PERINDOPRIL 4 UNIMED
Perindopril Tert- Butylamine
What it does
Butylamine is a chemical compound that may be used in various applications, but specific medical uses are not well defined in common practice.
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Sourcing - Kenya onlyRegistration & product details
Source: South African Health Products Regulatory Authority · fetched 2026-04-15 21:20:27 · updated 2026-09-16 04:00:43
About butylamine
Butylamine is a chemical compound that may be used in various applications, but specific medical uses are not well defined in common practice.
How it works
The exact way butylamine works is not clearly established in medical settings.
Who it's for
Butylamine does not have specific approved uses for patients.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About perindopril
Perindopril is a medication that helps lower blood pressure and protect heart health.
What it treats
- high blood pressure (hypertension)
- heart failure
- to reduce the risk of heart problems after a heart attack
How it works
It works by relaxing blood vessels, making it easier for the heart to pump blood.
Who it's for
It is for adults with high blood pressure or certain heart conditions.
Drug class
ACE inhibitors
Cautions
- • Be cautious if you are taking other medications that can lower blood pressure.
- • Avoid medications that can cause low blood pressure.
- • Be aware of drugs that may increase potassium levels in the blood.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: butylamine
BNF-referencedButylamine is an aliphatic amine with the molecular formula C4H11N. It is primarily used as a chemical intermediate in the production of pharmaceuticals, agrochemicals, and dyes. It exhibits properties that make it useful in organic synthesis and as a building block in the manufacture of various compounds.
Mechanism of action
Butylamine functions as a nucleophile due to the presence of the nitrogen atom, which can donate a pair of electrons. This property allows it to participate in various chemical reactions, including alkylation and acylation processes, facilitating the formation of more complex organic molecules.
Pharmacodynamics
As an organic amine, butylamine can influence biological systems by acting on specific receptors or enzymes, though its precise pharmacodynamic profile is less well-characterized compared to more commonly used pharmaceuticals. Its basic nature may lead to interactions with neurotransmitter systems, but detailed mechanisms in clinical contexts are not well established.
Pharmacokinetics
The pharmacokinetics of butylamine are not extensively documented in the literature. However, like other amines, it is expected to be absorbed through the gastrointestinal tract if ingested, distributed throughout body tissues, and metabolized in the liver. The elimination half-life and specific metabolic pathways require further investigation and are not clearly defined.
Pregnancy
There is limited information available on the use of butylamine during pregnancy. Caution is advised.
Breast-feeding
Limited data is available regarding the excretion of butylamine in human milk. Caution is recommended.
Storage
Store at room temperature, away from heat and direct sunlight. Keep container tightly closed.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: perindopril
BNF-referencedPerindopril is an angiotensin-converting enzyme (ACE) inhibitor used primarily for the treatment of hypertension and heart failure. As a prodrug, it is metabolized into its active form, perindoprilat, which exerts its therapeutic effects by blocking the conversion of angiotensin I to angiotensin II, a potent vasoconstrictor. This action leads to vasodilation, reduced blood pressure, and decreased workload on the heart.
Indications
- Hypertension
- Heart failure
- Prevention of cardiovascular events in patients with coronary artery disease
Dosage
Adults: The usual
Mechanism of action
Perindoprilat, the active metabolite of perindopril, binds to and inhibits the activity of the somatic isoform of angiotensin-converting enzyme (ACE), particularly the C-domain, which plays a crucial role in blood pressure regulation. By inhibiting ACE, perindoprilat decreases the levels of angiotensin II (ATII), thereby reducing blood pressure and promoting vasodilation. Additionally, the inhibition of ATII leads to increased plasma renin activity due to the loss of feedback inhibition.
Pharmacodynamics
Perindopril is a nonsulfhydryl prodrug that undergoes first-pass metabolism and systemic hydrolysis to produce perindoprilat. This active form lowers blood pressure by antagonizing the renin-angiotensin-aldosterone system (RAAS), which is involved in regulating blood pressure and fluid balance. By inhibiting the actions of ATII, perindoprilat reduces aldosterone secretion, leading to decreased sodium and water reabsorption in the kidneys. This results in increased urine output and a decrease in blood volume, further contributing to its antihypertensive effects.
Pharmacokinetics
After oral administration, perindopril is rapidly absorbed, with a bioavailability of approximately 62%. It undergoes extensive first-pass metabolism in the liver to form its active metabolite, perindoprilat, which has a half-life of about 17 hours. Perindoprilat is primarily excreted by the kidneys, and its pharmacokinetics may be altered in patients with renal impairment. The peak plasma concentration of perindoprilat is reached within 3 to 4 hours after administration.
Contra-indications
- History of hypersensitivity to perindopril or any other ACE inhibitor
- History of angioedema associated with previous ACE inhibitor therapy
- Hereditary or idiopathic angioedema
- Severe renal impairment (creatinine clearance less than 30 mL/min)
- Pregnancy
Adverse effects
- Cough
- Hyperkalemia
- Hypotension
- Dizziness
- Fatigue
- Renal impairment
- Angioedema
Interactions
- Potassium supplements or potassium-sparing diuretics may increase the risk of hyperkalemia
- Nonsteroidal anti-inflammatory drugs (NSAIDs) may reduce the antihypertensive effect of perindopril
- Lithium levels may increase when used concurrently with perindopril
- Other antihypertensive agents may have additive effects leading to hypotension
Precautions
- Monitor renal function before and during treatment
- Use with caution in patients with aortic stenosis or hypertrophic cardiomyopathy
- Consider monitoring potassium levels in at-risk populations
- Caution in patients with a history of angioedema
Pregnancy
Perindopril is contraindicated during pregnancy due to potential harm to the fetus, particularly in the second and third trimesters.
Breast-feeding
Caution is advised as perindopril is excreted in breast milk; consult a healthcare professional before use.
Storage
Store in a cool, dry place, away from direct sunlight. Keep out of reach of children.
Formulations
- Tablets: 2 mg, 4 mg, 8 mg
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: butylamine
PubChem CID 8007Molecular formula: C4H11N
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: perindopril
PubChem CID 107807Molecular formula: C19H32N2O5
Mechanism of action
There are two isoforms of ACE: the somatic isoform, which exists as a glycoprotein comprised of a single polypeptide chain of 1277; and the testicular isoform, which has a lower molecular mass and is thought to play a role in sperm maturation and binding of sperm to the oviduct epithelium. Somatic ACE has two functionally active domains, N and C, which arise from tandem gene duplication. Although the two domains have high sequence similarity, they play distinct physiological roles. The C-domain is predominantly involved in blood pressure regulation while the N-domain plays a role in hematopoietic stem cell differentiation and proliferation. ACE inhibitors bind to and inhibit the activity of both domains, but have much greater affinity for and inhibitory activity against the C-domain. Perindoprilat, the active metabolite of perindopril, competes with ATI for binding to ACE and inhibits and enzymatic proteolysis of ATI to ATII. Decreasing ATII levels in the body decreases blood pressure by inhibiting the pressor effects of ATII as described in the Pharmacology section above. Perindopril also causes an increase in plasma renin activity likely due to a loss of feedback inhibition mediated by ATII on the release of renin and/or stimulation of reflex mechanisms via baroreceptors.
Pharmacodynamics
Perindopril is a nonsulfhydryl prodrug that is metabolized via first pass effect (62%) and systemic hydrolysis (38%) to perindoprilat, its active metabolite, following oral administration. Perindoprilat lowers blood pressure by antagonizing the effect of the RAAS. The RAAS is a homeostatic mechanism for regulating hemodynamics, water and electrolyte balance. During sympathetic stimulation or when renal blood pressure or blood flow is reduced, renin is released from the granular cells of the juxtaglomerular apparatus in the kidneys. In the blood stream, renin cleaves circulating angiotensinogen to ATI, which is subsequently cleaved to ATII by ACE. ATII increases blood pressure using a number of mechanisms. First, it stimulates the secretion of aldosterone from the adrenal cortex. Aldosterone travels to the distal convoluted tubule (DCT) and collecting tubule of nephrons where it increases sodium and water reabsorption by increasing the number of sodium channels and sodium-potassium ATPases on cell membranes. Second, ATII stimulates the secretion of vasopressin (also known as antidiuretic hormone or ADH) from the posterior pituitary gland. ADH stimulates further water reabsorption from the kidneys via insertion of aquaporin-2 channels on the apical surface of cells of the DCT and collecting tubules. Third, ATII increases blood pressure through direct arterial vasoconstriction. Stimulation of the Type 1 ATII receptor on vascular smooth muscle cells leads to a cascade of events resulting in myocyte contraction and vasoconstriction. In addition to these major effects, ATII induces the thirst response via stimulation of hypothalamic neurons. ACE inhibitors inhibit the rapid conversion of ATI to ATII and antagonize RAAS-induced increases in blood pressure. ACE (also known as kininase II) is also involved in the enzymatic deactivation of bradykinin, a vasodilator. Inhibiting the deactivation of bradykinin increases bradykinin levels and may sustain the effects of perindoprilat by causing increased vasodilation and decreased blood pressure.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
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