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Concentration Dependent Influence of Lipopolysaccharides on Separation of Hoof Explants and Supernatant Lactic Acid Concentration in an Ex Vivo/In Vitro Laminitis Model

机译:脂多糖对离体/离体椎板炎模型中蹄类植物分离和上清乳酸浓度的浓度依赖性影响

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摘要

Laminitis is one of the most common diseases in horses. It is not only painful for the animal, but also has a significant financial impact on the equine industry. This multifactorial disease affects the connective tissue of the hoof. However, the pathogenesis of laminitis is still not fully understood. Endotoxins, also known as lipopolysaccharides (LPS), and bacterial exotoxins seem to play an important role during the development of laminitis. The aim of our study was to investigate the effect of increasing LPS concentrations (0, 2.5, 5, 10, and 100 μg/mL) on cell viability of isolated epidermal and dermal hoof cells as well as on the tissue integrity of hoof explants. Furthermore, glucose, acetic acid, lactic acid, and propionic acid concentrations in explant supernatants were measured to evaluate the energy metabolism in the hoof tissue. LPS did not exhibit cytotoxic effects on epidermal or dermal cells. Force required to separate LPS treated hoof explants decreased in a concentration dependent manner. Specifically, explants incubated with 10 and 100 μg/mL needed significantly less force to separate compared to control explants. Lactic acid concentrations were significantly decreased in explants incubated with 5, 10, or 100 μg/mL LPS, while glucose, acetic acid and propionic acid concentrations were unaffected by LPS treatment. Our study indicates that LPS has no cytotoxic effect on epidermal and dermal cells isolated from hoof tissue, but impairs integrity of hoof explants. In addition, LPS led to an alteration of the lactic acid production in the lamellar tissue. Since our data highlight that LPS can affect the integrity of the equine hoof tissue in vitro, endotoxins should be further explored for their contribution to facilitate the development of laminitis.
机译:椎板炎是马中最常见的疾病之一。它不仅给动物带来痛苦,而且对马业产生重大的财务影响。这种多因素疾病会影响蹄的结缔组织。但是,尚未完全了解椎板炎的发病机理。内毒素,也称为脂多糖(LPS),以及细菌外毒素似乎在椎板炎的发展中起着重要作用。我们研究的目的是研究提高LPS浓度(0、2.5、5、10和100μg/ mL)对分离的表皮和真皮蹄细胞的细胞活力以及蹄外植体组织完整性的影响。此外,测量外植体上清液中葡萄糖,乙酸,乳酸和丙酸的浓度,以评估蹄组织中的能量代谢。 LPS对表皮或真皮细胞没有细胞毒性作用。分离LPS处理的蹄外植体所需的力以浓度依赖性方式降低。具体而言,与对照外植体相比,以10和100μg/ mL孵育的外植体所需的分离力要小得多。用5、10或100μg/ mL LPS孵育的外植体中的乳酸浓度显着降低,而LPS处理不会影响葡萄糖,乙酸和丙酸的浓度。我们的研究表明,LPS对从蹄组织分离的表皮和真皮细胞没有细胞毒性作用,但会损害蹄外植体的完整性。另外,LPS导致层状组织中乳酸产生的改变。由于我们的数据表明LPS可以在体外影响马蹄组织的完整性,因此应进一步探索内毒素的作用,以促进椎板炎的发展。

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