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Al Artaman

· University of Manitoba

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COVID-19 and healthcare impacts, Economic and Financial Impacts of Cancer, Global Cancer Incidence and Screening · 2021 · JAMA Oncology

Cancer Incidence, Mortality, Years of Life Lost, Years Lived With Disability, and Disability-Adjusted Life Years for 29 Cancer Groups From 2010 to 2019

Jonathan Kocarnik, Kelly Compton, Frances Dean, Weijia Fu, Brian Gaw, James Harvey, Hannah Henrikson, Dan Lu, Alyssa Pennini, Rixing Xu, Emad Ababneh, Mohsen Abbasi‐Kangevari, Hedayat Abbastabar, Sherief Abd‐Elsalam, Amir Abdoli, Aidin Abedi, Hassan Abidi, Hassan Abolhassani, Isaac Akinkunmi Adedeji, Qorinah Estiningtyas Sakilah Adnani, Shailesh M Advani, Muhammad U. Afzal, Mohammad Aghaali, Bright Opoku Ahinkorah, Sajjad Ahmad, Tauseef Ahmad, Ali Ahmadi, Sepideh Ahmadi, Tarik A. Rashid, Yusra Ahmed Salih, Gizachew Taddesse Akalu, Addis Aklilu, Tayyaba Akram, Chisom Joyqueenet Akunna, Hanadi Al Hamad, Fares Alahdab, Ziyad Al‐Aly, Saqib Ali, Yousef Alimohamadi, Vahid Alipour, Syed Mohamed Aljunid, Motasem Alkhayyat, Amir Almasi‐Hashiani, Nihad A. Almasri, Sadeq Ali Al‐Maweri, Sami Almustanyir, Nivaldo Alonso, Nelson Alvis‐Guzmán, Hubert Amu, Etsay Woldu Anbesu, Robert Ancuceanu, Fereshteh Ansari, Alireza Ansari‐Moghaddam, Maxwell Hubert Antwi, Davood Anvari, Anayochukwu Edward Anyasodor, Muhammad Aqeel, Jalal Arabloo, Morteza Arab‐Zozani, Olatunde Aremu, Hany Ariffin, Timur Aripov, Muhammad Arshad, Al Artaman, Judie Arulappan, Zatollah Asemi, Mohammad Asghari Jafarabadi, Tahira Ashraf, Prince Atorkey, Avinash Aujayeb, Marcel Ausloos, Atalel Fentahun Awedew, Beatriz Paulina Ayala Quintanilla, Temesgen Ayenew, Mohammed A. Azab, Sina Azadnajafabad, Amirhossein Azari Jafari, Ghasem Azarian, Ahmed Y. Azzam, Ashish Badiye, Saeed Bahadory, Atif Amin Baig, Jennifer L. Baker, Senthilkumar Balakrishnan, Maciej Banach, Till Bärnighausen, Francesco Barone‐Adesi, Fabio Barra, Amadou Barrow, Masoud Behzadifar, Uzma Belgaumi, Woldesellassie Bezabhe, Yihienew Mequanint Bezabih, Devidas S. Bhagat, Akshaya Srikanth Bhagavathula, Nikha Bhardwaj, Pankaj Bhardwaj, Sonu Bhaskar, Krittika Bhattacharyya, Vijayalakshmi S Bhojaraja

IMPORTANCE: The Global Burden of Diseases, Injuries, and Risk Factors Study 2019 (GBD 2019) provided systematic estimates of incidence, morbidity, and mortality to inform local and international efforts toward reducing cancer burden. OBJECTIVE: To estimate cancer burden and trends globally for 204 countries and territories and by Sociodemographic Index (SDI) quintiles from 2010 to 2019. EVIDENCE REVIEW: The GBD 2019 estimation methods were used to describe cancer incidence, mortality, years lived with disability, years of life lost, and disability-adjusted life years (DALYs) in 2019 and over the past decade. Estimates are also provided by quintiles of the SDI, a composite measure of educational attainment, income per capita, and total fertility rate for those younger than 25 years. Estimates include 95% uncertainty intervals (UIs). FINDINGS: In 2019, there were an estimated 23.6 million (95% UI, 22.2-24.9 million) new cancer cases (17.2 million when excluding nonmelanoma skin cancer) and 10.0 million (95% UI, 9.36-10.6 million) cancer deaths globally, with an estimated 250 million (235-264 million) DALYs due to cancer. Since 2010, these represented a 26.3% (95% UI, 20.3%-32.3%) increase in new cases, a 20.9% (95% UI, 14.2%-27.6%) increase in deaths, and a 16.0% (95% UI, 9.3%-22.8%) increase in DALYs. Among 22 groups of diseases and injuries in the GBD 2019 study, cancer was second only to cardiovascular diseases for the number of deaths, years of life lost, and DALYs globally in 2019. Cancer burden differed across SDI quintiles. The proportion of years lived with disability that contributed to DALYs increased with SDI, ranging from 1.4% (1.1%-1.8%) in the low SDI quintile to 5.7% (4.2%-7.1%) in the high SDI quintile. While the high SDI quintile had the highest number of new cases in 2019, the middle SDI quintile had the highest number of cancer deaths and DALYs. From 2010 to 2019, the largest percentage increase in the numbers of cases and deaths occurred in the low and low-middle SDI quintiles. CONCLUSIONS AND RELEVANCE: The results of this systematic analysis suggest that the global burden of cancer is substantial and growing, with burden differing by SDI. These results provide comprehensive and comparable estimates that can potentially inform efforts toward equitable cancer control around the world.

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Global Cancer Incidence and Screening, COVID-19 and healthcare impacts, Hematological disorders and diagnostics · 2019 · JAMA Oncology

Global, Regional, and National Cancer Incidence, Mortality, Years of Life Lost, Years Lived With Disability, and Disability-Adjusted Life-Years for 29 Cancer Groups, 1990 to 2017

Christina Fitzmaurice, Degu Abate, Naghmeh Abbasi, Hedayat Abbastabar, Foad Abd-Allah, Omar Abdel‐Rahman, Ahmed Abdelalim, Amir Abdoli, Ibrahim Abdollahpour, Abdishakur S. M. Abdulle, Nebiyu Dereje Abebe, Haftom Niguse Abraha, Laith J. Abu‐Raddad, Ahmed Abualhasan, Isaac Akinkunmi Adedeji, Shailesh M Advani, Mohsen Afarideh, Mahdi Afshari, Mohammad Aghaali, Dominic Agius, Sutapa Agrawal, Ayat Ahmadi, Elham Ahmadian, Ehsan Ahmadpour, Muktar Beshir Ahmed, Mohammad Esmaeil Akbari, Tomi Akinyemiju, Ziyad Al‐Aly, Assim M. AlAbdulKader, Fares Alahdab, Shazia Alam, Genet Melak Alamene, Birhan Alemnew, Kefyalew Addis Alene, Cyrus Alinia, Vahid Alipour, Syed Mohamed Aljunid, Fatemeh Allah Bakeshei, Majid A. Almadi, Amir Almasi‐Hashiani, Ubai Alsharif, Shirina Alsowaidi, Nelson Alvis‐Guzmán, Erfan Amini, Saeed Amini, Yaw Ampem Amoako, Zohreh Anbari, Nahla Anber, Cătălina Liliana Andrei, Mina Anjomshoa, Fereshteh Ansari, Ansariadi Ansariadi, Seth Christopher Yaw Appiah, Morteza Arab‐Zozani, Jalal Arabloo, Zohreh Arefi, Olatunde Aremu, Habtamu Abera Areri, Al Artaman, Hamid Asayesh, Ephrem Tsegay Asfaw, Alebachew Fasil Ashagre, Reza Assadi, Bahar Ataeinia, Hagos Tasew Atalay, Zerihun Ataro, Suleman Atique, Marcel Ausloos, Leticia Ávila‐Burgos, Euripide Avokpaho, Ashish Awasthi, Nefsu Awoke, Beatriz Paulina Ayala Quintanilla, Martin Amogre Ayanore, Henok Tadesse Ayele, Ebrahim Babaee, Umar Bacha, Alaa Badawi, Mojtaba Bagherzadeh, Eleni Bagli, Senthilkumar Balakrishnan, Abbas Balouchi, Till Bärnighausen, Robert J. Battista, Masoud Behzadifar, Meysam Behzadifar, Bayu Begashaw Bekele, Yared Belete Belay, Yaschilal Muche Belayneh, Kathleen Berfield, Adugnaw Berhane, Eduardo Bernabé, Mircea Beuran, Nickhill Bhakta, Krittika Bhattacharyya, Belete Biadgo, Ali Bijani, Muhammad Shahdaat Bin Sayeed, Charles Birungi, Catherine Bisignano

Importance Cancer and other noncommunicable diseases (NCDs) are now widely recognized as a threat to global development. The latest United Nations high-level meeting on NCDs reaffirmed this observation and also highlighted the slow progress in meeting the 2011 Political Declaration on the Prevention and Control of Noncommunicable Diseases and the third Sustainable Development Goal. Lack of situational analyses, priority setting, and budgeting have been identified as major obstacles in achieving these goals. All of these have in common that they require information on the local cancer epidemiology. The Global Burden of Disease (GBD) study is uniquely poised to provide these crucial data. Objective To describe cancer burden for 29 cancer groups in 195 countries from 1990 through 2017 to provide data needed for cancer control planning. Evidence Review We used the GBD study estimation methods to describe cancer incidence, mortality, years lived with disability, years of life lost, and disability-adjusted life-years (DALYs). Results are presented at the national level as well as by Socio-demographic Index (SDI), a composite indicator of income, educational attainment, and total fertility rate. We also analyzed the influence of the epidemiological vs the demographic transition on cancer incidence. Findings In 2017, there were 24.5 million incident cancer cases worldwide (16.8 million without nonmelanoma skin cancer [NMSC]) and 9.6 million cancer deaths. The majority of cancer DALYs came from years of life lost (97%), and only 3% came from years lived with disability. The odds of developing cancer were the lowest in the low SDI quintile (1 in 7) and the highest in the high SDI quintile (1 in 2) for both sexes. In 2017, the most common incident cancers in men were NMSC (4.3 million incident cases); tracheal, bronchus, and lung (TBL) cancer (1.5 million incident cases); and prostate cancer (1.3 million incident cases). The most common causes of cancer deaths and DALYs for men were TBL cancer (1.3 million deaths and 28.4 million DALYs), liver cancer (572 000 deaths and 15.2 million DALYs), and stomach cancer (542 000 deaths and 12.2 million DALYs). For women in 2017, the most common incident cancers were NMSC (3.3 million incident cases), breast cancer (1.9 million incident cases), and colorectal cancer (819 000 incident cases). The leading causes of cancer deaths and DALYs for women were breast cancer (601 000 deaths and 17.4 million DALYs), TBL cancer (596 000 deaths and 12.6 million DALYs), and colorectal cancer (414 000 deaths and 8.3 million DALYs). Conclusions and Relevance The national epidemiological profiles of cancer burden in the GBD study show large heterogeneities, which are a reflection of different exposures to risk factors, economic settings, lifestyles, and access to care and screening. The GBD study can be used by policy makers and other stakeholders to develop and improve national and local cancer control in order to achieve the global targets and improve equity in cancer care.

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Global Cancer Incidence and Screening, Multiple and Secondary Primary Cancers, Cancer Risks and Factors · 2018 · JAMA Oncology

Global, Regional, and National Cancer Incidence, Mortality, Years of Life Lost, Years Lived With Disability, and Disability-Adjusted Life-Years for 29 Cancer Groups, 1990 to 2016

Christina Fitzmaurice, Tomi Akinyemiju, Faris Lami, Shazia Alam, Reza Alizadeh‐Navaei, Christine A. Allen, Ubai Alsharif, Nelson Alvis‐Guzmán, Erfan Amini, Benjamin O. Anderson, Olatunde Aremu, Al Artaman, Solomon Weldegebreal Asgedom, Reza Assadi, Tesfay Mehari Atey, Leticia Ávila‐Burgos, Ashish Awasthi, Huda Omer Ba Saleem, Aleksandra Barać, James R. Bennett, Isabela M. Benseñor, Nickhill Bhakta, Hermann Brenner, Lucero Cahuana-Hurtado, Carlos A Castañeda-Orjuela, Ferrán Catalá-López, Jee-Young J Choi, Devasahayam Jesudas Christopher, Sheng‐Chia Chung, María Paula Curado, Lalit Dandona, Rakhi Dandona, José das Neves, Subhojit Dey, Samath Dhamminda Dharmaratne, David Teye Doku, Tim Driscoll, Manisha Dubey, Hedyeh Ebrahimi, Dumessa Edessa, Ziad El‐Khatib, Aman Yesuf Endries, Florian Fischer, Lisa M Force, Kyle J Foreman, Solomon Weldemariam Gebrehiwot, Sameer Vali Gopalani, Giuseppe Grosso, Rahul Gupta, Bishal Gyawali, Randah R Hamadeh, Samer Hamidi, James Harvey, Hamid Yimam Hassen, Roderick J. Hay, Simon I Hay, Behzad Heibati, Molla Kahssay Hiluf, Nobuyuki Horita, Hung Chak Ho, Olayinka Stephen Ilesanmi, Kaire Innos, Farhad Islami, Mihajlo Jakovljević, Sarah Charlotte Johnson, Jost B Jonas, Amir Kasaeian, Tesfaye Kassa, Yousef Khader, Ejaz Ahmad Khan, Gulfaraz Khan, Young‐Ho Khang, Mohammad Hossein Khosravi, Jagdish Khubchandani, Jacek A Kopec, G Anil Kumar, Michael Kutz, Deepesh Lad, Alessandra Lafranconi, Qing Lan, Yirga Legesse, James Leigh, Shai Linn, Raimundas Lunevičius, Azeem Majeed, Reza Malekzadeh, Déborah Carvalho Malta, LG Mantovani, Brian J. McMahon, Toni Meier, Yohannes Adama Melaku, Mulugeta Melku, Peter Memiah, Walter Mendoza, Tuomo J Meretoja, Haftay Berhane Mezgebe, Ted R. Miller, Shafiu Mohammed, Ali H. Mokdad, Mahmood Moosazadeh

Importance: The increasing burden due to cancer and other noncommunicable diseases poses a threat to human development, which has resulted in global political commitments reflected in the Sustainable Development Goals as well as the World Health Organization (WHO) Global Action Plan on Non-Communicable Diseases. To determine if these commitments have resulted in improved cancer control, quantitative assessments of the cancer burden are required. Objective: To assess the burden for 29 cancer groups over time to provide a framework for policy discussion, resource allocation, and research focus. Evidence Review: Cancer incidence, mortality, years lived with disability, years of life lost, and disability-adjusted life-years (DALYs) were evaluated for 195 countries and territories by age and sex using the Global Burden of Disease study estimation methods. Levels and trends were analyzed over time, as well as by the Sociodemographic Index (SDI). Changes in incident cases were categorized by changes due to epidemiological vs demographic transition. Findings: In 2016, there were 17.2 million cancer cases worldwide and 8.9 million deaths. Cancer cases increased by 28% between 2006 and 2016. The smallest increase was seen in high SDI countries. Globally, population aging contributed 17%; population growth, 12%; and changes in age-specific rates, -1% to this change. The most common incident cancer globally for men was prostate cancer (1.4 million cases). The leading cause of cancer deaths and DALYs was tracheal, bronchus, and lung cancer (1.2 million deaths and 25.4 million DALYs). For women, the most common incident cancer and the leading cause of cancer deaths and DALYs was breast cancer (1.7 million incident cases, 535 000 deaths, and 14.9 million DALYs). In 2016, cancer caused 213.2 million DALYs globally for both sexes combined. Between 2006 and 2016, the average annual age-standardized incidence rates for all cancers combined increased in 130 of 195 countries or territories, and the average annual age-standardized death rates decreased within that timeframe in 143 of 195 countries or territories. Conclusions and Relevance: Large disparities exist between countries in cancer incidence, deaths, and associated disability. Scaling up cancer prevention and ensuring universal access to cancer care are required for health equity and to fulfill the global commitments for noncommunicable disease and cancer control.

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Liver Disease Diagnosis and Treatment, Hepatitis B Virus Studies, Hepatocellular Carcinoma Treatment and Prognosis · 2017 · JAMA Oncology

The Burden of Primary Liver Cancer and Underlying Etiologies From 1990 to 2015 at the Global, Regional, and National Level

Importance Liver cancer is among the leading causes of cancer deaths globally. The most common causes for liver cancer include hepatitis B virus (HBV) and hepatitis C virus (HCV) infection and alcohol use. Objective To report results of the Global Burden of Disease (GBD) 2015 study on primary liver cancer incidence, mortality, and disability-adjusted life-years (DALYs) for 195 countries or territories from 1990 to 2015, and present global, regional, and national estimates on the burden of liver cancer attributable to HBV, HCV, alcohol, and an “other” group that encompasses residual causes. Design, Settings, and Participants Mortality was estimated using vital registration and cancer registry data in an ensemble modeling approach. Single-cause mortality estimates were adjusted for all-cause mortality. Incidence was derived from mortality estimates and the mortality-to-incidence ratio. Through a systematic literature review, data on the proportions of liver cancer due to HBV, HCV, alcohol, and other causes were identified. Years of life lost were calculated by multiplying each death by a standard life expectancy. Prevalence was estimated using mortality-to-incidence ratio as surrogate for survival. Total prevalence was divided into 4 sequelae that were multiplied by disability weights to derive years lived with disability (YLDs). DALYs were the sum of years of life lost and YLDs. Main Outcomes and Measures Liver cancer mortality, incidence, YLDs, years of life lost, DALYs by etiology, age, sex, country, and year. Results There were 854 000 incident cases of liver cancer and 810 000 deaths globally in 2015, contributing to 20 578 000 DALYs. Cases of incident liver cancer increased by 75% between 1990 and 2015, of which 47% can be explained by changing population age structures, 35% by population growth, and −8% to changing age-specific incidence rates. The male-to-female ratio for age-standardized liver cancer mortality was 2.8. Globally, HBV accounted for 265 000 liver cancer deaths (33%), alcohol for 245 000 (30%), HCV for 167 000 (21%), and other causes for 133 000 (16%) deaths, with substantial variation between countries in the underlying etiologies. Conclusions and Relevance Liver cancer is among the leading causes of cancer deaths in many countries. Causes of liver cancer differ widely among populations. Our results show that most cases of liver cancer can be prevented through vaccination, antiviral treatment, safe blood transfusion and injection practices, as well as interventions to reduce excessive alcohol use. In line with the Sustainable Development Goals, the identification and elimination of risk factors for liver cancer will be required to achieve a sustained reduction in liver cancer burden. The GBD study can be used to guide these prevention efforts.

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Global Cancer Incidence and Screening, Multiple and Secondary Primary Cancers, Frailty in Older Adults · 2016 · JAMA Oncology

Global, Regional, and National Cancer Incidence, Mortality, Years of Life Lost, Years Lived With Disability, and Disability-Adjusted Life-years for 32 Cancer Groups, 1990 to 2015

Christina Fitzmaurice, Christine A. Allen, Ryan M Barber, Lars Barregård, Zulfiqar A Bhutta, Hermann Brenner, Daniel Dicker, Odgerel Chimed‐Ochir, Rakhi Dandona, Lalit Dandona, Tom Fleming, Mohammad H. Forouzanfar, Jamie Hancock, Roderick J. Hay, Rachel Hunter‐Merrill, Chantal Huynh, Hung Chak Ho, Catherine O. Johnson, Jost B Jonas, Jagdish Khubchandani, G Anil Kumar, Michael Kutz, Qing Lan, Heidi J. Larson, Xiaofeng Liang, Stephen S Lim, Alan D Lopez, Michael F MacIntyre, Laurie B. Marczak, Neal Marquez, Ali H. Mokdad, Christine Pinho, Farshad Pourmalek, Joshua A. Salomon, Juan Sanabria, Logan Sandar, Benn Sartorius, Stephen M. Schwartz, Katya Anne Shackelford, Kenji Shibuya, Jeffrey D Stanaway, Caitlyn Steiner, Jiandong Sun, Ken Takahashi, Stein Emil Vollset, Theo Vos, Joseph A. Wagner, Haidong Wang, Ronny Westerman, Hajo Zeeb, Leo Zoeckler, Foad Abd-Allah, Muktar Beshir Ahmed, Samer Alabed, Noore Alam, Saleh Fahed Aldhahri, Girma Alem, Mulubirhan Assefa Alemayohu, Raghib Ali, Rajaa Al‐Raddadi, Azmeraw T. Amare, Yaw Ampem Amoako, Al Artaman, Hamid Asayesh, Niguse Tadele Atnafu, Ashish Awasthi, Huda Ba Saleem, Aleksandra Barać, Neeraj Bedi, Isabela M. Benseñor, Adugnaw Berhane, Eduardo Bernabé, Balem Demtsu Betsu, Agnès Binagwaho, Dube Jara Boneya, Ismael Campos‐Nonato, Carlos A Castañeda-Orjuela, Ferrán Catalá-López, Peggy Pei-Chia Chiang, Chioma Chibueze, Abdulaal Chitheer, Jee-Young Jasmine Choi, Benjamin Cowie, Solomon Abrha Damtew, José das Neves, Suhojit Dey, Samath Dhamminda Dharmaratne, Preet K. Dhillon, Eric L. Ding, Tim Driscoll, Donatus U. Ekwueme, Aman Yesuf Endries, Maryam S. Farvid, Farshad Farzadfar, João Carlos Fernandes, Florian Fischer, Tsegaye Tewelde G/hiwot, Alemseged Aregay Gebru, Sameer Vali Gopalani, Alemayehu Hailu

IMPORTANCE: Cancer is the second leading cause of death worldwide. Current estimates on the burden of cancer are needed for cancer control planning. OBJECTIVE: To estimate mortality, incidence, years lived with disability (YLDs), years of life lost (YLLs), and disability-adjusted life-years (DALYs) for 32 cancers in 195 countries and territories from 1990 to 2015. EVIDENCE REVIEW: Cancer mortality was estimated using vital registration system data, cancer registry incidence data (transformed to mortality estimates using separately estimated mortality to incidence [MI] ratios), and verbal autopsy data. Cancer incidence was calculated by dividing mortality estimates through the modeled MI ratios. To calculate cancer prevalence, MI ratios were used to model survival. To calculate YLDs, prevalence estimates were multiplied by disability weights. The YLLs were estimated by multiplying age-specific cancer deaths by the reference life expectancy. DALYs were estimated as the sum of YLDs and YLLs. A sociodemographic index (SDI) was created for each location based on income per capita, educational attainment, and fertility. Countries were categorized by SDI quintiles to summarize results. FINDINGS: In 2015, there were 17.5 million cancer cases worldwide and 8.7 million deaths. Between 2005 and 2015, cancer cases increased by 33%, with population aging contributing 16%, population growth 13%, and changes in age-specific rates contributing 4%. For men, the most common cancer globally was prostate cancer (1.6 million cases). Tracheal, bronchus, and lung cancer was the leading cause of cancer deaths and DALYs in men (1.2 million deaths and 25.9 million DALYs). For women, the most common cancer was breast cancer (2.4 million cases). Breast cancer was also the leading cause of cancer deaths and DALYs for women (523 000 deaths and 15.1 million DALYs). Overall, cancer caused 208.3 million DALYs worldwide in 2015 for both sexes combined. Between 2005 and 2015, age-standardized incidence rates for all cancers combined increased in 174 of 195 countries or territories. Age-standardized death rates (ASDRs) for all cancers combined decreased within that timeframe in 140 of 195 countries or territories. Countries with an increase in the ASDR due to all cancers were largely located on the African continent. Of all cancers, deaths between 2005 and 2015 decreased significantly for Hodgkin lymphoma (-6.1% [95% uncertainty interval (UI), -10.6% to -1.3%]). The number of deaths also decreased for esophageal cancer, stomach cancer, and chronic myeloid leukemia, although these results were not statistically significant. CONCLUSION AND RELEVANCE: As part of the epidemiological transition, cancer incidence is expected to increase in the future, further straining limited health care resources. Appropriate allocation of resources for cancer prevention, early diagnosis, and curative and palliative care requires detailed knowledge of the local burden of cancer. The GBD 2015 study results demonstrate that progress is possible in the war against cancer. However, the major findings also highlight an unmet need for cancer prevention efforts, including tobacco control, vaccination, and the promotion of physical activity and a healthy diet.

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Health, Environment, Cognitive Aging, Risk Perception and Management, Occupational and environmental lung diseases · 2016 · The Lancet

Global, regional, and national comparative risk assessment of 79 behavioural, environmental and occupational, and metabolic risks or clusters of risks, 1990–2015: a systematic analysis for the Global Burden of Disease Study 2015

Mohammad H. Forouzanfar, Ashkan Afshin, Lily Alexander, H Ross Anderson, Zulfiqar A Bhutta, Stan Biryukov, Michael Bräuer, Richard Burnett, Kelly Cercy, Fiona Charlson, Aaron J. Cohen, Lalit Dandona, Kara Estep, Alize J Ferrari, Joseph Frostad, Nancy Fullman, Peter W Gething, William W Godwin, Max Griswold, Simon I Hay, Yohannes Kinfu, Hmwe Hmwe Kyu, Heidi J. Larson, Xiaofeng Liang, Stephen S Lim, Patrick Y Liu, Alan D López, Rafael Lozano, Laurie Marczak, George A. Mensah, Ali H. Mokdad, Maziar Moradi‐Lakeh, Mohsen Naghavi, Bruce Neal, Marissa B Reitsma, Gregory A Roth, Joshua A. Salomon, Patrick J Sur, Theo Vos, Joseph A. Wagner, Haidong Wang, Yi Zhao, Maigeng Zhou, Gunn Marit Aasvang, Amanuel Alemu Abajobir, Kalkidan Hassen Abate, Cristiana Abbafati, Kaja M Abbas, Foad Abd-Allah, Abdishakur M Abdulle, Semaw Ferede Abera, Biju Abraham, Laith J Abu-Raddad, Gebre Yitayih Abyu, Akindele Olupelumi Adebiyi, Isaac Akinkunmi Adedeji, Zanfina Ademi, Arsène Kouablan Adou, José Carmelo Adsuar, Emilie Agardh, Arnav Agarwal, Anurag Agrawal, Aliasghar Ahmad Kiadaliri, Oluremi N Ajala, Tomi F Akinyemiju, Ziyad Al-Aly, Khurshid Alam, Noore K M Alam, Saleh Fahed Aldhahri, Robert William Aldridge, Zewdie Aderaw Alemu, Raghib Ali, Ala'a Alkerwi, François Alla, Peter Allebeck, Ubai Alsharif, Khalid A Altirkawi, Elena Alvarez Martin, Nelson Alvis‐Guzmán, Azmeraw T. Amare, Alemayehu Amberbir, Adeladza Kofi Amegah, Heresh Amini, Walid Ammar, Stephen Marc Amrock, Hjalte H Andersen, Benjamin O. Anderson, Carl Abelardo T. Antonio, Palwasha Anwari, Johan Ärnlöv, Al Artaman, Hamid Asayesh, Rana J Asghar, Reza Assadi, Suleman Atique, Euripide Frinel G Arthur Avokpaho, Ashish Awasthi, Beatriz Paulina Ayala Quintanilla, Peter Azzopardi, Umar Bacha

BACKGROUND: The Global Burden of Diseases, Injuries, and Risk Factors Study 2015 provides an up-to-date synthesis of the evidence for risk factor exposure and the attributable burden of disease. By providing national and subnational assessments spanning the past 25 years, this study can inform debates on the importance of addressing risks in context. METHODS: We used the comparative risk assessment framework developed for previous iterations of the Global Burden of Disease Study to estimate attributable deaths, disability-adjusted life-years (DALYs), and trends in exposure by age group, sex, year, and geography for 79 behavioural, environmental and occupational, and metabolic risks or clusters of risks from 1990 to 2015. This study included 388 risk-outcome pairs that met World Cancer Research Fund-defined criteria for convincing or probable evidence. We extracted relative risk and exposure estimates from randomised controlled trials, cohorts, pooled cohorts, household surveys, census data, satellite data, and other sources. We used statistical models to pool data, adjust for bias, and incorporate covariates. We developed a metric that allows comparisons of exposure across risk factors-the summary exposure value. Using the counterfactual scenario of theoretical minimum risk level, we estimated the portion of deaths and DALYs that could be attributed to a given risk. We decomposed trends in attributable burden into contributions from population growth, population age structure, risk exposure, and risk-deleted cause-specific DALY rates. We characterised risk exposure in relation to a Socio-demographic Index (SDI). FINDINGS: Between 1990 and 2015, global exposure to unsafe sanitation, household air pollution, childhood underweight, childhood stunting, and smoking each decreased by more than 25%. Global exposure for several occupational risks, high body-mass index (BMI), and drug use increased by more than 25% over the same period. All risks jointly evaluated in 2015 accounted for 57·8% (95% CI 56·6-58·8) of global deaths and 41·2% (39·8-42·8) of DALYs. In 2015, the ten largest contributors to global DALYs among Level 3 risks were high systolic blood pressure (211·8 million [192·7 million to 231·1 million] global DALYs), smoking (148·6 million [134·2 million to 163·1 million]), high fasting plasma glucose (143·1 million [125·1 million to 163·5 million]), high BMI (120·1 million [83·8 million to 158·4 million]), childhood undernutrition (113·3 million [103·9 million to 123·4 million]), ambient particulate matter (103·1 million [90·8 million to 115·1 million]), high total cholesterol (88·7 million [74·6 million to 105·7 million]), household air pollution (85·6 million [66·7 million to 106·1 million]), alcohol use (85·0 million [77·2 million to 93·0 million]), and diets high in sodium (83·0 million [49·3 million to 127·5 million]). From 1990 to 2015, attributable DALYs declined for micronutrient deficiencies, childhood undernutrition, unsafe sanitation and water, and household air pollution; reductions in risk-deleted DALY rates rather than reductions in exposure drove these declines. Rising exposure contributed to notable increases in attributable DALYs from high BMI, high fasting plasma glucose, occupational carcinogens, and drug use. Environmental risks and childhood undernutrition declined steadily with SDI; low physical activity, high BMI, and high fasting plasma glucose increased with SDI. In 119 countries, metabolic risks, such as high BMI and fasting plasma glucose, contributed the most attributable DALYs in 2015. Regionally, smoking still ranked among the leading five risk factors for attributable DALYs in 109 countries; childhood underweight and unsafe sex remained primary drivers of early death and disability in much of sub-Saharan Africa. INTERPRETATION: Declines in some key environmental risks have contributed to declines in critical infectious diseases. Some risks appear to be invariant to SDI. Increasing risks, including high BMI, high fasting plasma glucose, drug use, and some occupational exposures, contribute to rising burden from some conditions, but also provide opportunities for intervention. Some highly preventable risks, such as smoking, remain major causes of attributable DALYs, even as exposure is declining. Public policy makers need to pay attention to the risks that are increasingly major contributors to global burden. FUNDING: Bill & Melinda Gates Foundation.

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