相关实验视频
Updated: Jul 27, 2026

07:18
Bone Conditioned Medium: Preparation and Bioassay
Published on: July 8, 2015
11.5K
在炎症条件下通过谷氨酸恢复水泥细胞矿化
Mengjie Yin1, Hantao Yao2, Jingqiu Chen1
1State Key Laboratory of Oral & Maxillofacial Reconstruction and Regeneration, Key Laboratory of Oral Biomedicine Ministry of Education, Hubei Key Laboratory of Stomatology, School & Hospital of Stomatology, Wuhan University, Wuhan, China.
International dental journal
|October 8, 2025
概括
谷氨胺补充剂通过向AMPK/GLS通路,恢复炎症期间的水泥细胞矿化. 这为牙周炎和牙周炎治疗提供了一个有前途的治疗策略.
科学领域:
- 细胞生物学 细胞生物学
- 代谢工程是代谢工程.
- 牙周医学 牙周医学
背景情况:
- 质细胞对于水泥形成和牙周再生至关重要.
- 炎症性疾病,如牙周炎扰乱了水泥细胞的新陈代谢,减少了矿物化.
- 了解这些代谢变化是开发新疗法的关键.
研究的目的:
- 为了阐明在炎症条件下的水泥细胞中的代谢变化.
- 探索针对质细胞代谢进行牙周再生的治疗策略.
主要方法:
- 鼠标水泥细胞 (OCCM-30) 感染了 Porphyromonas gingivalis.
- 使用海马测定和代谢学进行代谢分析.
- 基因操纵 (GLS淘汰/过度表达) 和药物抑制 (AMPK 抑制剂).
- 在活体研究中,使用了与谷氨胺补充剂的性牙周炎小鼠模型.
主要成果:
- 菌感染抑制了葡萄糖分解和氧化酸化,上调了谷氨胺代谢.
- GLS敲除抑制了水泥细胞矿化;谷氨酸补充剂或GLS过度表达恢复了它.
- 抑制AMPK降低了GLS表达和矿化.
- 在体内,谷氨酸补充剂减少了顶端牙周炎的进展和质破坏.
结论:
- 谷氨胺补充剂通过AMPK/GLS通路补偿炎症的水泥细胞中的能量缺陷.
- 准AMPK/GLS通路是一种潜在的治疗方法,用于水泥重矿化.
- 谷氨胺补充剂为治疗牙周炎和牙顶牙周炎提供了一个新的基础.
相关概念视频
Washing, Drying, and Ignition of Precipitates
After filtration, the precipitate is washed to remove coprecipitated impurities and any remaining mother liquor. Colloidal precipitates, such as silver chloride, are washed with an electrolyte (such as dilute nitric acid) to prevent the peptization of the precipitate. In the case of slightly soluble precipitates, the wash solution contains a common ion to reduce solubility. Lead sulfate, which is slightly soluble in water, is washed with dilute sulfuric acid. Similarly, wash solutions may be...
Hydration of Cement
Hydration of cement is a chemical reaction between cement particles and water. This process occurs primarily through two mechanisms: through-solution and topochemical. In the through-solution process, anhydrous compounds dissolve into their constituents, hydrates form in the solution, and then precipitate from the supersaturated solution. The topochemical process involves solid-state reactions at the cement particle surface. The through-solution process dominates the topochemical process at the...
Acid Attack on Concrete
When acids come into contact with concrete, they initiate a chemical reaction that dissolves the hydrated cement paste. This process leads to softening and structural weakening of the concrete. This issue is commonly observed in environments such as chimneys, sewers, and industrial settings. The severity of the damage increases as the pH of the water interacting with the concrete drops below 6.5. In particular, a pH under 4.5 can cause significant concrete damage.
The rate at which hydrogen...
The rate at which hydrogen...
Alkali Aggregate Reaction in Concrete
The alkali-aggregate reaction in concrete involves natural siliceous minerals in aggregates reacting with alkaline hydroxides derived from cement alkalis. This reaction forms an alkali-silica gel that absorbs water, swells, and increases in volume, which is confined by the surrounding cement paste, creating internal pressures that crack and disrupt the concrete. The extent of expansion and damage can be partly attributed to the alkali-silica reaction's osmotic hydraulic pressure and the...
Microbial Leaching
Microbial leaching, also known as bioleaching, is an environmentally favorable method for extracting metals from low-grade ores using specific microorganisms. This biotechnological approach is particularly valuable for mining operations targeting copper, gold, and uranium, where traditional extraction methods may be economically or environmentally impractical.Copper Leaching and Microbial CatalysisIn copper bioleaching, crushed ore is arranged into heaps and irrigated with a dilute sulfuric...
Acid Mine Drainage
Mining activities that disturb sulfide-rich rocks, particularly those containing pyrite (FeS₂), initiate a cascade of geochemical and microbiological processes with serious environmental implications. When exposed to air and water, pyrite undergoes oxidation, releasing sulfate, ultimately forming sulfuric acid and mobilizing heavy metals into surrounding water systems. This phenomenon, known as acid mine drainage (AMD), results in low pH waters laden with toxic elements that threaten aquatic...

