首页> 外文期刊>Clinical proteomics. >Challenges and opportunities of bovine milk analysis by mass spectrometry
【24h】

Challenges and opportunities of bovine milk analysis by mass spectrometry

机译:质谱分析牛乳的挑战和机遇

获取原文
获取原文并翻译 | 示例
           

摘要

Bovine milk and its products (e.g. cheese, yoghurt) are an important part of human diet with beneficial effects for all ages. Although analyses of different milk components (e.g. proteins, lipids) pose huge challenges, the use of mass spectrometric (MS)-based techniques is steadily improving our understanding of the complexity of the biological traits that effect milk yield and its components to meet the global demand arising from population growth. In addition, different milk constituents have various applications in veterinary research and medicine, including early disease diagnosis. The aim of the review is to present an overview of the progress made in MS-based analysis of milk, and suggest a multi-pronged MS strategy to better explore different milk components for translational and clinical utilities. Agriculture, a pivotal sector for ensuring food and nutritional security, is undergoing a radical change in India and at the global level. Conventional crop and animal production methods are facing enormous pressure related to increased grain and animal production to meet the growing demand of population increase [1]. Although Indian agriculture performed better than expected during the global food crisis in 2008, the agriculture sector needs to envision future challenges as potential opportunities to make it more sustainable to provide food security and alleviate poverty [2]. In India, livestock as a sub-sector of agriculture contributes significantly to the economy by ranking first in world milk production, as well as producing vast amounts of milk products, meat, eggs, wool, hide and skin [3]. Livestock in spite of sustained pressure from climate change and increased demand of animal protein has consistently contributed significantly to the agricultural gross domestic product. For example, animal husbandry involves approximately 5.5 % of the total work force in the country, as well as providing gender equity and women empowerment [4].
机译:牛乳及其制品(例如奶酪,酸奶)是人类饮食的重要组成部分,对所有年龄段的人都有好处。尽管对不同牛奶成分(例如蛋白质,脂质)的分析提出了巨大挑战,但基于质谱(MS)的技术的使用正在稳步提高我们对影响牛奶产量及其成分的生物学特性的复杂性的认识,以满足全球需求。人口增长带来的需求。另外,不同的牛奶成分在兽医研究和医学中具有各种应用,包括疾病的早期诊断。审查的目的是概述基于MS的牛奶分析所取得的进展,并提出多管齐下的MS策略,以更好地探索用于翻译和临床用途的不同牛奶成分。农业是确保粮食和营养安全的关键部门,在印度乃至全球范围内都在发生根本性变化。为了满足不断增长的人口增长需求,常规的农作物和动物生产方法面临着与谷物和动物生产增加有关的巨大压力[1]。尽管印度农业在2008年全球粮食危机期间的表现要好于预期,但农业部门需要将未来的挑战视为潜在的机会,使其能够更加可持续地提供粮食安全和减轻贫困[2]。在印度,畜牧业作为农业的一个子部门,在世界牛奶产量中位居第一,并生产大量的奶制品,肉,蛋,羊毛,皮革和皮肤[3],对经济做出了重大贡献。尽管气候变化带来持续压力以及对动物蛋白的需求增加,但畜牧业始终对农业国内生产总值做出了重大贡献。例如,畜牧业约占该国总劳动力的5.5%,并提供性别平等和增强妇女权能[4]。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号