Khan Azmat Ullah, Shahzad Muhammad, Mushtaq Alia, Naseer Muhammad Moazzam
Department of Chemistry, Quaid-i-Azam University Islamabad 45320 Pakistan
RSC Adv. 2025 Apr 15;15(15):11863-11880. doi: 10.1039/d5ra00901d. eCollection 2025 Apr 9.
Chiral alcohols are essential intermediates in pharmaceuticals, agrochemicals, and advanced materials. Conventional asymmetric reduction of ketones relies on costly metal catalysts with significant environmental impact. Biocatalysis, particularly whole-cell systems, offers a sustainable alternative, providing high regio- and stereoselectivity under mild conditions. (carrot) roots serve as a promising biocatalyst due to their broad substrate compatibility and natural cofactor recycling ability, reducing reliance on toxic reagents and energy-intensive processes, making them both environmentally sustainable and economically viable. This review highlights the potential of for chiral alcohol synthesis while addressing challenges such as long reaction times, high biocatalyst requirements, and substrate limitations. Ongoing research focuses on optimizing reaction conditions, testing different carrot varieties, and incorporating additives to enhance efficiency and expand applicability.
手性醇是制药、农用化学品和先进材料中的重要中间体。传统的酮不对称还原依赖于成本高昂且对环境有重大影响的金属催化剂。生物催化,特别是全细胞系统,提供了一种可持续的替代方案,在温和条件下具有高区域选择性和立体选择性。胡萝卜根由于其广泛的底物兼容性和天然辅因子循环能力,是一种很有前景的生物催化剂,减少了对有毒试剂和能源密集型过程的依赖,使其在环境上可持续且经济上可行。本综述强调了胡萝卜根在合成手性醇方面的潜力,同时也探讨了诸如反应时间长、生物催化剂需求量大以及底物限制等挑战。正在进行的研究集中在优化反应条件、测试不同的胡萝卜品种以及加入添加剂以提高效率和扩大适用性。