Division of Physical Chemistry, Center for Chemistry and Chemical Engineering, Lund University , P.O. Box 124, SE-221 00 Lund, Sweden.
Langmuir. 2013 Dec 23;29(51):15926-35. doi: 10.1021/la4032927. Epub 2013 Dec 11.
Calcium alginate beads, which are biodegradable and biocompatible, have been widely employed as delivery matrices for biomacromolecules. In the present work, the feasibility of encapsulation of DNA (which is used as a model biomacromolecule) in calcium alginate nanobeads (sub-200 nm size), prepared using a recently developed protocol based on the phase inversion temperature (PIT) emulsification method [Machado et al. Langmuir 2012, 28, 4131-4141], was assessed. The properties of the nanobeads were compared to those of the corresponding macroscopic (millimeter sized) calcium alginate beads. It was found that DNA, representing a relatively stiff and highly charged polyanion (thus like-charged to alginate), could be efficiently encapsulated in both nanosized and macroscopic beads, with encapsulation yields in the range of 77-99%. Complete release of DNA from the beads could be accomplished on dissolution of the gel by addition of a calcium-chelating agent. Importantly, the DNA was not denatured or fragmented during the preparation and collection of the nanobeads, which are good indicators of the mildness of the preparation protocol used. The calcium alginate nanobeads prepared by the herein utilized protocol thus show good potential to be used as carriers of sensitive biomacromolecules.
海藻酸钙珠,其具有生物可降解性和生物相容性,已被广泛用作生物大分子的递送基质。在本工作中,评估了使用最近基于相转变温度(PIT)乳化法[Machado 等人,Langmuir 2012, 28, 4131-4141]开发的方案制备的亚 200nm 大小的海藻酸钙纳米珠(纳米珠)封装 DNA(用作模型生物大分子)的可行性。将纳米珠的性质与相应的宏观(毫米级)海藻酸钙珠的性质进行了比较。结果发现,DNA 作为一种相对刚性和带高电荷的多阴离子(因此与海藻酸带同种电荷),可以高效地封装在纳米和宏观珠中,包封率在 77-99%范围内。通过加入钙螯合剂溶解凝胶,可以完成从珠中完全释放 DNA。重要的是,在纳米珠的制备和收集过程中,DNA 没有变性或断裂,这是所使用的温和制备方案的良好指标。因此,通过本文中利用的方案制备的海藻酸钙纳米珠具有作为敏感生物大分子载体的良好潜力。