生物衰老与牙周炎之间的关联:来自横截面调查和多主题门德尔随机化分析的证据
Zhendong Huang1, Simin Peng1, Ting Cen1
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.
Journal of clinical periodontology
|July 3, 2024
概括
生物衰老显著增加牙周炎的风险,脆弱性和灰色年龄加速被确定为关键的因果因素. 解决这些衰老标志物可能有助于预防这两种疾病.
科学领域:
- 老年学和口腔健康学
- 遗传学和流行病学
背景情况:
- 牙周炎是一种普遍的炎症性疾病,影响牙支结构.
- 生物衰老是一个复杂的过程,越来越多地被认为是各种慢性疾病的危险因素.
研究的目的:
- 调查生物衰老和牙周炎之间的因果关系.
- 探索这种关联中的潜在分子机制和调解因素.
主要方法:
- 利用了国家健康和营养检查调查 (NHANES) 数据,全基因组关联研究 (GWAS) 总结统计数据和单细胞测序.
- 采用多变量回归,孟德尔随机化 (MR) 和多omics整合分析.
- 进行了两步的MR调解分析,以确定风险因素.
主要成果:
- 在3189名NHANES参与者中,较高的生物年龄与牙周炎风险增加有关.
- 门德尔的随机化证实了生物年龄测量和牙周炎之间的因果关系.
- 脆弱性和灰色年龄加速与牙周炎风险有因果关联,由大型GWAS数据验证.
- 身体质量指数,腰围和吸烟对牙周炎的影响部分由脆弱性和灰色年龄加速介导.
结论:
- 生物衰老是牙周炎的重要危险因素.
- 针对脆弱性和灰色年龄加速的干预措施可以在预防衰老和牙周炎方面提供双重好处.
相关概念视频
Aging
41
Aging is a complex biological phenomenon influenced by various processes that affect cellular and systemic functions. Several prominent theories attempt to explain its mechanisms, highlighting cellular limitations, oxidative damage, and hormonal changes as central factors in aging.
Cellular Clock Theory
The cellular clock theory posits that the human lifespan is closely tied to the finite capacity of cells to divide, a phenomenon governed by telomeres, which are protective caps at the ends of...
Cellular Clock Theory
The cellular clock theory posits that the human lifespan is closely tied to the finite capacity of cells to divide, a phenomenon governed by telomeres, which are protective caps at the ends of...
41
Teeth
373
The formation of teeth, also known as odontogenesis, is a complex process that begins in utero, around the sixth week of embryonic development. There are three stages to this process: the bud stage, the cap stage, and the bell stage.
In the bud stage, the tooth germ (an aggregation of cells) starts to form in the developing jawbone. During the cap stage, the tooth germ differentiates into enamel organ, dental papilla, and dental sac, which will later develop into the tooth's enamel, dentin...
In the bud stage, the tooth germ (an aggregation of cells) starts to form in the developing jawbone. During the cap stage, the tooth germ differentiates into enamel organ, dental papilla, and dental sac, which will later develop into the tooth's enamel, dentin...
373
Bone Disorders
3.5K
Aging and its effect on bone remodeling is the most common cause of bone disorders. In young and healthy people, bone deposition and resorption happen at an equal rate to maintain optimal bone health.
Bone deposition is also affected by the levels of sex hormones like estrogen and testosterone that promote osteoblast activity and bone matrix synthesis. When the level of these hormones decreases due to aging, it causes a reduction in bone deposition. As a result, bone resorption by osteoclasts...
Bone deposition is also affected by the levels of sex hormones like estrogen and testosterone that promote osteoblast activity and bone matrix synthesis. When the level of these hormones decreases due to aging, it causes a reduction in bone deposition. As a result, bone resorption by osteoclasts...
3.5K
Genome-wide Association Studies-GWAS
13.3K
Genome-wide association studies or GWAS are used to identify whether common SNPs are associated with certain diseases. Suppose specific SNPs are more frequently observed in individuals with a particular disease than those without the disease. In that case, those SNPs are said to be associated with the disease. Chi-square analysis is performed to check the probability of the allele likely to be associated with the disease.
GWAS does not require the identification of the target gene involved in...
GWAS does not require the identification of the target gene involved in...
13.3K
Genomics
36.3K
Genomics is the science of genomes: it is the study of all the genetic material of an organism. In humans, the genome consists of information carried in 23 pairs of chromosomes in the nucleus, as well as mitochondrial DNA. In genomics, both coding and non-coding DNA is sequenced and analyzed. Genomics allows a better understanding of all living things, their evolution, and their diversity. It has a myriad of uses: for example, to build phylogenetic trees, to improve productivity and...
36.3K


