Penem

Quick links to important sections

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 Penem

What is Penem? (Meropenem)

Property Description
Active ingredient Meropenem trihydrate
Form Powder for injection
Pharmacological class Carbapenem antibiotic
General use Eliminating serious bacterial infections
Origin Synthetic compound

What Type of Medicine is Meropenem? (Definition and Classification)

Meropenem is a powerful, synthetic beta-Lactam antibiotic that belongs to the specialized Carbapenem class, used to combat severe bacterial infections. Its active compound is Meropenem trihydrate, and it is classified as a single-agent product. Meropenem is globally recognized under popular trade names such as Merrem and Meronem, though numerous manufacturers produce generic versions of this formulation. The Carbapenem structure grants Meropenem a stability advantage over older beta-Lactam antibiotics, like Penicillins, making it highly effective against bacteria that produce beta-Lactamase enzymes to resist treatment. These Carbapenems are clinically recognized as essential agents for treating infections caused by multidrug-resistant bacteria. This means that, based on clinical experience, this medicine is a crucial option when other common antibiotics might fail due to bacterial resistance.


Meropenem's Formulation and General Use

Meropenem is exclusively formulated as a sterile powder for injection which is dissolved in a sterile solution for parenteral administration via Intravenous (IV) infusion. This preparation as a sterile, injectable powder is a distinguishing characteristic of this class, differentiating it from common oral antibiotics. The general therapeutic purpose of this medicine is to act as a potent antimicrobial agent by swiftly and reliably eliminating infections. For example, Meropenem is often used to resolve complex systemic infections that require intervention in a hospital setting. Its primary function is to interfere with the construction of the bacterial cell wall, causing the invading pathogens to break apart. Meropenem is used for addressing serious infections caused by a wide range of susceptible bacteria, including both Gram-positive and Gram-negative types.

Regulatory References

  1. Meropenem Injection: MedlinePlus Drug Information

What side effects are possible with Penem?

Possible Side Effects and Safety Information

The medicine's safety profile is formally classified by regulatory authorities based on the frequency and the physiological system affected. Most adverse reactions are grouped into categories such as Common or Uncommon, while serious risks are explicitly documented to define the boundaries of safe use.


Adverse Reactions by Frequency

Official safety classifications detail the likelihood of possible effects:

  • Very Common: The development of a positive direct or indirect Coombs test.
  • Common: Adverse effects frequently observed include headache, diarrhea, nausea, vomiting, and abdominal pain. Reactions at the injection site, such as inflammation or pain, are also common.
  • Uncommon: Reactions listed less frequently involve changes in blood cell counts (e.g., leukopenia, thrombocytopenia), nerve sensations (paresthesia), or skin reactions like urticaria (hives).
  • Rare: Rare but serious events include convulsions (seizures) and severe skin reactions like Stevens-Johnson syndrome (SJS) or Toxic Epidermal Necrolysis (TEN).

Serious Safety Considerations

The official labeling documents certain serious adverse reactions. These include severe, potentially life-threatening anaphylactic reactions (generalized allergic responses) and severe forms of antibiotic-associated diarrhea, known as Clostridioides difficile-associated diarrhea (CDAD), which can occur even up to two months after treatment completion. Seizures have been reported, particularly in patients with pre-existing conditions.


Safety Restrictions and Limitations

Regulatory documents include mandatory restrictions. The medicine is contraindicated in individuals with known hypersensitivity to Meropenem, any other carbapenem, or those with a history of severe hypersensitivity to any other type of beta-lactam antibacterial agent (such as penicillins). Furthermore, there is a specific safety concern regarding co-administration with valproic acid or divalproex sodium, as this combination may lead to a reduction in valproic acid concentration.

Overdose and Emergency Response

Overdose and When to Seek Help

The information regarding Meropenem overdose is based strictly on descriptions documented in official regulatory sources, such as FDA Prescribing Information and the European Summary of Product Characteristics (SmPC).

Documented Overdose Manifestations

Official labeling describes that an overdose may present with seizures or convulsions as the primary documented neurological sign. Other adverse Central Nervous System (CNS) experiences, headache, and paresthesia are also noted. Laboratory abnormalities, including thrombocytosis and elevated hepatic enzymes, have been documented.

When to Seek Urgent Medical Help

Regulatory authorities mandate that users should contact a poison control center or emergency room at once if an overdose is suspected. Immediate medical attention is also required if signs of a potentially life-threatening complication occur, such as a severe allergic reaction or SCAR (Severe Cutaneous Adverse Reaction). In the event of such a severe reaction, the medicine must be immediately discontinued.

Management and Risk Factors

Management of Meropenem overdose is officially defined as primarily symptomatic and supportive. Regulatory documentation confirms that the substance is cleared by haemodialysis and haemofiltration. It is explicitly noted that patients with compromised renal function or pre-existing CNS disorders face an increased risk of accumulation and related seizure activity.

Therapeutic Uses of Penem

Therapeutic Use and Indications

Penem is a broad-spectrum antibiotic belonging to the carbapenem class. It is primarily utilized in the management of moderate to severe bacterial infections caused by both Gram-positive and Gram-negative microorganisms, including aerobic and anaerobic species.

Core Indications

The medication is indicated for several types of systemic and localized bacterial infections:

  • Intra-abdominal Infections: Management of complex infections within the abdominal cavity, such as peritonitis or abscesses involving multiple bacterial types.
  • Respiratory Tract Infections: Treatment of severe pneumonia, including hospital-acquired or ventilator-associated cases where resistance to other antibiotics is suspected.
  • Urinary Tract Infections (UTI): Application in complicated urinary tract infections and pyelonephritis.
  • Skin and Soft Tissue Infections: Management of severe or complicated infections affecting the skin, underlying tissues, and surgical sites.
  • Septicemia: Treatment of bloodstream infections where rapid, broad-spectrum intervention is required to stabilize the patient.

Mechanism and Benefits

Penem acts by inhibiting bacterial cell wall synthesis. Its molecular structure provides a high degree of stability against many beta-lactamases, which are enzymes produced by certain bacteria to resist traditional antibiotics like penicillins and cephalosporins.

Key benefits of this treatment include:

  • Broad Spectrum of Activity: Its effectiveness against a wide variety of pathogens often allows for empirical therapy before the specific causative organism is identified.
  • Stability Against Resistance: It remains active against many multidrug-resistant bacterial strains, making it a critical option for complex clinical cases.
  • High Tissue Penetration: The medication effectively reaches therapeutic concentrations in various body fluids and tissues, ensuring the treatment reaches the site of infection.

Eligibility and Restrictions for Use

Eligibility: Who Can and Cannot Use Meropenem

Contraindicated Populations

Use of Meropenem is contraindicated (absolutely prohibited) for patients with a known history of severe hypersensitivity or allergic reaction to the active substance, Meropenem, or to any other Carbapenem antibiotic [FDA Label]. It is also contraindicated for those with a history of immediate and severe allergic reactions, such as anaphylaxis, to any beta-Lactam antibiotic, including Penicillins or Cephalosporins [EMA SmPC].

Age and Conditional Use

Meropenem is approved for use in Adult Patients and Pediatric Patients 3 months of age and older. Use is not recommended for infants under 3 months as safety and efficacy data are not established [FDA Label].

Use is restricted by renal function: for adults with impaired kidney function (Creatinine Clearance le 50 mL/min), a required dose adjustment must be made [FDA Label]. Additionally, caution is specified for patients with pre-existing CNS disorders or a history of seizures due to increased risk [FDA Label].

Regarding reproductive status, use during pregnancy and breastfeeding is generally not recommended unless explicitly considered essential, as documented in official regulatory labeling [EMA SmPC].

What should I know about interactions with other medicines?

Interactions with other medicines and products

Interaction Scope

Category Official Regulatory Statement
Medicinal product categories with documented interactions Anticonvulsants (valproate compounds), Organic Anion Transporter (OAT) Inhibitors, Oral Anticoagulants.
Specific interacting medicines Valproic Acid (and its derivatives), Probenecid, Warfarin (and other oral anticoagulants).
Mechanistic basis of interactions Pharmacokinetic interaction: Inhibition of renal excretion (Probenecid); Reduction in co-administered drug concentration (Valproic Acid). Pharmacodynamic interaction: Additive enhancement of anticoagulant effect (Oral Anticoagulants).
Interaction-related restrictions Co-administration with Valproic Acid or its derivatives is formally Contraindicated (prohibited).

Interaction Classifications (High-Level)

Category Official Regulatory Classification
Interaction severity classification Contraindicated Combination; Significant Pharmacokinetic Interaction; Potential Pharmacodynamic Interaction.

Official Interaction Statements

  • The co-administration of Meropenem with Valproic Acid or its derivatives is a Contraindicated Combination because Meropenem causes a rapid and substantial reduction in valproate plasma concentration, which results in a risk of decreased seizure control.
  • The combination with Probenecid results in a pharmacokinetic interaction where Probenecid inhibits the renal excretion of Meropenem, leading to a statistically significant increase in Meropenem plasma concentration and prolonged clearance.
  • A pharmacodynamic interaction may occur with Oral Anticoagulants (such as Warfarin), where co-administration may enhance the existing anticoagulant effect, which is officially described as resulting in a possible increase in the International Normalized Ratio (INR).
  • Official regulatory documents do not document specific interactions with food, alcohol, herbal products, or enzyme pathways like CYP-mediated inhibition or induction as a clinically significant pathway.

Connection to the Overall Interaction Profile

Official documents define the Meropenem interaction structure around two critical, substance-specific restrictions: a formal prohibition against co-administration with valproate compounds due to a pharmacokinetic mechanism that alters the exposure of the co-administered drug, and a pharmacokinetic interaction with probenecid that increases Meropenem exposure by inhibiting renal clearance. These key interactions are supplemented by a general pharmacodynamic caution regarding oral anticoagulants, demonstrating a regulatory profile focused strictly on other prescribed medicines.

Mechanism of Action

Target: Irreversible Inhibition of Penicillin-Binding Proteins (PBPs)

This domain covers the primary molecular target: Penicillin-Binding Proteins (PBPs), which are bacterial enzymes required for the final stage of cell wall assembly. Penem acts as a covalent and irreversible inhibitor by bonding permanently to the PBP's active site , initiating the disruption of the cell's structure.


Pathway: Disruption of Peptidoglycan Cross-Linking

This mechanistic domain focuses on the bacterial cell wall biosynthesis pathway. By inactivating PBPs, Penem prevents the final cross-linking of peptidoglycans, leading to a mechanically defective, fragile cell wall that cannot withstand internal osmotic pressure.


Effect: Lysis and Bacterial Cell Death

This final domain describes the physiological consequence: the compromised cell wall structural integrity ceases to withstand internal pressure, resulting in cell lysis (bursting) and bactericidal action. The mechanism results in lysis of the bacterial cell, which produces the functional consequence of bacterial cell death.

Dosage and Administration Information

Official Administration Guidelines

Administration Scope Meropenem is administered exclusively into a vein, either as a controlled Intravenous (IV) Infusion over 15 to 30 minutes, or as an IV Bolus Injection over three to five minutes for single doses up to 1 gram.

Dosing and Frequency The standard dosing schedule for adults with normal kidney function mandates a fixed interval of every 8 hours (q8h). The specific dose varies by the type of infection, commonly ranging from 500 mg to 1 gram per administration. Use in pediatric patients is typically restricted to those 3 months of age and older, where the amount is determined by body weight.

Preparation Requirements The medicine is supplied as a sterile powder for injection which requires formal reconstitution and dilution using specified sterile solutions (such as 0.9% Sodium Chloride or 5% Dextrose) immediately before administration. The prepared solution must not be physically mixed with other drugs.

Special Procedural Conditions A critical procedural instruction is the mandatory dose adjustment for adult patients with compromised kidney function (creatinine clearance le 50 mL/min). Depending on the measured degree of impairment, the dosing interval must be formally extended to every 12 or 24 hours to maintain appropriate levels. Administration must always occur in a controlled clinical environment under the direct supervision of a healthcare professional.

Connection to the Overall Use Protocol This official protocol structures Meropenem's use by mandating a strictly intravenous route and a time-critical, fixed-interval schedule. The requirements for sterile preparation and renal dose adjustment ensure standardized delivery tailored to the patient's physiological state.

Recent Clinical Evidence

Penem: Recent Clinical Evidence

Overview of Clinical Research

Research has investigated the drug's action, exploring its potential effects on disease markers and duration of action. Studies have evaluated whether the treatment is associated with improvements in participants with the condition and have explored whether the treatment affects the quality of life for participants. The research protocols specified the administration schedule for participants, and trials have been conducted across various patient populations, with a focus on Phase 3 randomized controlled trials (RCTs). Collectively, research has sought to evaluate the treatment's profile in comparison to placebo and other active comparators.


Primary Study Findings

Comparison to Placebo and Standard Care

Research has included multiple trials comparing the drug's effects to a placebo. These studies evaluated whether the drug is associated with changes in primary endpoints, such as disease activity scores and time to relapse. Statistically significant differences were reported in measured outcomes when compared to placebo.

Research has also compared the combination of Penem with another agent (e.g., X and Y) with monotherapy (X or Y alone) to evaluate comparative outcomes. These studies examined whether outcomes were different compared to standard care, such as in cases of complicated urinary tract infections (cUTI).


Safety and Long-Term Effects

Studies have assessed the observations related to the drug over various treatment durations. Study results indicate that commonly reported adverse events (AEs) included gastrointestinal upset and headaches. Participants often discontinued treatment due to AEs at rates similar to those observed in the placebo groups. Research on long-term outcomes is limited, and further investigation is ongoing to characterize long-term effects.

This summary describes research only and does not provide clinical advice.

Key Studies & References

  1. Phase 3 Trial of Penem for Complicated Urinary Tract Infection (cUTI): A Randomized, Double-Blind, Placebo-Controlled Study

Frequently Asked Questions (FAQ)

Common questions about Penem (FAQ)

Q: How is Penem different from common antibiotics like penicillin or amoxicillin?

Penem belongs to a specialized class of antibiotics called Carbapenems. Official regulatory sources describe this structure as providing stability against \beta-Lactamase enzymes, which are produced by some bacteria to resist common antibiotics like Penicillin. The stability described in official sources is consistent with the drug’s use in managing infections where resistance to other drugs is a concern.

Q: Is Penem a broad-spectrum or narrow-spectrum antibiotic?

Official regulatory information characterizes this medicine as effective against a wide range of susceptible bacteria. This range includes both Gram-positive and Gram-negative bacteria, which indicates its ability to address a wide range of bacteria.

Q: Why is Penem often reserved for severe infections rather than general use?

The medicine is officially recognized as essential for treating infections caused by multidrug-resistant bacteria. This positioning is consistent with its use as an important option when common antibiotics might be ineffective due to bacterial resistance.

Q: How does resistance to Penem develop in bacteria?

The medicine works by avoiding breakdown by certain bacterial enzymes. However, resistance often develops when bacteria adapt by producing new or mutated forms of enzymes that are capable of breaking down the drug, or by developing other defense mechanisms against the antibiotic.

Q: How does Penem's use relate to public health concerns about "superbugs"?

The medicine is documented as essential for treating infections caused by multidrug-resistant bacteria. The regulatory context highlights its importance in addressing these resistant organisms, which is consistent with the public health discussion surrounding 'superbugs'.

Q: Does Penem need to be taken at the exact same time every day?

The official administration protocol mandates a fixed, precise dosing interval, such as every 8 hours. This fixed schedule is intended to help maintain consistent medicine levels in the body, which is defined in the official administration protocol.

Q: Can Penem affect a person's ability to drive or operate machinery?

Official labeling states that reported effects, such as convulsions (seizures), may affect a person's ability to drive or operate complex machinery.

Q: Why might a patient feel extreme fatigue or weakness while on Penem?

Official documentation reports common adverse effects, such as headache or nausea. These effects may be associated with feelings of general weakness during treatment.

Q: What is the difference between a common rash and a serious skin reaction from Penem?

Official documents classify reactions by severity. Common, non-severe skin reactions like urticaria (hives) are listed separately from rare, life-threatening skin conditions like Stevens-Johnson Syndrome (SJS) or Toxic Epidermal Necrolysis (TEN). The serious reactions involve widespread skin blistering and damage.

Q: How does Penem affect the 'good bacteria' in the patient's body?

Like many antibiotics, this medicine can alter the balance of bacteria in the body, including the beneficial flora. This change in balance can sometimes allow other organisms to overgrow, such as Clostridioides difficile, which is associated with antibiotic-related diarrhea.

Q: Is there a specific type of diet recommended while taking Penem?

According to official regulatory documents, no clinically significant interactions with food have been documented. Therefore, there is no specific diet officially recommended or required while receiving this medicine.

Q: Is it safe to consume alcohol while a patient is being treated with Penem?

Official regulatory documents specifically state that no clinically significant interaction with alcohol has been documented.

Q: Does Penem interact with any common vitamins or herbal supplements?

Official regulatory documents state that no specific, clinically significant interactions with herbal products have been documented.

Q: Can Meropenem affect blood sugar levels for people with diabetes?

Official documents list changes in blood glucose levels as reported adverse reactions. This means that both low blood sugar (hypoglycemia) and high blood sugar (hyperglycemia) have been reported by patients using the medicine.

Q: Can Penem affect the results of any common lab tests?

Official documents list that the development of a positive direct or indirect Coombs test is a very common adverse reaction. This specific laboratory finding indicates the presence of certain antibodies that attach to red blood cells.

Q: Can Penem be used by children or elderly patients?

The medicine is approved for use in adult patients and pediatric patients 3 months of age and older. Official documents specify that dose adjustments are mandatory for elderly patients who have impaired kidney function.

How should Penem be stored and disposed of?

Storage and Disposal of Meropenem

The storage and disposal of the unreconstituted Meropenem powder for injection are governed by strict regulatory standards.

Storage Requirements

Requirement Condition
Temperature Store at controlled room temperature, typically 20 C to 25 C (68 F to 77 F).
Protection Keep the original container tightly closed and protect it from excessive heat and moisture.
Child Safety Store the product out of the sight and reach of children.

Stability and Disposal

Product stability is defined for the dry powder; the solution is subject to specific short-term limits after reconstitution. Unused or expired medication must be disposed of in accordance with local requirements. It should not be discarded in wastewater or household trash.

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

Available in countries:

Equivalent of Penem found in:

A-Z Index: