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Quantitative Polymerase Chain Reaction (qPCR)-Based Rapid Diagnosis of Helicobacter pylori Infection and Antibiotic Resistance
Published on: July 28, 2023
Molecular & evolutionary genetics & drug resistance of the gastric pathogen, Helicobacter pylori
S Datta1, A Chowdhury, A K Mukhopadhyay
1National Institute of Cholera & Enteric Diseases (ICMR), Institute of Post Graduate Medical Education & Research, Kolkata, India.
Insights
Helicobacter pylori infection is common worldwide, causing ulcers and gastric cancer. Research is identifying bacterial and host factors to develop better treatments and vaccines against this persistent pathogen.
Area of Science:
- Microbiology
- Genetics
- Epidemiology
Background:
- Helicobacter pylori infects over half the global population, leading to peptic ulcers and gastric cancer.
- Most H. pylori infections are asymptomatic but persist for years, with pathology influenced by bacterial and host factors.
- H. pylori exhibits significant genetic diversity, with distinct genotypes found in different global regions, such as India.
Purpose of the Study:
- To investigate the genetic diversity of H. pylori strains, particularly differences between Indian and Western strains.
- To identify bacterial colonization and virulence factors and understand host responses to H. pylori infection.
- To pave the way for developing improved anti-Helicobacter therapies and vaccines.
Main Methods:
- Genome sequencing of H. pylori.
- Epidemiological, mutational, molecular, and immunologic analyses.
- Cell culture and animal models for hypothesis testing.
Main Results:
- Significant genetic differences observed in H. pylori strains from India compared to Europe and East Asia.
- Identification of candidate genes involved in bacterial colonization and virulence.
- Insights into host response mechanisms during H. pylori infection.
Conclusions:
- H. pylori genetic diversity suggests regional origins and potentially unique Indian-specific genes.
- Understanding H. pylori-host interactions is crucial for developing effective treatments.
- Ongoing research promises enhanced therapies and vaccines for global health improvement.
Abstract:
Helicobacter pylori colonizes the gastric mucosa of more than half of all people worldwide and is the major cause of peptic ulcer disease and an early risk factor for gastric cancer, even though most infections are asymptomatic. Infection occurs preferentially in early childhood and once established tends to persist for years or decades. Much of the pathology H. pylori causes probably results from the host response to infection, which is affected by bacterial genotype, human host characteristics and environmental conditions. H. pylori is one of the most genetically diverse of bacterial species, with different genotypes predominating in different parts of the world. In particular, strains from India differ from those of Europe and East Asia in DNA sequence of several diagnostic gene segments. This outcome invites speculation about H. pylori origins and the possibility of Indian-specific genes that might be uncommon in Western strains. Much has been learned from H. pylori genome sequences, along with epidemiological, mutational, molecular and immunologic analyses. Candidate bacterial colonization and virulence genes and host responses are being identified, and the hypotheses being developed are amenable to tests in cell culture and animal models. These research efforts, many of which are collaborative and international, provide insights into mechanisms of establishment and persistence of H. pylori infection and virulence, and should lead to new, far more potent and cost effective anti-Helicobacter therapies or vaccines, and thereby major improvement in human health worldwide.
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