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Dietary Supplementation with Lactobacilli Improves Emergency Granulopoiesis in Protein-Malnourished Mice and Enhances Respiratory Innate Immune Response

机译:膳食补充乳酸杆菌可改善蛋白质营养不良小鼠的紧急粒细胞生成并增强呼吸性先天免疫反应。

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摘要

This work studied the effect of protein malnutrition on the hemato-immune response to the respiratory challenge with Streptococcus pneumoniae and evaluated whether the dietary recovery with a probiotic strain has a beneficial effect in that response. Three important conclusions can be inferred from the results presented in this work: a) protein-malnutrition significantly impairs the emergency myelopoiesis induced by the generation of the innate immune response against pneumococcal infection; b) repletion of malnourished mice with treatments including nasally or orally administered Lactobacillus rhamnosus CRL1505 are able to significantly accelerate the recovery of granulopoiesis and improve innate immunity and; c) the immunological mechanisms involved in the protective effect of immunobiotics vary according to the route of administration. The study demonstrated that dietary recovery of malnourished mice with oral or nasal administration of L. rhamnosus CRL1505 improves emergency granulopoiesis and that CXCR4/CXCR12 signaling would be involved in this effect. Then, the results summarized here are a starting point for future research and open up broad prospects for future applications of probiotics in the recovery of immunocompromised malnourished hosts.
机译:这项工作研究了蛋白质营养不良对肺炎链球菌对呼吸道激发的血液免疫反应的影响,并评估了益生菌菌株的饮食恢复在该反应中是否具有有益作用。从这项工作得出的结果可以得出三个重要的结论:a)营养不良严重损害了由针对肺炎球菌感染的先天免疫应答的产生所诱发的紧急骨髓细胞生成; b)用包括经鼻或口服给予的鼠李糖乳杆菌CRL1505在内的治疗对营养不良的小鼠进行补充,能够显着加速粒细胞生成的恢复并提高先天免疫力;以及c)免疫生物素的保护作用所涉及的免疫机制根据给药途径的不同而不同。该研究表明,口服或经鼻给予鼠李糖乳杆菌CRL1505可使营养不良的小鼠饮食恢复,可改善紧急粒细胞生成,而CXCR4 / CXCR12信号传导可能与这种作用有关。然后,此处总结的结果是未来研究的起点,并为益生菌在免疫受损的营养不良宿主的恢复中的未来应用打开了广阔的前景。

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