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Evolution of Helicobacter pylori Resistance to Antibiotics: A Topic of Increasing Concern.
Boyanova, Lyudmila; Hadzhiyski, Petyo; Gergova, Raina; Markovska, Rumyana.
  • Boyanova L; Department of Medical Microbiology, Medical Faculty, Medical University of Sofia, Zdrave str. 2, 1431 Sofia, Bulgaria.
  • Hadzhiyski P; Specialized Hospital for Active Pediatric Treatment, Medical University of Sofia, "Acad. Ivan Evstatiev Geshov" blvd., 1606 Sofia, Bulgaria.
  • Gergova R; Department of Medical Microbiology, Medical Faculty, Medical University of Sofia, Zdrave str. 2, 1431 Sofia, Bulgaria.
  • Markovska R; Department of Medical Microbiology, Medical Faculty, Medical University of Sofia, Zdrave str. 2, 1431 Sofia, Bulgaria.
Antibiotics (Basel) ; 12(2)2023 Feb 04.
Article in English | MEDLINE | ID: covidwho-2252844
ABSTRACT
Antibiotic resistance among Helicobacter pylori strains is the major cause of eradication failure. Resistance prevalence is dynamic and can greatly vary among countries over the years. We revealed H. pylori resistance trends for five antibiotics in 14 countries through articles predominantly published in 2018-2022, since the latest data can best show the most recent trends in resistance evolution. Amoxicillin resistance generally exhibited no evolution, yet it increased in Bulgaria, Iran, China, and Vietnam. Metronidazole resistance exhibited different trends, including an increase, a decrease and no evolution in six, three, and five studies, respectively. Clarithromycin resistance increased in Australia, Belgium, Bulgaria, Italy, Iran, and Taiwan, but remained stable in France, Spain, Russia, China, Chile, and Colombia. Tetracycline resistance was low and stable except in Iran. Levofloxacin resistance increased in four European and six other countries/regions, without significant increases in France, Spain, and Chile. In Chile, triple resistance also increased. In countries such as France and Spain, resistance to most antibiotics was stabilized, while in Bulgaria, Belgium, Iran and Taiwan, resistance to three or more agents was reported. Use of non-recommended regimens, national antibiotic consumption, patient's compliance, host factors, strain virulence, migrations, and azithromycin overuse during the COVID-19 pandemic can influence resistance evolution. New drugs, eradication regimens and diagnostic methods, such as next-generation sequencing can improve H. pylori infection control.
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Full text: Available Collection: International databases Database: MEDLINE Type of study: Observational study Language: English Year: 2023 Document Type: Article Affiliation country: Antibiotics12020332

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Full text: Available Collection: International databases Database: MEDLINE Type of study: Observational study Language: English Year: 2023 Document Type: Article Affiliation country: Antibiotics12020332