School of Chemical Engineering, State University of Campinas, Campinas, Brazil.
Biotechnol Adv. 2012 Jan-Feb;30(1):321-8. doi: 10.1016/j.biotechadv.2011.06.019. Epub 2011 Jul 6.
Bioabsorbable polymers are considered a suitable alternative to the improvement and development of numerous applications in medicine. Poly-lactic acid (PLA,) is one of the most promising biopolymers due to the fact that the monomers may produced from non toxic renewable feedstock as well as is naturally occurring organic acid. Lactic acid can be made by fermentation of sugars obtained from renewable resources as such sugarcane. Therefore, PLA is an eco-friendly product with better features for use in the human body (nontoxicity). Lactic acid polymers can be synthesized by different processes so as to obtain products with an ample variety of chemical and mechanical properties. Due to their excellent biocompatibility and mechanical properties, PLA and their copolymers are becoming widely used in tissue engineering for function restoration of impaired tissues. In order to maximize the benefits of its use, it is necessary to understand the relationship between PLA material properties, the manufacturing process and the final product with desired characteristics. In this paper, the lactic acid production by fermentation and the polymer synthesis such biomaterial are reviewed. The paper intends to contribute to the critical knowledge and development of suitable use of PLA for biomedical applications.
可生物降解聚合物被认为是改善和发展医学领域众多应用的一种合适的选择。聚乳酸(PLA)是最有前途的生物聚合物之一,因为其单体可以由无毒可再生原料以及天然存在的有机酸生产。乳酸可以通过发酵从可再生资源(如甘蔗)中获得的糖来生产。因此,PLA 是一种环保产品,具有更好的用于人体的特性(无毒)。乳酸聚合物可以通过不同的工艺合成,以获得具有广泛化学和机械性能的产品。由于其优异的生物相容性和机械性能,PLA 及其共聚物在组织工程中广泛用于受损组织的功能恢复。为了最大限度地发挥其用途,有必要了解 PLA 材料性能、制造工艺和最终具有所需特性的产品之间的关系。本文综述了发酵法生产乳酸和该生物材料的聚合物合成。本文旨在为 PLA 在生物医学应用中的合理使用提供关键知识和发展。