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Plant-derived nano-bioactive systems from industrial crops: Scalable pathways toward sustainable high-value industrial products

标杆管理 生化工程 计算机科学 可扩展性 转化式学习 持续性 人类健康 可持续发展 新兴技术 生物技术 工业生态学 业务 循环经济 纳米技术 杠杆(统计) 风险分析(工程) 工业生物技术 可持续设计 可持续农业 工业共生体系 化学工业 范式转换 制造工程 生物高聚物 系统工程
作者
Yuvarajan Devarajan,T. Raja,Aravindan Munusamy Kalidhas,Purvesh Patel,CG Ramachandra,Saroj Kumar Acharya,Mansingh Meena,Kulmani Mehar,Ravikumar Jayabal
出处
期刊:Industrial Crops and Products [Elsevier BV]
卷期号:241: 122727-122727
标识
DOI:10.1016/j.indcrop.2026.122727
摘要

Natural products derived from industrial crops and their byproducts constitute a vital reservoir of bioactive molecules for the agrochemical, cosmetic, pharmaceutical, and broader bio-based manufacturing sectors. Their widespread use, however, is constrained by inherent limitations, including low solubility, chemical instability, and poor bioavailability. Emerging nano-enabled delivery platforms, including nanoemulsions, solid lipid nanoparticles (SLNs), polymeric nanocapsules, nanofibers, and bioactive-loaded biopolymer films, provide transformative opportunities to enhance molecular stability, tailor release kinetics, and achieve targeted and efficient functional performance. This review critically integrates state-of-the-art progress in the formulation of plant-derived nano-bioactive systems from oilseeds, fiber crops, and cultivated medicinal and aromatic plants. Emphasis is placed on sustainable metabolite extraction technologies, green nanofabrication strategies, and their validated application potential across industrial domains. The classification framework for identifying industrial crops and residue streams is clarified, and major classes of bioactives, including terpenoids, phenolics, alkaloids, saponins, and fatty-acid-derived compounds, are systematically outlined. Key challenges and forward pathways are thoroughly discussed, particularly with respect to scalability, regulatory compliance, environmental and human health safety, and ecotoxicological assessment. Integration into circular bioeconomy models and techno-economic feasibility considerations are highlighted as essential for commercialization. Overall, this review positions plant-based nano-bioactive systems as pivotal enablers of next-generation sustainable products, accelerating industrial innovation at a global scale. • Industrial-crop nano-bioactives linked from extraction to end-use. • Green extraction aligned with nano-architectures for functional performance. • Comparative benchmarking urged against synthetic formulations. • Scale-up, safety, and regulation framed for circular bioeconomy adoption. • Research gaps identify priority industrial market entry niches.
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