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Fabrication of magnetic and fluorescent chitin and dibutyrylchitin sub-micron particles by oil-in-water emulsification

机译:水包油乳化法制备磁性和荧光几丁质和二丁酰甲壳素亚微米颗粒

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摘要

Chitin is a carbohydrate polymer with unique pharmacological and immunological properties, however, because of its unwieldy chemistry, the synthesis of discreet sized sub-micron particles has not been well reported. This work describes a facile and flexible method to fabricate biocompatible chitin and dibutyrylchitin sub-micron particles. This technique is based on an oil-in-water emulsification/evaporation method and involves the hydrophobicization of chitin by the addition of labile butyryl groups onto chitin, disrupting intermolecular hydrogen bonds and enabling solubility in the organic solvent used as the oil phase during fabrication. The subsequent removal of butyryl groups post-fabrication through alkaline saponification regenerates native chitin while keeping particles morphology intact. Examples of encapsulation of hydrophobic dyes and nanocrystals are demonstrated, specifically using iron oxide nanocrystals and coumarin 6. The prepared particles had diameters between 300-400 nm for dibutyrylchitin and 500-600 nm for chitin and were highly cytocompatible. Moreover, they were able to encapsulate high amounts of iron oxide nanocrystals and were able to label mammalian cells.
机译:几丁质是具有独特药理学和免疫学性质的碳水化合物聚合物,但是,由于其化学笨拙,因此尚未很好地报道过谨慎尺寸的亚微米颗粒的合成。这项工作描述了一种简便而灵活的方法来制造生物相容性几丁质和二丁酰甲壳素亚微米颗粒。该技术基于水包油乳化/蒸发方法,并且涉及通过在甲壳质上添加不稳定的丁酰基将甲壳质疏水化,破坏分子间氢键并使在制造期间用作油相的有机溶剂中溶解。制造后通过碱性皂化作用随后去除的丁酰基可再生天然几丁质,同时保持颗粒形态完整。证明了疏水性染料和纳米晶体的包封实例,特别是使用氧化铁纳米晶体和香豆素6。制得的颗粒的直径对于丁二酰甲壳素为300-400nm,对于甲壳质为500-600nm,并且具有高度的细胞相容性。此外,它们能够封装大量的氧化铁纳米晶体,并能够标记哺乳动物细胞。

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