scholarly journals The relationship between urologic cancer outcomes and national Human Development Index: trend from 2012 to 2018

2019 ◽  
Author(s):  
Nan Zhang ◽  
Hua Mu ◽  
Yan-rou Jiang ◽  
Shi-geng Zhang

Abstract Objectives To describe the influence of the socioeconomic development on worldwide age-standardized incidence and mortality rates, as well as mortality-to-incidence ratio (MIR) and 5-year net survival of urologic cancer patients from 2012 to 2018. Methods The HDI values were obtained from the United Nations Development Programme, data on age-standardized incidence/mortality rates of prostate, bladder and kidney cancer were retrieved from the GLOBOCAN database, 5-year net survival was provided by the CONCORD-3 program. We then evaluated the association between incidence/MIR/survival and HDI, with a focus on geographic variability as well as temporal patterns during the last 6 years. Results Urologic cancer incidence rates were positively correlated with HDIs, and MIRs were negatively correlated with HDIs. Prostate cancer survival also correlated positively with HDIs, solidly confirming the interrelation among cancer indicators and socioeconomic factors. Most countries experienced incidence decline over the most recent 6 years, and a substantial reduction in MIR was observed. Survival rates of prostate cancer have simultaneously improved. Conclusion Development has a prominent influence on urologic cancer outcomes. HDI values are significantly correlated with cancer incidence, MIR and survival rates. HDI values have risen along with increased incidence and improved outcomes of urologic caner in recent years.

BMC Urology ◽  
2022 ◽  
Vol 22 (1) ◽  
Author(s):  
Xiao-Fang Xia ◽  
Yi-Qiu Wang ◽  
Shi-Yi Shao ◽  
Xin-Yu Zhao ◽  
Shi-Geng Zhang ◽  
...  

Abstract Objectives To describe the influence of the socioeconomic development on worldwide age-standardized incidence and mortality rates, as well as mortality-to-incidence ratio (MIR) and 5-year net survival of urologic cancer patients in recent years. Methods The Human Development Index (HDI) values were obtained from the United Nations Development Programme, data on age-standardized incidence/mortality rates of prostate, bladder and kidney cancer were retrieved from the GLOBOCAN database, 5-year net survival was provided by the CONCORD-3 program. We then evaluated the association between incidence/MIR/survival and HDI, with a focus on geographic variability as well as temporal patterns during the last 6 years. Results Urologic cancer incidence rates were positively correlated with HDIs, and MIRs were negatively correlated with HDIs. Prostate cancer survival also correlated positively with HDIs, solidly confirming the interrelation among cancer indicators and socioeconomic factors. Most countries experienced incidence decline over the most recent 6 years, and a substantial reduction in MIR was observed. Survival rates of prostate cancer have simultaneously improved. Conclusion Development has a prominent influence on urologic cancer outcomes. HDI values are significantly correlated with cancer incidence, MIR and survival rates. HDI values have risen along with increased incidence and improved outcomes of urologic caner in recent years.


2021 ◽  
Author(s):  
Xiao-Fang Xia ◽  
Yi-Qiu Wang ◽  
Shi-Yi Shao ◽  
Xin-Yu Zhao ◽  
Shi-Geng Zhang ◽  
...  

Abstract ObjectivesTo describe the influence of the socioeconomic development on worldwide age-standardized incidence and mortality rates, as well as mortality-to-incidence ratio (MIR) and 5-year net survival of urologic cancer patients in recent years. MethodsThe Human Development Index (HDI) values were obtained from the United Nations Development Programme, data on age-standardized incidence/mortality rates of prostate, bladder and kidney cancer were retrieved from the GLOBOCAN database, 5-year net survival was provided by the CONCORD-3 program. We then evaluated the association between incidence/MIR/survival and HDI, with a focus on geographic variability as well as temporal patterns during the last 6 years.ResultsUrologic cancer incidence rates were positively correlated with HDIs, and MIRs were negatively correlated with HDIs. Prostate cancer survival also correlated positively with HDIs, solidly confirming the interrelation among cancer indicators and socioeconomic factors. Most countries experienced incidence decline over the most recent 6 years, and a substantial reduction in MIR was observed. Survival rates of prostate cancer have simultaneously improved.ConclusionDevelopment has a prominent influence on urologic cancer outcomes. HDI values are significantly correlated with cancer incidence, MIR and survival rates. HDI values have risen along with increased incidence and improved outcomes of urologic caner in recent years.


2020 ◽  
Vol 52 (2) ◽  
pp. 335-350 ◽  
Author(s):  
Seri Hong ◽  
Young-Joo Won ◽  
Young Ran Park ◽  
Kyu-Won Jung ◽  
Hyun-Joo Kong ◽  
...  

PurposeThis study reports the cancer statistics and temporal trends in Korea on a nationwide scale, including incidence, survival, prevalence, and mortality in 2017.Materials and MethodsThe incidence, survival, and prevalence rates of cancer were evaluated using data from the Korea National Cancer Incidence Database from 1999 to 2017 with follow-up until December 31, 2018. Deaths from cancer were assessed using cause-of-death data from 1983 to 2017, obtained from Statistics Korea. Crude and age-standardized rates (ASRs) for incidence, mortality, and prevalence, and 5-year relative survival rates were calculated and trend analysis was performed.ResultsIn 2017, newly diagnosed cancer cases and deaths from cancer numbered 232,255 (ASR, 264.4 per 100,000) and 78,863 (ASR, 76.6 per 100,000), respectively. The overall cancer incidence rates increased annually by 3.5% from 1999 to 2011 and decreased by 2.7% annually thereafter. Cancer mortality rates have been decreasing since 2002, by 2.8% annually. The 5-year relative survival rate for all patients diagnosed with cancer between 2013 and 2017 was 70.4%, which contributed to a prevalence of approximately 1.87 million cases by the end of 2017.ConclusionThe burden of cancer measured by incidence and mortality rates have improved in Korea, with the exception of a few particular cancers that are associated with increasing incidence or mortality rates. However, cancer prevalence is increasing rapidly, with the dramatic improvement in survival during the past several years. Comprehensive cancer control strategies and efforts should continue, based on the changes of cancer statistics.


2011 ◽  
Vol 2011 ◽  
pp. 1-10 ◽  
Author(s):  
Anselm J. M. Hennis ◽  
Ian R. Hambleton ◽  
Suh-Yuh Wu ◽  
Desiree H.-A. Skeete ◽  
Barbara Nemesure ◽  
...  

We describe prostate cancer incidence and mortality in Barbados, West Indies. We ascertained all histologically confirmed cases of prostate cancer during the period July 2002 to December 2008 and reviewed each death registration citing prostate cancer over a 14-year period commencing January 1995. There were 1101 new cases for an incidence rate of 160.4 (95% Confidence Interval: 151.0–170.2) per 100,000 standardized to the US population. Comparable rates in African-American and White American men were 248.2 (95% CI: 246.0–250.5) and 158.0 (95% CI: 157.5–158.6) per 100,000, respectively. Prostate cancer mortality rates in Barbados ranged from 63.2 to 101.6 per 100,000, compared to 51.1 to 78.8 per 100,000 among African Americans. Prostate cancer risks are lower in Caribbean-origin populations than previously believed, while mortality rates appeared to be higher than reported in African-American men. Studies in Caribbean populations may assist understanding of disparities among African-origin populations with shared heredity.


Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 5629-5629
Author(s):  
Anirudh Bikmal ◽  
Lakshmi Radhakrishnan ◽  
Ajay K. Nooka

Abstract Background: The trends of incidence of solitary bone plasmacytoma (SBP) varied over time due to the changing definitions and the absence of clarity of the criteria. Prior studies have attempted to identify factors such as older age, gender, race as prognostic factors that influence survival of patients with SBP, but with changing paradigm of myeloma treatments, there is limited literature regarding the incidence, mortality and survival trends of SBP. Methods: We used the SEER registry from 1973-2009 to evaluate the incidence, mortality and survival trends in patients with SBP. The results were reported as crude incidence, mortality and survival rates. Two-sample t-tests, ANOVA as well regression analysis were used to examine correlation. Statistics were computed using the National Cancer Institute SEER*Stat software, version 8.2.0. and SAS software, version 9.4 (SAS Institute Inc, Cary, NC). Using the ICD-O-3 and morphologic codes of 9731/3 to identify cases, the final study cohort consisted of 2,734 cases. Trends were evaluated by the eras of diagnosis: 1973-1980, 1981-1985, 1986-1990, 1991-1995, 1996-2000, 2001-2005, and 2006-2009. Age-adjusted incidence rates (IR), standard mortality rates (SMR), survival rate (SR) were expressed as new cases per 100,000 person-years, and age-adjusted to the 2000 US standard population. Results: The median age of diagnosis of SBP among blacks is 61 years (range, 21-91) compared to others: 60 years (range, 28-88) and whites: 66 years (20-97). The age adjusted incidence rates for black males is: 0.3 (95%CI 0.2, 0.3) followed by black females 0.2 (95%CI 0.1, 0.2) white males 0.2 (95%CI 0.2, 0.2) white females 0.1 (95%CI 0.1, 0.1). The trends in incidence and mortality rates are illustrated in table 1 with highest IR noted for black males during the era 2006-2009. The 5-year survival rates for both males (figure 1) and females (figure 2) seem to be trending down over the eras examined. Regression analysis suggests males and other race have increased odds of survival (HR = 0.829, p=0.0078; HR = 0.54 and p=0.0038, respectively). Conclusions: Similar to myeloma, black patients tend to be diagnosed with SBP younger and have increased incidence. The incidence rates seem to be increasing, highest among blacks males, more likely from increased awareness and diagnosis. The mortality and survival patterns are comparable to whites. Interestingly, while the 5-year survival for myeloma among all racial groups is improving this analysis shows a decreasing trend for SBP. This observation is more likely from including myeloma patients under the diagnosis of SBP over the period of study. Recently, the International Myeloma Working Group (IMWG) clarified the definition of SBP which will help in accurate diagnosis and ultimately can help in accurate representation of the survival trends. Table 1. Incidence and Mortality Rates across Study Eras (SEER-9), 1973-2009 Years White (IR) White (MR) Black (IR) Black (MR) Other (IR) Other (MR) Male 1973-1980 0 0 0 (0, 0.1) 0 (0, 0.1) 0 (0, 0.2) 0 (0, 0.1) 1981-1985 0 0 0 (0, 0.2) 0 (0, 0.1) 0 (0, 0.2) 0 (0, 0.1) 1986-1990 0.1 (0.1, 0.2) 0.1 (0, 0.1) 0.1 (0, 0.3) 0.1 (0, 0.2) 0.3 (0.1, 0.5) 0 (0, 0.2) 1991-1995 0.2 (0.1, 0.2) 0.1 (0.1, 0.2) 0.2 (0.1, 0.4) 0 (0, 0.1) 0.1 (0, 0.3) 0.1 (0, 0.2) 1996-2000 0.2 (0.2, 0.3) 0.1 (0.1, 0.1) 0.3 (0.1, 0.5) 0.2 (0.1, 0.4) 0.2 (0.1, 0.4) 0.2 (0, 0.4) 2001-2005 0.4 (0.4, 0.5) 0.2 (0.2, 0.3) 0.5 (0.3, 0.7) 0.3 (0.1, 0.6) 0.2 (0, 0.2) 0 (0, 0.2) 2006-2009 0.4 (0.4, 0.5) 0.2 (0.2, 0.3) 0.7 (0.4, 1) 0.3 (0.1, 0.5) 0.1 (0, 0.2) 0.1 (0, 0.2) Female 1973-1980 0 0 0 (0, 0.1) 0 (0, 0.1) 0 (0, 0.1) 0 (0, 0.1) 1981-1985 0 0 0 (0, 0.1) 0 (0, 0.1) 0 (0, 0.1) 0 (0, 0.1) 1986-1990 0.1 (0, 0.1) 0 (0, 0.1) 0.1 (0, 0.2) 0 (0, 0.1) 0 (0, 0.2) 0 (0, 0.2) 1991-1995 0.1 (0.1, 0.1) 0 (0, 0.1) 0.2 (0.1, 0.3) 0.1 (0, 0.2) 0 (0, 0.1) 0 (0, 0.1) 1996-2000 0.1 (0.1, 0.1) 0.1 (0.1, 0.1) 0.1 (0, 0.2) 0.1 (0, 0.2) 0.1 (0.2) 0 (0, 0.1) 2001-2005 0.2 (0.2, 0.2) 0.1 (0.1, 0.2) 0.3 (0.2, 0.4) 0.1 (0, 0.2) 0.1 (0, 0.2) 0 (0, 0.1) 2006-2009 0.2 (0.2, 0.3) 0.1 (0.1, 0.2) 0.3 (0.2, 0.5) 0.2 (0.1, 0.3) 0.1 (0, 0.2) 0 (0, 0.1) Figure 1. 5-year Survival Rates in males (SEER-9), 1973-2012 Figure 1. 5-year Survival Rates in males (SEER-9), 1973-2012 Figure 2. 5-year Survival Rates in females (SEER-9), 1973-2012 Figure 2. 5-year Survival Rates in females (SEER-9), 1973-2012 Disclosures Nooka: Spectrum Pharmaceuticals: Consultancy; Onyx Pharmaceuticals: Consultancy.


2014 ◽  
Vol 13 (7) ◽  
pp. e1506 ◽  
Author(s):  
M. Shahait ◽  
D. Mukherji ◽  
A. Yacoubian ◽  
A. Shamseddine ◽  
R. Khauli

2021 ◽  
Vol 20 (4) ◽  
pp. 30-38
Author(s):  
A. A. Mordovskii ◽  
A. A. Aksarin ◽  
A. M. Parsadanyan ◽  
M. D. Ter-Ovanesov ◽  
P. P. Troyan

The aim of the study was to assess the lung cancer incidence and mortality in the Khanty-mansi autonomous okrug – Yugra during the period 1999–2019.Material and methods. We have studied the lung cancer incidence and mortality rates in Yugra over the last 21 years (1999–2019).Results. In Yugra, the lung cancer (lc) incidence rates increased by 24.7 % from 1999 to 2019, demonstrating higher rates than those in the Russian Federation (RF), where lc incidence rates decreased by 20.3 %. In 2019, the age-standardized incidence rate was 30.5 per 100,000 (22.7 for RF); the age-standardized mortality rate was 16.4 per 100,000 (18.4 for RF). The mortality rate from lc in Yugra was 9.6 times higher in males than in females (35.5 vs. 3.7 per 100,000). The cross-correlation analysis revealed a correlation between the lc incidence/mortality and air pollution in Yugra. The main carcinogens in Yugra were formaldehyde, phenol, nitrogen dioxide, and benzapyrene. The assessment of the relationship between the age-standardized lc incidence/mortality rates and the amount of pollutants emitted into the atmosphere revealed that their synergistic effects with tobacco smoking can double the risk of lung cancer development. The increase in the number of chest computed tomography (ct) scans performed in the context of the pandemic caused by covid-19 infection led to an 18 % increase in the number of incidentally detected pulmonary nodules, of which 9 % of cases were diagnosed as lc.Conclusion. The lc incidence rates in Yugra tended to increase. The high rate of lc incidence is caused by man-made and natural factors, which requires the implementation of a screening program with the use of low-dose computed tomography in order to improve the early detection and prevention of this disease.


The Prostate ◽  
2019 ◽  
Vol 80 (1) ◽  
pp. 3-16 ◽  
Author(s):  
Simone Badal ◽  
William Aiken ◽  
Belinda Morrison ◽  
Henkel Valentine ◽  
Sophia Bryan ◽  
...  

2018 ◽  
pp. 1-11 ◽  
Author(s):  
Christian S. Alvarez ◽  
Shama Virani ◽  
Rafael Meza ◽  
Laura S. Rozek ◽  
Hutcha Sriplung ◽  
...  

Purpose Prostate cancer is the second most common malignancy among men worldwide, and it poses a significant public health burden that has traditionally been limited mostly to developed countries. However, the burden of the disease is expected to increase, affecting developing countries, including Thailand. We undertook an analysis to investigate current and future trends of prostate cancer in the province of Songkhla, Thailand, using data from the Songkhla Cancer Registry from 1990 to 2013. Methods Joinpoint regression analysis was used to examine trends in age-adjusted incidence and mortality rates of prostate cancer and provide estimated annual percent change (EAPC) with 95% CIs. Age-period-cohort (APC) models were used to assess the effect of age, calendar year, and birth cohort on incidence and mortality rates. Three different methods (Joinpoint, Nordpred, and APC) were used to project trends from 2013 to 2030. Results Eight hundred fifty-five cases of prostate cancer were diagnosed from 1990 to 2013 in Songkhla, Thailand. The incidence rates of prostate cancer significantly increased since 1990 at an EAPC of 4.8% (95% CI, 3.6% to 5.9%). Similarly, mortality rates increased at an EAPC of 5.3% (95% CI, 3.4% to 7.2%). The APC models suggest that birth cohort is the most important factor driving the increased incidence and mortality rates of prostate cancer. Future incidence and mortality of prostate cancer are projected to continue to increase, doubling the rates observed in 2013 by 2030. Conclusion It is critical to allocate resources to provide care for the men who will be affected by this increase in prostate cancer incidence in Songkhla, Thailand, and to design context-appropriate interventions to prevent its increasing burden.


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