General Pathology Department, Dental School, University of Sao Paulo, São Paulo, Brazil.
Centre for Craniofacial and Regenerative Biology, King's College London, London, UK.
J Anat. 2021 Mar;238(3):794-806. doi: 10.1111/joa.13336. Epub 2020 Oct 19.
Aquaporins (AQPs) are essential to coordinate the transit of water and ions through the cell membrane. In salivary glands (SGs), AQPs have been associated with saliva formation, facilitating water absorption through the epithelium during the formation of hypotonic saliva, which is then secreted into the oral cavity. Different members of the AQP family have been suggested to play distinct roles during embryonic development, highlighted by their specific expression patterns. Here, we have investigated the expression patterns of AQP-1, AQP-3 and AQP-5 by immunofluorescence at key stages of salivary gland development, utilising cultured mouse embryonic submandibular (SMG) and sublingual (SLG) glands. The expression of AQPs was compared to a mitotic marker, phospho-histone 3 (PH3), a myoepithelial marker, smooth muscle actin (SMA), and a vascular marker, CD31. Qualitative analysis revealed that AQP-1 and AQP-3 were primarily expressed during the earlier phases of SG morphogenesis and were associated with cells undergoing mitotic processes (PH3-positive). AQP-5, in contrast, was not associated to mitotic figures, but was predominantly expressed during late stages of SG morphogenesis. Our results highlight that AQPs are expressed from early stages of SG morphogenesis and exhibit complimentary expression patterns that may contribute to the morphogenesis of salivary glands.
水通道蛋白(AQP)对于协调水分子和离子通过细胞膜的转运至关重要。在唾液腺(SG)中,AQP 与唾液的形成有关,在形成低渗唾液时,通过上皮细胞促进水的吸收,然后将其分泌到口腔中。AQP 家族的不同成员在胚胎发育过程中可能发挥不同的作用,其特定的表达模式突出了这一点。在这里,我们通过免疫荧光技术在唾液腺发育的关键阶段研究了 AQP-1、AQP-3 和 AQP-5 的表达模式,利用培养的小鼠胚胎颌下(SMG)和舌下(SLG)腺。AQP 的表达与有丝分裂标志物磷酸组蛋白 3(PH3)、肌上皮标志物平滑肌肌动蛋白(SMA)和血管标志物 CD31 进行了比较。定性分析表明,AQP-1 和 AQP-3 主要在 SG 形态发生的早期阶段表达,并与经历有丝分裂过程的细胞(PH3 阳性)相关。相比之下,AQP-5 与有丝分裂图无关,但主要在 SG 形态发生的晚期表达。我们的结果表明,AQP 从 SG 形态发生的早期阶段开始表达,并表现出互补的表达模式,这可能有助于唾液腺的形态发生。