Current Views about the Inflammatory Damage Triggered by Bacterial Superantigens and Experimental Attempts to Neutralize Superantigen-Mediated Toxic Effects with Natural and Biological Products
L. Santacroce, S. Topi, I. Charitos, R. Lovero, Paolo Luperto, Raffele Palmirotta, Emilio Jirillo
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引用次数: 0
Abstract
Superantigens, i.e., staphylococcal enterotoxins and toxic shock syndrome toxin-1, interact with T cells in a different manner in comparison to conventional antigens. In fact, they activate a larger contingent of T lymphocytes, binding outside the peptide-binding groove of the major histocompatibility complex class II. Involvement of many T cells by superantigens leads to a massive release of pro-inflammatory cytokines, such as interleukin (IL)-1, IL-2, IL-6, tumor necrosis factor-alpha and interferon-gamma. Such a storm of mediators has been shown to account for tissue damage, multiorgan failure and shock. Besides conventional drugs and biotherapeutics, experiments with natural and biological products have been undertaken to attenuate the toxic effects exerted by superantigens. In this review, emphasis will be placed on polyphenols, probiotics, beta-glucans and antimicrobial peptides. In fact, these substances share a common functional denominator, since they skew the immune response toward an anti-inflammatory profile, thus mitigating the cytokine wave evoked by superantigens. However, clinical applications of these products are still scarce, and more trials are needed to validate their usefulness in humans.
超级抗原,即葡萄球菌肠毒素和中毒性休克综合症毒素-1,与传统抗原相比,以不同的方式与 T 细胞相互作用。事实上,它们能激活更多的 T 淋巴细胞,在主要组织相容性复合体 II 类的肽结合槽外结合。超级抗原使许多 T 细胞参与其中,导致大量释放促炎细胞因子,如白细胞介素(IL)-1、IL-2、IL-6、肿瘤坏死因子-α 和干扰素-γ。这种介质风暴已被证明是造成组织损伤、多器官衰竭和休克的原因。除了传统药物和生物疗法外,人们还利用天然产品和生物制品进行实验,以减轻超抗原产生的毒性效应。在本综述中,重点将放在多酚、益生菌、β-葡聚糖和抗菌肽上。事实上,这些物质都有一个共同的功能特点,即它们能使免疫反应偏向于抗炎,从而减轻超级抗原引起的细胞因子波。然而,这些产品的临床应用仍然很少,需要更多的试验来验证它们在人体中的效用。
期刊介绍:
Pathophysiology is an international journal which publishes papers in English which address the etiology, development, and elimination of pathological processes. Contributions on the basic mechanisms underlying these processes, model systems and interdisciplinary approaches are strongly encouraged.