首页> 外文期刊>ACS applied materials & interfaces >Regenerative Astaxanthin Extraction from a Single Microalgal (Haematococcus pluvialis) Cell Using a Gold Nano-Scalpel
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Regenerative Astaxanthin Extraction from a Single Microalgal (Haematococcus pluvialis) Cell Using a Gold Nano-Scalpel

机译:使用金纳米手术刀从单个微藻(嗜血红球菌)细胞中提取再生虾青素。

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Milking of microalgae, the process of reusing the biomass for continuous production of target compounds, can strikingly overcome the time and cost constraints associated with biorefinery. This process can significantly improve production efficiency of highly valuable chemicals, for example, astaxanthin (AXT) from Haematococcus pluvialis. Detailed understanding of the biological process of cell survival and AXT reaccumulation after extraction would be of great help for successful milking. Here we report extraction of AXT from a single cell of H. pluvialis through incision of the cell wall by a gold nanoscalpel (Au-NS), which allows single-cell analysis of wound healing and reaccumulation of AXT. Interestingly, upon the Au-NS incision, the cell could reaccumulate AXT at a rate two times faster than the control cells. Efficient extraction as well as minimal cellular damage, keeping cells alive, could be achieved with the optimized shape and dimensions of Au-NS: a well-defined sharp tip, thickness under 300 nm, and 1-3 mu m of width. The demonstration of regenerative extraction of AXT at a single cell level hints toward the potential of a milking process for continuous recovery of target compounds from microalgae while keeping the cells alive.
机译:微藻的挤奶是将生物质再利用以连续生产目标化合物的过程,可以显着克服与生物精炼厂相关的时间和成本限制。此过程可以显着提高高价值化学品的生产效率,例如,来自嗜血红球菌的虾青素(AXT)。详细了解细胞存活和提取后AXT积累的生物学过程对成功挤奶将有很大帮助。在这里,我们报告通过金纳米刀(Au-NS)通过细胞壁切开术,从幽门螺杆菌的单个细胞中提取AXT,这可以对伤口愈合和AXT的再积累进行单细胞分析。有趣的是,在Au-NS切口上,细胞可以以比对照细胞快两倍的速率重新积累AXT。通过优化的Au-NS形状和尺寸,可以实现高效提取以及最小限度的细胞损伤,从而保持细胞的存活:明确定义的尖锐尖端,厚度在300 nm以下,宽度为1-3μm。在单个细胞水平上再生提取AXT的演示表明,挤奶过程具有从微藻中连续回收目标化合物同时保持细胞存活的潜力。

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