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Colon and rectal cancer treatment patterns and their associations with clinical, sociodemographic and lifestyle characteristics: analysis of the Australian 45 and Up Study cohort

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Abstract Background Colorectal cancer is the third most diagnosed cancer globally and the second leading cause of cancer death. We examined colon and rectal cancer treatment patterns in Australia. Methods From cancer registry records, we identified 1,236 and 542 people with incident colon and rectal cancer, respectively, diagnosed during 2006-2013 in the 45 and Up Study cohort (267,357 participants). Cancer treatment and deaths were determined via linkage to routinely collected data, including hospital and medical services records. For colon cancer, we examined treatment categories of “surgery only”, “surgery plus chemotherapy”, “other treatment” (i.e. other combinations of surgery/chemotherapy/radiotherapy), “no record of cancer-related treatment, died”; and, for rectal cancer, “surgery only”, “surgery plus chemotherapy and/or radiotherapy”, “other treatment”, and “no record of cancer-related treatment, died”. We analysed survival, time to first treatment, and characteristics associated with treatment receipt using competing risks regression. Results 86.4% and 86.5% of people with colon and rectal cancer, respectively, had a record of receiving any treatment ≤2 years post-diagnosis. Of those treated, 93.2% and 90.8% started treatment ≤2 months post-diagnosis, respectively. Characteristics significantly associated with treatment receipt were similar for colon and rectal cancer, with strongest associations for spread of disease and age at diagnosis (p<0.003). For colon cancer, the rate of “no record of cancer-related treatment, died” was higher for people with distant spread of disease (versus localised, subdistribution hazard ratio (SHR)=13.6, 95% confidence interval (CI):5.5-33.9), age ≥75 years (versus age 45-74, SHR=3.6, 95%CI:1.8-7.1), and visiting an emergency department ≤1 month pre-diagnosis (SHR=2.9, 95%CI:1.6-5.2). For rectal cancer, the rate of “surgery plus chemotherapy and/or radiotherapy” was higher for people with regional spread of disease (versus localised, SHR=5.2, 95%CI:3.6-7.7) and lower for people with poorer physical functioning (SHR=0.5, 95%CI:0.3-0.8) or no private health insurance (SHR=0.7, 95%CI:0.5-0.9). Conclusion Before the COVID-19 pandemic, most people with colon or rectal cancer received treatment ≤2 months post-diagnosis, however, treatment patterns varied by spread of disease and age. This work can be used to inform future healthcare requirements, to estimate the impact of cancer control interventions to improve prevention and early diagnosis, and serve as a benchmark to assess treatment delays/disruptions during the pandemic. Future work should examine associations with clinical factors (e.g. performance status at diagnosis) and interdependencies between characteristics such as age, comorbidities, and emergency department visits.
Title: Colon and rectal cancer treatment patterns and their associations with clinical, sociodemographic and lifestyle characteristics: analysis of the Australian 45 and Up Study cohort
Description:
Abstract Background Colorectal cancer is the third most diagnosed cancer globally and the second leading cause of cancer death.
We examined colon and rectal cancer treatment patterns in Australia.
Methods From cancer registry records, we identified 1,236 and 542 people with incident colon and rectal cancer, respectively, diagnosed during 2006-2013 in the 45 and Up Study cohort (267,357 participants).
Cancer treatment and deaths were determined via linkage to routinely collected data, including hospital and medical services records.
For colon cancer, we examined treatment categories of “surgery only”, “surgery plus chemotherapy”, “other treatment” (i.
e.
other combinations of surgery/chemotherapy/radiotherapy), “no record of cancer-related treatment, died”; and, for rectal cancer, “surgery only”, “surgery plus chemotherapy and/or radiotherapy”, “other treatment”, and “no record of cancer-related treatment, died”.
We analysed survival, time to first treatment, and characteristics associated with treatment receipt using competing risks regression.
Results 86.
4% and 86.
5% of people with colon and rectal cancer, respectively, had a record of receiving any treatment ≤2 years post-diagnosis.
Of those treated, 93.
2% and 90.
8% started treatment ≤2 months post-diagnosis, respectively.
Characteristics significantly associated with treatment receipt were similar for colon and rectal cancer, with strongest associations for spread of disease and age at diagnosis (p<0.
003).
For colon cancer, the rate of “no record of cancer-related treatment, died” was higher for people with distant spread of disease (versus localised, subdistribution hazard ratio (SHR)=13.
6, 95% confidence interval (CI):5.
5-33.
9), age ≥75 years (versus age 45-74, SHR=3.
6, 95%CI:1.
8-7.
1), and visiting an emergency department ≤1 month pre-diagnosis (SHR=2.
9, 95%CI:1.
6-5.
2).
For rectal cancer, the rate of “surgery plus chemotherapy and/or radiotherapy” was higher for people with regional spread of disease (versus localised, SHR=5.
2, 95%CI:3.
6-7.
7) and lower for people with poorer physical functioning (SHR=0.
5, 95%CI:0.
3-0.
8) or no private health insurance (SHR=0.
7, 95%CI:0.
5-0.
9).
Conclusion Before the COVID-19 pandemic, most people with colon or rectal cancer received treatment ≤2 months post-diagnosis, however, treatment patterns varied by spread of disease and age.
This work can be used to inform future healthcare requirements, to estimate the impact of cancer control interventions to improve prevention and early diagnosis, and serve as a benchmark to assess treatment delays/disruptions during the pandemic.
Future work should examine associations with clinical factors (e.
g.
performance status at diagnosis) and interdependencies between characteristics such as age, comorbidities, and emergency department visits.

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