Registered Kenya · PPB

CYPON SYRUP

CYPROHEPTADINE HYDROCHLORIDE USP TRICHOLINE CITRATE SORBITOL SOLUTION 70%(NON CRYSTALLINE ) BP

What it does

Cyproheptadine is a sedating antihistamine used to relieve allergy symptoms and other conditions.

Commonly used for: allergic reactions, hay fever (allergic rhinitis), sneezing, runny nose …

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Registration & product details

Registration no.
17138
Registration date
-
Expiry date
-
Status
Registered
Active ingredient
CYPROHEPTADINE HYDROCHLORIDE USP TRICHOLINE CITRATE SORBITOL SOLUTION 70%(NON CRYSTALLINE ) BP
Strength
-
Pack size
-
Therapeutic class
-
ATC class (WHO)
R06AX - Other antihistamines for systemic use
Drug group
RESPIRATORY SYSTEM
RxNorm RxCUI
3013
Manufacturer / MAH
Psm Pharmaceuticals
Applicant / LTR
-
Country of origin
FOREIGN
Manufacturer location
OFFICE SUITES, Wambugu Rd, Nairobi P.O. 1422 -00606, Nairobi, Kenya

Source: Pharmacy and Poisons Board · fetched 2026-01-28 21:15:08 · updated 2026-07-20 08:58:19

Drug Interactions

2
Check interactions

Pharmacodynamic Warnings

Cyproheptadine appears in TABLE 10: Drugs with antimuscarinic effects

Cyproheptadine appears in TABLE 11: Drugs with CNS depressant effects

Severe (1)

Metyrapone - decreases effects

Cyproheptadine decreases the effects of metyrapone. Avoid.

Severe Study

Unknown (1)

Fenfluramine - decreases efficacy

Cyproheptadinemightdecreasetheefficacyoffenfluramine. rTheoretical

Unknown Theoretical

Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact

Disclaimer: This information is sourced from Pharmacy and Poisons Board (Kenya). Always consult a qualified healthcare professional before using any medication.

About cyproheptadine

Cyproheptadine is a sedating antihistamine used to relieve allergy symptoms and other conditions.

What it treats

  • allergic reactions
  • hay fever (allergic rhinitis)
  • sneezing
  • runny nose
  • itchy eyes
  • appetite stimulation

How it works

It works by blocking histamine, a substance in the body that causes allergic symptoms.

Who it's for

It is suitable for adults and children who need relief from allergies or increased appetite.

Drug class

Antihistamines, sedating

Cautions

  • • Avoid using with medications that have similar effects on the body, like those that cause dry mouth or blurred vision.
  • • Be cautious if you're taking medications that make you sleepy or affect your central nervous system.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About sorbitol

Sorbitol is a type of sugar alcohol used to help relieve constipation by softening the stool.

What it treats

  • constipation
  • bowel preparation

How it works

Sorbitol works by drawing water into the intestines, which helps to soften the stool and make it easier to pass.

Who it's for

Sorbitol is suitable for adults and children who need help with constipation.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About tricholine

Tricholine is a substance that helps support liver function and may aid in breaking down fats in the body.

What it treats

  • liver disease
  • fatty liver (steatosis)

How it works

Tricholine helps the liver process fats and supports overall liver health.

Who it's for

It is suitable for people dealing with liver-related issues or those needing help with fat metabolism.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

Clinical monograph: Cyproheptadinehydrochloride

BNF-referenced

Cyproheptadine hydrochloride is a first-generation antihistamine with anticholinergic and sedative properties. It is primarily used for the symptomatic relief of allergic conditions, including hay fever and urticaria, and is known to stimulate appetite, making it useful in certain clinical contexts such as weight gain in undernourished patients.

Indications

  • Allergic conditions
  • Hay fever
  • Urticaria
  • Pruritus
  • Appetite stimulation

Dosage

Children: For children aged 6 months to 5 years, the dose is 5-15 mg daily in divided doses, adjusted according to weight, with a maximum of 2 mg/kg per day. For children aged 6-17 years weighing up to 40 kg, the initial dose is 15-25 mg daily in divided doses, adjusted as necessary to a maximum of 2 mg/kg per day. For those weighing 40 kg and above, the initial dose is 15-25 mg daily in divided doses, increased if necessary to 50-100 mg daily.

Adults: Initially, 25 mg daily, taken at night; may be increased if necessary to 25 mg 3-4 times a day. Maximum dose is 32 mg per day.

Mechanism of action

Cyproheptadine acts as a competitive antagonist at histamine H1 receptors, thereby inhibiting the action of histamine, which is responsible for allergic symptoms. Additionally, it may also block serotonin receptors, contributing to its appetite-stimulating effects.

Pharmacodynamics

The drug exhibits sedative effects by crossing the blood-brain barrier, leading to central nervous system depression. It can also produce anticholinergic effects, such as dry mouth and urinary retention, due to its action on muscarinic receptors. The sedative properties can impair the performance of skilled tasks and may be potentiated by alcohol consumption.

Pharmacokinetics

Cyproheptadine is well-absorbed from the gastrointestinal tract and undergoes hepatic metabolism. Its elimination half-life is approximately 8-12 hours, and it is excreted primarily in urine. The onset of action is typically within 1-2 hours, with effects lasting for several hours.

Contra-indications

  • Acute porphyrias
  • Prolonged QT-interval
  • Risk factors for QT prolongation

Adverse effects

  • Drowsiness
  • Dizziness
  • Dry mouth
  • Nausea
  • Constipation
  • Headache
  • Palpitations
  • Tachycardia
  • Fatigue
  • Irritability
  • Paradoxical excitability
  • Tremor

Interactions

  • Antihistamines
  • Sedating agents
  • Alcohol

Precautions

  • Use with caution in the elderly
  • Patients with epilepsy
  • Prostatic hypertrophy
  • Pyloroduodenal obstruction
  • Susceptibility to angle-closure glaucoma
  • Urinary retention

Pregnancy

Most manufacturers of antihistamines advise avoiding their use during pregnancy; however, there is no evidence of teratogenicity. Use in the latter part of the third trimester may cause adverse effects in neonates.

Breast-feeding

Most antihistamines are present in breast milk in varying amounts; although not known to be harmful, most manufacturers advise avoiding their use in mothers who are breastfeeding.

Storage

Store in a cool, dry place away from direct sunlight. Keep out of reach of children.

Formulations

  • Oral suspension
  • Tablets (4 mg)
BNF 85 (British National Formulary) p.330 PubChem / pathway

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: cyproheptadine

BNF-referenced

Cyproheptadine is a sedating antihistamine that primarily acts as a competitive antagonist at H1 histamine receptors and serotonin receptors. It is used clinically for its antihistaminic and antiserotonin effects, contributing to its ability to stimulate appetite and manage allergic reactions. Additionally, cyproheptadine exhibits weak anticholinergic properties and moderate central depressant effects.

Indications

  • Allergic rhinitis
  • Allergic conjunctivitis
  • Urticaria
  • Angioedema
  • Anaphylaxis (as adjunct therapy)
  • Appetite stimulation in certain conditions

Dosage

Children: Refer to BNF for Children for appropriate pediatric dosing, as it varies by age and condition. Generally, doses may start at 0.25 mg/kg for younger children, but specific guidelines should be

Adults: The usual adult dose for allergic conditions is 4 mg three times daily, which may be increased to a maximum of 12 mg per day as needed. For appetite stimulation, the starting dose is often 4 mg taken once or twice daily.

Mechanism of action

Cyproheptadine exerts its effects by competing with free histamine and serotonin for binding at their respective receptors. Its action as an H1 blocker is complemented by its antagonism of serotonin at 5-HT2A receptors, particularly influencing the appetite center in the hypothalamus. This dual action accounts for its appetite-stimulating properties and mitigates several pharmacodynamic effects of serotonin.

Pharmacodynamics

Cyproheptadine antagonizes several effects of serotonin and histamine, including bronchoconstriction and vasodepression. Its efficacy in combatting histamine-mediated effects has been established, although the details regarding its role in preventing anaphylactic shock remain unclear, likely linked to its anti-serotonergic activity. The drug's sedative properties arise from its central nervous system effects.

Pharmacokinetics

Cyproheptadine is well-absorbed after oral administration. It is metabolized in the liver, with a variable half-life and is primarily excreted in urine. The onset of action typically occurs within one to two hours, and the duration of action can last up to 12 hours. The pharmacokinetic profile may be influenced by individual metabolic variations.

Adverse effects

  • Drowsiness
  • Dizziness
  • Dry mouth
  • Constipation
  • Blurred vision
  • Increased appetite

Interactions

  • cyproheptadine+metyrapone: Severe (decreases effects)
  • cyproheptadine+fenfluramine: Unknown (decreases efficacy)

Precautions

  • Caution in patients with glaucoma
  • Caution in patients with prostate hypertrophy
  • Use with caution in elderly patients due to increased sensitivity

Pregnancy

Cyproheptadine should only be used during pregnancy if the potential benefit justifies the potential risk to the fetus. Limited data are available on its safety.

Breast-feeding

Cyproheptadine is excreted in breast milk. Caution is advised when administered to breastfeeding mothers.

Storage

Store at room temperature, away from moisture and heat. Keep out of reach of children.

Formulations

  • Tablets
  • Syrup

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: sorbitol

BNF-referenced

Sorbitol is a sugar alcohol used primarily as a laxative due to its ability to draw water into the intestines, promoting bowel movements. It is also utilized in various food and pharmaceutical applications as a sweetener and humectant. Sorbitol is naturally found in certain fruits and can be synthesized from glucose. In addition to its laxative properties, sorbitol has been studied for its role in apoptosis in cancer cells and its involvement in metabolic pathways related to glucose.

Indications

  • Constipation
  • Diagnostic aid in colonoscopy preparation
  • Management of hyperosmolality in various conditions

Dosage

Children: For children, the dosage should be determined based on age and condition, and it is advised to refer to the BNF for Children for specific dosing guidelines.

Adults: The typical dose for adults is 30 to 150 mL of sorbitol solution (70%) taken orally, as needed, usually before bedtime.

Mechanism of action

Sorbitol exerts its laxative effect by drawing water into the large intestine, thereby stimulating bowel movements. It acts as a hygroscopic agent, pulling water from tissues into the feces, which reflexively stimulates evacuation. In metabolic pathways, sorbitol is produced from glucose via aldose reductase and is converted to fructose by sorbitol dehydrogenase, with implications in diabetic complications such as retinopathy.

Pharmacodynamics

Sorbitol's laxative effect results from its osmotic properties, which increase the water content of the stool and soften it, facilitating easier passage. Additionally, sorbitol can induce apoptosis in certain cancer cell lines, indicating potential therapeutic implications beyond its laxative use. The modulation of intracellular signaling pathways through the regulation of proteins such as Bax and Bcl-2 suggests a complex role in cellular health and disease.

Pharmacokinetics

Sorbitol is poorly absorbed in the gastrointestinal tract, which contributes to its efficacy as a laxative. It is metabolized in the liver, primarily through the polyol pathway. The absorption and distribution of sorbitol are affected by its osmotic properties, leading to increased intestinal water retention. Its elimination is primarily via renal excretion, with minimal systemic absorption, thus reducing the risk of systemic side effects.

Adverse effects

  • Diarrhea
  • Abdominal cramps
  • Nausea
  • Vomiting
  • Electrolyte imbalances

Precautions

  • Use with caution in patients with renal impairment
  • May exacerbate gastrointestinal conditions

Pregnancy

Sorbitol is generally considered safe during pregnancy, but should be used under medical supervision.

Breast-feeding

Sorbitol is excreted in breast milk in small amounts; consult a healthcare provider before use.

Storage

Store in a cool, dry place, away from direct sunlight.

Formulations

  • Oral solution
  • Syrup

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: tricholine

Tricholine is a choline salt, often used as a dietary supplement and is believed to play a role in various metabolic processes. It is a precursor to acetylcholine, a neurotransmitter that is critical for many bodily functions, including muscle movement and memory. Tricholine is sometimes utilized in the management of conditions related to choline deficiency and has been studied for its potential cognitive benefits.

Indications

  • Choline deficiency
  • Cognitive enhancement
  • Neuromuscular disorders
  • Lipid metabolism disorders

Dosage

Children: Refer to specific guidelines or consult a healthcare provider for appropriate dosing.

Adults: Refer to specific guidelines or consult a healthcare provider for appropriate dosing.

Mechanism of action

Tricholine acts primarily as a source of choline, which is necessary for the synthesis of phosphatidylcholine, a major component of cell membranes. It also serves as a precursor for the neurotransmitter acetylcholine. By increasing the availability of choline, tricholine may enhance cholinergic signaling, which can influence various physiological functions, including cognitive processing and muscle contraction.

Pharmacodynamics

Tricholine influences several physiological pathways, mainly related to neurotransmission and lipid metabolism. By enhancing choline availability, it supports the synthesis of acetylcholine, which is involved in neuromuscular transmission and cognitive functions. Additionally, it may contribute to the maintenance of cell membrane integrity and function due to its role in phospholipid synthesis.

Pharmacokinetics

Following oral administration, tricholine is absorbed in the gastrointestinal tract, where it is subsequently metabolized to choline. The bioavailability of choline can be affected by dietary factors and the presence of other nutrients. Choline is distributed widely throughout the body, crossing the blood-brain barrier to participate in central nervous system functions. Its elimination occurs primarily via metabolic pathways, with excretion through urine.

Adverse effects

  • Gastrointestinal disturbances
  • Nausea
  • Diarrhea
  • Allergic reactions

Precautions

  • Use with caution in patients with gastrointestinal disorders
  • Monitor for allergic reactions in sensitive individuals

Pregnancy

The safety of tricholine during pregnancy has not been established. Use only if clearly needed.

Breast-feeding

Limited information is available on the excretion of tricholine in human milk. Exercise caution and consult a healthcare provider.

Storage

Store in a cool, dry place away from direct sunlight. Keep out of reach of children.

Formulations

  • Capsules
  • Tablets
  • Powder for oral solution

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: cyproheptadine

PubChem CID 2913

Molecular formula: C21H21N

Mechanism of action

Cyproheptadine appears to exert its antihistamine and antiserotonin effects by competing with free histamine and serotonin for binding at their respective receptors. Antagonism of serotonin on the appetite center of the hypothalamus may account for cyproheptadine's ability to stimulate the appetite. CYPROHEPTADINE...IS A SEROTONIN & HISTAMINE ANTAGONIST... ... It is an effective H1 blocker. Cyproheptadine also has prominent 5-H blocking activity on smooth muscle by virtue of its binding to 5-HT2A receptors. ... It has weak anticholinergic activity and possess mild central depressant properties.

Pharmacodynamics

Cyproheptadine has been observed to antagonize several pharmacodynamic effects of serotonin in laboratory animals, including bronchoconstriction and vasodepression, and has demonstrated similar efficacy in antagonizing histamine-mediated effects. The reason for its efficacy in preventing anaphylactic shock has not been elucidated, but appears to be related to its anti-serotonergic effects.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: sorbitol

PubChem CID 5780

Molecular formula: C6H14O6

Mechanism of action

Sorbitol exerts its laxative effect by drawing water into the large intestine, thereby stimulating bowel movements. ... Sorbitol exerts hygroscopic and/or local irritant action, drawing water from tissues into feces and reflexly stimulating evacuation. The polyol pathway consists of two enzymes aldose reductase (AR) and sorbitol dehydrogenase (SDH); the former is the first enzyme in the polyol pathway, that catalyzes the reduction of glucose to sorbitol, the latter is the second one, that converts sorbitol to fructose using by NAD(+) as a cofactor. ... SDH activity, the second step in the polyol pathway, might make a greater contribution to the etiology of diabetic retinopathy than does the first step involving AR. /This paper proposes/ a novel hypothesis that polymorphisms of SDH gene may be correlated with SDH gene expression levels in diabetic retinas, thus being a valuable genetic marker for diabetic retinopathy. It has been reported that sorbitol induces apoptosis in several cancer cell lines. ... In /this/ study, the intracellular signaling pathways of sorbitol-induced apoptosis in human K562 cells were investigated using both morphological analysis and DNA fragmentation technique. In this study, we demonstrated that sorbitol-induced apoptosis in human K562 cells is a concentration- and time-dependent manner. This sorbitol-induced apoptosis in human K562 cells was also accompanied by the up-regulation of Bax, and down-regulation of p-Bcl-2, but no effect on the levels of Bcl-X(L). Moreover, the sorbitol treatment resulted in a significant reduction of mitochondria membrane potential, increase in the release of mitochondrial cytochrome c (cyt c), and activation of caspase 3. Furthermore, treatment with caspase 3 inhibitor (z-DEVD-fmk) was capable of preventing the sorbitol-induced caspase 3 activity and cell death. These results clearly demonstrate that the induction of apoptosis by sorbitol involves multiple cellular/molecular pathways and strongly suggest that pro- and anti-apoptotic Bcl-2 family proteins, mitochondrial membrane potential, mitochondrial cyt c, and caspase 3, they all participate in sorbitol-induced apoptotic process in human K562 cells. Chronic diabetic complications, in particular, nephropathy, peripheral and autonomic neuropathy, "diabetic foot," retinopathy, and cardiovascular disease, remain the major cause of morbidity and mortality in patients with diabetes mellitus. Growing evidence indicates that both increased activity of the sorbitol pathway of glucose metabolism and enhanced oxidative stress are the leading factors in the pathogenesis of diabetic complications. The relation between the two mechanisms remains the area of controversy. One group has reported that increased sorbitol pathway activity has a protective rather than detrimental role in complication-prone tissues because the pathway detoxifies toxic lipid peroxidation products. Others put forward a so-called "unifying hypothesis" suggesting that activation of several major pathways implicated in diabetic complications (eg, sorbitol pathway) occurs due to increased production of superoxide anion radicals in mitochondria and resulting poly(ADP-ribose) polymerase activation. This review (a) presents findings supporting a key role for the sorbitol pathway in oxidative stress and oxidative stress-initiated downstream mechanisms of diabetic complications, and (b) summarizes experimental evidence against a detoxifying role of the sorbitol pathway, as well as the "unifying concept."

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

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