This was an observational study of the efficacy and adverse events during long-term monotherapy with clevudine in treatment-naïve CHB patients. Clevudine monotherapy showed a potent antiviral effect within 12 months of treatment in both HBeAg-positive and HBeAg-negative patients. Phase III clinical trials of clevudine therapy demonstrated that 59.0 % of HBeAg-positive patients and 92.1 % of HBeAg-negative patients had undetectable levels of HBV DNA after 24 weeks of treatment (
5,
6). Similarly, in the present study, 64.4 % of HBeAg-positive patients and 94.6 % of HBeAg-negative patients had undetectable levels of HBV DNA by quantitative PCR assay after six months of clevudine therapy. This study revealed a potent antiviral response at 12 months of treatment (74.0 % in HBeAg-positive and 97.3 % in HBeAg-negative patients), which is comparable to the results obtained for entecavir or tenofovir therapy (
17,
18). Interestingly, there were no primary non-responders or primary treatment failures. However, the virological responses were lower at 24 and 36 months than that at 12 months, particularly among HBeAg-positive patients. The decreasing tendency of cumulative virological response reflects the development of antiviral resistance during long-term use of clevudine. Virological breakthrough occurred in 11.8 % and 22.7 % of the patients at 12 and 24 months of clevudine treatment, respectively, similar to the findings with telbivudine therapy (
19). However, clevudine was associated with a higher incidence of virological breakthrough compared to entecavir and tenofovir (
20,
21). Clevudine resistance is associated with rtM204I mutation in the HBV polymerase gene (
22). In our study, genotypic mutation was detected in 24 out of 25 cases for which a genotype analysis was performed. Resistant mutations were rtM204I and/or rtM204V and/or rtL180M; these are well-known antiviral resistant mutations in HBV DNA against lamivudine and telbivudine (
23). The structural similarity of clevudine and other two nucleoside analogues could thus cause development of the same antiviral-resistant mutation in HBV DNA polymerase. Nucleoside/nucleotide analogue-induced myopathy occurs during long-term treatment for chronic viral infection such as CHB and HIV (
24). The following mechanisms of drug-induced myotoxicity have been proposed: (a) direct effects on a muscle organelle, such as mitochondria, lysosomes, and myofibrillar proteins, (b) alteration of muscle antigens, thereby inducing an immunological or inflammatory reaction, and (c) induction of systemic effects, such as electrolyte disturbances, nutritional deprivation, or malabsorption, which secondarily affect muscle function (
16). The biological mechanisms of clevudine-related myopathy remained unclear. Recent studies of clevudine myopathy suggest mitochondrial dysfunction as a possible mechanism (
11,
12). Our experience of emergence of myopathy in clinical practice was in 15 out of 110 CHB patients (13.6 %) receiving clevudine therapy lasting more than 12 months. There was no remarkable lactic acidosis and no permanent and irreversible myopathy damage in either this study or any of previously published case reports (unlike filauridine disaster) (
25). Clevudine is known to possess prolonged potent antiviral activity after cessation of medication (
6,
26). Moreover, the characteristic pharmacodynamic clearance of clevudine, which does not follow first-order kinetics as a function of time, may increase intracellular L-FMAU triphophate (L-FMAUTP) in long-term clevudine therapy. Therefore, the accumulation of intracellular L-FMAUTP levels could help exert an HBV inhibitory effect, but also cause drug-related toxicities under long-term therapy. Weight loss and general weakness were frequent subjective symptoms of myopathy. Difficulty in climbing the stairs is also a pathognomic symptom. The most common sign in our study was decreased motor function in proximal muscles. Asking the patient to complete an easy stair climbing is the best way of discriminating between myopathy and general weakness. The EMG findings of the myopathy patients were highly variable: active, inactive, acute, and chronic at the time of diagnosis. Clinical symptoms of myopathy and muscular power recovered gradually after discontinuation of clevudine in 14 of the followed-up patients. In 8 of these 14 followed-up patients, we switched from clevudine to entecavir, after which they all recovered completely from the clinical myopathic symptoms without experiencing viral breakthrough. Therefore, switching to another antiviral agent appears to be the best option for patients with antiviral-induced myopathy. The phase III GLOBE study found three symptomatic myopathic cases out of 680 patients who received telbivudine (
19). That study also showed an adverse event, a grade 3 or 4 elevation in serum CK level that occurred in 7.5 % of patients receiving telbivudine. In the recent clinical studies of clevudine treatment, incidence of developing myopathy was reportedly higher than that for telbivudine, including our experience (15 %) (
10,
12). There was no report about elevations of CK with clevudine. It is not possible to compare the toxic-grade elevation of CK levels between the GLOBE study and ours; because different criteria for grading the toxicity of CK were used (the criterion of toxic grade 3 of CK was defined as ≥ 10 times the ULN in our study, but as ≥ 7 times the ULN in the GLOBE study). Grade 3 or 4 elevations in CK level were not observed in our study. However, 64 % (63/99) of our patients experienced an abnormal CK level (i.e., more than the ULN) at least once through the follow-up period. In total, 24 episodes of toxic grade CK elevations developed in 19 patients. Elevation of serum CK level is not regarded as a specific marker for myopathy because CK can not only be elevated by myotoxic muscle damage, but also by various muscle injuries including trauma and injection, as well as other factors. In the clinical trials for telbivudine, CK elevations were transient and were not reliable markers of muscular adverse events (
19,
27). However, our results showed that at least one or two episodes of abnormal CK elevation and at least one episode of toxic-grade CK > 1 occurred more frequently in patients developing myopathy. Elevation of CK levels before a diagnosis of myopathy could be a reflection of a subclinical stage of myopathy. For early detection of subclinical myopathy without overt muscle weakness, a careful medical examination should be followed by tests for serum CK level. Together, the findings of this study show that long-term clevudine therapy has potent antiviral effects and results in biochemical improvements. However, viral breakthrough was observed after 12 months of treatment. Clevudine-induced muscular adverse events were not uncommon during long-term clevudine treatment, even though the condition was totally reversible after cessation of the treatment or switching to a different antiviral medication. Monitoring of CK levels may be helpful for early detection of clevudine-induced myopathy during long-term therapy. Therefore, HBV DNA and muscular symptoms should be monitored closely during the long term use of clevudine.