Konozy Emadeldin H E, Osman Makarim Elfadil M
Biotechnology Department, Africa City of Technology, Khartoum, Sudan.
Pharmaceutical Research and Development Centre, Faculty of Pharmacy, Karary University Omdurman, Khartoum State, Sudan.
Heliyon. 2024 Oct 18;10(20):e39471. doi: 10.1016/j.heliyon.2024.e39471. eCollection 2024 Oct 30.
Beans, vegetables, fruits, and mushrooms offer a delightful array of fragrances and an abundance of nutrients, including essential vitamins, minerals, protein rich in vital amino acids, and omega-3 fatty acids. However, they may also contain lectins, carbohydrate-binding proteins with potential health risks. While some lectins exhibit stability and resistance to digestion, posing threats to gastrointestinal integrity and immune function, others, such as those from butterfly peas and pink bauhinia, show immunomodulatory properties that could bolster immune responses. While some lectins, such as phytohemagglutinin, have been associated with inflammatory responses and autoimmune disorders, others, such as wheat lectin, have shown potential benefits in nutrient absorption. Additionally, mushroom lectins, while generally nontoxic, exhibit immunomodulatory properties with implications for immune health. Despite their potential benefits, challenges remain in understanding lectin dosages, administration routes, and mechanisms of action. Further research is needed to elucidate the intricate roles of dietary lectins in immune function and autoimmune disorders. This review surveys the immunomodulatory effects of dietary lectins from plants and mushrooms, shedding light on their mechanisms of action. From inflammation modulation to potential autoimmune implications, the diverse roles of dietary lectins have been explored, highlighting avenues for future investigations and therapeutic exploration.
豆类、蔬菜、水果和蘑菇散发着宜人的香气,富含多种营养成分,包括必需维生素、矿物质、富含重要氨基酸的蛋白质以及欧米伽-3脂肪酸。然而,它们也可能含有凝集素,即具有潜在健康风险的碳水化合物结合蛋白。一些凝集素具有稳定性且不易被消化,会对胃肠道完整性和免疫功能构成威胁,而另一些,如来自蝶豆花和洋紫荆的凝集素,则具有免疫调节特性,可增强免疫反应。虽然一些凝集素,如植物血凝素,与炎症反应和自身免疫性疾病有关,但另一些,如小麦凝集素,在营养吸收方面显示出潜在益处。此外,蘑菇凝集素虽然一般无毒,但具有免疫调节特性,对免疫健康有影响。尽管它们有潜在益处,但在了解凝集素的剂量、给药途径和作用机制方面仍存在挑战。需要进一步研究以阐明膳食凝集素在免疫功能和自身免疫性疾病中的复杂作用。本综述调查了植物和蘑菇中膳食凝集素的免疫调节作用,揭示了它们的作用机制。从炎症调节到潜在的自身免疫影响,已探讨了膳食凝集素的多种作用,突出了未来研究和治疗探索的途径。