chromatophores, including melanocytes located in the epidermis, while melanophores, xanthophores, and iridophores are found within the dermal layer. The skin also exhibits well-developed peripheral nerves, blood vessels, and subcutaneous muscles. Immunofluorescence staining further elucidates the distribution and localization of various skin cells. E-cadherin and CK14 are strongly expressed in the epidermal layers, excluding the corneous material. E-cadherin surrounds keratinocyte cells in the epidermis, facilitating cell-cell adhesion, while CK14 is present inside the keratinocyte cells, contributing to their internal structural integrity. Sox10 and CD117 identify the four chromatophore types, with Melan-A specifically detecting only melanocytes and melanophores and not labeling xanthophores and iridophores. Tom20 is used to detect mitochondrial distribution and intensity in the skin, revealing a high density of mitochondria in all epidermal layers, especially in melanocytes and melanophores, compared to xanthophores and iridophores. Numerous telocytes, spindle-shaped with extensions called telopods, are detected in the dermis using CD34, PDGFRα, and vimentin. The skin of the red-eared slider also shows abundant myofibroblasts and well-developed vascularization, with numerous blood vessels detected using α-SMA. This novel study offers an in-depth examination of the limb skin of the red-eared slider through the use of 10 distinct antibodies, uncovering the intricate interactions among its cellular components and providing valuable insights into its anatomical structure and physiological adaptations. Our findings contribute to a better understanding of the turtle's skin, which may aid in its conservation and management.

摘要

红耳龟是一种面临环境挑战和栖息地丧失的物种,其皮肤结构复杂,对其适应和生存至关重要。我们的研究旨在全面描述龟的皮肤结构,并阐明其各种细胞成分的分布和定位,重点是了解皮肤在适应和生态相互作用中的作用。为实现这些目标,我们采用了光学显微镜、透射电子显微镜(TEM)以及使用10种特异性抗体的全面免疫荧光技术。前肢皮肤呈现出大小不一的鳞片,颜色各异,包括深色、黄色和灰色调,可能有助于伪装和保护。皮肤由角质物质、表皮、真皮和皮下组织组成。基底层、棘层和角质层构成了表皮的三个不同层。有四种不同类型的色素细胞,包括位于表皮的黑素细胞,而黑素体、黄色素细胞和虹彩细胞则存在于真皮层中。皮肤还具有发达的外周神经、血管和皮下肌肉。免疫荧光染色进一步阐明了各种皮肤细胞的分布和定位。E-钙黏蛋白和细胞角蛋白14(CK14)在表皮层中强烈表达,但角质物质除外。E-钙黏蛋白围绕表皮中的角质形成细胞,促进细胞间黏附,而CK14存在于角质形成细胞内部,有助于其内部结构完整性。Sox10和CD117可识别四种色素细胞类型,其中Melan-A仅特异性检测黑素细胞和黑素体,而不标记黄色素细胞和虹彩细胞。Tom20用于检测皮肤中线粒体的分布和强度,结果显示与黄色素细胞和虹彩细胞相比,所有表皮层中,尤其是黑素细胞和黑素体中,线粒体密度很高。使用CD34、血小板衍生生长因子受体α(PDGFRα)和波形蛋白在真皮中检测到许多呈纺锤形且带有称为端足的延伸部分的端细胞。红耳龟的皮肤还显示出丰富的肌成纤维细胞和发达的血管化,使用α-平滑肌肌动蛋白(α-SMA)检测到许多血管。这项新研究通过使用10种不同的抗体对红耳龟的肢体皮肤进行了深入研究,揭示了其细胞成分之间的复杂相互作用,并为其解剖结构和生理适应提供了有价值的见解。我们的研究结果有助于更好地了解龟的皮肤,这可能有助于其保护和管理。

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