Department of Energy and Materials Engineering , Dongguk University-Seoul , 30 Pildong-ro 1-gil , Seoul 04620 , Republic of Korea.
Department of Biological Engineering, Biohybrid Systems Research Center (BSRC) , Inha University , 100 Inha-ro , Incheon 22212 , Republic of Korea.
ACS Appl Mater Interfaces. 2019 May 22;11(20):18165-18177. doi: 10.1021/acsami.9b02857. Epub 2019 May 7.
The utilization of a sustainable and lightweight graphene aerogel (GA), synthesized from crude biomass, as a cell growth promoter and an adsorbent for the efficient removal of histamine (HIS), a food toxicant, from the real food matrix has been explored. Due to the self-supported three-dimensional nanoporous honeycomb-like structure of the graphene framework and the high surface area, the synthesized GA achieved an 80.69 ± 0.89% removal of HIS from red wine (spiked with HIS) after just 60 min under both acidic (3.0) and neutral (7.4) pH conditions. Furthermore, simple cleaning with 50% ethanol and deionized water, without any change in weight, allowed them to be reused more than 10 times with a still significant HIS removal ability (more than 71.6 ± 2.57%). In vitro cell culture experiments demonstrated that the synthesized GA had nontoxic effects on the cell viability (up to 80.35%) even at higher concentrations (10 mg mL), as determined via the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide and lactate dehydrogenase assays using human lung bronchial epithelial cells. Interestingly, GA promotes the wound-healing ability on the scratched epithelial cell surfaces via enhancing the cell migrations as also validated by the western blot analysis via expression levels of epithelial β-catenin and E-cadherin proteins. The distinct structural advantage along with the nontoxicity of the green synthesized GA will not only facilitate the economic feasibility of the synthesized GA for its practical real-life applications in liquid toxin and pollutant removal from the food and environment but also broaden its applicability as a promising biomaterial of choice for biomedical applications.
利用可持续且轻质的石墨烯气凝胶(GA)作为细胞生长促进剂和吸附剂,从实际食品基质中有效去除食品毒物组氨酸(HIS),这一方法已被探索。由于石墨烯骨架的自支撑三维纳米多孔蜂窝状结构和高表面积,合成的 GA 在酸性(3.0)和中性(7.4)pH 条件下仅 60 分钟即可从红酒(添加 HIS)中实现 80.69 ± 0.89%的 HIS 去除率。此外,只需用 50%乙醇和去离子水简单清洗,重量不变,就可以重复使用 10 次以上,且仍具有显著的 HIS 去除能力(超过 71.6 ± 2.57%)。体外细胞培养实验表明,即使在较高浓度(10 mg/mL)下,合成的 GA 对细胞活力(高达 80.35%)也没有毒性作用,这是通过 3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐和乳酸脱氢酶测定法用人肺支气管上皮细胞测定的。有趣的是,GA 通过增强细胞迁移来促进划痕上皮细胞表面的伤口愈合能力,这也通过上皮β-连环蛋白和 E-钙粘蛋白蛋白表达水平的 Western blot 分析得到了验证。绿色合成的 GA 的独特结构优势和非毒性不仅将促进其在从食品和环境中去除液体毒素和污染物的实际应用中的经济可行性,而且还将拓宽其作为有前途的生物材料在生物医学应用中的适用性。