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Updated: Feb 3, 2026

Basophil Activation Test for Allergy Diagnosis
Published on: May 31, 2021
Antibiotics and autoimmune and allergy diseases: Causative factor or treatment?
Anna Strzępa1, Francis M Lobo2, Monika Majewska-Szczepanik1
1Department of Medical Biology, Faculty of Health Sciences, Jagiellonian University Medical College, ul. Kopernika 7a, 31-034 Krakow, Poland.
Insights
Early life bacterial colonization is crucial for immune system development. Antibiotics can disrupt this microbial balance, potentially leading to allergies and autoimmune disorders later in life.
Area of Science:
- Microbiology
- Immunology
- Developmental Biology
Background:
- Newborns transition from a sterile environment to bacterial colonization, particularly in the gut.
- Gut bacteria, primarily Firmicutes and Bacteroidetes, play a key role in immune system development.
- Microbial imbalances (dysbiosis) are linked to allergic and autoimmune diseases.
Purpose of the Study:
- To review the development of microbiota in various body niches and their immunomodulatory effects.
- To evaluate the impact of antibiotics on microbial communities and immune responses throughout life.
- To explore the relationship between dysbiosis, antibiotic use, and immune-related disorders.
Main Methods:
- Review of existing literature on microbiota development and immunomodulation.
- Analysis of studies in mice and humans examining antibiotic effects on microbial communities.
- Evaluation of the impact of microbiota on immune responses across prenatal, childhood, and adult stages.
Main Results:
- Bacterial colonization is essential for directing immune responses away from Type-2 (allergy) towards Type-1 (pathogen elimination).
- Dysbiosis, often caused by antibiotics, is associated with immune dysregulation and diseases.
- The timing and type of antibiotic exposure may influence the risk of developing immune disorders.
Conclusions:
- The early-life microbiota is critical for establishing a balanced immune system.
- Antibiotic-induced dysbiosis can have long-lasting consequences on immune health.
- Further research is needed to understand the causal links between antibiotics, dysbiosis, and immune diseases.
Abstract:
The newborn infant emerges from an almost sterile environment into a world of bacteria. Bacteria colonize the infant's skin, lungs, and, of most importance, the gut. The process of bacterial colonization is coordinated, and each body niche acquires a unique composition of bacteria. In the gut, most bacteria belong to the Firmicutes and Bacteroidetes phyla, while Actinobacteria and Proteobacteria are far less abundant. Some of these bacteria possess strong immunoregulatory properties. Bacterial colonization is essential to skew the newborn's immune response away from the allergy-favoring Type-2 response towards a Type-1 immune response, which is essential for pathogen elimination. Imbalance between Type 1 and Type 2 responses, however, can promote autoimmunity. In addition, the microbiota shapes immune responses in adults. Autoimmune and allergic diseases are commonly associated with an altered composition of resident bacteria, which is known as dysbiosis. Perhaps the most common cause of disruption and alteration of the bacterial colonization of newborns is the use of antibiotics. It is not known whether the dysbiosis precedes or is the consequence of allergic and autoimmune disorders, and whether antibiotics can be a trigger for these disorders, depending on the type of antibiotic used and the maturity of immune system. In this review, we discuss the development of the microbiota in different body niches and their immunomodulatory potential. We evaluate the impact of antibiotics, both in mice and in humans, on microbial communities and how that may impact the development and manifestation of diseases through all stages of life: the prenatal period, childhood, and adulthood.
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