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相关概念视频

Translation01:31

Translation

157.3K
Lesson: Translation
Translation is the process of synthesizing proteins from the genetic information carried by messenger RNA (mRNA). Following transcription, it constitutes the final step in the expression of genes. This process is carried out by ribosomes, complexes of protein and specialized RNA molecules. Ribosomes, transfer RNA (tRNA), and other proteins produce a chain of amino acids—the polypeptide—as the end product of translation.
Translation Produces the Building Blocks of...
157.3K
Translation01:31

Translation

18.0K
Translation is the process of synthesizing proteins from the genetic information carried by messenger RNA (mRNA). Following transcription, it constitutes the final step in the expression of genes. This process is carried out by ribosomes, complexes of protein and specialized RNA molecules. Ribosomes, transfer RNA (tRNA), and other proteins produce a chain of amino acids—the polypeptide—as the end product of translation.
Translation Produces the Building Blocks of Life
Proteins are...
18.0K
Initiation of Translation02:33

Initiation of Translation

39.2K
Initiating translation is complex because it involves multiple molecules. Initiator tRNA, ribosomal subunits, and eukaryotic initiation factors (eIFs) are all required to assemble on the initiation codon of mRNA. This process consists of several steps that are mediated by different eIFs.
First, the initiator tRNA must be selected from the pool of elongator tRNAs by eukaryotic initiation factor 2 (eIF2). The initiator tRNA (Met-tRNAi) has conserved sequence elements including modified bases at...
39.2K
Termination of Translation01:44

Termination of Translation

27.8K
The large ribosomal subunit has several important structures essential to translation. These include the peptidyl transferase center (PTC) - which is the site where the peptide bond is formed - and a large, internal, water-filled tube through which the nascent polypeptide moves. This latter structure is called the Peptide Exit Tunnel, and it begins at the PTC and spans the body of the large ribosomal subunit. During translation, as the nascent polypeptide chain is synthesized, it passes through...
27.8K
Termination of Translation01:44

Termination of Translation

6.8K
6.8K
Precipitation Titration: Endpoint Detection Methods01:19

Precipitation Titration: Endpoint Detection Methods

6.0K
In argentometric precipitation titrations, endpoints can be detected visually by the Mohr, Volhard, and Fajans methods. In the Mohr method, adding a soluble chromate indicator gives an initial yellow color to the analyte solution. As the titrant is added, the first excess of silver ions forms a red silver chromate precipitate, marking the endpoint. The solution pH should be maintained at about 8 by adding solid CaCO3.
In the Volhard method, a standard excess of AgNO3 is first added to the...
6.0K

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相关实验视频

Updated: Feb 12, 2026

The Use of Pharmacological-challenge fMRI in Pre-clinical Research: Application to the 5-HT System
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The Use of Pharmacological-challenge fMRI in Pre-clinical Research: Application to the 5-HT System

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[临床终点和翻译挑战]

Rayan Rashid1,2, Moritz Lindner3,4,5,6

  • 1Institut für Physiologie und Pathophysiologie, Philipps-Universität Marburg, Deutschhausstr. 2, 35037, Marburg, Deutschland.

Die Ophthalmologie
|February 10, 2026
PubMed
概括

目前,光遗传视力恢复正在临床试验中. 未来的研究将专注于提高视觉复杂性,完善患者选择和结果措施,以获得更好的治疗结果.

关键词:
基因治疗是一种基因疗法.光遗传视力恢复视力恢复假肢视力恢复恢复 视力恢复超低视力 超低视力视觉 视觉 视觉 视觉 视觉 是一个

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Generation of Comprehensive Thoracic Oncology Database - Tool for Translational Research
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Generation of Comprehensive Thoracic Oncology Database - Tool for Translational Research

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Intravenous Endotoxin Challenge in Healthy Humans: An Experimental Platform to Investigate and Modulate Systemic Inflammation
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Intravenous Endotoxin Challenge in Healthy Humans: An Experimental Platform to Investigate and Modulate Systemic Inflammation

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相关实验视频

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科学领域:

  • 眼科医生 眼科 眼科
  • 神经科学是一个神经科学.
  • 生物技术是生物技术.

背景情况:

  • 光遗传视力恢复正在进入临床试验.
  • 这种方法使用光敏感蛋白来恢复视网膜疾病患者的视力.

研究的目的:

  • 审查目前光遗传视力恢复的翻译状态.
  • 讨论患者选择,终点的确定,以及患者的期望.
  • 突出未来的方向,以提高视觉感知.

主要方法:

  • 对光遗传视力恢复研究的叙述性综述.
  • 分析临床试验数据和已发表的研究.

主要成果:

  • 在Clinicaltrials.gov.gov上注册了八项光遗传视力恢复试验.
  • 概念验证已经在人类患者中得到证实.
  • 未来的努力必须旨在恢复复杂的视觉感知.

结论:

  • 光遗传学已成功进入视力恢复的临床开发阶段.
  • 需要进一步开发才能实现复杂的视力恢复.
  • 仔细考虑患者群体和终点对于监管批准和治疗成功至关重要.