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      Understanding COVID-19 impact on cervical, breast, and colorectal cancer screening among federally qualified healthcare centers participating in “Back on track with screening” quality improvement projects

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          Abstract

          The COVID-19 pandemic has contributed to decreases in breast, colorectal, and cervical cancer screenings between 86 and 94% compared to three-year averages. These postponed screenings have created backlogs that systems will need to address as healthcare facilities re-open for preventive care. The American Cancer Society is leading a 17-month intervention with 22 federally qualified health centers (FQHCs) across the United States aimed at reducing cancer incidence and mortality disparities and alleviating additional strain caused by COVID-19. This study describes COVID-related cancer screening service disruptions reported by participating FQHCs. Selected FQHCs experienced service disruptions and/or preventive care cancellations due to COVID-19 that varied in severity and duration. Fifty-nine percent stopped cancer screenings completely. Centers transitioned to telehealth visits or rescheduled for the future, but the impact of these strategies may be limited by continued pandemic-related disruptions and the inability to do most screenings at home; colon cancer screening being the exception. Most centers have resumed in-person screening, but limited in person appointments and high levels of community transmission may reduce FQHC abilities to provide catch-up services. FQHCs provide critical cancer prevention services to vulnerable populations. The delivery of culturally competent, high-quality healthcare can mitigate and potentially reverse racial and ethnic disparities in cancer prevention testing and treatment. Ensuring and expanding access to care as we move out of the pandemic will be critical to preventing excess cancer incidence and mortality in vulnerable populations.

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          The impact of the COVID-19 pandemic on cancer deaths due to delays in diagnosis in England, UK: a national, population-based, modelling study

          Summary Background Since a national lockdown was introduced across the UK in March, 2020, in response to the COVID-19 pandemic, cancer screening has been suspended, routine diagnostic work deferred, and only urgent symptomatic cases prioritised for diagnostic intervention. In this study, we estimated the impact of delays in diagnosis on cancer survival outcomes in four major tumour types. Methods In this national population-based modelling study, we used linked English National Health Service (NHS) cancer registration and hospital administrative datasets for patients aged 15–84 years, diagnosed with breast, colorectal, and oesophageal cancer between Jan 1, 2010, and Dec 31, 2010, with follow-up data until Dec 31, 2014, and diagnosed with lung cancer between Jan 1, 2012, and Dec 31, 2012, with follow-up data until Dec 31, 2015. We use a routes-to-diagnosis framework to estimate the impact of diagnostic delays over a 12-month period from the commencement of physical distancing measures, on March 16, 2020, up to 1, 3, and 5 years after diagnosis. To model the subsequent impact of diagnostic delays on survival, we reallocated patients who were on screening and routine referral pathways to urgent and emergency pathways that are associated with more advanced stage of disease at diagnosis. We considered three reallocation scenarios representing the best to worst case scenarios and reflect actual changes in the diagnostic pathway being seen in the NHS, as of March 16, 2020, and estimated the impact on net survival at 1, 3, and 5 years after diagnosis to calculate the additional deaths that can be attributed to cancer, and the total years of life lost (YLLs) compared with pre-pandemic data. Findings We collected data for 32 583 patients with breast cancer, 24 975 with colorectal cancer, 6744 with oesophageal cancer, and 29 305 with lung cancer. Across the three different scenarios, compared with pre-pandemic figures, we estimate a 7·9–9·6% increase in the number of deaths due to breast cancer up to year 5 after diagnosis, corresponding to between 281 (95% CI 266–295) and 344 (329–358) additional deaths. For colorectal cancer, we estimate 1445 (1392–1591) to 1563 (1534–1592) additional deaths, a 15·3–16·6% increase; for lung cancer, 1235 (1220–1254) to 1372 (1343–1401) additional deaths, a 4·8–5·3% increase; and for oesophageal cancer, 330 (324–335) to 342 (336–348) additional deaths, 5·8–6·0% increase up to 5 years after diagnosis. For these four tumour types, these data correspond with 3291–3621 additional deaths across the scenarios within 5 years. The total additional YLLs across these cancers is estimated to be 59 204–63 229 years. Interpretation Substantial increases in the number of avoidable cancer deaths in England are to be expected as a result of diagnostic delays due to the COVID-19 pandemic in the UK. Urgent policy interventions are necessary, particularly the need to manage the backlog within routine diagnostic services to mitigate the expected impact of the COVID-19 pandemic on patients with cancer. Funding UK Research and Innovation Economic and Social Research Council.
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            Association of Social and Demographic Factors With COVID-19 Incidence and Death Rates in the US

            Key Points Question Are population-level social factors associated with coronavirus disease 2019 (COVID-19) incidence and mortality? Findings In this cross-sectional study including 4 289 283 COVID-19 cases and 147 074 COVID-19 deaths, county-level sociodemographic risk factors as assessed by the Social Vulnerability Index were associated with greater COVID-19 incidence and mortality. Meaning These findings suggest that to address inequities in the burden of the COVID-19 pandemic, these sociodemographic risk factors and their root causes must be addressed.
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              Socioeconomic and Racial/Ethnic Disparities in Cancer Mortality, Incidence, and Survival in the United States, 1950–2014: Over Six Decades of Changing Patterns and Widening Inequalities

              We analyzed socioeconomic and racial/ethnic disparities in US mortality, incidence, and survival rates from all-cancers combined and major cancers from 1950 to 2014. Census-based deprivation indices were linked to national mortality and cancer data for area-based socioeconomic patterns in mortality, incidence, and survival. The National Longitudinal Mortality Study was used to analyze individual-level socioeconomic and racial/ethnic patterns in mortality. Rates, risk-ratios, least squares, log-linear, and Cox regression were used to examine trends and differentials. Socioeconomic patterns in all-cancer, lung, and colorectal cancer mortality changed dramatically over time. Individuals in more deprived areas or lower education and income groups had higher mortality and incidence rates than their more affluent counterparts, with excess risk being particularly marked for lung, colorectal, cervical, stomach, and liver cancer. Education and income inequalities in mortality from all-cancers, lung, prostate, and cervical cancer increased during 1979–2011. Socioeconomic inequalities in cancer mortality widened as mortality in lower socioeconomic groups/areas declined more slowly. Mortality was higher among Blacks and lower among Asian/Pacific Islanders and Hispanics than Whites. Cancer patient survival was significantly lower in more deprived neighborhoods and among most ethnic-minority groups. Cancer mortality and incidence disparities may reflect inequalities in smoking, obesity, physical inactivity, diet, alcohol use, screening, and treatment.
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                Author and article information

                Journal
                Prev Med
                Prev Med
                Preventive Medicine
                Elsevier Inc.
                0091-7435
                1096-0260
                30 June 2021
                October 2021
                30 June 2021
                : 151
                : 106681
                Affiliations
                [a ]Office of Cancer Research and Implementation, American Cancer Society, Atlanta, GA, USA
                [b ]Department of Obstetrics and Gynecology, Boston University School of Medicine/Boston Medical Center, Boston, MA, USA
                Author notes
                [* ]Corresponding author at: Office of Cancer Research and Implementation, American Cancer Society, 250 Williams St. NW, Atlanta, GA 30303, USA.
                Article
                S0091-7435(21)00250-4 106681
                10.1016/j.ypmed.2021.106681
                8241686
                34217422
                1800e3ce-e109-4acf-85c3-f7b6adfceab3
                © 2021 Elsevier Inc. All rights reserved.

                Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active.

                History
                : 8 February 2021
                : 5 June 2021
                : 6 June 2021
                Categories
                Article

                Medicine
                covid-19,cancer screening,fqhc
                Medicine
                covid-19, cancer screening, fqhc

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