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A bovine mammary endothelial/epithelial cell culture model of the blood/milk barrier.

机译:血液/牛奶屏障的牛乳腺内皮/上皮细胞培养模型。

摘要

The complex nature of the mammary gland has hampered in-depth studies of the relationship of the circulatory system to cells lining the teat ducts and alveoli of the gland. This study reports an in vitro model of endothelial and epithelial cells separated by a subcellular matrix that simulates the blood milk barrier of the bovine mammary gland. Dual chamber culture dishes with a porous membrane separating the upper and lower chamber were used. Endothelial and epithelial cells were cultured on opposite sides of the porous membrane. A collagen and fibroblast subcellular matrix, separating the 2 cell layers, simulated the in vivo interstitial tissue. Changes in surface binding of anti-bodies to polymorphonuclear neutrophils (PMN) following their migration from the upper to the lower chamber simulated the passage of PMN from blood to milk. Changes in the binding of antibodies to PMN agreed with results observed following the migration of PMN from blood to milk in vivo. This gives credence to the model's potential value for studies where more direct observation of the blood/milk barrier is required. The model will be further tested for its usefulness as an assay for determining: 1) antibiotic diffusion from milk to blood and from blood to milk, 2) cytotoxicity of prophylactic and therapeutic mammary infusion products, 3) factors affecting bacterial adhesion and penetration of mammary epithelial tissue, 4) effectiveness of antibodies present in lacteal secretions in preventing bacterial adhesion, and 5) the feasibility of gene constructs to induce synthesis and secretion of mastitis-preventing compounds and prophylactic and therapeutic compounds for treatment of human disorders.
机译:乳腺的复杂性妨碍了对循环系统与乳腺导管和腺泡内衬细胞的关系的深入研究。这项研究报告了由亚细胞基质分隔的内皮细胞和上皮细胞的体外模型,该细胞模型模拟牛乳腺的血乳屏障。使用具有将上部腔室和下部腔室隔开的多孔膜的双腔培养皿。内皮细胞和上皮细胞在多孔膜的相对侧培养。胶原蛋白和成纤维细胞亚细胞基质将两个细胞层分开,模拟了体内的间质组织。抗体与多形核中性粒细胞(PMN)从上腔室向下腔室迁移后,其表面结合的变化模拟了PMN从血液进入乳汁的过程。抗体与PMN结合的变化与PMN在体内从血液迁移到牛奶后观察到的结果一致。这为需要更直接观察血液/牛奶屏障的研究提供了模型的潜在价值。将进一步测试该模型的有效性,以测定以下各项:1)抗生素从牛奶到血液以及从血液到牛奶的扩散,2)预防和治疗性乳腺输注产品的细胞毒性,3)影响细菌粘附和乳腺渗透的因素4)乳汁分泌物中存在的抗体在预防细菌粘附方面的有效性,以及5)基因构建体诱导合成和分泌预防乳腺炎的化合物以及用于治疗人类疾病的预防性和治疗性化合物的可行性。

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