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相关概念视频

Phase II Reactions: Acetylation Reactions01:24

Phase II Reactions: Acetylation Reactions

280
Acetylation, a phase II biotransformation reaction, introduces an acetyl group to drugs or their metabolites. Acetyltransferase enzymes facilitate this reaction, which resembles α-amino acid conjugation due to the addition of a functional group to the drug molecule.
The substrates for acetylation are typically drugs or their metabolites with an amino, sulfonamide, or hydrazine functional group. Acetylation can occur at several points in the drug molecule, including primary, secondary, and...
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Modification of secretory and transmembrane proteins entering the rough ER begins in the ER lumen. These modifications aid in protein folding and stabilize the acquired tertiary structure. Protein modifications in the rough ER co-occur at different stages of protein folding.
Broadly, these modifications can be categorized into four main categories — glycosylation, formation of disulfide bonds, assembly of protein subunits, and specific proteolytic cleavages like removal of signal...
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Phase II Reactions: Sulfation and Conjugation with α-Amino Acids01:19

Phase II Reactions: Sulfation and Conjugation with α-Amino Acids

304
Sulfation and α-amino acid conjugation are two critical biotransformation reactions in drug metabolism. Sulfation, a phase II biotransformation reaction, involves adding a polar sulfate group to a drug, enhancing its water solubility and promoting excretion. This process can either co-occur with or occur independently of glucuronidation. Nonmicrosomal sulfotransferase enzymes catalyze the process. The reaction involves 3'-phosphoadenosine-5'-phosphosulfate or PAPS coenzyme...
304
Phase II Reactions: Glucuronidation01:24

Phase II Reactions: Glucuronidation

559
Glucuronidation, a pivotal phase II biotransformation process, involves the coupling of glucuronic acid to a drug or xenobiotic. Given its widespread occurrence and critical role in drug metabolism, it's considered the most crucial phase II reaction. It enhances the water solubility of substances, aiding their expulsion from the body. The driving force behind these reactions is a group of enzymes known as UDP-glucuronosyltransferases (UGTs). UGTs facilitate the transfer of a glucuronic acid...
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Acid Halides to Carboxylic Acids: Hydrolysis01:01

Acid Halides to Carboxylic Acids: Hydrolysis

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Hydrolysis of acid halides is a nucleophilic acyl substitution reaction in which acid halides react with water to give carboxylic acids. The reaction occurs readily and does not require acid or a base catalyst.
As shown below, the mechanism involves a nucleophilic attack by water at the carbonyl carbon to form a tetrahedral intermediate. This is followed by the reformation of the carbon–oxygen π bond along with the departure of a halide ion. A final proton transfer step yields carboxylic...
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Drug Metabolism: Phase II Reactions01:14

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Phase II reactions are essential for the detoxification and elimination of drugs from the body. These reactions involve the conjugation of parent drugs or their phase I metabolites with endogenous molecules, resulting in more hydrophilic drug conjugates. The primary conjugation reactions in this phase are sulfation and glucuronidation. Both sulfation and glucuronidation typically produce biologically inactive metabolites. However, in some cases involving prodrugs, active metabolites may be...
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经过修改的甘油酸.

Qi Chen1, Chengyuan Wu2, Siwei Wang2

  • 1Faculty of Chinese Medicine, Macau University of Science and Technology, Macao, China.

Frontiers in chemistry
|June 8, 2023
PubMed
概括

这项研究开发了新的可溶性微针,在碳点上结合了糖酸和甲状腺酸,用于类风湿性关节炎治疗. 这些微针有效降低了炎症,并在动物模型中显示了治疗效果.

关键词:
波利亚可可斯的多糖化物.碳点是指碳点的部分.葡萄糖酸是什么 葡萄糖酸是什么甲基特雷克萨酸盐的使用方法微针是一种微针.类风湿性关节炎 类风湿性关节炎

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科学领域:

  • 生物材料科学 生物材料科学
  • 纳米技术纳米技术
  • 类风湿病学 类风湿病学

背景情况:

  • 类风湿性关节炎 (RA) 是一种慢性自身免疫性关节疾病.
  • 口服甲状腺素是有效的,但受到不良反应的限制.
  • 通过皮肤输送药物提供了一个替代方案,但微针组合疗法尚未得到充分研究.

研究的目的:

  • 开发一种新的纳米药物输送系统,用于通过皮肤治疗RA.
  • 为了创建可生物降解的可溶性微针,以提高药物输送.
  • 为了研究糖酸和甲醇酸的联合抗炎作用.

主要方法:

  • 经过修改的碳点上含有糖酸,并加载有甲.
  • 含有纳米药物输送系统的基于氨酸的可溶性微针制造.
  • 使用各种分析技术描述了纳米药物输送系统和微针.
  • 在巨细胞模型上评估了体外抗炎作用,并在老鼠RA模型中评估了体内治疗疗效.

主要成果:

  • 成功合成和表征糖酸-碳点-甲基酸纳米药物递送系统,甲基酸负载为49.09%.
  • 实验室中证明了巨细胞对促炎性细胞因子分泌的强烈抑制.
  • 在风湿性关节炎的小鼠模型中显示出显著的治疗效果,减少炎症.

结论:

  • 开发的糖酸-碳点-甲基酸可溶性微针代表了 RA 的一个有前途的通过皮肤输送系统.
  • 这种方法提供了一种可行的策略,以克服口服甲状腺素的局限性,并提高RA治疗的疗效.