TI Food & Nutrition, Nieuwe Kanaal 9A, 6709 PA Wageningen, The Netherlands.
Eur J Pharmacol. 2011 Sep;668 Suppl 1:S33-42. doi: 10.1016/j.ejphar.2011.07.012. Epub 2011 Jul 27.
Pharmaceutical agents are routinely used in the treatment of gastrointestinal disorders and their role as modulators of host cell responses is well characterized. In contrast, the understanding of the molecular mechanisms, which determine the role of probiotics, i.e. health-promoting bacteria, as host cell modulators is still in its infancy. Both in vitro and in vivo studies are just starting to reveal the capability of probiotic lactobacilli to modulate host cell-signaling networks and the associated influences on downstream regulatory pathways, including modulation of mucosal cytokine profiles that dictate host immune functions. The communication between probiotic lactobacilli and intestinal host cells is multifactorial and involves an integrative repertoire of receptors on the host side that recognize multiple effector molecules on the bacterial side, of which most have been found to be cell wall- or cell surface-associated compounds and proteins. This review describes the discovery of these bacterial effector molecules and their role in strain- and species-specific modulation of host signaling pathways. Unraveling the mechanisms responsible for probiotic-host interactions will progress this research field towards molecular science and will provide markers for probiotic product quality control as well as host-response efficacy. These developments can ultimately lead to a more dedicated, personalized application of probiotics with strong molecular and scientific support for health promotion.
药物制剂通常用于治疗胃肠道疾病,其作为宿主细胞反应调节剂的作用已得到充分证实。相比之下,对于益生菌(即促进健康的细菌)作为宿主细胞调节剂的分子机制的理解仍处于起步阶段。体外和体内研究才刚刚开始揭示益生菌乳杆菌调节宿主细胞信号转导网络的能力,以及对下游调控途径的相关影响,包括调节决定宿主免疫功能的黏膜细胞因子谱。益生菌乳杆菌与肠道宿主细胞之间的通讯是多因素的,涉及宿主侧的一系列整合受体,这些受体识别细菌侧的多种效应分子,其中大多数已被发现是与细胞壁或细胞表面相关的化合物和蛋白质。本文综述了这些细菌效应分子的发现及其在宿主信号通路的菌株和物种特异性调节中的作用。阐明益生菌-宿主相互作用的机制将推动这一研究领域向分子科学发展,并为益生菌产品质量控制以及宿主反应疗效提供标志物。这些发展最终可以为促进健康的益生菌应用提供更具针对性和个性化的支持,具有强大的分子和科学依据。