What it does
Aciclovir is an antiviral medicine used to treat infections caused by certain viruses.
Commonly used for: herpes infections (herpes simplex), shingles (herpes zoster), chickenpox (varicella)
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Sourcing - Kenya onlyRegistration & product details
Source: Pharmacy and Medicines Regulatory Authority · fetched 2026-04-21 17:37:38 · updated 2026-09-19 04:30:22
Drug Interactions
8Pharmacodynamic Warnings
Aciclovir appears in TABLE 2: Drugs that cause nephrotoxicity
Moderate (2)
Aminophylline - increases exposure
Aciclovir increases the exposure to aminophylline. Monitor and adjust dose.
Theophylline - increases exposure
Aciclovir is predicted to increase the exposure to theophylline. Monitor and adjust dose. Theoretical Acipimox
Unknown (6)
Aciclovir - increases risk of haematological toxicity
Mycophenolate is predicted to increase the risk of haematological toxicity when given with aciclovir.
Aciclovir - increases risk of b haematological toxicity
Mycophenolate is predicted to increase the risk of haematological toxicity when given with aciclovir.
Herpes-Zostervaccine - decreases efficacy
Aciclovir is predicted to decrease the efficacy of live vaccines (herpes-zoster vaccine, live).
Herpes-Zostervaccine,live - decreases efficacy
Aciclovirispredictedtodecreasetheefficacyofherpes-zoster vaccine,live.oTheoretical
Live - decreases efficacy
Aciclovir is predicted to decrease the efficacy of live vaccines (herpes-zoster vaccine, live).
Livevaccines - decreases efficacy
Aciclovir is predicted to decrease the efficacy of live vaccines (herpes-zoster vaccine, live).
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About this medicine
Aciclovir is an antiviral medicine used to treat infections caused by certain viruses.
What it treats
- herpes infections (herpes simplex)
- shingles (herpes zoster)
- chickenpox (varicella)
How it works
It works by stopping the growth of viruses in the body, helping to reduce the severity and duration of the infection.
Who it's for
Aciclovir is for people with viral infections like herpes, shingles, or chickenpox.
Cautions
- • Be careful if you are taking other medicines that can harm your kidneys.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Aciclovir
BNF-referencedAciclovir is an antiviral medication used to treat infections caused by certain types of viruses, primarily herpesviruses. It is effective against herpes simplex and varicella-zoster viruses, reducing the severity and duration of symptoms but does not eradicate the viruses.
Indications
- Herpes simplex infection (including genital herpes)
- Herpes zoster (shingles)
- Varicella (chickenpox)
- Prophylaxis in immunocompromised patients
Dosage
Children: For children 2-17 years: 200-400 mg 4 times a day for herpes simplex; for herpes zoster: 5 mg/kg every 8 hours for 5 days.
Adults: For Herpes simplex treatment: 200 mg 5 times a day for 5 days; for Herpes zoster: 800 mg 5 times a day for 7 days.
Mechanism of action
Aciclovir is a nucleoside analogue that inhibits viral DNA synthesis. It is selectively activated in infected cells by the viral enzyme thymidine kinase, leading to the inhibition of viral replication.
Pharmacodynamics
Aciclovir exhibits antiviral activity primarily against herpes simplex virus types 1 and 2 and varicella-zoster virus. Its effectiveness is enhanced when treatment is initiated early, ideally within 72 hours of symptom onset.
Pharmacokinetics
Aciclovir is well absorbed after oral administration, with a bioavailability of approximately 15-30%. It is widely distributed in body tissues and fluids, including the central nervous system. The drug is primarily excreted unchanged in the urine, with a half-life of about 2.5 to 3 hours in patients with normal renal function. Dose adjustment is required in renal impairment.
Adverse effects
- eye irritation
- eye pain
- headache
- hypotension
- nausea
- syncope
- blurred vision
Interactions
- aciclovir + aminophylline: Moderate (increases exposure)
- aciclovir + theophylline: Moderate (increases exposure)
- aciclovir + live vaccines: Unknown (decreases efficacy)
- aciclovir + herpes-zoster vaccine: Unknown (decreases efficacy)
- mycophenolate + aciclovir: Unknown (increases risk of haematological toxicity)
Pregnancy
Aciclovir can be used in pregnancy but specialist advice should be sought for chickenpox treatment due to associated complications.
Breast-feeding
No specific information provided.
Storage
Store at room temperature, protect from light.
Formulations
- 500 mg tablet
- 200 mg/5 ml oral suspension
- 5% eye ointment
- 20 mg/ml injection solution
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: Aciclovir
PubChem CID 135398513Molecular formula: C8H11N5O3
Mechanism of action
Acyclovir is becomes acyclovir monophosphate due to the action of viral thymidine kinase. Acyclovir monophosphate is converted to the diphosphate form by guanylate kinase. Acyclovir diphosphate is converted to acyclovir triphosphate by nucleoside diphosphate kinase, pyruvate kinase, creatine kinase, phosphoglycerate kinase, succinyl-CoA synthetase, phosphoenolpyruvate carboxykinase and adenylosuccinate synthetase. Acyclovir triphosphate has higher affinity for viral DNA polymerase than cellular DNA polymerase and incorporates into the DNA where the missing 2' and 3' carbons causes DNA chain termination. In other cases acyclovir triphosphate competes so strongly for viral DNA polymerase that other bases cannot associate with the enzyme, inactivating it. Acyclovir is a synthetic purine nucleoside analogue with in vitro and in vivo inhibitory activity against herpes simplex virus types 1 (HSV-1), 2 (HSV-2), and varicella-zoster virus (VZV). The inhibitory activity of acyclovir is highly selective due to is affinity for the enzyme thymidine kinase (TK) encoded by HSV and VZV. This viral enzyme converts acyclovir into acyclovir monophosphate, a nucleotide analogue. The monophosphate is further converted into diphosphate by cellular guanylate kinase adn into triphosphate by a number of cellualr enzymes. In vitro, acyclovir triphosphate stops replication of herpes viral DNA. Acyclovir inhibits viral DNA synthesis ... . Its selectivity of action depends on interaction with two distinct viral proteins. Cellular uptake and initial phosphorylation are facilitated by HSV thymidine kinase. The affinity of acyclovir for HSV thymidine kinase is about 200-fold greater than for the mammalian enzyme. Cellular enzymes convert the monophosphate to acyclovir triphosphate, which is present in 40- to 100-fold higher concentrations in HSV-infected than in uninfected cells, and competes for endogenous deoxyguanosine triphosphate (dGTP). The immunosuppressive agent mycophenolate mofetil potentiates the antiherpes activity of acyclovir and related agents by depleting intracellular dGTP pools. Acyclovir triphosphate competitively inhibits viral DNA polymerases and, to a much smaller extent, cellular DNA polymerases. Acyclovir triphosphate also is incorporated into viral DNA, where it acts as a chain terminator because of the lack of 3'-hydroxyl group. By a mechanism termed suicide inactivation, the terminated DNA template containing acyclovir binds the enzyme and leads to irreversible inactivation of the DNA polymerase. The concentration of the endogenous neurotoxin quinolinic acid (QA) is increased in the central nervous system of mice with herpes simplex encephalitis. /The authors/ have previously shown that the antiherpetic agent acyclovir (AC) has the ability to reduce QA-induced neuronal damage in rat brain, by attenuating lipid peroxidation. The mechanism by which QA induces lipid peroxidation includes the enhancement of the iron (Fe)-mediated Fenton reaction and the generation of free radicals, such as the superoxide anion (O(2)(-)). Thus, the present study determined whether AC has the ability to reduce Fe(2+)-induced lipid peroxidation, O(2)(-) generation and QA-induced superoxide anion generation, and to bind free Fe. O(2)(-) and Fe(2+) are also cofactors of the enzymes, indoleamine-2,3-dioxygenase (IDO) and 3-hydroxyanthranilate-3,4-dioxygenase (3-HAO) respectively. These enzymes catalyse steps in the biosynthesis of QA; thus, the effect of AC on their activity was also investigated. AC significantly attenuates Fe(2+)-induced lipid peroxidation and O(2)(-) generation. AC reduces O(2)(-) generation in the presence of QA and strongly binds Fe(2+) and Fe(3+). It also reduces the activity of both IDO and 3-HAO, which could be attributed to the superoxide anion scavenging and iron binding properties, respectively, of this drug.
Pharmacodynamics
Acyclovir is a deoxynucleoside analog that inhibits the action of viral DNA polymerase and DNA replication of different herpesvirus. Acyclovir has a wide therapeutic window as overdose is rare in otherwise healthy patients.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
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