An overview of biodegradable poly (lactic acid) production from fermentative lactic acid for biomedical and bioplastic applications

被引:69
作者
Ahmad, Ashfaq [1 ]
Banat, Fawzi [1 ]
Alsafar, Habiba [2 ]
Hasan, Shadi W. [1 ]
机构
[1] Khalifa Univ, Dept Chem Engn, POB 127788, Abu Dhabi, U Arab Emirates
[2] Khalifa Univ Sci & Technol, Coll Engn, Dept Biomed Engn, Abu Dhabi, U Arab Emirates
关键词
Lactic acid; Fermentation; Polylactic acid; Biopolymers; Biomedical; Bioplastic application; VITAMIN-E TPGS; POLY(LACTIC ACID); POLYLACTIC ACID; POLY(L-LACTIC ACID); CELLULOSE NANOCRYSTALS; POLY(L-LACTIDE)-DEGRADING ENZYME; BIOTECHNOLOGICAL PRODUCTION; POLYCONDENSATION METHOD; MECHANICAL-PROPERTIES; COMPOSITE SCAFFOLDS;
D O I
10.1007/s13399-022-02581-3
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Biodegradable polylactic acid has attracted much attention due to the increasing environmental pollution from petroleum-based plastics. Polylactic acid (PLA) biopolymers can be produced from fermentative lactic acid (LA), which can be obtained via dark fermentation of renewable feedstocks. PLA polymers are a promising alternative that has the potential to replace petroleum-based products. Bio-based degradable polymers have numerous applications in the biomedical field and are used as disposable packaging materials. PLA, however, is a comparatively expensive material to produce, and its mechanical and physical properties are generally inferior to those of petroleum-based plastics. Significant scientific and technical efforts are therefore required to discover, develop, and use polymers that promote social and economic development. Polymerization reactions as well as rheological, mechanical, thermal, and barrier properties influence the performance of PLA polymers. High-end markets have prioritized the commercialization of PLA synthesis from fermentative LA and the improvement of its mechanical and thermal properties. Ring-opening polymerization can be used to synthesize PLA polymers with high molecular weight, which are helpful for both biomaterials and bioplastics applications due to their unique characteristics. This review is intended to contribute to a better understanding and further development of PLA for biomedical and bioplastic applications. It also highlights PLA's unique biological uses in tissue engineering, wound treatment, drug delivery, and orthopedics.
引用
收藏
页码:3057 / 3076
页数:20
相关论文
共 212 条
[1]   Incorporation of magnetic NaX zeolite/DOX into the PLA/chitosan nanofibers for sustained release of doxorubicin against carcinoma cells death in vitro [J].
Abasian, Payam ;
Radmansouri, Maryam ;
Jouybari, Mania Habibi ;
Ghasemi, Mina Vaez ;
Mohammadi, Ali ;
Irani, Mohammad ;
Jazi, Fariborz Sharifian .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2019, 121 :398-406
[2]   Synthesis of polylactic acid by direct polycondensation under vacuum without catalysts, solvents and initiators [J].
Achmad, Feerzet ;
Yamane, Kenji ;
Quan, Shi ;
Kokugan, Takao .
CHEMICAL ENGINEERING JOURNAL, 2009, 151 (1-3) :342-350
[3]  
Aguirre-Joya J.A., 2018, FOOD PACKAGING PRESE, P1, DOI [10.1016/b978-0-12-811516-9.00001-4, DOI 10.1016/B978-0-12-811516-9.00001-4]
[4]   Polymerization of lactic acid produced from food waste by metal oxide-assisted dark fermentation [J].
Ahmad, Ashfaq ;
Othman, Israa ;
Rambabu, K. ;
Bharath, G. ;
Taher, Hanifa ;
Hasan, Shadi W. ;
Banat, Fawzi .
ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2021, 24
[5]   Lactic acid recovery from date pulp waste fermentation broth by ions exchange resins [J].
Ahmad, Ashfaq ;
Othman, Israa ;
Taher, Hanifa ;
Banat, Fawzi .
ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2021, 22
[6]   A review on the lactic acid fermentation from low-cost renewable materials: Recent developments and challenges [J].
Ahmad, Ashfaq ;
Banat, Fawzi ;
Taher, Hanifa .
ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2020, 20
[7]   Comparative study of lactic acid production from date pulp waste by batch and cyclic-mode dark fermentation [J].
Ahmad, Ashfaq ;
Banat, Fawzi ;
Taher, Hanifa .
WASTE MANAGEMENT, 2021, 120 :585-593
[8]   Enhanced lactic acid production from food waste in dark fermentation with indigenous microbiota [J].
Ahmad, Ashfaq ;
Banat, Fawzi ;
Taher, Hanifa .
BIOMASS CONVERSION AND BIOREFINERY, 2022, 12 (08) :3425-3434
[9]  
Ahmad H., 2019, MAT BIOMEDICAL ENG, P155
[10]   Development of Ethyl Cellulose-based Formulations: A Perspective on the Novel Technical Methods [J].
Ahmadi, Parisa ;
Jahanban-Esfahlan, Ali ;
Ahmadi, Azam ;
Tabibiazar, Mahnaz ;
Mohammadifar, Mohammadamin .
FOOD REVIEWS INTERNATIONAL, 2022, 38 (04) :685-732