Ahuja Vishal, Macho Markéta, Ewe Daniela, Singh Manoj, Saha Subhasish, Saurav Kumar
Department of Biotechnology, Himachal Pradesh University, Shimla 171005, India.
Laboratory of Algal Biotechnology-Centre Algatech, Institute of Microbiology of the Czech Academy of Sciences, 37901 Třeboň, Czech Republic.
Foods. 2020 Nov 2;9(11):1592. doi: 10.3390/foods9111592.
Xylitol is a white crystalline, amorphous sugar alcohol and low-calorie sweetener. Xylitol prevents demineralization of teeth and bones, otitis media infection, respiratory tract infections, inflammation and cancer progression. NADPH generated in xylitol metabolism aid in the treatment of glucose-6-phosphate deficiency-associated hemolytic anemia. Moreover, it has a negligible effect on blood glucose and plasma insulin levels due to its unique metabolism. Its diverse applications in pharmaceuticals, cosmetics, food and polymer industries fueled its market growth and made it one of the top 12 bio-products. Recently, xylitol has also been used as a drug carrier due to its high permeability and non-toxic nature. However, it become a challenge to fulfil the rapidly increasing market demand of xylitol. Xylitol is present in fruit and vegetables, but at very low concentrations, which is not adequate to satisfy the consumer demand. With the passage of time, other methods including chemical catalysis, microbial and enzymatic biotransformation, have also been developed for its large-scale production. Nevertheless, large scale production still suffers from high cost of production. In this review, we summarize some alternative approaches and recent advancements that significantly improve the yield and lower the cost of production.
木糖醇是一种白色结晶性无定形糖醇,也是一种低热量甜味剂。木糖醇可预防牙齿和骨骼脱矿、中耳炎感染、呼吸道感染、炎症以及癌症进展。木糖醇代谢过程中产生的还原型辅酶II(NADPH)有助于治疗葡萄糖-6-磷酸缺乏相关的溶血性贫血。此外,由于其独特的代谢方式,它对血糖和血浆胰岛素水平的影响可忽略不计。它在制药、化妆品、食品和聚合物行业的广泛应用推动了其市场增长,并使其成为前12大生物产品之一。最近,由于木糖醇具有高渗透性和无毒的特性,它还被用作药物载体。然而,满足木糖醇迅速增长的市场需求成为一项挑战。木糖醇存在于水果和蔬菜中,但含量非常低,不足以满足消费者需求。随着时间的推移,人们还开发了包括化学催化、微生物和酶生物转化在内的其他方法来进行大规模生产。尽管如此,大规模生产仍然面临生产成本高昂的问题。在这篇综述中,我们总结了一些能显著提高产量并降低生产成本的替代方法和最新进展。