Ingulados S.L., Cáceres, Spain.
Departamento de Bioquímica, Biología Molecular y Genética, Facultad de Ciencias, Universidad de Extremadura, 06071, Badajoz, Spain.
Vet Res. 2023 Oct 16;54(1):91. doi: 10.1186/s13567-023-01228-z.
The microbiota in humans and animals play crucial roles in defense against pathogens and offer a promising natural source for immunomodulatory products. However, the development of physiologically relevant model systems and protocols for testing such products remains challenging. In this study, we present an experimental condition where various natural products derived from the registered lactic acid bacteria Ligilactobacillus salivarius CECT 9609, known for their immunomodulatory activity, were tested. These products included live and inactivated bacteria, as well as fermentation products at different concentrations and culture times. Using our established model system, we observed no morphological changes in the airway epithelium upon exposure to Pasteurella multocida, a common respiratory pathogen. However, early molecular changes associated with the innate immune response were detected through transcript analysis. By employing diverse methodologies ranging from microscopy to next-generation sequencing (NGS), we characterized the interaction of these natural products with the airway epithelium and their potential beneficial effects in the presence of P. multocida infection. In particular, our discovery highlights that among all Ligilactobacillus salivarius CECT 9609 products tested, only inactivated cells preserve the conformation and morphology of respiratory epithelial cells, while also reversing or altering the natural immune responses triggered by Pasteurella multocida. These findings lay the groundwork for further exploration into the protective role of these bacteria and their derivatives.
人和动物的微生物群在防御病原体方面发挥着至关重要的作用,并为免疫调节剂产品提供了有前景的天然来源。然而,开发生理相关的模型系统和测试这些产品的方案仍然具有挑战性。在本研究中,我们提出了一种实验条件,其中测试了源自已注册的乳酸杆菌唾液乳杆菌 CECT9609 的各种天然产物,这些天然产物已知具有免疫调节活性。这些产品包括活菌和灭活菌,以及不同浓度和培养时间的发酵产物。使用我们建立的模型系统,我们在暴露于多杀巴斯德氏菌(一种常见的呼吸道病原体)时未观察到气道上皮的形态变化。然而,通过转录分析检测到与先天免疫反应相关的早期分子变化。通过采用从显微镜到下一代测序(NGS)的多种方法,我们描述了这些天然产物与气道上皮的相互作用以及它们在多杀巴斯德氏菌感染存在时的潜在有益效果。特别是,我们的发现表明,在所测试的所有唾液乳杆菌 CECT9609 产品中,只有灭活细胞保留了呼吸道上皮细胞的构象和形态,同时还逆转或改变了多杀巴斯德氏菌引发的天然免疫反应。这些发现为进一步探索这些细菌及其衍生物的保护作用奠定了基础。