The Experts below are selected from a list of 1968 Experts worldwide ranked by ideXlab platform
Rafael Mikolajczyk - One of the best experts on this subject based on the ideXlab platform.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
BMC Microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Background Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. Results For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Conclusions Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood.
BMC microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Additional file 4: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S4. Anterior nares’ community diversity indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 233 kb
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Additional file 9: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S8. Anterior nares’ community diversity in infected children indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 229 kb
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Additional file 6: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, AndrĂŠ Karch, Rafael MikolajczykAbstract:Figure S5. Relative abundance of selected genera in the anterior nares bacterial community of 12 healthy children and 12 additional children with Picornavirus Infection (PVI). (PDF 127 kb
Mahrrouz Caputo - One of the best experts on this subject based on the ideXlab platform.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
BMC Microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Background Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. Results For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Conclusions Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood.
BMC microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Additional file 4: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S4. Anterior nares’ community diversity indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 233 kb
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Additional file 9: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S8. Anterior nares’ community diversity in infected children indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 229 kb
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Additional file 6: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, AndrĂŠ Karch, Rafael MikolajczykAbstract:Figure S5. Relative abundance of selected genera in the anterior nares bacterial community of 12 healthy children and 12 additional children with Picornavirus Infection (PVI). (PDF 127 kb
Frederic Meyer - One of the best experts on this subject based on the ideXlab platform.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
BMC Microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Background Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. Results For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Conclusions Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood.
BMC microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Additional file 4: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S4. Anterior nares’ community diversity indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 233 kb
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Additional file 9: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S8. Anterior nares’ community diversity in infected children indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 229 kb
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Additional file 6: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, AndrĂŠ Karch, Rafael MikolajczykAbstract:Figure S5. Relative abundance of selected genera in the anterior nares bacterial community of 12 healthy children and 12 additional children with Picornavirus Infection (PVI). (PDF 127 kb
Beate Zoch-lesniak - One of the best experts on this subject based on the ideXlab platform.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
BMC Microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Background Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. Results For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Conclusions Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood.
BMC microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Additional file 4: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S4. Anterior nares’ community diversity indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 233 kb
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Additional file 9: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S8. Anterior nares’ community diversity in infected children indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 229 kb
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Additional file 6: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, AndrĂŠ Karch, Rafael MikolajczykAbstract:Figure S5. Relative abundance of selected genera in the anterior nares bacterial community of 12 healthy children and 12 additional children with Picornavirus Infection (PVI). (PDF 127 kb
Marius Vital - One of the best experts on this subject based on the ideXlab platform.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
BMC Microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Background Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. Results For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Conclusions Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood.
BMC microbiology, 2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar H. Pieper, Rafael MikolajczykAbstract:Little is known regarding the nasal microbiome in early childhood and the impact of respiratory Infection on the infants’ nasal microbial composition. Here we investigated the temporal dynamics and diversity of the bacterial composition in the anterior nares in children attending daycare centers. For our investigation, we considered 76 parental-taken nasal swabs of 26 children (aged 13 to 36 months) collected over a study period of 3 months. Overall, there was no significant age-specific effect or seasonal shift in the nasal bacterial community structure. In a sub-sample of 14 healthy children the relative abundance of individual taxa as well as the overall diversity did not reveal relevant changes, indicating a stable community structure over the entire study period. Moreover, the nasal bacterial profiles clustered subject-specific with Bray-Curtis similarities being elevated in intra-subject calculations compared to between-subject calculations. The remaining subset of 12 children provided samples taken during Picornavirus Infection (PVI) and either before or after a PVI. We detected an association between the relative abundance of members of the genus Streptococcus and PV when comparing both (i) samples taken during PVI with samples out of 14 healthy children and (ii) samples taken during PVI with samples taken after PVI within the same individual. In addition, the diversity was higher during PVI than after Infection. Our findings suggest that a personalized structure of the nasal bacterial community is established already in early childhood and could be detected over a timeframe of 3 months. Studies following infants over a longer time with frequent swab sampling would allow investigating whether certain parameter of the bacterial community, such as the temporal variability, could be related to viral Infection.
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Additional file 4: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S4. Anterior nares’ community diversity indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 233 kb
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Additional file 9: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, André Karch, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, Rafael MikolajczykAbstract:Figure S8. Anterior nares’ community diversity in infected children indicated by total phylotype number, Simpson index (1-Lambda), and Pielou’s evenness (J’). (PDF 229 kb
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Additional file 6: of Bacterial community structure and effects of Picornavirus Infection on the anterior nares microbiome in early childhood
2019Co-Authors: Mahrrouz Caputo, Beate Zoch-lesniak, Marius Vital, Frederic Meyer, Frank Klawonn, Armin Baillot, Dietmar Pieper, AndrĂŠ Karch, Rafael MikolajczykAbstract:Figure S5. Relative abundance of selected genera in the anterior nares bacterial community of 12 healthy children and 12 additional children with Picornavirus Infection (PVI). (PDF 127 kb