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Our team of dental specialists and staff strive to improve the overall health of our patients by focusing on preventing, diagnosing and treating conditions associated with your teeth and gums. Please use our dental library to learn more about dental problems and treatments available. If you have questions or need to schedule an appointment, contact us.
 

Bacterial Link Between Heart Disease and Gum Disease Clarified 
September 30th, 2015 By Managing Editor, DiabetesinControl.com 

A study, published in Infection and Immunity, has clarified the mechanism behind a known link between gum disease and heart disease. Periodontitis, which results in an infection that damages the soft-tissue surrounding teeth and the bone supporting the teeth, is commonly caused by Porphyromonas gingivalis. P. gingivalis is a Gram-negative anaerobe that colonizes mouth tissues for lengthy periods of time after initial infection. It is commonly found within the arterial plaques common to heart disease patients. 

The study authors discovered that the bacteria alters the gene expression of pro-inflammatory proteins that also promote coronary artery atherosclerosis. This was discovered by infecting cultured human aortic smooth muscle cells with P. gingivalis. Aortic smooth muscle cells were used because they contract the aorta after the pumping of the heart stretches it out. 

After P. gingivalis was injected into the cells, the bacteria released gingipains. Gingipains are enzymes that change the ratio between different angiopoietins (inflammatory proteins) in such a way that inflammation is increased. The pro-inflammatory angiopoietin 2 had its expression increased by the gingipains, whereas the anti-inflammatory angiopoietin 1 had its expression reduced. P gingivalis was found to affect the levels of these proteins independent of tumor necrosis factor (TNF). 

The study is significant because it helps to pinpoint the relationship between periodontitis and heart disease. Further research can help clarify potential targets for treatment of atherosclerosis. 

Practice Pearls: 

Periodontitis and heart disease share a common pathogen, P. gingivitis. 
A study found that P. gingivitis alters gene expression to increase production of the pro-inflammatory protein angiopoietin 2 and decreases presence of the anti-inflammatory protein angiopoietin 1. This results in increased atherosclerosis. 
The study further clarifies the cardiovascular risk of poor oral health and hygiene. 
Paddock C. Scientists uncover bacterial mechanism that links gum disease to heart disease. published in the journal Infection and Immunity. September 14, 2015. 

We recommend 

PERIODONTAL DISEASE AND DIABETES 
Diabetes in control , 2006 
Is Periodontal Disease Influenced by Diabetes Type? 
Diabetes in control , 2014 
Diabetes Linked to Tooth Decay 
Diabetes in control , 2011 
Scientists uncover bacterial mechanism that links gum disease to heart disease 
Catharine Paddock PhD, Medical News Today, 2015 
Periodontitis and heart disease: Researchers connect the molecular dots 
American Society for Microbiology News via MDLinx, 2015 
The Biphasic Virulence Activities of Gingipains: Activation and Inactivation of Host Proteins



Plaque is a film of bacteria that forms on your teeth and gums after eating foods that produce acids. These foods may include carbohydrates (starches and sugars), such as candy and cookies, and starchy foods such as bread, crackers, and cereal.

Tooth decay, commonly known as cavities, occurs when plaque remains on your teeth for an extended period of time, allowing the bacteria to ‘eat away’ at the surfaces of your teeth and gums.  Ironically, the areas surrounding restored portions of teeth (where fillings, or amalgams have been placed) are particularly vulnerable to decay and are a breeding ground for bacteria.

Plaque can lead to gum irritation, soreness, and redness. Sometimes, your gums may begin to bleed as a result of plaque. This gradual degeneration can often cause gums to pull away from teeth. This condition is called receding gums.

Long-term plaque can lead to serious problems. Sometimes, the bacteria can form pockets of disease around tooth structures, eventually destroying the bone beneath the tooth.