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相关概念视频

Protein Digestion01:02

Protein Digestion

Protein digestion begins in the stomach, where the highly acidic environment can easily disrupt protein structure by exposing the peptide bonds of polypeptide chains. After polypeptide chains are broken into individual amino acids by a series of digestive enzymes, the amino acids are transported to the liver via the bloodstream to produce energy.
Fertilization01:38

Fertilization

During fertilization, an egg and sperm cell fuse to create a new diploid structure. In humans, the process occurs once the egg has been released from the ovary, and travels into the fallopian tubes. The process requires several key steps: 1) sperm present in the genital tract must locate the egg; 2) once there, sperm need to release enzymes to help them burrow through the protective zona pellucida of the egg; and 3) the membranes of a single sperm cell and egg must fuse, with the sperm...
The Nucleosome02:33

The Nucleosome

DNA in a human cell is almost 2m long and it is packed inside a tiny nucleus that is only a few microns in diameter. The level of compaction of DNA inside the nucleus is astonishing. It is organized into several sequentially higher levels of compaction to fit into such a tiny space. The most compact form of DNA is a chromosome that can be seen under a microscope in a dividing cell.
DNA is wound twice around a protein complex called histone core, that consist of 8 histone proteins. This complex...
Detergent Purification of Membrane Proteins01:18

Detergent Purification of Membrane Proteins

Detergents are used to purify the integral proteins of the membrane. The hydrophobic portion of the detergent can replace membrane phospholipids while solubilizing the membrane proteins. When detergent monomers reach a specific concentration in a solution called critical micelle concentration (CMC), they form micelles. Above CMC, the concentration of the detergent monomers remains in equilibrium with the micelle. The number of detergent monomers present in the CMC varies for each detergent, and...
Role of Proteins in the Human Body01:28

Role of Proteins in the Human Body

Proteins are the building block of life. They are also  the most abundant macromolecules with as many diverse roles in the body. They are part of many structural components that provide unique shapes and structures to animal cells, tissues, and organs. In addition, they also act as biological catalysts and carry out several anabolic and catabolic reactions. Notably, some proteins are chemical messengers and regulate many critical processes, such as metabolism, growth, and development. They are...
Genetic Material01:20

Genetic Material

Within the human body, a complex and detailed system of trillions of cells works in unison to sustain life. Each cell houses a nucleus, which contains 46 chromosomes divided into 23 pairs. Chromosomes are highly coiled structures made of the genetic material DNA. These chromosomes are essential carriers of genetic information, with half inherited from the mother through her egg and the other half from the father's sperm, combining to create the unique genetic makeup of an individual.

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相关实验视频

Updated: Jul 15, 2026

A Simplified and Efficient Method to Isolate Primary Human Keratinocytes from Adult Skin Tissue
06:17

A Simplified and Efficient Method to Isolate Primary Human Keratinocytes from Adult Skin Tissue

Published on: August 25, 2018

人类心脏中的解蛋白.

Andrew J Murray1, Russell E Anderson, Gillian C Watson

  • 1University Laboratory of Physiology, University of Oxford, Oxford, UK.

Lancet (London, England)
|November 16, 2004
PubMed
概括

心力衰竭能量缺乏可能源于线粒体解蛋白增加和葡萄糖载体蛋白减少. 降低自由脂肪酸并提供替代能源可能是新的治疗方法.

科学领域:

  • 心脏病学 心脏病学
  • 代谢研究研究 代谢研究
  • 生物化学 生物化学

背景情况:

  • 心力衰竭与能量代谢异常有关.
  • 血中的自由脂肪酸度与心脏能量活动相反相关.
  • 心力衰竭中能量和代谢异常之间的具体联系尚不清楚.

研究的目的:

  • 研究血自由脂肪酸度与参与心脏和骨肌肉能量代谢的关键蛋白质之间的关联.
  • 阐明心力衰竭中能量缺乏背后的分子机制.

主要方法:

  • 收集了39名患者的血液样本,这些患者在过夜禁食后接受了冠状动脉旁路移植手术.
  • 测量了血中的自由脂肪酸度.
  • 评估了心脏和骨肌中的线粒体解蛋白 (UCP2,UCP3) 和葡萄糖输送蛋白 (GLUT4) 的水平.

主要成果:

  • 血中自由脂肪酸度升高与心脏线粒体解蛋白 (UCP2和UCP3) 的增加显著相关.
  • 自由脂肪酸增加与心脏和骨肌肉中的葡萄糖载体蛋白 (GLUT4) 减少相关.
  • 这些发现表明,心力衰竭中能量缺乏的潜在机制.

结论:

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Human Colonoid Monolayers to Study Interactions Between Pathogens, Commensals, and Host Intestinal Epithelium
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Human Colonoid Monolayers to Study Interactions Between Pathogens, Commensals, and Host Intestinal Epithelium

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Mechanical Separation and Protein Solubilization of the Outer and Inner Perivitelline Sublayers from Hen's Eggs
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Mechanical Separation and Protein Solubilization of the Outer and Inner Perivitelline Sublayers from Hen's Eggs

Published on: January 27, 2021

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Last Updated: Jul 15, 2026

A Simplified and Efficient Method to Isolate Primary Human Keratinocytes from Adult Skin Tissue
06:17

A Simplified and Efficient Method to Isolate Primary Human Keratinocytes from Adult Skin Tissue

Published on: August 25, 2018

Human Colonoid Monolayers to Study Interactions Between Pathogens, Commensals, and Host Intestinal Epithelium
07:20

Human Colonoid Monolayers to Study Interactions Between Pathogens, Commensals, and Host Intestinal Epithelium

Published on: April 9, 2019

Mechanical Separation and Protein Solubilization of the Outer and Inner Perivitelline Sublayers from Hen's Eggs
06:12

Mechanical Separation and Protein Solubilization of the Outer and Inner Perivitelline Sublayers from Hen's Eggs

Published on: January 27, 2021

  • 心力衰竭中的能量缺乏可能是由线粒体脱的增加引起的,导致ATP合成效率较低.
  • 减少的葡萄糖载体蛋白质有助于减少葡萄糖的吸收.
  • 针对心力衰竭的治疗策略应考虑同时减少血自由脂肪酸和提供替代能源.