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青壳Ⅱ号海鸭蛋的营养成分评价
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作者 汪财生 郑雪君 +2 位作者 赵彩胜 唐伟 蒋易发 《食品与营养科学》 2014年第3期42-48,共7页
为测定青壳Ⅱ号海鸭蛋中的营养成分,参照食品中营养含量测定的国标方法,对青壳Ⅱ号海鸭蛋进行了营养测定评价。结果表明,青壳Ⅱ号海鸭鲜蛋主要营养成分为水分70.45%,粗蛋白12.74%、粗脂肪12.08%、卵磷脂3.90%,氨基酸总量占干重的51.32%... 为测定青壳Ⅱ号海鸭蛋中的营养成分,参照食品中营养含量测定的国标方法,对青壳Ⅱ号海鸭蛋进行了营养测定评价。结果表明,青壳Ⅱ号海鸭鲜蛋主要营养成分为水分70.45%,粗蛋白12.74%、粗脂肪12.08%、卵磷脂3.90%,氨基酸总量占干重的51.32%;青壳Ⅱ号海鸭鲜蛋含有对人体有益的微量元素Ca 480.2 mg?kg?1、Zn 13.9 mg?kg?1,Cu 0.93 mg?kg?1,Fe 52.7 mg?kg?1,Mg 195.0 mg?kg?1,Mn 0.32 mg?kg?1,其中,Ca、Zn、Fe、Mg含量显著高于其它禽蛋。青壳Ⅱ号海鸭蛋总体营养价值均高于普通海鸭蛋、普通鸭蛋及土鸡蛋,本实验为推广青壳Ⅱ号蛋鸭品种的滩涂放养模式及其制品的加工提供了理论依据。 展开更多
关键词 青壳Ⅱ号 海鸭蛋 营养成分 微量元素
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人口结构转变与制造业产业结构调整——基于跨国面板数据的研究
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作者 郑雪君 董丽霞 《工信财经科技》 2022年第4期60-79,共20页
人口老龄化和制造业转型升级是当前中国经济发展面临的重要课题。本文运用1963-2007年150个国家和地区的跨国面板数据分析了人口结构转变对制造业结构调整的影响。结果表明,老年抚养比上升通过减少劳动力数量比重、抑制资本形成和人力... 人口老龄化和制造业转型升级是当前中国经济发展面临的重要课题。本文运用1963-2007年150个国家和地区的跨国面板数据分析了人口结构转变对制造业结构调整的影响。结果表明,老年抚养比上升通过减少劳动力数量比重、抑制资本形成和人力资本积累以及增加养老负担,阻碍了制造业结构升级,也通过倒逼企业增加研发投入以应对劳动力短缺,促进了制造业结构升级;少儿抚养比下降通过增加劳动力数量、促进资本形成和提高人力资本积累水平,促进了制造业结构升级。此外,人口结构转变导致的制造业结构调整效应在不同发展程度的国家存在异质性,老年抚养比上升的促进作用在发展程度较高国家更显著,而少儿抚养比下降的促进作用在发展程度较低国家更显著。 展开更多
关键词 人口结构转变 制造业 产业结构调整 产业合理化 产业高度化
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Titanate nanofibers reduce Kruppel-like factor 2(KLF2)-eNOS pathway in endothelial monolayer:A transcriptomic study
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作者 Shuang Li xuejun zheng +1 位作者 Chaobo Huang Yi Cao 《Chinese Chemical Letters》 SCIE CAS CSCD 2021年第4期1567-1570,共4页
Although titanate nanofibers(TiNFs)and titanate nanotubes(TiNTs)have been proposed as relatively biocompatible nanomaterials(NMs),there is currently lacking of systemic studies which investigated the toxicity of TiNFs... Although titanate nanofibers(TiNFs)and titanate nanotubes(TiNTs)have been proposed as relatively biocompatible nanomaterials(NMs),there is currently lacking of systemic studies which investigated the toxicity of TiNFs and TiNTs to endothelium.In this study,we developed endothelial monolayer model by using cell culture inserts,and systemically investigated the toxicity of TiNFs and TiNTs by RNA-seq,with a focus on Kruppel-like factor(KLF)-mediated effects,since KLF are transcription factors(TF)involved in the regulation of vascular biology.It was shown that NMs did not significantly induce cytotoxicity despite substantial internalization.However,the expression of many KLF was altered,and Western blot further confirmed that NMs down-regulated KLF2 proteins.Ingenuity pathway analysis(IPA)revealed that NMs altered the expression of KLF2-targed genes,typically the genes involved in inflammatory responses.KLF2-related Gene Ontology(GO)terms and Kyoto Encyclopedia of Gene and Genomes(KEGG)pathways were also altered,and it should be noticed that NMs altered GO terms and KEGG pathways related with endothelial NO synthase(eNOS).This study further verified that NMs decreased intracellular NO and eNOS proteins.All the observed effects were more obvious for TiNFs compared with TiNTs.Combined,this study showed that TiNFs or TiNTs we re non-cytotoxic to endothelial monolayer model,but TiNFs and more modestly TiNTs decreased KLF2 leading to decreased eNOS proteins and NO production.Our data may provide novel understanding about the toxicity of TiNFs as well as other Ti-based NMs to endothelium. 展开更多
关键词 TITANATE NANOFIBERS Kruppel-like factor 2(KLF2) Endothelial monolayer Endothelial NO synthase(eNOS) Transcriptomics
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