1. This is the webpage of Biopolymers .
这是《生物高分子》杂志的网页。

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2. Capable of calculating different kind of biopolymers.
可以计算不同种类的生物高分子。

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3. Like other biopolymers, the functions of RNA are dependent upon their structures.
如同生物体中的其它大分子一样,RNA的功能取决于它们的结构。

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4. As a new type of biopolymers, poly (malic acid) and its derivatives also possess some unique properties.
聚苹果酸及其衍生物作为一类新型的生物高分子同样具有一些独特的性质。

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5. Through these studies, it helps us to enhance the understanding of the structure and function of biopolymers.
通过这些研究,有利于进一步加深对生物大分子结构和功能的认识。

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6. The electrospun nanofibers of biopolymers have many potential applications in tissue engineering and wound dressing.
这种生物高分子纳米纤维在组织工程支架、 组织修复等方面有独特的优势。

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7. Proteins are very important biopolymers which have many biological functions such as catalysis, transportation, movement, defence and regulation.
蛋白质是重要的生物高分子,具有催化、传输、运动、防御和调节等重要生理功能。

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8. DNA is an important biopolymer. In recent years, the configurations and elastic property of DNA and other biopolymers have been one of the pop researching topics.
DNA是重要的生物大分子聚合物,近年来DNA和其它一些生物聚合物的结构和弹性性质已经成为研究的热门课题之一。

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9. Microbial flocculants are natural biological macromolecules and biopolymers with flocculating function, high efficiency, safe, biodegradation, without environmental pollution.
微生物絮凝剂为天然生物大分子,是一类具有絮凝功能、高效、安全、无二次污染及具生物降解性的生物多聚物。

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10. Our reactive fluorescent and luminescent probes, biotins and tag enzymes are used for labeling small drug molecules and biopolymers, e. g, proteins, nucleic acids and carbohydrates;
我们提供反应荧光探针和发光探针,生物素和端粒酶能够应用于标记药物小分子和生物聚合物,如蛋白、核酸以及其他碳水化合物;

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11. So instead of using carbon from oil for synthetic processes, we have the chance of using carbon and capturing it back from the atmosphere, converting that into biopolymers or other products.
因此,我们可以通过捕获大气中的碳,制造生物高聚物或其他产品,来替代从石油中工业合成得到的碳制品。

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12. "Considering the fact that up to 90 percent of the human genome is transcribed into RNA, it becomes clear that RNA is one of the most important biopolymers on which life is based, " said Jaeger.
Jaeger说:“考虑到多达90%的人类基因组被转译成RNA这一事实,已经清楚RNA是构成生命基础的最重要的生物多聚体之一。

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13. The calculating results are in good agreement with experimental values by using group - contribution technique to calculate glass transition temperature of biopolymers and its blends and copolymers.
应用基团贡献法计算生物高聚物及共混、共聚的玻璃化转变温度,计算结果与实验值吻合较好。

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14. The calculating results are in good agreement with experimental values by using group - contribution technique to calculate glass transition temperature of biopolymers and its blends and copolymers.
应用基团贡献法计算生物高聚物及共混、共聚的玻璃化转变温度,计算结果与实验值吻合较好。

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