Quibron

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Medically reviewed

Marina Burgos

Last updated on 10/01/2026

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 Quibron

Quick Facts: Quibron (Choline Theophyllinate)

Property Description
Active Ingredient Choline Theophyllinate
Form Oral Solid (Tablet, Capsule) or Liquid (Elixir)
Pharmacological Class Bronchodilator (Methylxanthine Derivative)
Common Use Management of chronic respiratory airflow obstruction
Origin Synthetic compound

What is Quibron and Its Active Ingredient, Choline Theophyllinate?

Quibron is the brand name for a prescription medication whose generic identity is Choline Theophyllinate (INN). This active compound is a synthetic combination salt formed by chemically linking the established bronchodilating component, Theophylline, with the organic component Choline. The medication is intended for systemic administration and is most frequently available as an oral solid form, such as a tablet or capsule. The inclusion of the choline component is a pharmaceutical strategy designed to improve the base compound's solubility and gastrointestinal tolerability when taken orally, compared to pure Theophylline.

Quibron’s Classification as a Bronchodilator (Methylxanthine Derivative)

Quibron is primarily categorized within the pharmacological class of bronchodilators, belonging specifically to the Methylxanthine derivative group. This classification reflects its action as a phosphodiesterase inhibitor, a mechanism that promotes the relaxation of bronchial smooth muscle. The compound's chemical structure is related to other methylxanthines, distinguishing its systemic, sustained action from the more acute, localized effects of common inhaled bronchodilators used in maintenance therapy.

What is the General Purpose of Quibron?

The medicine’s general purpose is to provide pharmacological support for airway dilation, a necessary element in the long-term support of chronic respiratory issues. By promoting the sustained relaxation of bronchial smooth muscle within the lungs, the compound helps maintain the patency of the air tubes. This action serves to diminish the physical constriction of the airways, thereby supporting the efficient, uninterrupted flow of air and alleviating the chronic sensation of chest tightness and shortness of breath often experienced by patients with chronic airflow obstruction.

Regulatory References

  1. Theophylline: MedlinePlus Drug Information
  2. Theophylline - StatPearls - NCBI Bookshelf

What side effects are possible with Quibron?

Possible side effects and safety information

The safety profile of Quibron, which contains the active compound Choline Theophyllinate, is primarily structured by the regulatory classification of theophylline as a Narrow Therapeutic Index (NTI) drug. This means the range between an effective concentration and a toxic concentration is small.


Adverse reaction scope

Classification Examples of Officially Documented Effects
Common / Expected Nausea, vomiting, headache, restlessness, tremor, insomnia, palpitation, and rapid heart rate (tachycardia).
System-Organ Classes Effects are categorized under Nervous System Disorders (e.g., seizures), Gastrointestinal Disorders, and Cardiac Disorders (e.g., arrhythmias).
Serious Adverse Reactions Regulatory sources document severe events, including seizures, ventricular arrhythmias, and hypotension, particularly when plasma concentrations exceed 20 mu g/ mL.

Safety-Related Regulatory Constraints

Population-Specific Safety Considerations: The official labeling notes that the medicine's clearance is significantly decreased in specific populations, raising the risk of accumulation and toxicity. This applies to the geriatric population, patients with hepatic (liver) impairment (such as cirrhosis), and individuals with congestive heart failure.

Time- or Exposure-Related Patterns: Adverse effects, especially those affecting the central nervous system and gastrointestinal tract, are often noted to be more apparent at the start of therapy or following a dose increase.

Safety Restrictions: The medication is contraindicated in patients with a history of hypersensitivity to methylxanthines. Regulatory documents also specify that it should be used with extreme caution in individuals with active peptic ulcer disease, existing seizure disorders, or certain cardiac arrhythmias.


Connection to the overall safety profile:

Because the medicine is formally classified as an NTI drug, its official safety profile is governed by the risk of dose-dependent toxicity that can escalate to serious events. This regulatory structure highlights that while common side effects occur, the primary safety concern is the potential for life-threatening reactions if the clearance of the medicine is reduced, a risk specifically documented in certain patient groups.

Overdose and Emergency Response

Overdose and when to seek help

Overdose scope Regulatory Documentation Statement
Documented overdose presentations Overdose manifests with persistent vomiting, nausea, diarrhea, restlessness, and tremor.
Physiological systems affected (as stated in label) Central Nervous System, Cardiovascular system, Gastrointestinal system, and Metabolic/Electrolyte balance.
Dose-related or exposure-related factors Toxicity is associated with elevated serum theophylline concentrations, with risk for severe events being higher in high acute or chronic exposure.
Population-specific overdose notes Increased severity of toxicity and reduced drug clearance are noted in the elderly, patients with hepatic impairment, and those with cardiac disease.
Emergency-response statements Management requires symptomatic and supportive treatment, including administering activated charcoal and procedures for enhanced elimination (e.g., haemodialysis) in severe cases.
When immediate medical help is required (label-derived phrasing only) Seek immediate medical attention and contact emergency services due to the documented risk of life-threatening events, specifically seizures or ventricular arrhythmias.

Overdose classifications (high-level) Regulatory Documentation Statement
Severity classification The regulatory profile describes toxicity leading to severe and life-threatening outcomes.
Overdose-context constraints No specific antidote is known for this overdose.

Official overdose statements:

  • Overdose presents with documented CNS stimulation and pronounced gastrointestinal distress.
  • Life-threatening outcomes listed in regulatory documents include seizures, ventricular arrhythmias, and severe hypokalemia.
  • Urgent medical care is required; continuous cardiac monitoring and serial measurement of theophylline concentration are mandated.
  • Management includes supportive treatment and procedures like activated charcoal and haemodialysis for severe toxicity.

The official profile strictly delineates overdose as a condition marked by acute, systemic instability with the potential for fatal outcomes across cardiac and neurological systems. This documented severity necessitates that immediate medical attention be sought upon the appearance of any overdose manifestation. The absence of a specific antidote means management outlined in the regulatory label focuses entirely on physiological stabilization and enhancing drug clearance.

Therapeutic Uses of Quibron

Main Uses of Quibron

Quibron is a combination medication primarily used for the management of respiratory conditions characterized by airway obstruction. It is typically prescribed to treat the symptoms of bronchial asthma, chronic bronchitis, and emphysema.

The medication works through the combined action of its two active components: theophylline and guaifenesin. Theophylline is a bronchodilator that helps to open the airways by relaxing the smooth muscles in the lungs. Guaifenesin is an expectorant that helps to thin and loosen mucus in the respiratory tract, making it easier to cough up.

Conditions Treated

  • Bronchial Asthma: Quibron helps to relieve the wheezing, shortness of breath, and chest tightness associated with asthma by keeping the bronchial tubes open.
  • Chronic Bronchitis: For individuals with long-term inflammation of the bronchi, the medication aids in reducing the accumulation of thick mucus and improving airflow.
  • Emphysema: In cases of emphysema, where the air sacs in the lungs are damaged, Quibron assists in maintaining clearer airways to facilitate easier breathing.

Therapeutic Benefits

The primary benefit of Quibron is the dual-action approach to respiratory relief. By addressing both the physical narrowing of the airways and the presence of obstructive mucus, the medication provides a comprehensive method for managing chronic obstructive pulmonary diseases (COPD) and related conditions.

Improved Airflow

By relaxing the muscles surrounding the airways, the medication reduces the effort required to breathe. This can lead to an increase in lung capacity and a reduction in the frequency of acute respiratory distress episodes.

Mucus Clearance

The inclusion of an expectorant helps to manage the productive cough often found in chronic respiratory issues. By decreasing the viscosity of secretions, the medication helps to clear the lungs more effectively, which may reduce the feeling of congestion in the chest.

Regulatory References

  1. NIH MedlinePlus overview on Theophylline

Eligibility and Restrictions for Use

Eligibility Map: Who can and cannot use Quibron — official regulatory information

Quibron (Choline Theophyllinate) is subject to strict eligibility rules due to its narrow therapeutic index, as detailed in regulatory documents for its active component, Theophylline.


Eligibility Scope

  • Populations for whom use is allowed (as stated in label): Use is generally established for Adults and Children (ages one and older) who do not have specific contraindications or conditions that compromise drug clearance.
  • Populations for whom use is contraindicated: Use is prohibited in patients with a history of hypersensitivity to xanthine derivatives (such as Theophylline or Caffeine).

Age-Related Eligibility and Condition-Specific Rules

Population Group Eligibility Status Regulatory Basis
Older Adults (≥ 60 years) Restricted/Caution Required. Clearance is decreased, requiring careful dose monitoring. FDA Prescribing Information
Infants/Neonates (≤ 1 year) Highly Restricted/Caution Required. Clearance is low and variable; intensive monitoring is mandatory. FDA Prescribing Information
Hepatic Impairment Restricted/Caution Required. Clearance is decreased by 50% or more (e.g., cirrhosis, acute hepatitis). FDA Prescribing Information
Congestive Heart Failure Restricted/Caution Required. Clearance is significantly decreased. FDA Prescribing Information

Pregnancy and Other Restrictions

The FDA classifies Theophylline as Pregnancy Category C; use is permitted only if the potential benefit justifies the potential risk. The drug is excreted into human milk. Use also requires caution in patients with Active Peptic Ulcer Disease, Seizure Disorders, or Cardiac Arrhythmias due to the risk of exacerbation.

What should I know about interactions with other medicines?

Interactions with other medicines and products

Regulatory documents establish that the interaction profile for Quibron (Choline Theophyllinate) is defined by its susceptibility to substances that alter its metabolic clearance. Theophylline is primarily metabolized by the CYP450 enzyme system, leading to numerous formally documented pharmacokinetic interactions.

Strong restrictions apply to co-administration with certain agents. The combination with Riociguat is generally not recommended by some authorities, and use with Fluvoxamine should be avoided due to significant potential to increase Theophylline plasma concentrations via enzyme inhibition. Conversely, co-administration with enzyme inducers like Rifampin or Phenytoin can increase clearance, resulting in reduced exposure.

Pharmacodynamic and Substance Interactions

Pharmacodynamic interactions are documented where Theophylline acts as an adenosine receptor antagonist, potentially reducing the efficacy of agents like Adenosine and Dipyridamole. The official label notes additive risks with Halothane, which may increase the likelihood of ventricular arrhythmias.

Non-medicinal factors, including Alcohol, Caffeine, and St. John's Wort, are formally documented to alter Theophylline clearance. Furthermore, physiological changes such as Hepatic Impairment and high fever are listed as conditions that reduce Theophylline clearance, increasing the potential for clinically significant interactions.

Mechanism of Action

Enzyme Inhibition and Airway Smooth Muscle Tone

This domain focuses on Theophylline's action as a non-selective inhibitor of Phosphodiesterase (PDE) enzymes, specifically PDE III and PDE IV. This inhibition elevates intracellular cyclic AMP (cAMP) levels in airway smooth muscle cells. The resultant cascade promotes the relaxation of bronchial smooth muscle, a physiological consequence that is characterized by decreased resistance within the bronchial airways.

Modulating Purinergic and Inflammatory Pathways

In parallel, Theophylline acts as an antagonist of Adenosine receptors and modulates key inflammatory pathways by increasing the activity of Histone Deacetylase 2 (HDAC2). These actions lead to decreased airway hyper-reactivity and suppress the transcription of pro-inflammatory genes, which leads to a diminished inflammatory response and reduced tissue swelling.

Reflex-Driven Secretion and Mucus Clearance

Guaifenesin's mechanism involves initiating a vago-vagal reflex via the gastric mucosa. This nerve reflex stimulates respiratory glands, significantly increasing the volume and decreasing the viscosity of bronchial secretions. The resulting physiological effect includes the enhancement of fluid movement and transport by the mucociliary apparatus.

Dosage and Administration Information

Official Administration Guidelines

Quibron is an oral medication that must be taken exactly as prescribed to maintain a constant, steady amount in the blood. The dosing schedule is highly individualized and determined by a healthcare provider, often requiring adjustments based on the patient's age, weight, and blood test results.


Administration Scope Official Regulatory Instruction
Route & Frequency Taken by mouth, typically once or twice daily at evenly spaced times.
Administration Technique Extended-release tablets must be swallowed whole; they should not be broken, crushed, or chewed.
Timing in Relation to Meals Extended-release tablets may be taken with or without food. Extended-release capsules should ideally be taken one hour before a high-fat meal or without food.
Dosing Rule The dosage is individualized. For adults, the maximum total daily dose is typically not to exceed 600 mg/day. Dosing for children and teenagers under 45 kg is weight-based.
Missed Dose If a dose is missed, the patient should skip the missed dose and take the next dose at the regular scheduled time. Do not take two doses at once to make up for a missed dose.
Special Conditions The dose requires adjustment if the patient begins or stops smoking (cigarettes or marijuana) or experiences a significant change in diet. Dosage is guided by monitoring serum theophylline concentrations (blood tests) at regular intervals.

This medication's use protocol is governed by a requirement for strict adherence to the prescribed frequency and schedule to ensure consistent blood concentrations. The need for therapeutic drug monitoring and physician-directed dose adjustments based on individual patient factors and lifestyle changes defines the overall official use structure.

Recent Clinical Evidence

Research evidence / Overview of Studies for Quibron (Choline Theophyllinate)

Evidence for Use in Chronic Obstructive Pulmonary Disease (COPD)

Research exploring the use of Quibron’s active ingredient, Choline Theophyllinate (Theophylline), in individuals with COPD was evaluated in Randomized Controlled Trials (RCTs), alongside broader Systematic Reviews and Observational Studies. These studies were studied for adults and older adults with stable COPD. Researchers examined outcomes related to physical discomfort and systemic functional imbalance. These included measurements of lung function, such as forced expiratory volume ( FEV1), patient-reported outcomes describing perceived discomfort, and studies monitored physiological parameters like arterial blood gas levels.

Studies observed patterns related to changes in key lung function parameters, such as FEV1, when the compound was administered, compared to a placebo. Studies also monitored changes in blood gas tensions. However, research exploring short-term changes in lung function reported that the magnitude of measured changes was generally small.

Evidence for Use in Chronic Asthma (Stable/Non-Acute)

The research foundation for the compound in chronic asthma is built upon older Randomized Controlled Trials and specific studies that monitored the compound's concentration in the body. These studies explored short-term symptom changes in adults and children whose condition was characterized by fluctuating or episodic manifestations. Researchers monitored functional measures of the airways and patient-reported outcomes describing perceived discomfort, such as wheezing and chest tightness.

Studies monitored changes in lung function measurements, such as FEV1, compared to placebo. Research describes the connection between the administered dosage and the resulting measured concentration of the compound in the bloodstream. This information contributes to understanding the concentration patterns observed in the studies.

Long-Term Studies and Follow-up Durations

Follow-up durations were limited in the primary efficacy trials, often spanning less than a year. Research provides insight into short-term changes and how symptoms evolved in the observed populations during the study period. For outcomes requiring extended observation, such as overall survival (mortality) in COPD, research has relied on Observational Cohorts. These studies, which monitored physiological parameters in patients over several years, help show what has been observed so far. However, these observational designs do not determine whether an individual will respond similarly; consequently, long-term effects are not fully established.

What Is Still Uncertain About Quibron's Evidence Base

The evidence highlights what is known—and what is still uncertain. Key limitations in the research include that comparative evidence is lacking against the newest classes of inhaled therapies. Follow-up durations were limited in many of the core studies. Studies observed that the measured changes are closely tied to the compound's concentration in the bloodstream, and this can lead to variability in observations across individuals. Research is ongoing to clarify the precise role of this compound in contemporary treatment strategies.

Key Studies & References Label: THEOPHYLLINE (ANHYDROUS)- theophylline tablet, extended release - DailyMed (FDA Clinical/PK Information)

Frequently Asked Questions (FAQ)

Common questions about Quibron (FAQ)

Q: How long does it typically take for Quibron to start working or for full effects to be noticed?

A: Regulatory documents describe that the time it takes for Quibron’s active component, theophylline, to reach its highest level in the bloodstream is variable. For immediate-release oral forms, the mean peak concentration is usually reached within 1 to 2 hours. However, extended-release tablets are specifically designed to release the medicine slowly, meaning it can take much longer—often between 4 to 14 hours—for the peak effect to be observed.

Q: Does Quibron interact with common over-the-counter pain relievers like ibuprofen or aspirin?

A: Official information indicates that taking theophylline with certain pain relievers may require caution. When used alongside acetaminophen, there may be an increased potential for liver toxicity. The official product information mentions that the co-administration of theophylline with non-steroidal anti-inflammatory drugs (NSAIDs), such as ibuprofen or aspirin, may increase the potential risk of serious gastrointestinal adverse events.

Q: Does Quibron interact with birth control pills?

A: Regulatory documents state that oral contraceptive steroids (birth control pills) are known to increase the concentration of theophylline in the blood. Because of this potential interaction, monitoring serum theophylline levels may be necessary for patients, and corresponding dose adjustments may be considered by a healthcare professional.

Q: Is the extended-release (SR) formulation better for long-term use than immediate-release?

A: The extended-release formulations are pharmaceutically designed to offer a sustained action by slowly releasing the medicine into the bloodstream over a longer time, typically 12 to 24 hours. This sustained release is the basis for its use in the long-term management of chronic conditions, helping to maintain consistent levels, whereas immediate-release forms are rapidly absorbed.

Q: Can I take Quibron if I am also taking medication for depression or anxiety?

A: Official information notes that certain medications used for depression or anxiety, particularly those that act as enzyme inhibitors like fluvoxamine, can significantly reduce the body’s ability to clear theophylline. This increases the concentration of theophylline in the blood and raises the risk of toxicity. Given this potential for reduced clearance, the official documents indicate that dose adjustments and therapeutic monitoring are necessary procedures.

Q: Is there a generic version of Quibron (Theophylline) available?

A: Quibron-T is recognized as a brand name for a medication containing theophylline, the active ingredient. According to regulatory and pharmaceutical databases, there are numerous generic and other branded formulations containing the active compound theophylline currently available.

Q: Can taking Quibron affect blood sugar levels, especially for people with diabetes?

A: Studies related to theophylline’s mechanism of action indicate that it may influence the body’s glucose regulation process. This effect is most notable when theophylline is used alongside insulin. Therefore, careful monitoring of blood sugar levels is a procedure that may be required when patients with diabetes start or adjust theophylline therapy.

Q: Is Quibron used to treat sleep apnea in adults?

A: Theophylline is officially indicated for the long-term management of chronic respiratory conditions characterized by reversible airflow obstruction, such as asthma and COPD. Although limited studies exist regarding its potential role in sleep apnea syndrome, the official regulatory indications do not include this specific application. The drug is indicated for the long-term management of chronic airflow obstruction.

Q: What is the clearance time (half-life) of Quibron in the body?

A: The clearance time, or half-life, of theophylline is highly individualized and is affected by factors like smoking, age, and organ function. Official pharmacokinetic data for a healthy, non-smoking adult indicates the mean half-life is approximately 8.7 hours. Because of this high variability, therapeutic drug monitoring (blood tests) is used by prescribers to guide the individualized dosage regimen.

Q: Is Quibron safe to take alongside seasonal allergy medications or antihistamines?

A: Official information suggests that combining theophylline with certain second-generation antihistamines, such as cetirizine, carries a low risk of cumulative central nervous system effects. This could potentially lead to symptoms like increased drowsiness. Prescribers may determine that monitoring is required, as the potential for additive central nervous system effects is a possibility.

Q: How does the sustained-release coating of Quibron tablets work?

A: Extended-release tablets use specialized delivery technology, often a unique coating, to control how the medicine is released in the digestive system. This process slows and prolongs the absorption of the medicine into the bloodstream. The purpose is to maintain a steady, therapeutic concentration over a long period, typically lasting 12 to 24 hours.

Q: What should be done if asthma symptoms suddenly get worse while taking Quibron?

A: Regulatory documents specify that theophylline is intended for the long-term management of chronic respiratory symptoms. It is specifically not indicated or suitable for the quick relief of sudden, severe worsening or an acute asthma attack. Therefore, if symptoms suddenly worsen or become acute, official documents emphasize the importance of seeking immediate medical assistance.

Q: What evidence exists regarding Quibron's effect on muscle function, like the diaphragm?

A: Official documentation regarding the mechanism of action notes that theophylline increases the force of contraction of the diaphragmatic muscles. This effect is distinct from its bronchodilating action on the airway smooth muscle. This physiological effect is thought to be related to the drug’s influence on calcium regulation within those specific muscle cells.

How should Quibron be stored and disposed of?

The official labeling for Quibron, which contains theophylline, specifies strict conditions for storage and disposal to ensure stability and safety.

Storage Requirements

  • Temperature Control: Store at Controlled Room Temperature, which is defined as 20 C to 25 C (68F to 77F), and protect from excessive heat, such as temperatures above 40 C (104F).
  • Environmental Protection: Keep the medication in its original container, tightly closed, to protect it from moisture and maintain potency.
  • Child Safety: It must be stored out of the reach and sight of children, preferably in a locked cabinet, and with the safety cap securely closed.

Disposal Instructions

Disposal should be managed using established regulatory guidelines. The preferred method is to use a community drug take-back program. If no take-back program is available, the medication should be mixed with an undesirable substance (like coffee grounds or cat litter), placed in a sealed container or bag, and discarded in the household trash. Do not flush the medication down a toilet or sink unless specifically instructed by the official product label.

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

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