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Case presentation
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This clinical case involves a Japanese woman in her 70s with a complex medical history including renal failure, hypertension, hyperlipidemia, reflux esophagitis, chronic gastritis, and chronic bronchitis. Her regular medications were amlodipine, lansoprazole, rebamipide, atorvastatin, epinastine, and ambroxol, and her body weight was 66.2 kg.
The patient was treated with valacyclovir at 1000 mg TID for herpes zoster ophthalmicus, starting eight days before hospital admission. After seven days of valacyclovir therapy, she developed neurological symptoms including fever, dysarthria, altered consciousness, hallucinations, and headache, leading to admission to a local hospital. Her laboratory tests showed a marked decline in renal function, with serum creatinine escalating to 4.02 mg/dL and estimated creatinine clearance dropping to 12.9 mL/min, indicating acute kidney injury.
Based on clinical suspicion of varicella-zoster virus (VZV) encephalitis, intravenous acyclovir (ACV) was initiated. However, after three days without neurological improvement and with worsening renal impairment, the patient was transferred to a tertiary care emergency unit. Upon admission (Day 0), ACV-induced nephropathy and encephalopathy were strongly suspected. Consequently, ACV was discontinued, and continuous hemodiafiltration (CHDF) was initiated to enhance drug clearance.
Laboratory analysis on admission revealed elevated serum creatinine consistent with acute renal failure. Cerebrospinal fluid (CSF) analysis via lumbar puncture showed normal cell counts and protein levels, with negative polymerase chain reaction (PCR) tests for VZV and herpes simplex virus, and negative antibody titers (IgM and IgG). Additionally, the FilmArray meningitis/encephalitis panel detected no pathogens, ruling out active infectious encephalitis.
Measurement of serum ACV concentrations revealed toxic levels at 14.1 μg/mL, exceeding the neurotoxic threshold of 3.4 μg/mL. The pharmacokinetics of ACV in this patient were characterized by an extended elimination half-life of 19.5 hours due to end-stage renal disease. Following initiation of CHDF, serum ACV levels declined rapidly, supporting the efficacy of CHDF in clearing ACV and mitigating toxicity.
The clinical course demonstrated progressive improvement in consciousness, as indicated by rising Glasgow Coma Scale (GCS) scores concurrent with declining ACV concentrations during CHDF treatment. CHDF was discontinued on Day 3, and the patient showed no evidence of ongoing VZV infection, with no need to restart antiviral therapy. She was discharged on Day 17 without neurological sequelae or VZV relapse.
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Study Author Conclusions
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This case underlines the importance of cautious use of renally-excreted antivirals like valacyclovir and acyclovir in elderly patients with pre-existing renal impairment and comorbidities such as hypertension and female sex, which are recognized risk factors for ACV-induced nephrotoxicity. It highlights the need for careful renal function monitoring and dosage adjustment to prevent accumulation and neurotoxicity. The rapid reduction of ACV serum levels and neurological recovery with CHDF emphasize continuous hemodiafiltration as an effective intervention in cases of ACV overdose or toxicity in patients with compromised renal function.
Furthermore, alternative therapies which do not require renal dose adjustment may be considered in similar clinical scenarios, although their CSF penetration and potential adverse effects warrant consideration. This clinical experience adds valuable insight into the pharmacokinetics and management of ACV neurotoxicity in patients with renal dysfunction, supporting vigilant therapeutic drug monitoring and tailored renal replacement strategies to optimize patient outcomes.
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