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Anti-inflammatory properties of Lipidosterolic extract of Serenoa repens (Permixon®) in a mouse model of prostate hyperplasia
The Prostate, 2015-05, Vol.75 (7), p.706-722
Bernichtein, Sophie
Pigat, Natascha
Camparo, Philippe
Latil, Alain
Viltard, Mélanie
Friedlander, Gérard
Goffin, Vincent
2015
Volltextzugriff (PDF)
Details
Autor(en) / Beteiligte
Bernichtein, Sophie
Pigat, Natascha
Camparo, Philippe
Latil, Alain
Viltard, Mélanie
Friedlander, Gérard
Goffin, Vincent
Titel
Anti-inflammatory properties of Lipidosterolic extract of Serenoa repens (Permixon®) in a mouse model of prostate hyperplasia
Ist Teil von
The Prostate, 2015-05, Vol.75 (7), p.706-722
Ort / Verlag
United States: Blackwell Publishing Ltd
Erscheinungsjahr
2015
Quelle
MEDLINE
Beschreibungen/Notizen
BACKGROUND Permixon®, the hexanic lipidosterolic extract of saw palmetto Serenoa repens (LSESr), has shown properties that highlight its benefit in the management of benign prostate hyperplasia (BPH). To address its actual anti‐inflammatory potency, we used a unique pro‐inflammatory mouse model of prostate hyperplasia involving prostate‐specific over‐expression of prolactin transgene (Pb‐Prl). METHODS Six month‐old Pb‐Prl males were administered with Permixon® per os at the daily dose of 100 mg/kg for 28 days. Body and prostate weights were measured weekly and at sacrifice, respectively. Prostate histology was carefully assessed by a pathologist and detailed quantifications of epithelial and stromal compartments were performed using image analysis software. Luminal cell proliferation index was determined using Ki‐67 immunostaining, and apoptosis using Bax/Bcl2 mRNA ratio. Tissue inflammation and fibrosis were assessed by histological analyses then quantified using CD45 immunostaining and picrosirius staining, respectively. Expression profiling of selected pro‐inflammatory cytokines, chemokines, and chemokine receptors was performed by quantitative RT‐PCR. RESULTS In this model, Permixon® significantly decreased tissue weight and proliferation index specifically in the ventral lobe. Although treatment had no noticeable effect on epithelial histology of any lobe, it markedly reduced the histological hallmarks of inflammation in all lobes. This was confirmed by the global down‐regulation of prostate pro‐inflammatory cytokine profile, with significant reduction of CCR7, CXCL6, IL‐6, and IL‐17 expression. CONCLUSIONS In this mouse model of prostate hyperplasia, Permixon® exerted potent anti‐inflammatory properties in the whole prostate while anti‐androgenic effects were lobe‐specific, suggesting that distinct LSESr components may be involved in these effects. Our results support the beneficial role of Permixon® treatment for BPH. The relevance of CCR7, CXCL6, IL‐6, and IL‐17 as potential biomarkers to follow up BPH inflammatory status needs to be assessed. Prostate 75:706–722, 2015. © 2015 Wiley Periodicals, Inc.
Sprache
Englisch
Identifikatoren
ISSN: 0270-4137
eISSN: 1097-0045
DOI: 10.1002/pros.22953
Titel-ID: cdi_proquest_miscellaneous_1672608556
Format
–
Schlagworte
Animals
,
Apoptosis - drug effects
,
bcl-2-Associated X Protein - genetics
,
BPH
,
Cytokines - genetics
,
Disease Models, Animal
,
Down-Regulation - drug effects
,
IL-17
,
IL-6
,
Immunohistochemistry
,
inflammation
,
Inflammation - drug therapy
,
Inflammation - immunology
,
Inflammation - pathology
,
Ki-67 Antigen - genetics
,
LSESr
,
Male
,
Mice
,
Mice, Transgenic
,
mouse model
,
Organ Size - drug effects
,
Plant Extracts - pharmacology
,
Prostatic Hyperplasia - drug therapy
,
Prostatic Hyperplasia - immunology
,
Prostatic Hyperplasia - pathology
,
Reverse Transcriptase Polymerase Chain Reaction
,
RNA - chemistry
,
RNA - genetics
,
Serenoa - chemistry
,
Statistics, Nonparametric
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