Finasteride: Difference between revisions
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[[Image: Finasteride.PNG|thumb| | [[Image: Finasteride.PNG|thumb|180px|left|'''Fig. 1'''. Structure of Finasteride.]] | ||
[[Image: Capture.JPG|thumb| | [[Image: Capture.JPG|thumb|280px|right|'''Fig. 2''' The interaction between 5β-reductase (green) and Finasteride (gray) and NADP (blue). Two Tyrosine (58 and 132 in yellow), two Tryptophan (89 and 230 in red) and Glutamic acid (120 in orange) residues in 5β-reductase are interacting with Finasteride. While Glutamine (193 in light blue) and aspartic acid (53 in purple) residues in 5β-reductase are interacting with NADP.]] | ||
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==='''Benign Prostatic Hyperplasia (BPH)'''=== | ==='''Benign Prostatic Hyperplasia (BPH)'''=== | ||
[[Aromatase]] and 5α-reductase is responsible for converting androgen hormones into estrogen and dihydrotestosterone (DHT). This chemical process of androgen hormones leads to a decrease in testosterone, but raises levels of DHT and estrogen <ref name="eight">Tacklind, J., Fink, H.A., MacDonald, R., Rutks, I., Wilt, T.J. (2010). Finasteride for benign prostatic hyperplasia. Cochrane database of systematic reviews 2010, Issue 10. Art. No.: CD006015. DOI: 10.1002/14651858.CD006015.pub3. </ref>. Estrogen is a key role in cells proliferating in the prostate and DHT is an anabolic hormone much more potent (dissociated from the androgen receptor slowly) than testosterone that when combined, causes a synergy to induce BPH <ref name="nine">Dragan, I., Misso, M. (2012). Lycopene for the prevention and treatment of benign prostatic hyperplasia and prostate cancer: A systematic review. Maturitas, 72 (4), 269 </ref>. The enzyme 5α-reductase is responsible for the synthesis of DHT in the prostate from circulating testosterone. 5α-reductase is located in the stromal cells, which is the main site for the synthesis of DHT, but it can also diffuse into epithelial cells close-by <ref name= "ten"> Bartsch, G., Rittmaster, R.S., Klocker, H. (2000). Dihydrotestosterone and the concept of 5alpha-reductase inhibition in human benign prostatic hyperplasia. European Urology. 37 (4): 367–80. doi:10.1159/000020181 </ref>. In both stromal and epithelial cells, DHT binds to nuclear androgen receptors and signals for transcription for cell growth. Finasteride is used to inhibit the 5α-reductase enzyme, which blocks the conversion of testosterone and inhibits the production of DHT, reducing prostate volume and BPH symptoms (urinating complication). Using finasteride could increase the risk for erectile dysfunction, decrease libido, and ejaulation disorder due to 5α-reductase being inhibited <ref name=""> Robaire, B., Henderson, N.A. (2006). Actions of 5alpha-reductase inhibitors on the epididymis. Molecular and Cellular Endocrinology. 250 (1-2): 190–5. doi:10.1016/j.mce.2005.12.044 </ref>. | [[Aromatase]] and 5α-reductase is responsible for converting [[androgen hormones]] into estrogen and dihydrotestosterone (DHT). This chemical process of androgen hormones leads to a decrease in testosterone, but raises levels of DHT and estrogen <ref name="eight">Tacklind, J., Fink, H.A., MacDonald, R., Rutks, I., Wilt, T.J. (2010). Finasteride for benign prostatic hyperplasia. Cochrane database of systematic reviews 2010, Issue 10. Art. No.: CD006015. DOI: 10.1002/14651858.CD006015.pub3. </ref>. Estrogen is a key role in cells proliferating in the prostate and DHT is an anabolic hormone much more potent (dissociated from the androgen receptor slowly) than testosterone that when combined, causes a synergy to induce BPH <ref name="nine">Dragan, I., Misso, M. (2012). Lycopene for the prevention and treatment of benign prostatic hyperplasia and prostate cancer: A systematic review. Maturitas, 72 (4), 269 </ref>. The enzyme 5α-reductase is responsible for the synthesis of DHT in the prostate from circulating testosterone. 5α-reductase is located in the stromal cells, which is the main site for the synthesis of DHT, but it can also diffuse into epithelial cells close-by <ref name= "ten"> Bartsch, G., Rittmaster, R.S., Klocker, H. (2000). Dihydrotestosterone and the concept of 5alpha-reductase inhibition in human benign prostatic hyperplasia. European Urology. 37 (4): 367–80. doi:10.1159/000020181 </ref>. In both stromal and epithelial cells, DHT binds to nuclear androgen receptors and signals for transcription for cell growth. Finasteride is used to inhibit the 5α-reductase enzyme, which blocks the conversion of testosterone and inhibits the production of DHT, reducing prostate volume and BPH symptoms (urinating complication). Using finasteride could increase the risk for erectile dysfunction, decrease libido, and ejaulation disorder due to 5α-reductase being inhibited <ref name=""> Robaire, B., Henderson, N.A. (2006). Actions of 5alpha-reductase inhibitors on the epididymis. Molecular and Cellular Endocrinology. 250 (1-2): 190–5. doi:10.1016/j.mce.2005.12.044 </ref>. | ||
==='''Prostate Cancer'''=== | ==='''Prostate Cancer'''=== | ||
Latest revision as of 11:41, 8 January 2024
N-(1,1-dimethylethyl)-3-oxo-(5α,17β)-4-azaandrost-1-ene-17-carboxamide (Finasteride)
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References
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Cody J Cubbage, Michal Harel, Alexander Berchansky, Joel L. Sussman