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HEALTH Gene Technologies Co multiple detection kit for 13 respiratory pathogens
Multiple Detection Kit For 13 Respiratory Pathogens, supplied by HEALTH Gene Technologies Co, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/multiple+detection+kit+for+13+respiratory+pathogens/multiple+detection+kit+for+13+respiratory+pathogens/pm40552816-216-21-22
Average 90 stars, based on 1 article reviews
multiple detection kit for 13 respiratory pathogens - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Long Noncoding RNA NRAV Promotes Respiratory Syncytial Virus Replication by Targeting the MicroRNA miR-509-3p/Rab5c Axis To Regulate Vesicle Transportation
Article Snippet: Specimens were detected using a multiple detection kit for 13 respiratory pathogens (Health Gene Tech, Ningbo, China) in the Second Hospital of Hebei Medical University.

Article Title: Long Noncoding RNA NRAV Promotes Respiratory Syncytial Virus Replication by Targeting the MicroRNA miR-509-3p/Rab5c Axis To Regulate Vesicle Transportation
Article Snippet: And specimens were detected by Multiple 357 Detection Kit for 13 Respiratory Pathogens (Health gene tech, Ningbo, China) in the 358 Second Hospital of Hebei Medical University.

Infection:

Article Title: Cyclophilin A Inhibits Human Respiratory Syncytial Virus (RSV) Replication by Binding to RSV-N through Its PPIase Activity
Article Snippet: .. From November 2018 to January 2019, 35 clinical pediatric patients were diagnosed as RSV infected by a multiple detection kit for 13 respiratory pathogens (Health Gene Tech, Ningbo, China) in the Second Hospital of Hebei Medical University. ..

Article Title: CypA inhibits respiratory syncytial virus (RSV) replication by suppressing glycolysis through the downregulation of PKM2 expression.
Article Snippet: .. From January 2025 to March 2025, 20 clinical patients diagnosed as RSV infection by a multiple detection kit for 13 respiratory pathogens (Health Gene Tech, Ningbo, China) in the Second Hospital of Hebei Medical University were included. ..



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HEALTH Gene Technologies Co multiple detection kit for 13 respiratory pathogens
Multiple Detection Kit For 13 Respiratory Pathogens, supplied by HEALTH Gene Technologies Co, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/multiple+detection+kit+for+13+respiratory+pathogens/multiple+detection+kit+for+13+respiratory+pathogens/pm40552816-216-21-22
Average 90 stars, based on 1 article reviews
multiple detection kit for 13 respiratory pathogens - by Bioz Stars, 2026-09
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multiple detection kit thirteen respiratory pathogens (13× kit - by Bioz Stars, 2026-09
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HEALTH Gene Technologies Co multiple detection kit for thirteen respiratory pathogens 13× kit
Frequencies of <t> respiratory pathogens </t> in children with ARIs from 2020 to 2022
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multiple detection kit for thirteen respiratory pathogens 13× kit - by Bioz Stars, 2026-09
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HEALTH Gene Technologies Co multiple detection kit 13 respiratory pathogens
Frequencies of <t> respiratory pathogens </t> in children with ARIs from 2020 to 2022
Multiple Detection Kit 13 Respiratory Pathogens, supplied by HEALTH Gene Technologies Co, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Frequencies of  respiratory pathogens  in children with ARIs from 2020 to 2022

Journal: BMC Infectious Diseases

Article Title: Epidemiological changes in respiratory pathogen transmission among children with acute respiratory infections during the COVID-19 pandemic in Kunming, China

doi: 10.1186/s12879-024-09733-y

Figure Lengend Snippet: Frequencies of respiratory pathogens in children with ARIs from 2020 to 2022

Article Snippet: The respiratory pathogens were detected using a Multiple Detection Kit for Thirteen Respiratory Pathogens (13× kit; HEALTH Gene Technologies Co., Ltd., Ningbo, China), detection reagents lots: 201,117,005, 210,323,004, 220,329,007.

Techniques:

Distribution of each respiratory pathogen among children with acute respiratory infections in Kunming, 2020–2022. The length of the colored bars and the number indicate the frequency of each pathogen. The frequencies of the H1N1 and H3N2 subtypes of influenza A were calculated. From 2020 to 2021, the frequencies of some pathogens increased significantly, including Rhinovirus (20.4% vs. 24.3%, P = 0.011), Metapneumovirus (1.4% vs. 4.5%, P < 0.0001), Adenovirus (3.5% vs. 8.0%, P < 0.0001), Influenza B (1.2% vs. 2.4%, P = 0.016), and Mycoplasma pneumoniae (2.4% vs. 5.1%, P < 0.0001). Conversely, the frequencies of some pathogens decreased significantly from 2020 to 2021, including coronavirus (1.9% vs. 0.6%, P = 0.001) and influenza A (1.5% vs. 0.2%, P < 0.0001). Furthermore, the frequencies of some pathogens increased significantly from 2021 to 2022, including coronavirus (0.6% vs. 1.8%, P = 0.001) and Mycoplasma pneumoniae (5.1% vs. 10.2%, P < 0.0001). However, the frequencies of some pathogens decreased significantly from 2021 to 2022, including rhinovirus (24.3% vs. 18.1%, P < 0.0001), parainfluenza (6.0% vs. 4.1%, P = 0.007), and respiratory syncytial virus (8.6% vs. 3.1%, P < 0.0001)

Journal: BMC Infectious Diseases

Article Title: Epidemiological changes in respiratory pathogen transmission among children with acute respiratory infections during the COVID-19 pandemic in Kunming, China

doi: 10.1186/s12879-024-09733-y

Figure Lengend Snippet: Distribution of each respiratory pathogen among children with acute respiratory infections in Kunming, 2020–2022. The length of the colored bars and the number indicate the frequency of each pathogen. The frequencies of the H1N1 and H3N2 subtypes of influenza A were calculated. From 2020 to 2021, the frequencies of some pathogens increased significantly, including Rhinovirus (20.4% vs. 24.3%, P = 0.011), Metapneumovirus (1.4% vs. 4.5%, P < 0.0001), Adenovirus (3.5% vs. 8.0%, P < 0.0001), Influenza B (1.2% vs. 2.4%, P = 0.016), and Mycoplasma pneumoniae (2.4% vs. 5.1%, P < 0.0001). Conversely, the frequencies of some pathogens decreased significantly from 2020 to 2021, including coronavirus (1.9% vs. 0.6%, P = 0.001) and influenza A (1.5% vs. 0.2%, P < 0.0001). Furthermore, the frequencies of some pathogens increased significantly from 2021 to 2022, including coronavirus (0.6% vs. 1.8%, P = 0.001) and Mycoplasma pneumoniae (5.1% vs. 10.2%, P < 0.0001). However, the frequencies of some pathogens decreased significantly from 2021 to 2022, including rhinovirus (24.3% vs. 18.1%, P < 0.0001), parainfluenza (6.0% vs. 4.1%, P = 0.007), and respiratory syncytial virus (8.6% vs. 3.1%, P < 0.0001)

Article Snippet: The respiratory pathogens were detected using a Multiple Detection Kit for Thirteen Respiratory Pathogens (13× kit; HEALTH Gene Technologies Co., Ltd., Ningbo, China), detection reagents lots: 201,117,005, 210,323,004, 220,329,007.

Techniques: Virus

Frequencies of  respiratory pathogens  among various age groups in children with ARIs

Journal: BMC Infectious Diseases

Article Title: Epidemiological changes in respiratory pathogen transmission among children with acute respiratory infections during the COVID-19 pandemic in Kunming, China

doi: 10.1186/s12879-024-09733-y

Figure Lengend Snippet: Frequencies of respiratory pathogens among various age groups in children with ARIs

Article Snippet: The respiratory pathogens were detected using a Multiple Detection Kit for Thirteen Respiratory Pathogens (13× kit; HEALTH Gene Technologies Co., Ltd., Ningbo, China), detection reagents lots: 201,117,005, 210,323,004, 220,329,007.

Techniques:

Seasonal distribution of each respiratory pathogen during the three research periods from 2020 to 2022. The distributions of the H1N1 and H3N2 subtypes of influenza A are not listed

Journal: BMC Infectious Diseases

Article Title: Epidemiological changes in respiratory pathogen transmission among children with acute respiratory infections during the COVID-19 pandemic in Kunming, China

doi: 10.1186/s12879-024-09733-y

Figure Lengend Snippet: Seasonal distribution of each respiratory pathogen during the three research periods from 2020 to 2022. The distributions of the H1N1 and H3N2 subtypes of influenza A are not listed

Article Snippet: The respiratory pathogens were detected using a Multiple Detection Kit for Thirteen Respiratory Pathogens (13× kit; HEALTH Gene Technologies Co., Ltd., Ningbo, China), detection reagents lots: 201,117,005, 210,323,004, 220,329,007.

Techniques:

Coinfection pattern of respiratory pathogens in children with acute respiratory infections. Coinfection rates were calculated pairwise. The numerator was the number of patients co-infected with both pathogens, and the denominator was the total number of patients who were tested for both pathogens. The bigger size and darker color of the circles indicate higher coinfection rates between two pathogens Boca, human bocavirus; Ch, chlamydia; HADV, human adenovirus; HCOV, human coronavirus; HMPV, human metapneumovirus; HPIV, human parainfluenza virus; HRSV, human respiratory syncytial virus; HRV, human rhinovirus; InfA, influenza A; InfB, influenza B; Mp, Mycoplasma pneumoniae

Journal: BMC Infectious Diseases

Article Title: Epidemiological changes in respiratory pathogen transmission among children with acute respiratory infections during the COVID-19 pandemic in Kunming, China

doi: 10.1186/s12879-024-09733-y

Figure Lengend Snippet: Coinfection pattern of respiratory pathogens in children with acute respiratory infections. Coinfection rates were calculated pairwise. The numerator was the number of patients co-infected with both pathogens, and the denominator was the total number of patients who were tested for both pathogens. The bigger size and darker color of the circles indicate higher coinfection rates between two pathogens Boca, human bocavirus; Ch, chlamydia; HADV, human adenovirus; HCOV, human coronavirus; HMPV, human metapneumovirus; HPIV, human parainfluenza virus; HRSV, human respiratory syncytial virus; HRV, human rhinovirus; InfA, influenza A; InfB, influenza B; Mp, Mycoplasma pneumoniae

Article Snippet: The respiratory pathogens were detected using a Multiple Detection Kit for Thirteen Respiratory Pathogens (13× kit; HEALTH Gene Technologies Co., Ltd., Ningbo, China), detection reagents lots: 201,117,005, 210,323,004, 220,329,007.

Techniques: Infection, Virus

Coinfection pattern of  respiratory  pathogen in children with ARIs

Journal: BMC Infectious Diseases

Article Title: Epidemiological changes in respiratory pathogen transmission among children with acute respiratory infections during the COVID-19 pandemic in Kunming, China

doi: 10.1186/s12879-024-09733-y

Figure Lengend Snippet: Coinfection pattern of respiratory pathogen in children with ARIs

Article Snippet: The respiratory pathogens were detected using a Multiple Detection Kit for Thirteen Respiratory Pathogens (13× kit; HEALTH Gene Technologies Co., Ltd., Ningbo, China), detection reagents lots: 201,117,005, 210,323,004, 220,329,007.

Techniques: