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相关概念视频

The Citric Acid Cycle: Overview01:37

The Citric Acid Cycle: Overview

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In aerobic organisms, the citric acid cycle is the second stage of cellular respiration wherein molecules derived from the breakdown of carbohydrates, proteins, and fats are oxidized into carbon dioxide and energy. This process is also known as the tricarboxylic acid (TCA) cycle as the first product of the cycle, citric acid, contains three carboxyl groups in its structure. Alternatively, this cycle is also referred to as the Krebs cycle, in honor of its discoverer Sir Hans Krebs.
The citric...
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Anticholinesterase Agents: Poisoning and Treatment01:26

Anticholinesterase Agents: Poisoning and Treatment

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Anticholinesterases, also known as cholinesterase inhibitors, work by blocking the breakdown of acetylcholine, leading to its accumulation in the synaptic cleft. This accumulation indirectly enhances both muscarinic and nicotinic actions. These agents are classified as reversible or irreversible based on their mechanism of action.     
Irreversible agents form a strong bond with the cholinesterase enzyme, making it inactive. The breakdown of the phosphorylated enzyme is...
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The Citric Acid Cycle: Output01:28

The Citric Acid Cycle: Output

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The citric acid cycle is termed an amphibolic pathway as it operates both anabolically and catabolically. The cyclic reactions balance the flux of the substrates to provide an optimal concentration of NADH and ATP to the cell.
Regulation of Citric Acid Cycle
The citric acid cycle is regulated in several ways, including feedback inhibition, regulation of enzyme activities, and associated anaplerotic or cataplerotic pathways.
The primary substrate of the TCA cycle—acetyl CoA—is...
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The Citric Acid Cycle02:36

The Citric Acid Cycle

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The citric acid cycle, also known as the Krebs cycle or TCA cycle, consists of several energy-generating reactions that yield one ATP molecule, three NADH molecules, one FADH2 molecule, and two CO2 molecules.
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Antidotes01:17

Antidotes

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Antidotes are medicinal substances used to counteract the harmful effects of toxins or drugs in the body. They function in various ways, each uniquely designed to combat specific toxic compounds.
Specific antidotes operate by inhibiting the enzymes that control biochemical pathways, reducing the production of harmful metabolites.
An example of an antidote is atropine, which counteracts the detrimental effects of cholinesterase inhibitors. It achieves this by deactivating muscarinic receptors,...
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Prevention of Further Absorption of Poison01:14

Prevention of Further Absorption of Poison

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In cases of acute poisoning, the primary objective is to prevent further absorption of the toxic substance into the body. Immediate interventions using various decontamination techniques targeting the gastrointestinal (GI) tract can achieve this. Decontamination is crucial to prevent poison from entering the systemic circulation, which involves washing affected areas with water and mild soap and removing contaminated clothing. Once external decontamination is done, attention must be turned to...
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Updated: Jul 11, 2025

Inducing Acute Liver Injury in Rats via Carbon Tetrachloride CCl4 Exposure Through an Orogastric Tube
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让我们停止谈论"酸盐毒性".

Avantika Israni1, David S Goldfarb

  • 1Nephrology Division, NYU Grossman School of Medicine and Nephrology Section, NY Harbor VA Healthcare System, New York, New York, USA.

Current opinion in nephrology and hypertension
|November 14, 2023
PubMed
概括
此摘要是机器生成的。

术语"酸盐毒性"对于连续脏替代疗法 (CRRT) 抗凝药是误导性的. 这次审查建议用"酸盐积累"取代它,以更好地反映潜在的不良影响,如低血症.

科学领域:

  • 腎臟病學 (nephrology) 是一種醫學專業.
  • 临界护理医学 临界护理医学

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Author Spotlight: A New and Efficient Method for Comprehensive Metabolite Cytotoxicity Assessment of Triazole Pesticides in Plants
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Chemotherapy-induced Vascular Toxicity - Real-time In vivo Imaging of Vessel Impairment
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Author Spotlight: A New and Efficient Method for Comprehensive Metabolite Cytotoxicity Assessment of Triazole Pesticides in Plants
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  • 药理学 药理学是指药理学的学科.
  • 背景情况:

    • 在重症患者急性损伤 (AKI) 中,持续置换疗法 (CRRT) 是必不可少的.
    • 区域酸盐抗凝药是预防CRRT期间体外电路凝血的首选方法.
    • 关于"酸盐毒性"的担忧往往来自于酸盐积累的感知不良影响.

    结论:

    • 当前的术语"酸盐毒性"是不准确的,应该重新考虑.
    • 应该采用更精确的术语"酸盐积累"来描述不良事件.
    • 对CRRT中酸盐的安全性概况的细微了解对于适当的临床管理至关重要.