Kudva Indira T, Biernbaum Erika N, Cassmann Eric D, Palmer Mitchell V
Food Safety and Enteric Pathogens Research Unit, National Animal Disease Center, Agricultural Research Service, U.S. Department of Agriculture, Ames, IA 50010, USA.
Oak Ridge Institute for Science and Education, Oak Ridge, TN 37830, USA.
Microorganisms. 2023 May 15;11(5):1289. doi: 10.3390/microorganisms11051289.
Studies evaluating the interactions between Shiga toxin-producing O157:H7 (O157) and the bovine recto-anal junction (RAJ) have been limited to either in vitro analyses of bacteria, cells, or nucleic acids at the RAJ, providing limited information. Alternatively, expensive in vivo studies in animals have been conducted. Therefore, our objective was to develop a comprehensive in vitro organ culture system of the RAJ (RAJ-IVOC) that accurately represents all cell types present in the RAJ. This system would enable studies that yield results similar to those observed in vivo. Pieces of RAJ tissue, obtained from unrelated cattle necropsies, were assembled and subjected to various tests in order to determine the optimal conditions for assaying bacterial adherence in a viable IVOC. O157 strain EDL933 and K12 with known adherence differences were used to standardize the RAJ-IVOC adherence assay. Tissue integrity was assessed using cell viability, structural cell markers, and histopathology, while the adherence of bacteria was evaluated via microscopy and culture methods. DNA fingerprinting verified the recovered bacteria against the inoculum. When the RAJ-IVOC was assembled in Dulbecco's Modified Eagle Medium, maintained at a temperature of 39 °C with 5% CO and gentle shaking for a duration of 3-4 h, it successfully preserved tissue integrity and reproduced the expected adherence phenotype of the bacteria being tested. The RAJ-IVOC model system provides a convenient method to pre-screen multiple bacteria-RAJ interactions prior to in vivo experiments, thereby reducing animal usage.
评估产志贺毒素的O157:H7(O157)与牛直肠肛管连接部(RAJ)之间相互作用的研究,要么局限于对RAJ处细菌、细胞或核酸的体外分析,所提供的信息有限;要么进行了代价高昂的动物体内研究。因此,我们的目标是开发一种全面的RAJ体外器官培养系统(RAJ-IVOC),该系统能准确呈现RAJ中存在的所有细胞类型。这个系统将使研究结果与体内观察到的结果相似。从无关牛尸检中获取的RAJ组织块被组装起来,并进行各种测试,以确定在可行的IVOC中检测细菌黏附的最佳条件。使用已知黏附差异的O157菌株EDL933和K12来标准化RAJ-IVOC黏附试验。通过细胞活力、结构细胞标志物和组织病理学评估组织完整性,同时通过显微镜和培养方法评估细菌的黏附情况。DNA指纹图谱验证回收的细菌与接种物是否一致。当RAJ-IVOC在杜氏改良伊格尔培养基中组装,在39°C、5%二氧化碳条件下温和振荡3 - 4小时时,它成功保持了组织完整性,并重现了受试细菌预期的黏附表型。RAJ-IVOC模型系统提供了一种方便的方法,可在体内实验前预先筛选多种细菌与RAJ的相互作用,从而减少动物使用量。