Panilaitis B, Castro G R, Solaiman D, Kaplan D L
Department of Biomedical Engineering, Bioengineering and Biotechnology Center, Tufts University, Medford, MA 02155, USA.
J Appl Microbiol. 2007 Feb;102(2):531-7. doi: 10.1111/j.1365-2672.2006.03078.x.
The need for biocompatible, biodegradable, and versatile biopolymers permeates many fields including environmental and food technology. The goal of the study presented here is to establish the utility of agricultural oils as an inexpensive carbon source to produce materials useful for biomedical materials and offer positive attributes in terms of green chemistry.
Structural variants of the complex acylated polysaccharide, emulsan, secreted from Acinetobacter venetianus RAG-1, were biosynthesized in cultures supplemented with agricultural feedstocks to examine the feasibility of conversion of these substrates into value-added biopolymers. Acinetobacter venetianus produced chemically and biologically distinct emulsan variants in culture on soy molasses and tallow oil. These variants possess significant biological function, including macrophage activation and adjuvant activity, in similar range to that observed for the standard emulsan formed on ethanol-fed A. venetianus.
The results indicate that this novel family of biopolymers can be produced in significant quantities from the readily available renewable agricultural feedstocks and the resulting structures and functions can be correlated to the chemistry of these feedstocks.
The significant quantities of agricultural oils produced annually represent an untapped source for bioconversion to valuable products. The results of this study confirm that the important polymer emulsan can be synthesized from this inexpensive carbon source.
对生物相容性、可生物降解且用途广泛的生物聚合物的需求贯穿于包括环境和食品技术在内的许多领域。本文所呈现研究的目标是确定农业用油作为一种廉价碳源来生产对生物医学材料有用的材料,并在绿色化学方面具有积极特性的实用性。
在添加了农业原料的培养物中生物合成了从威尼斯不动杆菌RAG - 1分泌的复杂酰化多糖乳化剂的结构变体,以检验将这些底物转化为增值生物聚合物的可行性。威尼斯不动杆菌在大豆糖蜜和牛脂油培养基中产生了化学和生物学性质不同的乳化剂变体。这些变体具有显著的生物学功能,包括巨噬细胞激活和佐剂活性,其范围与在以乙醇为培养基的威尼斯不动杆菌上形成的标准乳化剂所观察到的相似。
结果表明,这种新型生物聚合物家族可以从 readily available可再生农业原料大量生产,并且所得的结构和功能可以与这些原料的化学性质相关联。
每年生产的大量农业用油是生物转化为有价值产品的未开发来源。本研究结果证实了重要的聚合物乳化剂可以从这种廉价碳源合成。