眼前房技术及其解剖学、光学和免疫学基础。

The anterior chamber of the eye technology and its anatomical, optical, and immunological bases.

机构信息

The Rolf Luft Research Center for Diabetes and Endocrinology, Karolinska Institutet, Stockholm, Sweden.

出版信息

Physiol Rev. 2024 Jul 1;104(3):881-929. doi: 10.1152/physrev.00024.2023. Epub 2024 Jan 11.

Abstract

The anterior chamber of the eye (ACE) is distinct in its anatomy, optics, and immunology. This guarantees that the eye perceives visual information in the context of physiology even when encountering adverse incidents like inflammation. In addition, this endows the ACE with the special nursery bed iris enriched in vasculatures and nerves. The ACE constitutes a confined space enclosing an oxygen/nutrient-rich, immune-privileged, and less stressful milieu as well as an optically transparent medium. Therefore, aside from visual perception, the ACE unexpectedly serves as an excellent transplantation site for different body parts and a unique platform for noninvasive, longitudinal, and intravital microimaging of different grafts. On the basis of these merits, the ACE technology has evolved from the prototypical through the conventional to the advanced version. Studies using this technology as a versatile biomedical research platform have led to a diverse range of basic knowledge and in-depth understanding of a variety of cells, tissues, and organs as well as artificial biomaterials, pharmaceuticals, and abiotic substances. Remarkably, the technology turns in vivo dynamic imaging of the morphological characteristics, organotypic features, developmental fates, and specific functions of intracameral grafts into reality under physiological and pathological conditions. Here we review the anatomical, optical, and immunological bases as well as technical details of the ACE technology. Moreover, we discuss major achievements obtained and potential prospective avenues for this technology.

摘要

眼前房(ACE)在解剖学、光学和免疫学上具有独特的特点。这保证了眼睛在遇到炎症等不利情况时,能够在生理环境中感知视觉信息。此外,ACE 还赋予了富含血管和神经的特殊苗圃床虹膜。ACE 构成了一个封闭的空间,其中包含富含氧气/营养物质、免疫特惠和较少压力的环境,以及光学透明的介质。因此,除了视觉感知,ACE 还出人意料地成为了不同身体部位的绝佳移植部位,以及非侵入性、纵向和活体微成像不同移植物的独特平台。基于这些优点,ACE 技术已经从原型发展到传统再到高级版本。使用该技术作为多功能生物医学研究平台的研究导致了对各种细胞、组织和器官以及人工生物材料、药物和非生物物质的广泛的基础知识和深入理解。值得注意的是,该技术使我们能够在生理和病理条件下实现对房内移植物的形态特征、器官特征、发育命运和特定功能的活体动态成像。在这里,我们回顾了 ACE 技术的解剖学、光学和免疫学基础以及技术细节。此外,我们还讨论了该技术取得的主要成果和潜在的前瞻性途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07e/11381035/1c7fcbfe90f3/prv-00024-2023r01.jpg

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