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jiao1123金蟲 (正式寫手)
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[求助]
求翻譯,英譯漢
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In conclusion, the direction of where smart hydrogels will go in the future should be addressed. Yes, all scientificevidence seems to indicate that basic and translational research in hydrogels has a bright future. Numerous newdesigns, e.g. involving protein domains containing noncanonicalamino acids , successful attempts to control the morphology of self-assembling peptide fibers ,artificial glycoproteins for controlling cell responses ,hydrogels as the building material for microchemotaxis devices , enhanced use of DNA recognition motifs,and improved synthetic methods demonstrate the versatility of the hybrid hydrogel approach. An outstanding example of the potential of stimuli-sensitive hydrogels in the development of bionanotechnology products is the design of optical systems that do not require mechanical components. Jiang’s laboratory developed a tunable liquid lens that permits autonomous focusing. The design was based on a temperature-sensitive hydrogel integrated into a microfluidic system .Obviously, there will be set backs on the way forward, but the scientific and translational potential of hydrogel biomaterials makes me confident in predicting a smart future. |
鐵桿木蟲 (著名寫手)
| 總之,應該關注智能水凝膠的未來發(fā)展方向。是的,所有科學證據(jù)似乎都指出水凝膠基礎研究和轉(zhuǎn)化研究的前景會很光明。許多的新設計,如涉及到含有非必需氨基酸的蛋白質(zhì)領域,對自我裝配的蛋白質(zhì)纖維形態(tài)控制的成功嘗試,控制細胞響應的人工糖蛋白,作為趨化性裝置建筑材料的水凝膠, DNA識別基序的大量應用,以及能表現(xiàn)出混合水凝膠方法多樣性的改進的合成方法。在生物納米技術產(chǎn)品的開發(fā)中敏感性水凝膠具有潛能的突出例子就是不需要機械元件的光學系統(tǒng)設計。Jiang的實驗室開發(fā)出一種可調(diào)液體透鏡,可允許自主調(diào)焦。其設計是基于將一個對溫度敏感的水凝膠集成到一個微流控系統(tǒng)中。顯然,前進的道路上總有挫折,但是,水凝膠生物材料的科學與轉(zhuǎn)化潛力使我們有信心預測一個智能未來(或意譯為:對智能未來充滿信心)。 |

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