Global mortality associated with 33 bacterial pathogens in 2019: a systematic analysis for the Global Burden of Disease Study 2019

Глобальная смертность, связанная с 33 бактериальными патогенами, в 2019 году: систематический анализ для исследования «Глобальное бремя болезней, травм и факторов риска — 2019»
Aleksandr Y. Aravkin, Mohsen Abbasi‐Kangevari, Chisom Joyqueenet Akunna, Fares Alahdab, Ziyad Al‐Aly, Vahid Alipour, Syed Mohamed Aljunid, Robert Ancuceanu, Cătălina Liliana Andrei, Tudorel Andrei, Jalal Arabloo, Marcel Ausloos, Beatriz Paulina Ayala Quintanilla, Ashish Badiye, Budi Aji, Anna Gershberg Hayoon, Kevin S Ikuta, Tomislav Meštrović, Mainak Bardhan, Sepideh Ahmadi, Aleksandra Barać, Fablina Sharara, Lucien R Swetschinski, Gisela Robles Aguilar, Authia P Gray, Chieh Han, Eve E Wool, Alicia V Aleman, Bright Opoku Ahinkorah, Edward Kwabena Ameyaw, Judie Arulappan, Sherief Abd‐Elsalam, Aidin Abedi, Hassan Abidi, Qorinah Estiningtyas Sakilah Adnani, Muhammad U. Afzal, Sajjad Ahmad, Tarik A. Rashid, Hanadi Al Hamad, Yousef Alimohamadi, Sami Almustanyir, Anayochukwu Edward Anyasodor, Timur Aripov, Tahira Ashraf, Sina Azadnajafabad, Amirhossein Azari Jafari, Atif Amin Baig, Francesco Barone‐Adesi, Arianna Maever L. Amit, Sohail Ahmad, Adnan Ansar, Nicole Davis Weaver, Aqeel Ahmad, Haroon Ahmed, Syed Shujait Ali, Demelash Areda, Anton A Artamonov, Seyyed Shamsadin Athari, Nayereh Baghcheghi, Fadwa Alhalaiqa, Ali Ahmed, Liaqat Ali, Zeinab Abbasi-Kangevari, Isaac Yeboah Addo, Tigist Demssew Adane, Sara Bagherieh, Zahra Babaei Aghdam, Robert Kaba Alhassan, Richard Gyan Aboagye, Saira Afzal, Jivan Qasim Ahmed, Marjan Ajami, Amirali Aali, Raphael Taiwo Aruleba, Semagn Mekonnen Abate, Getachew Abebe, Amir Parsa Abhari, Abdorrahim Absalan, Hiwa Abubaker Ali, Juan Acuña, Oyelola A. Adegboye, Mohammad Adnan, Araz Ramazan Ahmad, Rizwan Ahmad, Mostafa Akbarzadeh-Khiavi, Mamoon A. Aldeyab, Beriwan Abdulqadir Ali, Atiyeh Alizadeh, Kasim Allel, Nivedita Anandavelane, Dewi Anggraini, Muhammad Asaduzzaman, Daniel Atlaw, Sameh Attia, Tewachew Awoke, Tegegn Mulatu Ayana, B B Darshan, Muhammad Badar, Indrajit Banerjee, Hiba Jawdat Barqawi, Semagn Mekonnen Abate, Araz Ramazan Ahmad
2022-11-21

Global Burden of Disease Study 2019antimicrobial resistancebacterial pathogensinfectious syndromesmortality estimation
BACKGROUND: Reducing the burden of death due to infection is an urgent global public health priority. Previous studies have estimated the number of deaths associated with drug-resistant infections and sepsis and found that infections remain a leading cause of death globally. Understanding the global burden of common bacterial pathogens (both susceptible and resistant to antimicrobials) is essential to identify the greatest threats to public health. To our knowledge, this is the first study to present global comprehensive estimates of deaths associated with 33 bacterial pathogens across 11 major infectious syndromes. METHODS: We estimated deaths associated with 33 bacterial genera or species across 11 infectious syndromes in 2019 using methods from the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019, in addition to a subset of the input data described in the Global Burden of Antimicrobial Resistance 2019 study. This study included 343 million individual records or isolates covering 11 361 study-location-years. We used three modelling steps to estimate the number of deaths associated with each pathogen: deaths in which infection had a role, the fraction of deaths due to infection that are attributable to a given infectious syndrome, and the fraction of deaths due to an infectious syndrome that are attributable to a given pathogen. Estimates were produced for all ages and for males and females across 204 countries and territories in 2019. 95% uncertainty intervals (UIs) were calculated for final estimates of deaths and infections associated with the 33 bacterial pathogens following standard GBD methods by taking the 2·5th and 97·5th percentiles across 1000 posterior draws for each quantity of interest. FINDINGS: From an estimated 13·7 million (95% UI 10·9-17·1) infection-related deaths in 2019, there were 7·7 million deaths (5·7-10·2) associated with the 33 bacterial pathogens (both resistant and susceptible to antimicrobials) across the 11 infectious syndromes estimated in this study. We estimated deaths associated with the 33 bacterial pathogens to comprise 13·6% (10·2-18·1) of all global deaths and 56·2% (52·1-60·1) of all sepsis-related deaths in 2019. Five leading pathogens-Staphylococcus aureus, Escherichia coli, Streptococcus pneumoniae, Klebsiella pneumoniae, and Pseudomonas aeruginosa-were responsible for 54·9% (52·9-56·9) of deaths among the investigated bacteria. The deadliest infectious syndromes and pathogens varied by location and age. The age-standardised mortality rate associated with these bacterial pathogens was highest in the sub-Saharan Africa super-region, with 230 deaths (185-285) per 100 000 population, and lowest in the high-income super-region, with 52·2 deaths (37·4-71·5) per 100 000 population. S aureus was the leading bacterial cause of death in 135 countries and was also associated with the most deaths in individuals older than 15 years, globally. Among children younger than 5 years, S pneumoniae was the pathogen associated with the most deaths. In 2019, more than 6 million deaths occurred as a result of three bacterial infectious syndromes, with lower respiratory infections and bloodstream infections each causing more than 2 million deaths and peritoneal and intra-abdominal infections causing more than 1 million deaths. INTERPRETATION: The 33 bacterial pathogens that we investigated in this study are a substantial source of health loss globally, with considerable variation in their distribution across infectious syndromes and locations. Compared with GBD Level 3 underlying causes of death, deaths associated with these bacteria would rank as the second leading cause of death globally in 2019; hence, they should be considered an urgent priority for intervention within the global health community. Strategies to address the burden of bacterial infections include infection prevention, optimised use of antibiotics, improved capacity for microbiological analysis, vaccine development, and improved and more pervasive use of available vaccines. These estimates can be used to help set priorities for vaccine need, demand, and development. FUNDING: Bill & Melinda Gates Foundation, Wellcome Trust, and Department of Health and Social Care, using UK aid funding managed by the Fleming Fund.
1
Mortality was estimated by age and sex using a three-step modelling framework linking infection-related deaths, infectious syndromes, and specific bacterial pathogens.
2
Of 13.7 million infection-related deaths globally in 2019, 7.7 million were associated with the 33 bacterial pathogens, with a 95% uncertainty interval of 5.7–10.2 million.
3
The estimates include infections caused by pathogens both susceptible and resistant to antimicrobials, addressing the broader bacterial disease burden beyond antimicrobial resistance alone.
4
The study provides the first comprehensive global estimates of deaths associated with 33 bacterial pathogens across 11 major infectious syndromes.
5
Using 343 million records or isolates from 11,361 study-location-years, the analysis estimated pathogen-associated mortality across 204 countries and territories in 2019.

Mortality attributable to 33 bacterial pathogens globally in 2019

Global mortality and infection burden associated with these bacterial pathogens, including variation by pathogen, infectious syndrome, sex, age, and country or territory

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2022-11-21
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Authors
Aleksandr Y. Aravkin
Mohsen Abbasi‐Kangevari
Chisom Joyqueenet Akunna
Fares Alahdab
Ziyad Al‐Aly
Vahid Alipour
Syed Mohamed Aljunid
Robert Ancuceanu
Cătălina Liliana Andrei
Tudorel Andrei
Jalal Arabloo
Marcel Ausloos
Beatriz Paulina Ayala Quintanilla
Ashish Badiye
Budi Aji
Anna Gershberg Hayoon
Kevin S Ikuta
Tomislav Meštrović
Mainak Bardhan
Sepideh Ahmadi
Aleksandra Barać
Fablina Sharara
Lucien R Swetschinski
Gisela Robles Aguilar
Authia P Gray
Chieh Han
Eve E Wool
Alicia V Aleman
Bright Opoku Ahinkorah
Edward Kwabena Ameyaw
Judie Arulappan
Sherief Abd‐Elsalam
Aidin Abedi
Hassan Abidi
Qorinah Estiningtyas Sakilah Adnani
Muhammad U. Afzal
Sajjad Ahmad
Tarik A. Rashid
Hanadi Al Hamad
Yousef Alimohamadi
Sami Almustanyir
Anayochukwu Edward Anyasodor
Timur Aripov
Tahira Ashraf
Sina Azadnajafabad
Amirhossein Azari Jafari
Atif Amin Baig
Francesco Barone‐Adesi
Arianna Maever L. Amit
Sohail Ahmad
Adnan Ansar
Nicole Davis Weaver
Aqeel Ahmad
Haroon Ahmed
Syed Shujait Ali
Demelash Areda
Anton A Artamonov
Seyyed Shamsadin Athari
Nayereh Baghcheghi
Fadwa Alhalaiqa
Ali Ahmed
Liaqat Ali
Zeinab Abbasi-Kangevari
Isaac Yeboah Addo
Tigist Demssew Adane
Sara Bagherieh
Zahra Babaei Aghdam
Robert Kaba Alhassan
Richard Gyan Aboagye
Saira Afzal
Jivan Qasim Ahmed
Marjan Ajami
Amirali Aali
Raphael Taiwo Aruleba
Semagn Mekonnen Abate
Getachew Abebe
Amir Parsa Abhari
Abdorrahim Absalan
Hiwa Abubaker Ali
Juan Acuña
Oyelola A. Adegboye
Mohammad Adnan
Araz Ramazan Ahmad
Rizwan Ahmad
Mostafa Akbarzadeh-Khiavi
Mamoon A. Aldeyab
Beriwan Abdulqadir Ali
Atiyeh Alizadeh
Kasim Allel
Nivedita Anandavelane
Dewi Anggraini
Muhammad Asaduzzaman
Daniel Atlaw
Sameh Attia
Tewachew Awoke
Tegegn Mulatu Ayana
B B Darshan
Muhammad Badar
Indrajit Banerjee
Hiba Jawdat Barqawi
Semagn Mekonnen Abate
Araz Ramazan Ahmad
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