范围(计算机科学)
绿色化学
持续性
化学
医药制造业
水介质
制药工业
反应性(心理学)
相关性(法律)
生化工程
纳米技术
过程(计算)
有机化学
有机合成
计算机科学
组合化学
水溶液
系统思维
制药技术
活性成分
可持续生产
人类健康
作者
Funmilayo Esther Mobilawon,Austine Ofondu Chinomso Iroegbu,Orpah Zinyemba,Reinout Meijboom
标识
DOI:10.1016/j.scp.2025.102233
摘要
The transition toward greener pharmaceutical manufacturing has heightened interest in water as a sustainable reaction medium. Hydroxypropyl methylcellulose (HPMC), a cost-effective and widely available cellulose derivative, has recently emerged as a micelle-mimicking additive capable of creating hydrophobic pockets that enhance solubility, reactivity and selectivity in aqueous systems. This review critically evaluates the role of HPMC in the synthesis of Active Pharmaceutical Ingredients (APIs), integrating mechanistic insights with sustainability metrics such as process mass intensity (PMI), E-factor and atom economy. Whereas previous reviews have largely cataloged applications, the present review highlights the advantages of HPMC, as a cost-effective and sustainable medium, contrasting it with designer surfactants such as TPGS-750-M and Savie, which – despite enabling notable progress – remain relatively costly and may still require co-solvents under certain conditions. Representative case studies in metal-catalyzed (Pd, Cu, Ni), metal-free (amide couplings, SNAr), and photoredox reactions are discussed, with emphasis on reaction efficiency at extremely short times, promising scalability, and environmental benefits. We further identify key limitations: restricted reaction scope and barriers to regulatory acceptance. By outlining critical research gaps and industrial opportunities, this work provides a forward-looking perspective on how HPMC can advance sustainable synthetic chemistry and accelerate the adoption of water-based technologies in pharmaceutical manufacturing. • Role of HPMC in mediating organic transformation in aqueous medium. •Emphasizes pharmaceutical relevance of HPMC-water system while maintaining green chemistry principles. •Relevance of HPMC-mediated system over conventional organic solvents, using quantitative comparative assessment of green metrics.
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