Sinha Arjyabaran, Basiruddin Sk, Chakraborty Atanu, Jana Nikhil R
Centre for Advanced Materials, Indian Association for the Cultivation of Science , Kolkata 700032, India.
ACS Appl Mater Interfaces. 2015 Jan 21;7(2):1340-7. doi: 10.1021/am507817b. Epub 2015 Jan 8.
Although cholesterol plays significant biochemical function in the human body, excess of it leads to various disorders, and thus, its control/separation is important in medical science and food industries. However, efficient and selective separation of cholesterol is challenging because cholesterol often exists in microheterogeneous or insoluble forms in remote organ and exists with other chemicals/biochemicals. Here, we have described a colloidal magnetic mesoporous silica (MMS)-based approach for efficient separation of cholesterol in different forms. MMS is functionalized with β-cyclodextrin for selective binding with cholesterol via host-guest interaction. The colloidal form of MMS offers effective interaction with cholesterol of any form, and magnetic property of MMS offers easier separation of bound cholesterol. Functionalized MMS is efficient in separating cholesterol crystals, water-insoluble cholesterol, and the microheterogeneous form of cholesterol from milk or a cellular environment. Developed material can be used to remove cholesterol from a complex bioenvironment and extended for large-scale cholesterol separation from food.
尽管胆固醇在人体中发挥着重要的生化功能,但过量的胆固醇会导致各种疾病,因此,对其进行控制/分离在医学和食品工业中都很重要。然而,高效且选择性地分离胆固醇具有挑战性,因为胆固醇通常以微不均匀或不溶的形式存在于远端器官中,并且与其他化学物质/生物化学物质共存。在此,我们描述了一种基于胶体磁性介孔二氧化硅(MMS)的方法,用于高效分离不同形式的胆固醇。MMS通过β-环糊精功能化,通过主客体相互作用与胆固醇选择性结合。MMS的胶体形式能与任何形式的胆固醇进行有效相互作用,而MMS的磁性则使结合的胆固醇更容易分离。功能化的MMS能够有效地从牛奶或细胞环境中分离胆固醇晶体、水不溶性胆固醇以及微不均匀形式的胆固醇。所开发的材料可用于从复杂的生物环境中去除胆固醇,并可扩展用于从食品中大规模分离胆固醇。