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Titlebook: Lipid Biochemistry; An Introduction M. I. Gurr,J. L. Harwood Book 1991 M.I. Gurr and J.L. Harwood 1991 Lipid.Phosphor.biochemistry.chemistr

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書目名稱Lipid Biochemistry
副標(biāo)題An Introduction
編輯M. I. Gurr,J. L. Harwood
視頻videohttp://file.papertrans.cn/587/586838/586838.mp4
圖書封面Titlebook: Lipid Biochemistry; An Introduction M. I. Gurr,J. L. Harwood Book 1991 M.I. Gurr and J.L. Harwood 1991 Lipid.Phosphor.biochemistry.chemistr
描述Lipids can usually be extracted easily from tissues by making use of their hydrophobic characteristics. However, such extractions yield a complex mixture of different lipid classes which have to be purified further for quantitative analysis. Moreover, the crude lipid extract will be contami- nated by other hydrophobic molecules, e.g. by intrinsic membrane proteins. Of the various types of separation processes, thin layer and column chromatography are most useful for intact lipids. High performance liquid chromatography (HPLC) is also rapidly becoming more popular, especially for the fractionation of molecular species of a given lipid class. The most powerful tool for quantitation of the majority of lipids is gas- liquid chromatography (GLC). The method is very sensitive and, if adapted with capillary columns, can provide information with regard to such subtle features as the position or configuration of substitutions along acyl chains. By coupling GLC or HPLC to a radioactivity detector, then the techniques are also very useful for metabolic measurements. Although research laboratories use generally sophisticated analytical methods such as GLC to analyse and quantify lipid samples,
出版日期Book 1991
關(guān)鍵詞Lipid; Phosphor; biochemistry; chemistry; health; metabolism; protein; proteins
版次1
doihttps://doi.org/10.1007/978-1-4615-3862-2
isbn_softcover978-0-412-26620-1
isbn_ebook978-1-4615-3862-2
copyrightM.I. Gurr and J.L. Harwood 1991
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mplex mixture of different lipid classes which have to be purified further for quantitative analysis. Moreover, the crude lipid extract will be contami- nated by other hydrophobic molecules, e.g. by intrinsic membrane proteins. Of the various types of separation processes, thin layer and column chro
地板
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Lipids as energy stores,on products of carbohydrates as described in section 3.2. Animals do not have the facility directly to use sunlight but must take in their fuel in the diet as lipid or carbohydrate from plants or from other animals that have themselves synthesized their body tissues from plant materials.
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Dietary lipids: implications for health and disease,gorously controlled studies of human metabolism are difficult and expensive to achieve and scientists are, therefore, frequently obliged to make inferences about the metabolic effects of lipids in man from research with experimental animals, generally laboratory rodents.
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Lipid functions, few remarks centred on the role of lipids can be made. In Chapter 6 we described current ideas for membrane structure and the concept that, although lipids are capable of adopting non-bilayer structures when isolated, by-and-large they participate in bilayers ..
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