Radloff Judith, Falchuk Evgeny L, Markov Alexander G, Amasheh Salah
Institute of Veterinary Physiology, Freie Universität BerlinBerlin, Germany.
Department of General Physiology, Saint Petersburg State UniversitySt. Petersburg, Russia.
Front Physiol. 2017 Aug 14;8:579. doi: 10.3389/fphys.2017.00579. eCollection 2017.
The pig represents a preferred model for the analysis of intestinal immunology. However, the barrier of the follicle-associated epithelium (FAE) covering porcine Peyer's patches (PP) has not yet been characterized in detail. This study aimed to perform this characterization in order to pave the way toward an understanding of the functional contribution of epithelial barrier properties in gut immunology. Porcine tissue specimens were taken from the distal small intestine in order to obtain electrophysiological data of PP FAE and neighboring villous epithelium (VE), employing the Ussing chamber technique. Transepithelial resistance (TER) and paracellular fluorescein flux were measured, and tissues were morphometrically compared. In selfsame tissues, expression and localization of major tight junction (TJ) proteins (claudin-1, -2, -3, -4, -5, and -8) were analyzed. PP FAE specimens showed a higher TER and a lower apparent permeability for sodium fluorescein than VE. Immunoblotting revealed an expression of all claudins within both epithelia, with markedly stronger expression of the sealing TJ protein claudin-4 in PP FAE compared with the neighboring VE. Immunohistochemistry confirmed the expression and localization of all claudins in both PP FAE and VE, with stronger claudin-4 abundance in PP FAE. The results are in accordance with the physiological function of the FAE, which strongly regulates and limits antigen uptake determining a mandatory transcellular route for antigen presentation, highlighting the importance of this structure for the first steps of the intestinal immune response. Thus, this study provides detailed insights into the specific barrier properties of the porcine FAE covering intestinal PP, at the interface of intestinal immunology and barriology.
猪是分析肠道免疫学的首选模型。然而,覆盖猪派伊尔结(PP)的滤泡相关上皮(FAE)屏障尚未得到详细表征。本研究旨在进行这一表征,以便为理解上皮屏障特性在肠道免疫学中的功能贡献铺平道路。为了获得PP FAE和邻近绒毛上皮(VE)的电生理数据,采用尤斯灌流小室技术从远端小肠采集猪组织标本。测量跨上皮电阻(TER)和细胞旁荧光素通量,并对组织进行形态计量学比较。在相同组织中,分析主要紧密连接(TJ)蛋白(claudin-1、-2、-3、-4、-5和-8)的表达和定位。PP FAE标本的TER高于VE,对荧光素钠的表观通透性低于VE。免疫印迹显示两种上皮中所有claudin均有表达,与邻近的VE相比,PP FAE中封闭TJ蛋白claudin-4的表达明显更强。免疫组织化学证实了所有claudin在PP FAE和VE中的表达和定位,PP FAE中claudin-4的丰度更高。这些结果与FAE的生理功能一致,FAE强烈调节和限制抗原摄取,决定了抗原呈递的强制性跨细胞途径,突出了该结构在肠道免疫反应第一步中的重要性。因此,本研究在肠道免疫学和屏障学的界面上,对覆盖肠道PP的猪FAE的特定屏障特性提供了详细的见解。