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Local growth hormone promotes benign prostatic hyperplasia
Masaki Ryuzaki, Svetlana Zonis, Neil A. Bhowmick, Sandrine Billet, Saravana Kumar Kailasam Mani, Stephen J. Freedland, Hyung L. Kim, Vera Chesnokova, Shlomo Melmed
Masaki Ryuzaki, Svetlana Zonis, Neil A. Bhowmick, Sandrine Billet, Saravana Kumar Kailasam Mani, Stephen J. Freedland, Hyung L. Kim, Vera Chesnokova, Shlomo Melmed
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Research Article Aging Endocrinology

Local growth hormone promotes benign prostatic hyperplasia

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Abstract

Locally produced nonpituitary growth hormone (npGH) promotes DNA damage accumulation and epithelial-mesenchymal transition (EMT) in aging human colon epithelium. GH receptor (GHR) and npGH are expressed in normal human prostate, and benign prostatic hyperplasia (BPH) prevalence increases with age. We hypothesized that local prostate GH action may promote EMT and contribute to BPH pathogenesis. We show here that the number of patients expressing npGH increases more than 10-fold after age 60, concordant with increased γH2AX, a marker of DNA damage, and EMT activation. GH-treated human primary prostate epithelial cells, normal prostate cells, and primary cell cultures derived from resected BPH specimens exhibited enhanced DNA damage and activated EMT, with induced TWIST2, suppressed E-cadherin, and increased Ki67, cell motility, and proliferation. In mice, prostate tissue adjacent to allografted GH-expressing fibroblasts showed increased γH2AX, TWIST2, and Ki67, along with morphological changes consistent with BPH. While GH and GH-induced IGF-1 both activated EMT, GH triggered DNA damage independently of IGF-1. These results elucidate what we believe to be a novel role for local npGH in aging prostate tissue, whereby npGH increases DNA damage and promotes EMT to enable a microenvironment favoring BPH development. Prostate GHR signaling may be an attractive therapeutic target for BPH.

Authors

Masaki Ryuzaki, Svetlana Zonis, Neil A. Bhowmick, Sandrine Billet, Saravana Kumar Kailasam Mani, Stephen J. Freedland, Hyung L. Kim, Vera Chesnokova, Shlomo Melmed

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Figure 8

Endocrine/paracrine GH induces changes consistent with BPH.

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Endocrine/paracrine GH induces changes consistent with BPH.
Murine anter...
Murine anterior prostate glands in 8-week-old C57BL/6 mice were injected with 6 × 105 mouse prostate fibroblasts infected with lentivirus expressing mouse GH (mGH) or empty vector (V) and euthanized after 2 months. (A) Representative IHC image of GH expression (brown) in allograft tumor (dashed arrow) and epithelial hyperplasia focus (solid arrow) in close proximity to GH-secreting allograft tumor. (B and C) Representative IHC images of γH2AX expression (brown) in the prostate in close proximity to allograft tumors expressing (B) lentiV or (C) lenti-mGH. (D) Percentage of cells positive for γH2AX detected by IHC. (E and F) Representative IHC images of Ki67 expression (brown) in the prostate in close proximity to allograft tumors expressing (E) lentiV or (F) lenti-mGH. (G) Percentage of cells positive for Ki67 detected by IHC. γH2AX staining in D and Ki67 staining in G are presented as average percentage of positively stained anterior prostate epithelial cells from 5–7 images per individual mouse. Results are presented as mean ± SEM. Differences were assessed with 2-tailed Student’s t test. *P < 0.05, **P < 0.01 versus control. (H–O) Representative H&E images of prostate tissue from mice injected with lenti-mGH fibroblasts. Magnification, ×10 (H, J, L, and N) and ×20 (I, K, M, and O insets). Hyperplastic (BPH) areas are marked by solid arrows and allograft tumor areas are marked by dashed arrows. Scale bars: 50 μm. (P and Q) Representative double-staining image of p63 (red) and p504s (brown) in a prostate specimen injected with fibroblasts infected with (P) lentiV or (Q) lenti-mGH imaged at ×10. Scale bars: 50 μm. BPH is positive for p63 but negative for p504s. Stromal brown cells depicting lymphocytes positive for p504s served as a positive control. (R) Western blot of dorsolateral prostate γH2AX, EMT markers, and PCNA. ImageJ quantification is shown in Supplemental Figure 9G.

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