Ciani Caterina, Falcone Carmen
Department of Neuroscience, International School for Advanced Studies (SISSA), Trieste, Italy.
Front Cell Neurosci. 2024 Nov 25;18:1477753. doi: 10.3389/fncel.2024.1477753. eCollection 2024.
In the last years, science started to move toward a more view, in which astrocytes are hypothesized to be directly involved in cognitive functions. Indeed, astrocytes show a variety of shapes with species-specific characteristics, suggesting a specialization of roles during evolution. Interlaminar (ILA) and varicose-projection (VP-As) astrocytes show an anatomical organization that is different compared to the classical horizontal net typically formed by protoplasmic and fibrous astrocytes. ILAs show a modular architecture with the soma in the first cortical layer and processes toward the deep layers with species-specific length. VP-As reside in the deep layers of the cortex, are characterized by varicosities on the longest processes, and are individual-specific. These characteristics suggest roles that are more complex than what was theorized until now. Here, we recapitulate what we know so far from literature from the first time ILAs were described to the most recent discoveries, spanning from morphology description, hypothesis on the development to their features in diseases. For a complete glance on this topic, we included a final paragraph on which techniques and models were used to study ILAs and VP-As, and what new avenues may be opened thanks to more novel methods.
在过去几年中,科学界开始朝着一种更为全面的观点发展,即假设星形胶质细胞直接参与认知功能。事实上,星形胶质细胞呈现出多种具有物种特异性特征的形态,这表明其在进化过程中角色有所专门化。层间星形胶质细胞(ILA)和曲张投射星形胶质细胞(VP - As)呈现出一种与典型的由原浆性和纤维性星形胶质细胞形成的水平网络不同的解剖结构。ILA呈现出模块化结构,其胞体位于第一皮质层,其突起向深层延伸,且具有物种特异性长度。VP - As位于皮质深层,其特征是在最长的突起上有曲张,且具有个体特异性。这些特征表明它们所起的作用比目前理论所推测的更为复杂。在此,我们总结了从ILA首次被描述到最新发现以来,从文献中了解到的情况,涵盖形态学描述、发育假说以及它们在疾病中的特征。为了全面了解这个主题,我们在最后一段介绍了用于研究ILA和VP - As的技术和模型,以及由于更新颖的方法可能会开辟哪些新途径。