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Incidence differences between first primary cancers and second primary cancers following skin squamous cell carcinoma as etiological clues

Zheng, Guoqiao LU ; Sundquist, Kristina LU ; Sundquist, Jan LU ; Försti, Asta LU ; Hemminki, Akseli and Hemminki, Kari LU (2020) In Clinical Epidemiology 12. p.857-864
Abstract

Background: Most literature on second primary cancers (SPCs) focuses on possible factors, which may increase the risk of these cancers, and little attention has been paid for the overall incidence differences between first primary cancers (FPCs) and same SPCs. We wanted to compare the incidence rates for all common cancers when these were diagnosed as FPCs and SPCs after invasive and in situ squamous cell carcinoma (SCC) of the skin, which are usually treated by surgery only. Methods: Cancers were identified from the Swedish Cancer Registry from the years 1990 through to 2015, and they included, in addition to skin cancers, 20 male cancers totaling 484,850 patients and 22 female cancers totaling 452,909 patients. Standardized incidence... (More)

Background: Most literature on second primary cancers (SPCs) focuses on possible factors, which may increase the risk of these cancers, and little attention has been paid for the overall incidence differences between first primary cancers (FPCs) and same SPCs. We wanted to compare the incidence rates for all common cancers when these were diagnosed as FPCs and SPCs after invasive and in situ squamous cell carcinoma (SCC) of the skin, which are usually treated by surgery only. Methods: Cancers were identified from the Swedish Cancer Registry from the years 1990 through to 2015, and they included, in addition to skin cancers, 20 male cancers totaling 484,850 patients and 22 female cancers totaling 452,909 patients. Standardized incidence rates and relative risks (RRs) were calculated for sex-specific common cancers as FPC and as SPC after skin SCC. Spearman rank correlations were used in the analysis of incidence ranking of FPC and SPC. Results: Of total, 29,061 men and 23,533 women developed invasive SCC and 27,842 men and 36,383 women in situ SCC. The total number of 20 other male cancers was 484,850 and of 22 female cancers it was 452,909. Rank correlations ranged from 0.90 to 0.96 (P~5×10−6), indicating that overall skin SCC did not interfere with SPC formation. The exceptions were increased SPC risks for melanoma, sharing risk factors with skin SCC, and non-Hodgkin and Hodgkin lymphoma, and cancers of the upper aerodigestive tract, connective tissue, and male and female genitals suggesting contribution by skin cancer initiated immune dysfunction. Conclusion: The incidence ranking of SPCs after skin cancers largely follows the incidence ranking of FPCs indicating that overall skin SCC does not greatly interfere with the intrinsic carcinogenic process. The main deviations in incidence between FPC and SPC appeared to be due to shared risk factors or immunological processes promoting immune responsive cancer types.

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author
; ; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
First primary cancer, Immune disturbance, Second cancer, Skin cancer
in
Clinical Epidemiology
volume
12
pages
8 pages
publisher
Dove Medical Press Ltd.
external identifiers
  • pmid:32821171
  • scopus:85090618645
ISSN
1179-1349
DOI
10.2147/CLEP.S256662
language
English
LU publication?
yes
id
988e05ea-1158-4d62-bf9d-d88f389f81b2
date added to LUP
2020-10-20 14:11:44
date last changed
2024-03-20 17:26:45
@article{988e05ea-1158-4d62-bf9d-d88f389f81b2,
  abstract     = {{<p>Background: Most literature on second primary cancers (SPCs) focuses on possible factors, which may increase the risk of these cancers, and little attention has been paid for the overall incidence differences between first primary cancers (FPCs) and same SPCs. We wanted to compare the incidence rates for all common cancers when these were diagnosed as FPCs and SPCs after invasive and in situ squamous cell carcinoma (SCC) of the skin, which are usually treated by surgery only. Methods: Cancers were identified from the Swedish Cancer Registry from the years 1990 through to 2015, and they included, in addition to skin cancers, 20 male cancers totaling 484,850 patients and 22 female cancers totaling 452,909 patients. Standardized incidence rates and relative risks (RRs) were calculated for sex-specific common cancers as FPC and as SPC after skin SCC. Spearman rank correlations were used in the analysis of incidence ranking of FPC and SPC. Results: Of total, 29,061 men and 23,533 women developed invasive SCC and 27,842 men and 36,383 women in situ SCC. The total number of 20 other male cancers was 484,850 and of 22 female cancers it was 452,909. Rank correlations ranged from 0.90 to 0.96 (P~5×10<sup>−6</sup>), indicating that overall skin SCC did not interfere with SPC formation. The exceptions were increased SPC risks for melanoma, sharing risk factors with skin SCC, and non-Hodgkin and Hodgkin lymphoma, and cancers of the upper aerodigestive tract, connective tissue, and male and female genitals suggesting contribution by skin cancer initiated immune dysfunction. Conclusion: The incidence ranking of SPCs after skin cancers largely follows the incidence ranking of FPCs indicating that overall skin SCC does not greatly interfere with the intrinsic carcinogenic process. The main deviations in incidence between FPC and SPC appeared to be due to shared risk factors or immunological processes promoting immune responsive cancer types.</p>}},
  author       = {{Zheng, Guoqiao and Sundquist, Kristina and Sundquist, Jan and Försti, Asta and Hemminki, Akseli and Hemminki, Kari}},
  issn         = {{1179-1349}},
  keywords     = {{First primary cancer; Immune disturbance; Second cancer; Skin cancer}},
  language     = {{eng}},
  pages        = {{857--864}},
  publisher    = {{Dove Medical Press Ltd.}},
  series       = {{Clinical Epidemiology}},
  title        = {{Incidence differences between first primary cancers and second primary cancers following skin squamous cell carcinoma as etiological clues}},
  url          = {{http://dx.doi.org/10.2147/CLEP.S256662}},
  doi          = {{10.2147/CLEP.S256662}},
  volume       = {{12}},
  year         = {{2020}},
}