Benmebarek Imed E, Maqsood Sammra, Khalid Waseem, Navaf Muhammed, Rasool Izza Faiz Ul, Moreno Andres, Esatbeyoglu Tuba
Department of Inorganic, Organic and Biochemistry, Faculty of Chemical Sciences and Technologies, University of Castilla La Mancha, 13071 Ciudad Real, Spain.
Metabolic Pathophysiology Research Group, Department of Experimental Medicine, University of Lleida (UdL), Lleida Biomedical Research Institute (IRBLleida), 25198, Lleida, Spain.
Int J Biol Macromol. 2025 Aug;320(Pt 3):145953. doi: 10.1016/j.ijbiomac.2025.145953. Epub 2025 Jul 11.
The recovery of biopolymers like low-methoxyl pectin (LMP) from agro-industrial waste materials is gaining momentum due to the increased demand and sustainable ecofriendly sources. This review highlights the significance of LMP derived from agro-industrial residues, with a focus on its structural, functional, and techno-economic properties. The conventional and novel extraction methods are explored with respect to their effectiveness and sustainability. The molecular arrangement and structure of LMP were discussed in detail, along with a comparative explanation with high methoxyl pectin. The techno-functional attributes of LMP, such as gelling, emulsification, and water-holding capacity, are deliberated regarding its usage in food, pharmaceutical, and environmental applications. Further, the economic view of LMP manufacture is also deliberated and emphasizing cost effective approaches and how its enterprises a circular economy. Overall, this review highlights the role of LMP as a versatile biopolymer that drives innovation in numerous industries and environmental sustainability.
由于需求增加以及可持续的环保来源,从农业工业废料中回收低甲氧基果胶(LMP)等生物聚合物正变得越来越重要。本综述强调了源自农业工业残渣的LMP的重要性,重点关注其结构、功能和技术经济特性。探讨了传统和新型提取方法的有效性和可持续性。详细讨论了LMP的分子排列和结构,并与高甲氧基果胶进行了对比说明。就LMP在食品、制药和环境应用中的用途,对其技术功能属性(如胶凝、乳化和持水能力)进行了审议。此外,还审议了LMP制造的经济观点,强调了具有成本效益的方法以及它如何促进循环经济。总体而言,本综述强调了LMP作为一种多功能生物聚合物的作用,它推动了众多行业的创新和环境可持续性。