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废弃生物质向功能性碳材料的可持续溶剂热转化:拓展其作为溶菌酶生物相容性助溶剂的用途

Sustainable Solvothermal Conversion of Waste Biomass to Functional Carbon Material: Extending Its Utility as a Biocompatible Cosolvent for Lysozyme.

作者信息

Chaudhary Karan, Bhakuni Kavya, Mogha Navin Kumar, Venkatesu Pannuru, Masram Dhanraj T

机构信息

Department of Chemistry, University of Delhi, Delhi 110 007, India.

出版信息

ACS Biomater Sci Eng. 2020 Sep 14;6(9):4881-4892. doi: 10.1021/acsbiomaterials.0c00461. Epub 2020 Aug 31.

Abstract

Functional carbon material synthesis from waste biomass by a sustainable method is of prime importance and has wide variety of applications. Herein, functional carbon materials with structural variability are synthesized using a well-known solvothermal method. The leftover pulp waste biomass (PB) of citrus limetta is converted to functional carbon by treatment with a mixture of choline bitartrate (ChBt) and FeCl (1:2 mol ratio) as a solvent. The biomass to solvent ratio is varied as 1:1, 0.8:1, and 0.4:1 during solvothermal treatment to obtain PB-1, PB-2, and PB-3 as functional carbon materials, respectively. On characterization, PB carbon materials were found to be rich in oxygen-containing functional groups possessing different morphologies. Furthermore, results suggested the role of solvent as a soft template and catalyst during the synthesis of carbon materials. The feasibility of synthesized carbon materials as a biocompatible cosolvent for lysozyme was evaluated. In the case of PB-2 material (synthesized using 0.8:1 biomass to solvent ratio), results show an enhancement of lysozyme activity by 150%. Besides, spectroscopic and calorimetric data confirm the preservation of thermal and structural stability of lysozyme in the PB-2 solution. Thus, this study stipulates PB-2 as an excellent cosolvent for protein studies. With this work, we aim to delve into an entirely new arena of applications of biomass in the field of biotechnology.

摘要

通过可持续方法从废弃生物质中合成功能性碳材料至关重要且具有广泛的应用。在此,使用一种著名的溶剂热法合成具有结构变异性的功能性碳材料。将酸橙剩余的果肉废弃物生物质(PB)用酒石酸胆碱(ChBt)和FeCl(摩尔比1:2)的混合物作为溶剂进行处理,转化为功能性碳。在溶剂热处理过程中,生物质与溶剂的比例分别为1:1、0.8:1和0.4:1,以分别获得作为功能性碳材料的PB-1、PB-2和PB-3。经表征发现,PB碳材料富含具有不同形态的含氧官能团。此外,结果表明溶剂在碳材料合成过程中作为软模板和催化剂的作用。评估了合成的碳材料作为溶菌酶生物相容性助溶剂的可行性。对于PB-2材料(使用0.8:1的生物质与溶剂比例合成),结果显示溶菌酶活性提高了150%。此外,光谱和量热数据证实了溶菌酶在PB-2溶液中的热稳定性和结构稳定性得以保留。因此,本研究规定PB-2是蛋白质研究的优良助溶剂。通过这项工作,我们旨在深入探索生物质在生物技术领域全新的应用领域。

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