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Gastric carditis: Is it a histological response to high concentrations of luminal nitric oxide?
Insights
Nitric oxide, generated from dietary nitrate in saliva, causes nitrosative stress at the gastro-oesophageal junction. This stress may explain the high incidence of inflammation, intestinal metaplasia, and cancer at this site.
Area of Science:
- Gastroenterology
- Oncology
- Biochemistry
Background:
- Rising incidence of cancer at the gastro-oesophageal junction (GOJ).
- Inflammation and intestinal metaplasia at the GOJ are common, even in H. pylori-negative individuals.
- Current understanding of causative factors for GOJ pathologies is incomplete.
Discussion:
- Dietary nitrates are converted to nitrites in saliva, sustained for hours.
- Swallowed nitrite forms nitric oxide (NO) via acid catalysis at the GOJ.
- NO diffuses into adjacent tissues, creating a high nitrosative stress environment at the GOJ.
Key Insights:
- The GOJ is a region of significant nitrosative stress due to sustained NO production.
- Lifetime exposure to cytotoxic NO levels may drive inflammation and metaplasia.
- Nitrosative stress is a potential, under-examined factor in GOJ adenocarcinoma development.
Outlook:
- Further investigation into nitric oxide's role in GOJ pathologies is warranted.
- Consideration of NO and nitrosative stress alongside traditional factors like acid, pepsin, and bile.
- Potential for novel therapeutic strategies targeting nitrosative stress at the GOJ.
Abstract:
During the last decade, inflammation (carditis) and intestinal metaplasia localized to immediately below the human gastro-oesophageal junction have received much attention in relation to the rising incidence of cancer at this site. Since these histological findings are frequently observed even among those who are H pylori-negative, the causative factors for such histologic events at the human gastro-oesophageal junction remain obscure. A series of recent studies have demonstrated that a high level of salivary nitrite is sustained over several hours after the ingestion of a high nitrate meal, and that the nitrite in swallowed saliva is rapidly converted to nitric oxide by an acid catalyzed chemical reaction at the gastro-oesophageal junction. Eventually, a substantial amount of nitric oxide diffuses from the lumen into the adjacent tissue. Therefore, the human gastro-oesophageal junction is likely to be a region of high nitrosative stress. Considering the life-time exposure of the gastro-oesophageal junction to cytotoxic levels of nitric oxide, this may account for the high prevalence of inflammation, intestinal metaplasia, and subsequent development of neoplasia at this site. Although gastric acid, pepsin, and bile acid have been intensively investigated as a cause of adenocarcinoma at the gastro-oesophageal junction and the distal esophagus, nitric oxide and the related nitrosative stress should also be examined.
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