类Anabasis:药理和植物化学性质的审查
Smail Amtaghri1,2, Miloudia Slaoui2, Mohamed Eddouks1
1Team of Ethnopharmacology and Pharmacognosy, Faculty of Sciences and Techniques Errachidia, Moulay Ismail University of Meknes, BP 509, Boutalamine, Errachidia, 52000, Morocco.
Cardiovascular & hematological agents in medicinal chemistry
|January 23, 2024
概括
亚纳巴西斯属显示出显著的抗菌,抗氧化,抗糖尿病,细胞毒性和抗炎性质. 需要进一步的研究来探索其作为植物医药的全部临床潜力.
科学领域:
- 药理学 药理学是指药理学的学科.
- 植物化学 植物化学
- 民族医学 民族医学
背景情况:
- 亚纳巴斯基属在传统植物医学中具有丰富的使用历史.
- 基物种被认为具有多种治疗用途,包括抗风湿,利尿和抗糖尿病作用.
研究的目的:
- 审查和总结Anabasis属的植物化学成分和药理学活动.
- 巩固有关Anabasis物种药用特性现有的知识.
主要方法:
- 对Anabasis属的综合文献分析.
- 报告的植物化学化合物及其相关的药理学活动的识别和编制.
主要成果:
- 特定的Anabasis物种 (A. aphylla,A. Iranica,A. aretioides,A. articulata,A. setifera) 具有抗菌,抗氧化,抗糖尿病,细胞毒性和抗炎作用.
- 该属的特点是存在沙素和类,包括阿纳巴辛和狼素.
- 在15种Anabasis植物中,共识了70种具有各种药理作用的化合物.
结论:
- 亚纳巴斯基属具有广泛的药理活性,具有潜在的治疗应用.
- 进一步的研究是必要的,以验证这些发现,并促进Anabasis衍生化合物的临床使用作为药物.
相关概念视频
Adrenergic Agonists: Chemistry and Structure-Activity Relationship
3.0K
Adrenergic agonists' structure-activity relationship (SAR) determines their selectivity and efficacy. These agonists comprise a phenylethylamine moiety with an aromatic ring and an ethylamine side chain.
Aromatic ring substitutions: Substituting the aromatic ring with –OH groups at positions 3 and 4 yields catecholamines (e.g., epinephrine), which have a high affinity for adrenoceptors. Hydrogen bonding between –OH groups and receptors enhances adrenergic activity.
Separation of...
Aromatic ring substitutions: Substituting the aromatic ring with –OH groups at positions 3 and 4 yields catecholamines (e.g., epinephrine), which have a high affinity for adrenoceptors. Hydrogen bonding between –OH groups and receptors enhances adrenergic activity.
Separation of...
3.0K
Physical Properties of Amines
3.2K
Amines with low molecular weight are usually gaseous at room temperature, while those with high molecular weight are liquid or solids in nature. Usually, low molecular weight amines have a rotten fish-like smell. Diamines typically have a pungent smell. For instance, cadaverine and putrescine, depicted in Figure 1, are two molecules responsible for decaying tissue.
3.2K
Effects of Chemicals: Overview
1.3K
Drugs, encompassing various chemical compounds from natural sources, lab synthesis, or genetic engineering, elicit different biological responses in living organisms. Some of these responses are desirable or therapeutic, while others are undesirable. The primary goal of administering a drug is to achieve a therapeutic effect, that is, to address a specific disease or health condition. Any concurrent effects outside of this therapeutic outcome are considered undesirable. These undesirable...
1.3K
Adrenergic Antagonists: Chemistry and Classification of ɑ-Receptor Blockers
880
Adrenergic antagonists, or sympatholytics, inhibit adrenoceptor activation driven by catecholamines or agonists. Based on their adrenoceptor specificity, adrenergic blockers can be categorized into two primary groups: α-adrenergic blockers (α-blockers) and β-adrenergic blockers (β-blockers). α-blockers interact with α1 and α2 subtypes of α-adrenoceptors.
Nonselective α-blockers: Nonselective α-blockers contain haloalkylamine or imidazoline...
Nonselective α-blockers: Nonselective α-blockers contain haloalkylamine or imidazoline...
880
Cholinergic Antagonists: Chemistry and Structure-Activity Relationship
2.2K
Cholinergic antagonists bind to cholinergic receptors and limit the effects of acetylcholine and other cholinergic agonists. Based on the specific cholinergic receptor affinity, these antagonists are classified as muscarinic or nicotinic. Anticholinergics interrupt parasympathetic innervations while sympathetic innervations remain uninterrupted. Muscarinic antagonists are also called 'muscarinic antagonists', 'antimuscarinics', or 'parasympatholytics'. Nicotinic...
2.2K


