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Pernicious anemia: new insights from a gastroenterological point of view
Insights
Pernicious anemia (PA) is a macrocytic anemia due to vitamin B12 deficiency from intrinsic factor deficiency. Diagnosis involves serological markers and antibodies, with management focused on cobalamin replacement and monitoring for complications.
Area of Science:
- Gastroenterology
- Hematology
- Immunology
Background:
- Pernicious anemia (PA) is a macrocytic anemia resulting from vitamin B12 deficiency due to intrinsic factor deficiency.
- PA is linked to atrophic body gastritis (ABG), diagnosed histologically, with serological markers like elevated gastrin and decreased pepsinogen I indicating oxyntic mucosa damage.
Discussion:
- Intrinsic factor deficiency in PA can be inferred using intrinsic factor and parietal cell antibodies, offering high specificity.
- While often seen in the elderly, PA affects younger individuals (15%), presenting with anemia symptoms or dyspepsia.
- PA frequently co-occurs with autoimmune conditions like thyroid disease and diabetes mellitus, suggesting a role in autoimmune polyendocrine syndromes.
Key Insights:
- PA represents the end-stage of ABG, potentially influenced by long-standing Helicobacter pylori infection leading to autoimmune destruction.
- Genetic susceptibility, indicated by human leukocyte antigen-DR genotypes, plays a role in PA development.
- Effective management includes cobalamin replacement, monitoring for iron deficiency, and patient counseling on long-term risks like gastric cancer.
Outlook:
- Further research into the interplay between H. pylori, autoimmunity, and genetic factors in PA pathogenesis.
- Improved diagnostic strategies for early detection and differentiation of PA subtypes.
- Long-term surveillance protocols for gastrointestinal complications in PA patients.
Abstract:
Pernicious anemia (PA) is a macrocytic anemia that is caused by vitamin B(12) deficiency, as a result of intrinsic factor deficiency. PA is associated with atrophic body gastritis (ABG), whose diagnosis is based on histological confirmation of gastric body atrophy. Serological markers that suggest oxyntic mucosa damage are increased fasting gastrin and decreased pepsinogen I. Without performing Schilling's test, intrinsic factor deficiency may not be proven, and intrinsic factor and parietal cell antibodies are useful surrogate markers of PA, with 73% sensitivity and 100% specificity. PA is mainly considered a disease of the elderly, but younger patients represent about 15% of patients. PA patients may seek medical advice due to symptoms related to anemia, such as weakness and asthenia. Less commonly, the disease is suspected to be caused by dyspepsia. PA is frequently associated with autoimmune thyroid disease (40%) and other autoimmune disorders, such as diabetes mellitus (10%), as part of the autoimmune polyendocrine syndrome. PA is the end-stage of ABG. Long-standing Helicobacter pylori infection probably plays a role in many patients with PA, in whom the active infectious process has been gradually replaced by an autoimmune disease that terminates in a burned-out infection and the irreversible destruction of the gastric body mucosa. Human leucocyte antigen-DR genotypes suggest a role for genetic susceptibility in PA. PA patients should be managed by cobalamin replacement treatment and monitoring for onset of iron deficiency. Moreover, they should be advised about possible gastrointestinal long-term consequences, such as gastric cancer and carcinoids.
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