Registered Zambia · ZAMRA

Ulgicid Oral Suspension (Pineapple Flavour)

Alginic Acid 200 mg,Dimethicone 125 mg,Dried Aluminium Hydroxide 250 mg,Magnesium Hydroxide 250 mg,Magnesium Trisilicate 250 mg

246/006/D2 Suspension for Oral Use 125 mg,200 mg,250 mg antiparasitic products, insecticides and repellents INN generic

What it does

Alginic is a substance that helps to relieve symptoms of heartburn and acid reflux by forming a protective barrier in the stomach.

Commonly used for: heartburn, acid reflux (gastroesophageal reflux disease)

Read more in plain English ↓

Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.

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Registration & product details

Registration no.
246/006/D2
Registration date
2025-06-26
Expiry date
2030-06-25
Status
Registered/Compliant
Active ingredient
Alginic Acid 200 mg,Dimethicone 125 mg,Dried Aluminium Hydroxide 250 mg,Magnesium Hydroxide 250 mg,Magnesium Trisilicate 250 mg
Strength
125 mg,200 mg,250 mg
Pack size
-
Therapeutic class
-
ATC class (WHO)
P03AX - Other ectoparasiticides, incl. scabicides
RxNorm RxCUI
324072
Manufacturer / MAH
Sai Mirra Innopharm
Applicant / LTR
PRISMA PHARMA FZE
Country of origin
India
Manufacturer location
288&299, Godrej Rd, Pattravakkam, Kannan Koil, Sidco Industrial Estate, Ambattur, Chennai, Tamil Nadu 600058, India

Source: Zambia Medicines Regulatory Authority · fetched 2026-03-12 00:07:58 · updated 2026-09-24 03:39:26

Disclaimer: This information is sourced from Zambia Medicines Regulatory Authority (Zambia). Always consult a qualified healthcare professional before using any medication.

About alginic

Alginic is a substance that helps to relieve symptoms of heartburn and acid reflux by forming a protective barrier in the stomach.

What it treats

  • heartburn
  • acid reflux (gastroesophageal reflux disease)

How it works

It works by forming a gel-like layer that floats on top of the stomach contents, helping to prevent acid from flowing back into the esophagus.

Who it's for

Alginic is suitable for adults and children experiencing heartburn or acid reflux.

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

About aluminium

Aluminium is a substance often used in various medical applications, particularly in certain types of medications.

What it treats

  • heartburn (dyspepsia)
  • stomach upset
  • acid indigestion

How it works

Aluminium works by neutralizing stomach acid, which helps to relieve discomfort from acid-related conditions.

Who it's for

This is suitable for adults and children who experience symptoms related to excess stomach acid.

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

About dimethicone

Dimethicone is a silicone-based compound often used to relieve discomfort from gas and bloating.

What it treats

  • gas (flatulence)
  • bloating
  • indigestion

How it works

Dimethicone works by decreasing the surface tension of gas bubbles in the stomach and intestines, making it easier for them to be eliminated.

Who it's for

It is suitable for adults and children experiencing gas-related discomfort.

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

About dried

Dried is a natural substance that is often used for various health benefits.

What it treats

  • general health support
  • herbal supplements

How it works

Dried works by providing nutrients and compounds that may support overall health and wellness.

Who it's for

This product is suitable for adults looking for natural health support.

Cautions

  • • Ensure you are not allergic to the specific type of dried being used.
  • • Consult a healthcare provider if you are pregnant, nursing, or have a medical condition.

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

About hydroxide

Hydroxide is a compound used to help neutralize stomach acid and relieve indigestion or heartburn.

What it treats

  • indigestion
  • heartburn

How it works

Hydroxide works by neutralizing the excess acid in the stomach, which helps to reduce discomfort.

Who it's for

Hydroxide is suitable for adults and children experiencing symptoms of excess stomach acid.

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

About trisilicate

Trisilicate is a medication used to relieve symptoms of heartburn and indigestion.

What it treats

  • heartburn
  • indigestion

How it works

Trisilicate works by neutralizing excess stomach acid, providing relief from discomfort.

Who it's for

This medication is for adults experiencing heartburn or indigestion.

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

Clinical monograph: alginic

Alginic acid is a naturally occurring polysaccharide derived from brown seaweed, primarily used as an antacid and as a protective agent in the gastrointestinal tract. It forms a viscous gel in the presence of gastric acid, which helps to neutralize stomach acid and provides a barrier to reflux. Alginic acid is commonly used in combination with other medications to manage gastroesophageal reflux disease (GERD) and related conditions.

Indications

  • Gastroesophageal reflux disease (GERD)
  • Heartburn
  • Esophagitis
  • Dyspepsia

Dosage

Children: Refer to BNF for Children for specific dosing guidelines.

Adults: Refer to BNF for specific dosing guidelines.

Mechanism of action

Alginic acid works by reacting with sodium bicarbonate in the presence of gastric acid to form sodium alginate, which creates a gel-like substance that floats on top of the gastric contents. This gel acts as a physical barrier to prevent acid reflux into the esophagus, thereby alleviating symptoms associated with GERD. It may also help protect the esophageal mucosa from damage caused by acid exposure.

Pharmacodynamics

The pharmacodynamics of alginic acid are primarily associated with its ability to form a viscous gel in acidic conditions. This gel not only helps to neutralize gastric acid but also provides a protective layer against reflux. The onset of action is relatively rapid, with effects typically occurring within minutes of ingestion, making it effective for immediate relief from symptoms of heartburn and acid reflux.

Pharmacokinetics

Alginic acid is not absorbed systemically; instead, it remains in the gastrointestinal tract where it exerts its local effects. The gel formed by alginic acid is primarily eliminated through the feces. Its pharmacokinetic profile indicates a low potential for drug interactions, as it does not significantly affect the absorption of other medications when taken as directed.

Adverse effects

  • Gastrointestinal disturbances (e.g., bloating, flatulence)
  • Allergic reactions (rare)

Precautions

  • Use with caution in patients with a history of gastrointestinal obstruction
  • Monitor for allergic reactions in sensitive individuals

Pregnancy

Alginic acid is generally considered safe during pregnancy, but it is advisable to consult a healthcare professional before use.

Breast-feeding

Alginic acid is likely safe during breastfeeding, but it is recommended to consult a healthcare professional.

Storage

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

Formulations

  • Oral suspension
  • Chewable tablets
  • Gastroesophageal reflux disease (GERD) formulations

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: aluminium

BNF-referenced

Aluminum, commonly used as an antacid, primarily functions to neutralize stomach acid and alleviate symptoms of dyspepsia, such as heartburn and indigestion. Its astringent properties allow it to constrict tissues, which can aid in the treatment of various gastrointestinal conditions. Aluminum salts, particularly aluminum hydroxide, are widely used in clinical practice.

Indications

  • Dyspepsia
  • Peptic ulcer disease
  • Gastroesophageal reflux disease (GERD)
  • Heartburn
  • Diarrhea
  • Mucosal irritations

Dosage

Children: Refer to the BNF for Children for appropriate dosing guidelines.

Adults: Refer to the BNF for specific dosing recommendations based on the condition being treated.

Mechanism of action

Aluminum acts as an astringent, causing local shrinkage or constriction of body tissues through osmotic flow of fluids away from the area of application. This mechanism assists in reducing mucous secretions and managing conditions such as peptic ulcers and diarrhea. Additionally, it can help in drying and hardening of tissues when applied topically.

Pharmacodynamics

Aluminum-based antacids work by neutralizing gastric acid, leading to an increase in gastric pH. This action helps to alleviate symptoms associated with excess gastric acid, such as heartburn and discomfort. The astringent properties of aluminum also contribute to its therapeutic effects in managing mucosal irritations and secretions.

Pharmacokinetics

Aluminum is absorbed minimally when taken orally, with a bioavailability of about 0.1 to 0.5%. The majority of aluminum is excreted renally, and its half-life can be prolonged in individuals with renal impairment. Long-term use may lead to accumulation and potential toxicity, particularly impacting bone and neurological health.

Interactions

  • aluminiumhydroxide+deferasirox: Severe (decreases exposure)
  • aluminiumhydroxide+enteralfeeds: Unknown (increases risk of blocked enteral or nasogastric tubes)
  • aluminiumhydroxide+roxadustat: Unknown (decreases exposure)

Pregnancy

Aluminum compounds are generally considered safe in pregnancy when used as directed. However, excessive exposure should be avoided.

Breast-feeding

Aluminum is excreted in breast milk; caution is advised when administered to nursing mothers.

Storage

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

Formulations

  • aluminium hydroxide suspension
  • aluminium hydroxide tablets

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: dimethicone

Dimethicone is a type of silicone polymer used primarily as an anti-foaming agent and emollient in various formulations. It is utilized in both pharmaceutical and cosmetic products to alleviate dry skin and provide a smooth texture. As a non-toxic compound, dimethicone is widely regarded for its ability to reduce surface tension, thereby preventing the formation of foam and enhancing the spreadability of topical products.

Indications

  • Dry skin
  • Skin irritation
  • Eczema
  • Dermatitis
  • Cosmetic applications as a moisturizer and thickening agent

Dosage

Children: Refer to specific product guidelines as dosing can vary based on formulation and intended use.

Adults: Refer to specific product guidelines as dosing can vary based on formulation and intended use.

Mechanism of action

Dimethicone works by forming a protective layer on the skin, which helps to seal in moisture and protect the skin from irritants. Its anti-foaming properties are due to its ability to reduce surface tension, allowing gas bubbles to coalesce and escape more easily, thus diminishing the formation of foam in solutions.

Pharmacodynamics

Dimethicone exhibits emollient properties, which means it can soften and soothe the skin. It acts by creating a barrier that prevents transepidermal water loss, thereby enhancing hydration. Its non-irritating nature makes it suitable for sensitive skin, and it does not clog pores, making it a preferred choice in many dermatological preparations.

Pharmacokinetics

Dimethicone is not absorbed systemically; it remains on the skin surface and does not penetrate into the deeper layers of the skin. This characteristic makes it effective as a topical agent. Because it is not metabolized or excreted by the body, its pharmacokinetic profile is primarily focused on its local effects rather than systemic absorption.

Adverse effects

  • Allergic reactions
  • Skin irritation
  • Gastrointestinal discomfort

Precautions

  • Use with caution in patients with a history of allergic reactions to silicone-based compounds
  • Monitor for any signs of adverse reactions during treatment

Pregnancy

Dimethicone is generally considered safe for use during pregnancy, as it is not absorbed systemically.

Breast-feeding

Dimethicone is considered safe for use during breastfeeding, as it is not absorbed and is unlikely to affect breastfed infants.

Storage

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

Formulations

  • Topical creams
  • Lotions
  • Ointments
  • Oral suspensions

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: dried

Dried refers to the process of removing moisture from substances, commonly applied to foods and herbs to preserve them. In the context of pharmacology, dried preparations, such as dried extracts or powders, are often used in herbal medicine as they concentrate the active constituents of the plant material, allowing for more potent effects.

Indications

  • Nutritional supplementation
  • Herbal therapy for various conditions
  • Preservation of medicinal properties of plants

Dosage

Children: Dosage for dried herbal preparations in children should be approached cautiously and is best determined by a healthcare professional. Refer to paediatric guidelines for specific dosing recommendations.

Adults: Dosage for dried herbal preparations varies widely depending on the specific herb and its intended use. Refer to specific guidelines or reputable sources for dosing information.

Mechanism of action

The mechanism of action for dried herbal preparations varies depending on the specific plant material involved. Generally, the active constituents in dried herbs can exert their effects through various pathways, such as modulating neurotransmitter systems, influencing metabolic pathways, and acting on specific receptors in the body. For instance, flavonoids, terpenes, and alkaloids found in certain dried herbs can exhibit anti-inflammatory, antioxidant, or antimicrobial properties.

Pharmacodynamics

The pharmacodynamics of dried drugs depend on their specific chemical constituents. These compounds can affect physiological functions, such as modulating inflammatory responses, enhancing immune function, or affecting neurotransmission. The effects can vary widely based on the type of herb, the method of drying, and the concentration of active ingredients.

Pharmacokinetics

The pharmacokinetics of dried herbal preparations can vary significantly based on the specific herb used. Generally, after ingestion, the active compounds are absorbed in the gastrointestinal tract, metabolized primarily by the liver, and then excreted through urine or feces. The bioavailability of these compounds can be influenced by factors such as the form of the preparation (e.g., powder, extract), the presence of other food substances, and individual patient characteristics.

Pregnancy

Safety during pregnancy has not been established. Consult a healthcare provider before use.

Breast-feeding

Consult a healthcare provider before use during breastfeeding.

Storage

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

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: hydroxide

BNF-referenced

Hydroxide, represented by the molecular formula HO-, is an anion commonly found in various chemical and biological systems. It plays a crucial role in acid-base chemistry and is a fundamental component in many biochemical pathways. Hydroxide ions are involved in maintaining pH balance in biological systems and participate in various metabolic processes.

Dosage

Children: Refer to specific guidelines for pediatric dosing; consult the BNF for Children for accurate dosage information.

Adults: Refer to specific guidelines for use; dosage may vary based on the context of use.

Mechanism of action

Hydroxide ions act primarily as bases, neutralizing acids to form water and salts. They participate in various biochemical pathways, including selenium metabolism and the degradation of reactive oxygen species. Hydroxide can influence enzyme activity and stability by altering the pH of the environment, thereby affecting metabolic reactions.

Pharmacodynamics

Hydroxide ions can impact biological processes by changing the local pH, which influences enzyme activity, ion transport, and the solubility of other compounds. Their ability to neutralize acids can help regulate physiological pH, contributing to homeostasis in living organisms.

Pharmacokinetics

As an inorganic ion, hydroxide does not undergo traditional pharmacokinetic processes like absorption, distribution, metabolism, or excretion. Instead, it is rapidly equilibrated in biological fluids and participates in acid-base reactions, having immediate effects on the local environment.

Pregnancy

There is limited information regarding the use of hydroxide during pregnancy. Consult a healthcare professional for advice.

Breast-feeding

Limited data is available on the excretion of hydroxide 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.

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: trisilicate

BNF-referenced

Trisilicate, with the molecular formula H4O8Si3, is a silicate compound primarily used as an antacid. It acts by neutralizing stomach acid, thereby providing relief from symptoms associated with hyperacidity, such as heartburn and indigestion. Trisilicate is commonly found in formulations designed to manage gastric discomfort.

Indications

  • Gastric hyperacidity
  • Heartburn
  • Indigestion
  • Gastritis
  • Peptic ulcers

Dosage

Children: Refer to the BNF for Children for appropriate dosing information.

Adults: Refer to specific product guidelines for dosing, as it may vary based on formulation.

Mechanism of action

Trisilicate works by reacting with hydrochloric acid in the stomach to form neutral compounds, which reduces acidity. This action helps to alleviate symptoms of acid-related disorders by increasing the pH level in the stomach.

Pharmacodynamics

Trisilicate exhibits its therapeutic effects primarily through acid neutralization. By decreasing the acidity of gastric contents, it provides symptomatic relief from conditions such as gastritis, gastroesophageal reflux disease (GERD), and peptic ulcers. The onset of action is typically rapid, with effects lasting for a few hours.

Pharmacokinetics

The pharmacokinetics of trisilicate involve minimal systemic absorption since the drug primarily acts locally within the gastrointestinal tract. The compound is excreted unchanged in the feces. Its onset of action is usually within minutes after administration, with a duration of effect that can last several hours, depending on gastric emptying and the formulation used.

Pregnancy

Trisilicate is not recommended for use during pregnancy unless the potential benefit justifies the potential risk to the fetus.

Breast-feeding

Trisilicate may be used during breastfeeding, but it is advisable to consult a healthcare professional before use.

Storage

Store in a cool, dry place, protected from light.

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: aluminium

PubChem CID 5359268

Molecular formula: Al

Mechanism of action

Aluminum Acetate is an astringent. An astrignent is a chemical that tends to shrink or constrict body tissues, usually locally after topical medicinal application. The shrinkage or constriction is through osmotic flow of water (or other fluids) away from the area where the astringent was applied. Astringent medicines cause shrinkage of mucous membranes or exposed tissues and are often used internally to check discharge of blood serum or mucous secretions. This can happen with a sore throat, hemorrhages, diarrhea, or with peptic ulcers. Externally applied astringents, which cause mild coagulation of skin proteins, dry, harden, and protect the skin. Acne sufferers are often advised to use astringents if they have oily skin. Astringents also help heal stretch marks and other scars. Mild astringent solutions are used in the relief of such minor skin irritations as those resulting from superficial cuts, allergies, insect bites, or fungal infections such as athlete's foot. Excessive dietary aluminum has been proposed to be a factor contributing to several neurological disorders in humans. Six 8-week-old female Swiss Webster mice were fed for 10 wk purified diets containing 100 (control), 500 or 1000 ug aluminum/g diet. Brain and liver lipid peroxidation was determined by evaluating the production of 2-thiobarbituric acid reactive substances in brain and liver homogenates in the presence or absence of 50 uM ferrous iron. 2-Thiobarbituric acid reactive substances production in the absence of iron in brain homogenates from mice fed the 1000 ug/g diet was higher (30%) than that in the 100 ug/g control group (3.1 vs 2.4 nmol 2-thiobarbituric acid reactive substances/mg protein). The addition of ferrous iron increased 2-thiobarbituric acid reactive substances production in brain homogenates from all 3 dietary groups. The iron induced 2-thiobarbituric acid reactive substances production was 26% higher in the 1000 ug/g brain homogenates than in the 100 ug/g group (4.9 vs 3.9 nmol 2-thiobarbituric acid reactive substances/mg protein). Brain 2-thiobarbituric acid reactive substances production in the presence and absence of iron was similar between the 100 and 500 ug/g aluminum groups. 2-Thiobarbituric acid reactive substances production in liver homogenates measured either with or without iron was similar for the 3 groups. These results show that, in mice, dietary aluminum intoxication leads to increased brain 2-thiobarbituric acid reactive substance production, suggesting that enhanced lipid peroxidation may be one possible mechanism underlying the neurological damage associated with increased tissue aluminum. Evidence is presented indicating that dementias are associated with a relative insufficiency of magnesium in the brain. Such insufficiency may be attributable to low intake or retention of magnesium; high intake of a neurotoxic metal, such as aluminum, which inhibits activity of magnesium requiring enzymes; or impaired transport of magnesium and/or enhanced transport of the neurotoxic metal into brain tissue. It is proposed that Alzheimer's disease involves a defective transport process, characterized by both an abnormally high incorporation of aluminum and an abnormally low incorporation that an altered serum protein contributes to the progression of Alzheimer's disease by having a greater affinity for aluminum than for magnesium, in contrast to the normal protein, which binds magnesium better than aluminum. The altered protein crosses the blood-brain barrier more efficiently than the normal protein and competes with the normal protein in binding to brain neurons. Binding of the altered protein to the target neurons would both facilitate aluminum uptake and impede magnesium uptake. Evidence suggests that albumin is the serum protein that is altered. Aluminum is established as a neurotoxin, although the basis for its toxicity is unknown. It recently has been shown to alter the function of the blood-brain barrier, which regulates ex

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

Molecular reference: trisilicate

PubChem CID 5311267

Molecular formula: H4O8Si3

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

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