Collated from TripSit, Pharmacology, DrugCentral. Where sources differ (e.g. dosing), Compare shows them side by side.
Tadalafil, a PDE5 inhibitor used to combat erectile disfunction. Dangerous in combination with other drugs which lower blood pressure.TS
Oral
Route dataTripSit
| Threshold | Light | Common | Strong | Heavy |
|---|---|---|---|---|
| — | 2.5–5 mg | 5–10 mg | 10–20 mg | —+ |
| Total | 4–6 hours |
|---|
🧬 Receptor activityPHDC
| Target | Action | Affinity | Source | |
|---|---|---|---|---|
| Unchecked | — | Ki 1.2 nM | CHEMBL | TargetUnchecked Action— AffinityKi 1.2 nM SourceCHEMBL |
| cGMP-specific 3',5'-cyclic phosphodiesterase | — | Ki 5 nM | CHEMBL | TargetcGMP-specific 3',5'-cyclic phosphodiesterase Action— AffinityKi 5 nM SourceCHEMBL |
| cGMP-specific 3',5'-cyclic phosphodiesterase (PDE5A) | Inhibitor | 8 Ki | DRUGCENTRAL | TargetcGMP-specific 3',5'-cyclic phosphodiesterase (PDE5A) ActionInhibitor Affinity8 Ki SourceDRUGCENTRAL |
| Acetylcholinesterase (Ache) | — | 4.58 IC50 | DRUGCENTRAL | TargetAcetylcholinesterase (Ache) Action— Affinity4.58 IC50 SourceDRUGCENTRAL |
| Dual 3',5'-cyclic-AMP and -GMP phosphodiesterase 11A (PDE11A) | — | 7.48 IC50 | DRUGCENTRAL | TargetDual 3',5'-cyclic-AMP and -GMP phosphodiesterase 11A (PDE11A) Action— Affinity7.48 IC50 SourceDRUGCENTRAL |
| Phosphodiesterase 6 (PDE6D) | — | 6.01 IC50 | DRUGCENTRAL | TargetPhosphodiesterase 6 (PDE6D) Action— Affinity6.01 IC50 SourceDRUGCENTRAL |
| Potassium voltage-gated channel subfamily H member 2 (KCNH2) | — | 4 IC50 | DRUGCENTRAL | TargetPotassium voltage-gated channel subfamily H member 2 (KCNH2) Action— Affinity4 IC50 SourceDRUGCENTRAL |
| Rod cGMP-specific 3',5'-cyclic phosphodiesterase subunit alpha (PDE6A) | — | 5.52 IC50 | DRUGCENTRAL | TargetRod cGMP-specific 3',5'-cyclic phosphodiesterase subunit alpha (PDE6A) Action— Affinity5.52 IC50 SourceDRUGCENTRAL |
| cGMP-specific 3',5'-cyclic phosphodiesterase (Pde5a) | — | 8.3 Ki | DRUGCENTRAL | TargetcGMP-specific 3',5'-cyclic phosphodiesterase (Pde5a) Action— Affinity8.3 Ki SourceDRUGCENTRAL |
Mechanism of actionPH
Tadalafil is a selective phosphodiesterase-5 (PDE5) inhibitor that produces several downstream effects with the most common therapeutic effect being smooth muscle relaxation. Patients may experience ED due to a variety of causes including psychogenic, neurogenic, vasculogenic, iatrogenic, or endocrine. These causes result in dysfunction of penile smooth muscle relaxation through either disrupted neuronal signaling or direct influence on smooth muscle cells. During sexual arousal, non-adrenergic non-cholinergic (NANC) neurons release nitric oxide (NO). Nitric oxide stimulates guanylate cyclase which converts guanosine triphosphate to cyclic guanosine monophosphate (cGMP). cGMP activates the cGMP-dependent kinase (PKG) in a signal cascade which activates K+ channels leading to inhibition of Ca2+ channels, inhibits platelet activation, and inhibits smooth muscle cell proliferation while inducing apoptosis. This signal cascade is attenuated by PDE5 which breaks the phosphodiester bond of cGMP, converting it to GMP. Inhibition of PDE5 by tadalafil increases signaling via the PKG cascade which supports penile smooth muscle relaxation during sexual arousal by decreasing Ca2+ entry into smooth muscle cells. This smooth muscle relaxation allows blood to fill the corpus cavernosum thereby producing an erection. In PAH, blood pressure in the pulmonary arteries is raised due to a variety of mechanisms stemming from endothelial dysfunction. Decreased production of NO and prostacyclin reduce vasodilatory signaling while overproduction of endothelin-1 and thromboxane increase vasoconstriction. Inflammation, thromboses, and hypoxia later contribute to vascular remodeling which further reduces luminal size. The resultant increase in blood pressure reduces the capacity for gas exchange and increases afterload at the right ventricle, producing symptoms of dyspnea, fatigue, and dizziness as well as leading to right-sided heart failure. Tadalafil exerts its therapeutic effect in PAH through boosting NO-cGMP signaling to contribute to smooth muscle relaxation as with ED. Lastly, tadalafil is used to treat BPH. BPH produces urinary dysfunction through hyperproliferation of the epithelial and smooth muscle layers of the prostate. The increased size of the prostate blocks urine flow through the urethra resulting in higher residual volumes due to incomplete emptying. Tadalafil does not appear to exert its benefit via smooth muscle relaxation of the prostate. It may instead exert its effect through a mix of increased oxygenation and decreased inflammation, which decreases tissue remodeling, and inhibition of cell proliferation through the cGMP cascade. The decreased affinity for PDE6 compared to other PDE5 inhibitors may explain the decreased incidence of visual side effects as PDE6 is present in the eye and contributes to color vision.
In vitro studies have shown that the effect of tadalafil is more potent on phosphodiesterase type 5 (PDE5) than on other phosphodiesterases. These studies have shown that tadalafil is >10,000-fold more potent for PDE5 than for PDE1, PDE2, PDE4, and PDE7 enzymes, which are found in the heart, brain, blood vessels, liver, leukocytes, skeletal muscle, and other organs. Tadalafil is >10,000-fold more potent for PDE5 than for PDE3, an enzyme found in the heart and blood vessels. Additionally, tadalafil is 700-fold more potent for PDE5 than for PDE8, PDE9, PDE10 and 14-fold more potent for PDE5 than for PDE11A1, an enzyme found in human skeletal muscle. Tadalafil inhibits human recombinant PDE11A1 activity at concentrations within the therapeutic range. The physiological role and clinical consequence of PDE11 inhibition in humans have not been defined.
Studies in vitro have demonstrated that tadalafil is a selective inhibitor of phosphodiesterase type 5 (PDE5). PDE5 is found in corpus cavernosum smooth muscle, vascular and visceral smooth muscle, skeletal muscle, platelets, kidney, lung, cerebellum, and pancreas.
Penile erection during sexual stimulation is caused by increased penile blood flow resulting from the relaxation of penile arteries and corpus cavernosum smooth muscle. This response is mediated by the release of nitric oxide (NO) from nerve terminals and endothelial cells, which stimulates the synthesis of cyclic GMP in smooth muscle cells. Cyclic GMP causes smooth muscle relaxation and increased blood flow into the corpus cavernosum. The inhibition of phosphodiesterase type 5 (PDE5) enhances erectile function by increasing the amount of cyclic GMP. Tadalafil inhibits PDE5. Because sexual stimulation is required to initiate the local release of nitric oxide, the inhibition of PDE5 by tadalafil has no effect on the absence of sexual stimulation.
PharmacodynamicsPH
Tadalafil exerts a therapeutic effect in ED by increasing sexual stimulation-dependant smooth muscle relaxation in the penis, allowing the corpus cavernosum to fill with blood to produce an erection. Smooth muscle relaxation in the pulmonary vasculature helps to produce vasodilation in PAH which reduces blood pressure in the pulmonary arteries. In BPH, tadalafil may contribute to decreased smooth muscle cell proliferation which may reduce the size of the prostate and relieve the anatomical obstruction which produces urinary symptoms of BPH. The decreased affinity of tadalafil for PDE6 compared to other PDE5 inhibitors may explain the reduced incidence of visual side effects.
Pharmacokinetics
Half-lifePH
The mean half-life of elimination of tadalafil is 15-17.5h in healthy adults. The mean half-life of elimination in adults with PAH is reported as 35h.
Terminal: 17.5 hours
AbsorptionPH
Tadalafil has a tmax of 0.5-6h with a median of 2h in healthy adults. The tmax in adults with PAH is reported as 2-8h with a median of 4h. There does not appear to be a significant effect on absorption when tadalafil is taken with food.
Tadalafil is primarily eliminated via hepatic metabolism. These metabolites are mainly excreted in the feces (61%) and to a lesser extent in the urine (36%)
Tadalafil has a mean apparent volume of distribution of 63L in healthy adults. The mean apparent volume of distribution is reported as 77L in adults with PAH.
The mean apparent oral clearance of tadalafil is 2.5-3.4L/h in healthy adults. The mean apparent oral clearance in adults with PAH is reported as 3.5L/h
Tmax: 30 minutes to 6 hours (median 2 hours). Absolute bioavailability has not been determined; rate and extent of absorption are not influenced by food.
Volume of distribution: 63 L; indicating distribution into tissues. Less than 0.0005% of administered dose was found in the semen of healthy subjects. 94% protein bound.
MetabolismPH
Tadalafil undergoes hepatic metabolism via CYP3A4 to a catechol metabolite. This catechol metabolite undergoes subsequent methylation and glucuronidation with the methyl-glucuronide metabolite becoming the primary metabolite in circulation. None of the known metabolites are considered to be active.
Biotransformation: Hepatic metabolism, mainly by CYP3A4. Tadalafil is predominantly metabolized by CYP3A4 to a catechol metabolite. The catechol metabolite undergoes extensive methylation and glucuronidation to form the methylcatechol and methylcatechol glucuronide conjugate, respectively. The major circulating metabolite is the methylcatechol glucuronide. Methylcatechol concentrations are less than 10% of glucuronide concentrations. In vitro data suggests that metabolites are not expected to be pharmacologically active at observed metabolite concentrations.
Protein bindingPH
Tadalafil is 94% bound to plasma proteins.
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External links
Fact-sheets from PsychonautWiki. Harm-reduction reference only — not medical advice.