Bejenaru Ludovic Everard, Radu Antonia, Segneanu Adina-Elena, Biţă Andrei, Manda Costel-Valentin, Mogoşanu George Dan, Bejenaru Cornelia
Department of Pharmacognosy & Phytotherapy, Faculty of Pharmacy, University of Medicine and Pharmacy of Craiova, 2 Petru Rareş Street, 200349 Craiova, Romania.
Department of Pharmaceutical Botany, Faculty of Pharmacy, University of Medicine and Pharmacy of Craiova, 2 Petru Rareş Street, 200349 Craiova, Romania.
Plants (Basel). 2024 Aug 1;13(15):2133. doi: 10.3390/plants13152133.
This review investigates innovative strategies for upcycling agricultural residues into valuable pharmaceutical compounds. The improper disposal of agricultural residues contributes to significant environmental issues, including increased greenhouse gas emissions and ecosystem degradation. Upcycling offers a sustainable solution, transforming these residues into high-value bioproducts (antioxidants, antitumor agents, antidiabetic compounds, anti-inflammatory agents, and antiviral drugs). Nanotechnology and microbial biotechnology have a crucial role in enhancing bioavailability and targeted delivery of bioactive compounds. Advanced techniques like enzymatic hydrolysis, green solvents, microwave processing, pyrolysis, ultrasonic processing, acid and alkaline hydrolysis, ozonolysis, and organosolv processes are explored for their effectiveness in breaking down agricultural waste and extracting valuable compounds. Despite the promising potential, challenges such as variability in residue composition, scalability, and high costs persist. The review emphasizes the need for future research on cost-effective extraction techniques and robust regulatory frameworks to ensure the safety, efficacy, and quality of bioproducts. The upcycling of agricultural residues represents a viable path towards sustainable waste management and production of pharmaceutical compounds, contributing to environmental conservation and public health improvements. This review provides an analysis of the current literature and identifies knowledge gaps, offering recommendations for future studies to optimize the use of agricultural residues in the drug industry.
本综述研究了将农业废弃物升级转化为有价值的药物化合物的创新策略。农业废弃物的不当处置导致了重大的环境问题,包括温室气体排放增加和生态系统退化。升级转化提供了一种可持续的解决方案,将这些废弃物转化为高价值的生物产品(抗氧化剂、抗肿瘤剂、抗糖尿病化合物、抗炎剂和抗病毒药物)。纳米技术和微生物生物技术在提高生物活性化合物的生物利用度和靶向递送方面发挥着关键作用。探索了诸如酶水解、绿色溶剂、微波处理、热解、超声处理、酸碱水解、臭氧分解和有机溶剂法等先进技术在分解农业废弃物和提取有价值化合物方面的有效性。尽管具有广阔的潜力,但诸如残渣成分的变异性、可扩展性和高成本等挑战依然存在。该综述强调未来需要开展关于具有成本效益的提取技术和强有力的监管框架的研究,以确保生物产品的安全性、有效性和质量。农业废弃物的升级转化是实现可持续废物管理和药物化合物生产的可行途径,有助于环境保护和公众健康改善。本综述对当前文献进行了分析并找出了知识空白,为未来研究提供建议,以优化农业废弃物在制药行业的利用。