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Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies

BACKGROUND: Experimental and clinical evidence implicates testosterone in the aetiology of prostate cancer. Variation across the normal range of circulating free testosterone concentrations may not lead to changes in prostate biology, unless circulating concentrations are low. This may also apply to...

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Autores principales: Watts, Eleanor L., Appleby, Paul N., Perez-Cornago, Aurora, Bueno-de-Mesquita, H. Bas, Chan, June M., Chen, Chu, Cohn, Barbara A., Cook, Michael B., Flicker, Leon, Freedman, Neal D., Giles, Graham G., Giovannucci, Edward, Gislefoss, Randi E., Hankey, Graeme J., Kaaks, Rudolf, Knekt, Paul, Kolonel, Laurence N., Kubo, Tatsuhiko, Le Marchand, Loïc, Luben, Robert N., Luostarinen, Tapio, Männistö, Satu, Metter, E. Jeffrey, Mikami, Kazuya, Milne, Roger L., Ozasa, Kotaro, Platz, Elizabeth A., Quirós, J. Ramón, Rissanen, Harri, Sawada, Norie, Stampfer, Meir, Stanczyk, Frank Z., Stattin, Pär, Tamakoshi, Akiko, Tangen, Catherine M., Thompson, Ian M., Tsilidis, Konstantinos K., Tsugane, Shoichiro, Ursin, Giske, Vatten, Lars, Weiss, Noel S., Yeap, Bu B., Allen, Naomi E., Key, Timothy J., Travis, Ruth C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195673/
https://www.ncbi.nlm.nih.gov/pubmed/30077399
http://dx.doi.org/10.1016/j.eururo.2018.07.024
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author Watts, Eleanor L.
Appleby, Paul N.
Perez-Cornago, Aurora
Bueno-de-Mesquita, H. Bas
Chan, June M.
Chen, Chu
Cohn, Barbara A.
Cook, Michael B.
Flicker, Leon
Freedman, Neal D.
Giles, Graham G.
Giovannucci, Edward
Gislefoss, Randi E.
Hankey, Graeme J.
Kaaks, Rudolf
Knekt, Paul
Kolonel, Laurence N.
Kubo, Tatsuhiko
Le Marchand, Loïc
Luben, Robert N.
Luostarinen, Tapio
Männistö, Satu
Metter, E. Jeffrey
Mikami, Kazuya
Milne, Roger L.
Ozasa, Kotaro
Platz, Elizabeth A.
Quirós, J. Ramón
Rissanen, Harri
Sawada, Norie
Stampfer, Meir
Stanczyk, Frank Z.
Stattin, Pär
Tamakoshi, Akiko
Tangen, Catherine M.
Thompson, Ian M.
Tsilidis, Konstantinos K.
Tsugane, Shoichiro
Ursin, Giske
Vatten, Lars
Weiss, Noel S.
Yeap, Bu B.
Allen, Naomi E.
Key, Timothy J.
Travis, Ruth C.
author_facet Watts, Eleanor L.
Appleby, Paul N.
Perez-Cornago, Aurora
Bueno-de-Mesquita, H. Bas
Chan, June M.
Chen, Chu
Cohn, Barbara A.
Cook, Michael B.
Flicker, Leon
Freedman, Neal D.
Giles, Graham G.
Giovannucci, Edward
Gislefoss, Randi E.
Hankey, Graeme J.
Kaaks, Rudolf
Knekt, Paul
Kolonel, Laurence N.
Kubo, Tatsuhiko
Le Marchand, Loïc
Luben, Robert N.
Luostarinen, Tapio
Männistö, Satu
Metter, E. Jeffrey
Mikami, Kazuya
Milne, Roger L.
Ozasa, Kotaro
Platz, Elizabeth A.
Quirós, J. Ramón
Rissanen, Harri
Sawada, Norie
Stampfer, Meir
Stanczyk, Frank Z.
Stattin, Pär
Tamakoshi, Akiko
Tangen, Catherine M.
Thompson, Ian M.
Tsilidis, Konstantinos K.
Tsugane, Shoichiro
Ursin, Giske
Vatten, Lars
Weiss, Noel S.
Yeap, Bu B.
Allen, Naomi E.
Key, Timothy J.
Travis, Ruth C.
author_sort Watts, Eleanor L.
collection PubMed
description BACKGROUND: Experimental and clinical evidence implicates testosterone in the aetiology of prostate cancer. Variation across the normal range of circulating free testosterone concentrations may not lead to changes in prostate biology, unless circulating concentrations are low. This may also apply to prostate cancer risk, but this has not been investigated in an epidemiological setting. OBJECTIVE: To examine whether men with low concentrations of circulating free testosterone have a reduced risk of prostate cancer. DESIGN, SETTING, AND PARTICIPANTS: Analysis of individual participant data from 20 prospective studies including 6933 prostate cancer cases, diagnosed on average 6.8 yr after blood collection, and 12 088 controls in the Endogenous Hormones, Nutritional Biomarkers and Prostate Cancer Collaborative Group. OUTCOME MEASUREMENTS AND STATISTICAL ANALYSIS: Odds ratios (ORs) of incident overall prostate cancer and subtypes by stage and grade, using conditional logistic regression, based on study-specific tenths of calculated free testosterone concentration. RESULTS AND LIMITATIONS: Men in the lowest tenth of free testosterone concentration had a lower risk of overall prostate cancer (OR = 0.77, 95% confidence interval [CI] 0.69–0.86; p < 0.001) compared with men with higher concentrations (2nd–10th tenths of the distribution). Heterogeneity was present by tumour grade (p(het) = 0.01), with a lower risk of low-grade disease (OR = 0.76, 95% CI 0.67–0.88) and a nonsignificantly higher risk of high-grade disease (OR = 1.56, 95% CI 0.95–2.57). There was no evidence of heterogeneity by tumour stage. The observational design is a limitation. CONCLUSIONS: Men with low circulating free testosterone may have a lower risk of overall prostate cancer; this may be due to a direct biological effect, or detection bias. Further research is needed to explore the apparent differential association by tumour grade. PATIENT SUMMARY: In this study, we looked at circulating testosterone levels and risk of developing prostate cancer, finding that men with low testosterone had a lower risk of prostate cancer.
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spelling pubmed-61956732018-11-01 Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies Watts, Eleanor L. Appleby, Paul N. Perez-Cornago, Aurora Bueno-de-Mesquita, H. Bas Chan, June M. Chen, Chu Cohn, Barbara A. Cook, Michael B. Flicker, Leon Freedman, Neal D. Giles, Graham G. Giovannucci, Edward Gislefoss, Randi E. Hankey, Graeme J. Kaaks, Rudolf Knekt, Paul Kolonel, Laurence N. Kubo, Tatsuhiko Le Marchand, Loïc Luben, Robert N. Luostarinen, Tapio Männistö, Satu Metter, E. Jeffrey Mikami, Kazuya Milne, Roger L. Ozasa, Kotaro Platz, Elizabeth A. Quirós, J. Ramón Rissanen, Harri Sawada, Norie Stampfer, Meir Stanczyk, Frank Z. Stattin, Pär Tamakoshi, Akiko Tangen, Catherine M. Thompson, Ian M. Tsilidis, Konstantinos K. Tsugane, Shoichiro Ursin, Giske Vatten, Lars Weiss, Noel S. Yeap, Bu B. Allen, Naomi E. Key, Timothy J. Travis, Ruth C. Eur Urol Article BACKGROUND: Experimental and clinical evidence implicates testosterone in the aetiology of prostate cancer. Variation across the normal range of circulating free testosterone concentrations may not lead to changes in prostate biology, unless circulating concentrations are low. This may also apply to prostate cancer risk, but this has not been investigated in an epidemiological setting. OBJECTIVE: To examine whether men with low concentrations of circulating free testosterone have a reduced risk of prostate cancer. DESIGN, SETTING, AND PARTICIPANTS: Analysis of individual participant data from 20 prospective studies including 6933 prostate cancer cases, diagnosed on average 6.8 yr after blood collection, and 12 088 controls in the Endogenous Hormones, Nutritional Biomarkers and Prostate Cancer Collaborative Group. OUTCOME MEASUREMENTS AND STATISTICAL ANALYSIS: Odds ratios (ORs) of incident overall prostate cancer and subtypes by stage and grade, using conditional logistic regression, based on study-specific tenths of calculated free testosterone concentration. RESULTS AND LIMITATIONS: Men in the lowest tenth of free testosterone concentration had a lower risk of overall prostate cancer (OR = 0.77, 95% confidence interval [CI] 0.69–0.86; p < 0.001) compared with men with higher concentrations (2nd–10th tenths of the distribution). Heterogeneity was present by tumour grade (p(het) = 0.01), with a lower risk of low-grade disease (OR = 0.76, 95% CI 0.67–0.88) and a nonsignificantly higher risk of high-grade disease (OR = 1.56, 95% CI 0.95–2.57). There was no evidence of heterogeneity by tumour stage. The observational design is a limitation. CONCLUSIONS: Men with low circulating free testosterone may have a lower risk of overall prostate cancer; this may be due to a direct biological effect, or detection bias. Further research is needed to explore the apparent differential association by tumour grade. PATIENT SUMMARY: In this study, we looked at circulating testosterone levels and risk of developing prostate cancer, finding that men with low testosterone had a lower risk of prostate cancer. Elsevier Science 2018-11 /pmc/articles/PMC6195673/ /pubmed/30077399 http://dx.doi.org/10.1016/j.eururo.2018.07.024 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Watts, Eleanor L.
Appleby, Paul N.
Perez-Cornago, Aurora
Bueno-de-Mesquita, H. Bas
Chan, June M.
Chen, Chu
Cohn, Barbara A.
Cook, Michael B.
Flicker, Leon
Freedman, Neal D.
Giles, Graham G.
Giovannucci, Edward
Gislefoss, Randi E.
Hankey, Graeme J.
Kaaks, Rudolf
Knekt, Paul
Kolonel, Laurence N.
Kubo, Tatsuhiko
Le Marchand, Loïc
Luben, Robert N.
Luostarinen, Tapio
Männistö, Satu
Metter, E. Jeffrey
Mikami, Kazuya
Milne, Roger L.
Ozasa, Kotaro
Platz, Elizabeth A.
Quirós, J. Ramón
Rissanen, Harri
Sawada, Norie
Stampfer, Meir
Stanczyk, Frank Z.
Stattin, Pär
Tamakoshi, Akiko
Tangen, Catherine M.
Thompson, Ian M.
Tsilidis, Konstantinos K.
Tsugane, Shoichiro
Ursin, Giske
Vatten, Lars
Weiss, Noel S.
Yeap, Bu B.
Allen, Naomi E.
Key, Timothy J.
Travis, Ruth C.
Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies
title Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies
title_full Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies
title_fullStr Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies
title_full_unstemmed Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies
title_short Low Free Testosterone and Prostate Cancer Risk: A Collaborative Analysis of 20 Prospective Studies
title_sort low free testosterone and prostate cancer risk: a collaborative analysis of 20 prospective studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195673/
https://www.ncbi.nlm.nih.gov/pubmed/30077399
http://dx.doi.org/10.1016/j.eururo.2018.07.024
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