Ipradol

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Ipradol

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Method of action: Bronchodilator, Tocolytic

Medically reviewed

Marina Burgos

Last updated on 22/12/2025

This page provides general, reference-level information compiled from official medical sources. It is not a substitute for professional medical advice, diagnosis, or treatment. For decisions about your health, please consult a qualified healthcare professional.

Overview of Ipradol

What is Ipradol? (Hexoprenaline Overview)

Property Description
Active ingredient Hexoprenaline (sulfate)
Pharmaceutical Forms Tablet, Solution for Injection, Syrup, Nebulization Solution
Pharmacological Class Selective beta2-Adrenergic Agonist
General Purpose Smooth muscle relaxation (Bronchodilation and Tocolysis)
Origin Synthetic small molecule drug

What Type of Drug is Ipradol (Hexoprenaline)?

Ipradol is a synthetic prescription medication defined by its active ingredient, Hexoprenaline, which is chemically a derivative of catecholamine and belongs to the high-level class of a selective beta-2 (beta2) adrenoreceptor agonist. This classification indicates that the compound functions as a sympathomimetic agent that specifically targets and activates beta2 receptors in the body. The fundamental action of Ipradol is to promote the relaxation of smooth muscle fibers, a mechanism that is clinically recognized across pharmacological studies. This mechanism supports the use of the medicine for promoting muscle relaxation in the areas it targets. The WHO Anatomical Therapeutic Chemical (ATC) system recognizes Hexoprenaline under codes for both systemic and inhaled adrenergics (R03AC06, R03CC05), reflecting its utility across different administration routes.


Composition and General Purpose of Hexoprenaline

The medication is supplied as a single-entity product, containing Hexoprenaline (or its salt, Hexoprenaline sulfate) as the sole active substance. It is available in diverse dosage forms, including the tablet for oral administration, a solution for injection for acute needs, a syrup, and a nebulization solution. These varied forms facilitate its use in different patient groups, such as its application in obstetrics, where the intravenous solution is typically employed to achieve rapid systemic action. The core purpose of Ipradol is to achieve therapeutic smooth muscle relaxation. This effect results in two primary clinical benefits: bronchodilation, which widens and opens constricted airways, and uterine smooth muscle relaxation, which suppresses excessive or premature uterine contractions. Hexoprenaline is primarily used as both a bronchodilator and a tocolytic agent. This confirms that the drug is designed to ease breathing difficulties and reduce untimely uterine activity. Due to these distinct, targeted actions, the substance is functionally defined as both a bronchodilator and a tocolytic agent.

Regulatory References

  1. Hexoprenaline on DailyMed

What side effects are possible with Ipradol?

Possible Side Effects and Safety Information for Ipradol

Ipradol, which contains the active substance Hexoprenaline, is associated with a safety profile typical of beta-2 adrenergic agonists. The reported side effects are categorized by frequency and system-organ class based on official regulatory documentation.

Adverse Reaction Scope

Commonly Reported Adverse Reactions:

  • Nervous System: Tremors (shaking), headache, and feelings of nervousness.
  • Cardiovascular: Palpitations (awareness of heart rhythm).
  • These common effects are generally mild and transient.

Serious and Clinically Significant Adverse Reactions:

More serious, though less frequent, adverse effects may involve the cardiovascular and metabolic systems:

  • Tachycardia: A rapid heart rate, which requires careful monitoring.
  • Hypokalemia: A potentially significant drop in serum potassium levels, necessitating electrolyte monitoring.
  • Hyperglycemia: Elevated blood sugar levels.

Safety-Related Restrictions and Cautions

Contraindications: Use of Ipradol is typically restricted for individuals with known hypersensitivity to the drug or its components. It is also generally contraindicated in patients with pre-existing severe cardiovascular conditions, such as severe coronary artery disease, certain cardiac arrhythmias, or uncontrolled hypertension, due to the risk of exacerbating these conditions.

Population-Specific Considerations: Patients with underlying cardiovascular disease should be closely monitored during treatment. The risk of hypokalemia is a noted safety concern, which may be potentiated by concurrent use of certain diuretics, requiring careful electrolyte level management.

Connection to the Overall Safety Profile

The official safety information structures the understanding of risks by clearly defining the expected, common side effects—primarily nervous system and cardiovascular effects—as distinct from the rarer, but more clinically significant, adverse reactions such as severe tachycardia and metabolic changes like hypokalemia. The formal restrictions emphasize that Ipradol's use requires caution in patients with pre-existing cardiovascular compromise, thereby framing its safety within controlled and monitored clinical conditions.

Overdose and Emergency Response

Overdose and when to seek help

The official regulatory profile for Ipradol (Hexoprenaline) overdose is characterized by manifestations of adrenergic over-stimulation, requiring immediate medical attention.

Documented Overdose Manifestations

Physiological System Signs and Symptoms
Cardiovascular Rapid heartbeat (tachycardia), chest pain, and potential progression to severe arrhythmias or shock
Neurological Tremor, nervousness, convulsions (seizures), and potential progression to coma
Metabolic Documented changes in blood chemistry, including hypokalemia (low potassium) and hyperglycemia (high blood sugar)

Required Emergency Actions

When an overdose is suspected, immediate medical attention is mandated by regulatory guidance. Individuals must seek medical help right away by contacting emergency services or a national Poison Control Center.

Overdose is classified as a medical emergency due to the potential for life-threatening outcomes, including respiratory arrest and severe cardiac disturbances.

Management is primarily symptomatic and supportive, as no specific antidote is listed in official documents. Required procedures include continuous monitoring of vital signs, ECG, and blood electrolyte levels in a clinical setting, along with measures such as the administration of activated charcoal and IV fluids as needed.

Therapeutic Uses of Ipradol

Quick Facts on Ipradol Uses

  • Respiratory Management: Helps to ease breathing in individuals with conditions such as asthma and Chronic Obstructive Pulmonary Disease (COPD).
  • Obstetric Support: Utilized to assist in the management of preterm labor by supporting uterine relaxation.

Ipradol is a therapeutic agent used in clinical settings to address certain respiratory and obstetric needs. In the context of respiratory health, the medication may provide support for individuals experiencing bronchospasm, a narrowing of the airways associated with conditions like asthma and COPD. Its use can help to ease breathing.

In obstetrics, Ipradol (also known as hexoprenaline) is employed as a tocolytic agent. This means it is used to assist in managing premature uterine contractions, which may help delay preterm labor in specific circumstances. This application is designed to offer a temporary measure when clinical necessity arises. The use and acceptance of this compound vary by region; while it is not available in all jurisdictions, it is utilized in various clinical settings globally. The ultimate decision for use remains with the healthcare provider, who will evaluate the potential benefit for the specific patient's situation. Ipradol is considered an option in established therapeutic regimens for these conditions.

Regulatory References

  1. NIH MedlinePlus guidance

Eligibility and Restrictions for Use

Who Can and Cannot Use Ipradol? (Official Eligibility)

Ipradol (Hexoprenaline) eligibility is strictly defined by regulatory documents based on the patient’s existing health status. The standard eligible population for non-obstetric use are adults.

Populations for Whom Use is Contraindicated

Use is prohibited for patients with a known Hypersensitivity to the medicine. The medicine is also absolutely contraindicated in various comorbidities, including Hyperthyroidism, Uncontrolled Hypertension, and Angle-closure glaucoma. Specific cardiovascular diseases such as Ischemic heart disease, Aortic stenosis, Myocarditis, and Cardiac arrhythmias also constitute absolute non-eligibility. Furthermore, the medicine is contraindicated during the first trimester of pregnancy and throughout lactation (breastfeeding).

Eligibility-Related Restrictions

For tocolysis, use is restricted to the parenteral route, for a maximum of 48 hours, and only between 22 and 37 weeks of gestation. Tocolytic use is prohibited when the prolongation of pregnancy is hazardous, or when using oral or suppository formulations. Use requires caution in patients with Gestational Diabetes.

What should I know about interactions with other medicines?

The official regulatory documents define the interaction profile of Ipradol (Hexoprenaline) by listing combinations that are formally prohibited and others that pose a specific risk of pharmacodynamic potentiation.

Co-administration with Monoamine oxidase inhibitors (MAOIs), Tricyclic Antidepressants (TCAs), Ergot alkaloids, and Dihydrotachysterol is strictly contraindicated. This restriction is based on the documented potential for enhanced sympathomimetic action and increased cardiovascular risk.

Documented Interaction Classifications

  • Antagonistic Effect: Beta-blockers produce an antagonistic effect, which is documented to reduce or neutralize the therapeutic action of Hexoprenaline.
  • Cardiovascular Risk: Other adrenergic agonists and General Anaesthetics (such as Halothane) may increase the risk of severe cardiovascular side effects, including cardiac arrhythmia.
  • Electrolyte Risk: The co-administration of potassium-depleting Diuretics or Corticosteroids increases the documented risk of hypokalemia (low potassium levels).
  • Substance Interaction: Methylxanthines (a class including Caffeine) are noted to increase the action of Ipradol and further contribute to the risk of hypokalemia.

No mandatory dose separation rules or population-specific interaction considerations are explicitly stated in the official regulatory summaries.

Mechanism of Action

Ipradol’s core mechanism centers on activating the G-protein/cAMP signaling pathway to induce smooth muscle relaxation in target tissues. The drug's action is defined by a cascade that moves from receptor binding to a core cellular consequence.


Selective beta2 Receptor Agonism

Hexoprenaline initiates its action by selectively targeting and activating beta2-adrenergic receptors ( ADRB2) on the surface of smooth muscle cells, acting as a sympathomimetic to engage an overactive physiological process. This primary interaction modulates systems regulated by the autonomic nervous output, resulting in a shift of muscle tone from contraction toward relaxation.


Intracellular Enzyme and Ca^2+ Modulation

The molecular signal amplifies rapidly inside the cell through the activation of Adenylate Cyclase, which generates the second messenger cAMP. This cascade ultimately leads to the inhibition of Myosin Light-Chain Kinase ( MLCK), an enzyme essential for initiating contraction, and facilitates the lowering of intracellular calcium ( Ca^2+) levels. This core physiological adjustment prevents the molecular components required for muscle shortening from engaging, resulting in the physiological effect of muscle relaxation.

Dosage and Administration Information

How to Use Ipradol (Hexoprenaline)

Ipradol is administered through multiple official routes of administration as determined by its prescribed use. The specific dosage and method depend strictly on the pharmaceutical form used. All instructions are based on official prescribing information and are not individualized medical advice.

Official Routes and Dosing Regimens

Administration Route Typical Adult Dosage Frequency and Conditions
Oral (Tablet) 0.5 mg to 1 mg per dose Generally three times daily (tid). Tablets must be swallowed whole with liquid.
Inhalation (Aerosol/Nebulization) 100 mug to 500 mug per dose Administered using the appropriate device, up to six times daily in some regimens.
Intravenous (IV) 10 mug (Loading Dose) Restricted to hospital/clinical settings and administered by a healthcare professional.

IV Administration Protocol (Acute Use)

For acute situations, the Intravenous protocol follows a defined procedural sequence. This is typically managed in a monitored setting and involves a transition between two phases:

  1. Loading Dose: The initial 10 mug injection is administered slowly over 5 to 10 minutes.
  2. Continuous Infusion: This initial dose is followed by a continuous infusion, starting at a rate of 0.3 mug/ minute. The infusion rate may be subsequently reduced to 0.075 mug/ minute for maintenance.

No specific dose adjustments are widely specified in official documentation for pediatric patients or for conditions like hepatic or renal impairment; standard adult dosing applies.

Recent Clinical Evidence

Research Evidence / Overview of Studies for Ipradol (Hexoprenaline)


Evidence for Use in Respiratory Conditions

Ipradol was studied for conditions characterized by functional limitations, such as reversible bronchial obstruction and bronchospasm. The research mainly includes older, controlled clinical trials and comparative studies in adult populations. Researchers monitored the temporary physiological imbalance of the airways using standardized tests like Forced Expiratory Volume in 1 second (FEV1). Findings describe patterns observed in these studies where measured changes in lung function markers were reported in the hours immediately following administration.

The body of evidence for this use is considered limited in its recency and scope because much of the core evidence is derived from older trials. Comparative evidence is lacking against many contemporary standard respiratory treatments, and limited data are available for long-term outcomes.

Evidence for Use in Managing Preterm Labor

Research examined Ipradol in pregnant women experiencing threatened spontaneous preterm birth, a condition involving periods of heightened symptoms characterized by premature uterine contractions. Studies included comparative clinical trials and retrospective observational settings, monitoring acute outcomes like the time until delivery and the suppression of uterine contractility.

Studies report how delivery timelines evolved in the observed populations, with short-term delays (typically defined as up to 48 hours) being the outcome measured and reported. Findings describe patterns observed in these studies similar to what was observed with other medications in the same class. Researchers also monitored short-term neonatal outcomes, such as Apgar scores.

What is Still Uncertain About the Research

Evidence quality varies across studies, particularly since many fundamental trials were conducted several decades ago, which is a known limitation. Research highlights what is known—and what is still uncertain—about long-term use. Specifically, there is limited information available regarding long-term outcomes following administration for both maternal health and sustained patient outcomes. Subgroup findings across different disease severities or comorbid conditions also remain uncertain.

Key Studies & References

  1. Hexoprenaline Compared with Atosiban as Tocolytic Treatment for Preterm Labor (Retrospective Cohort Study)
  2. Tocolysis in preterm labour - A systematic review of evidence-based guidelines, effectiveness and health economic evaluations

Frequently Asked Questions (FAQ)

Common questions about Ipradol (FAQ)

Q: How long does it take for Ipradol to start working?

A: Information regarding the onset of action is generally found in the product’s official labeling or clinical pharmacology section. Regulatory documents often describe the approximate time it takes to reach the peak effect after the medicine is administered, particularly for the oral or inhaled forms studied in clinical settings.

Q: Is Ipradol intended for long-term use?

A: According to the official product information and research overviews, studies have highlighted a limitation regarding the information available for sustained, long-term outcomes. Specifically, there is limited data concerning the long-term effects on both maternal health and overall patient outcomes following administration.

Q: Can I take Ipradol with [Name of common OTC pain reliever]?

A: Official regulatory documents specify that Ipradol may interact with several drug classes, such as Monoamine oxidase inhibitors (MAOIs) and Tricyclic Antidepressants (TCAs). Information regarding the compatibility of Ipradol with other medications, including common over-the-counter pain relievers, is provided in the product’s official labeling, noting the risks of combinations like certain NSAIDs with hypertension.

Q: Is Ipradol used during pregnancy?

A: Official regulatory documents define the strict conditions and contraindications for using Ipradol during pregnancy. The medicine is absolutely contraindicated (prohibited) during the first trimester. Its use for uterine relaxation (tocolysis) is restricted to the period between 22 and 37 weeks of gestation and is administered via the parenteral route in a clinical setting.

Q: Is Ipradol used while breastfeeding?

A: Official regulatory documents state the medicine is contraindicated (prohibited) throughout the entire period of lactation. Use is prohibited during lactation.

Q: Does Ipradol affect blood pressure?

A: Official warnings note that the drug is generally contraindicated (prohibited) in patients with pre-existing severe cardiovascular conditions, including uncontrolled high blood pressure (hypertension). Additionally, the product label documents interactions with some medicines used to treat high blood pressure, as its action may impact the cardiovascular system.

Q: Can Ipradol affect my mood?

A: Official documents list 'feelings of nervousness' as a commonly reported adverse reaction. This is categorized under the effects that may occur in the nervous system.

Q: Is Ipradol the same as [Name of similar drug]? (Comparison required)

A: Ipradol’s active ingredient, Hexoprenaline, is defined as a selective beta2-adrenergic agonist, a pharmacological class that also includes other medicines used for similar therapeutic purposes, such as Terbutaline and Salbutamol. Official documents describe the differences in classification.

Q: Is it common to have [General, non-severe side effect] when starting Ipradol?

A: Official safety information describes the commonly reported effects, such as tremors (shaking), headache, and nervousness, as generally mild and transient. This means that if these expected effects occur, they typically are not severe and tend to fade over time.

Q: What is the difference between Ipradol and a placebo in studies?

A: Clinical trial findings, such as those related to lung function, have documented that physiological markers showed less reduction in patients using Ipradol compared to those using a placebo. The comparison is part of the research designed to document the medication's observed physiological effects.

Q: What kind of studies have been done on Ipradol?

A: Research on Ipradol has primarily involved older, controlled clinical trials, comparative studies, and retrospective observational settings. These studies focused on specific patient populations and their physiological responses in areas like respiratory function and uterine activity.

Q: How does Ipradol affect the liver or kidneys?

A: Regulatory information notes that no specific dose adjustments are typically detailed for patients with hepatic (liver) or renal (kidney) impairment. Like many medications, Ipradol’s active substance is metabolized in the liver and eventually eliminated from the body via the kidneys.

Q: Can Ipradol interact with caffeine?

A: Official documentation notes that Methylxanthines, a class of substances that includes caffeine, may increase the action of Ipradol. This interaction can contribute to the documented risk of low potassium levels in the blood, known as hypokalemia.

Q: Is Ipradol used for acute or chronic conditions?

A: Official documentation describes the intravenous form as restricted to acute (short-term) situations, and tocolysis use is restricted to a maximum of 48 hours. The use of other forms, like tablets, is described by the dosage frequency (e.g., three times daily).

Q: What is the mechanism of action for Ipradol, simply explained?

A: Ipradol works as a selective beta2-adrenergic agonist, which means it selectively binds to and activates beta2 receptors in smooth muscle cells. This core action initiates a specific cellular change that causes muscle fibers in target tissues, such as the airways and uterus, to relax.

Q: Can Ipradol make me feel nervous or anxious?

A: Official safety documents list 'feelings of nervousness' as a commonly reported adverse reaction that affects the nervous system. The potential for this effect is consistent with the drug’s classification as a sympathomimetic agent.

How should Ipradol be stored and disposed of?

The storage and disposal of Ipradol (Hexoprenaline) are governed by specific requirements documented in official regulatory labeling.

Storage Conditions

The product must be stored at a temperature below 30°C (86°F) and must be protected from light and freezing. It is mandatory to store the medicine in the original package with the container tightly closed to ensure product integrity. As with all medications, Ipradol must be stored out of the reach and sight of children to comply with safety guidelines.

Disposal Instructions

Official disposal rules require that unused or expired Ipradol must not be disposed of in household rubbish or wastewater. Instead, the medicine should be discarded through an official medicines take-back program or returned to a pharmacist or designated disposal facility, in accordance with applicable local regulations for pharmaceutical waste. The product must not be used after the expiry date.

Attention! Always consult to a doctor or pharmacist before using pills or medicines.

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