在人体中激进驱动的甲形成,由外源同位素标记的DMSO和氨酸证明
Frank Keppler1,2, Mihály Boros3, Daniela Polag1
1Institute of Earth Sciences, Heidelberg University, D-69120 Heidelberg, Germany.
Antioxidants (Basel, Switzerland)
|July 29, 2023
概括
甲 (CH4) 在没有微生物的情况下在人体内产生,使用像DMSO这样的标记化合物. 这一发现表明CH4可能起到生理作用,并可能是氧化应激生物标志物.
科学领域:
- 生物化学 生物化学
- 人体生理学 人体生理学
- 氧化压力研究研究 氧化压力研究
背景情况:
- 甲 (CH4) 是生物体内内源产生的,可能会影响细胞信号传输.
- 它在人类生理学和哺乳动物非微生物生产中的作用尚不清楚.
- 对于炎症和伤害等疾病,CH4补充的潜在治疗益处已被提出.
研究的目的:
- 提供第一个关于人体中非微生物甲 (CH4) 形成的证据.
- 使用标记的前体,研究内源性CH4的细胞起源.
- 探索CH4在人类中的潜在生理和与压力相关的作用.
主要方法:
- 使用同位素标记 (2H和13C) 二甲基硫氧化物 (DMSO) 和甲作为碳前体.
- 标有DMSO的局部,口服和来自人类志愿者的血液样本.
- 在实验样本中监测了甲 (CH4) 的稳定同位素比.
主要成果:
- 证明了甲基组从标记的DMSO和 metionin转化为甲 (CH4).
- 在所有给药途径中证实了同位素标记CH4的形成.
- 提供了人类内源性非微生物CH4生成原理的证明.
结论:
- 内生甲 (CH4) 在人体中通过非微生物,激素驱动的过程形成.
- 需要进一步的研究来阐明CH4的生理功能和生物活性.
- 甲 (CH4) 可能作为氧化应激和免疫反应的生物标志物.
相关概念视频
Carboxylic Acids to Methylesters: Alkylation using Diazomethane
2.2K
Carboxylic acids react with diazomethane in an ether solvent via alkylation at the carboxylate oxygen atom to give methyl esters of the corresponding acid with excellent yields.
2.2K
Radical Anti-Markovnikov Addition to Alkenes: Mechanism
3.8K
The reaction of hydrogen bromide with alkenes in the presence of hydroperoxides or peroxides proceeds via anti-Markovnikov addition. The radical chain reaction comprises initiation, propagation, and termination steps.
The mechanism starts with chain initiation, which involves two steps. In the first chain initiation step, a weak peroxide bond is homolytically cleaved upon mild heating to form two alkoxy radicals. In the second initiation step, a hydrogen atom is abstracted by the alkoxy...
The mechanism starts with chain initiation, which involves two steps. In the first chain initiation step, a weak peroxide bond is homolytically cleaved upon mild heating to form two alkoxy radicals. In the second initiation step, a hydrogen atom is abstracted by the alkoxy...
3.8K
Radical Anti-Markovnikov Addition to Alkenes: Overview
3.4K
The addition of hydrogen bromide to alkenes in the presence of hydroperoxides or peroxides proceeds via an anti-Markovnikov pathway and yields alkyl bromides.
3.4K
Radical Substitution: Halogenation of Alkanes and Alkyl Substituents
8.3K
In the presence of heat or light, alkanes react with molecular halogens to form alkyl halides by a substitution reaction called radical halogenation. This reaction has three steps: initiation, propagation, and termination, as seen in the radical chlorination of methane to produce methyl chloride.
In the initiation step of the reaction, the chlorine molecule undergoes homolytic cleavage in the presence of light or heat, forming two highly reactive chlorine radicals. Propagation occurs in two...
In the initiation step of the reaction, the chlorine molecule undergoes homolytic cleavage in the presence of light or heat, forming two highly reactive chlorine radicals. Propagation occurs in two...
8.3K
Radical Formation: Addition
1.7K
Radicals can be formed by adding a radical to a spin-paired molecule. This is typically observed with unsaturated species, where the addition of a radical across the π bond leads to the production of a new radical by dissolving the π bond. For example, the addition of a Br radical to an alkene yields a carbon-centered radical.
Similar to charge conservation in chemical reactions, spin conservation is implicit for radical reactions. Accordingly, the product formed must possess an...
Similar to charge conservation in chemical reactions, spin conservation is implicit for radical reactions. Accordingly, the product formed must possess an...
1.7K
Radical Halogenation: Stereochemistry
3.7K
Stereochemistry is the study of the different spatial arrangements of atoms in a given molecule. The stereochemistry of radical halogenations can be understood from three different situations:
Halogenation to form a new chiral center:
Halogenation to form a new chiral center:
3.7K


