Is Dose Adjustment Based on Several Factors of Body Size Descriptors Effective for Prevention of Thrombocytopenia by Linezolid Therapy in Hemodialysis Patients?
- 1 Department of Infection Control and Prevention, Aichi Medical University School of Medicine, Nagakute, Japan
- 2 Department of Pharmacy, Aichi Medical University School of Medicine, Nagakute, Japan
- 3 Department of Infection Control and Prevention, Aichi Medical University School of Medicine, Nagakute, Japan
- 4 Department of Pharmacy, Aichi Medical University School of Medicine, Nagakute, Japan
- 5 Department of Infection Control and Prevention, Aichi Medical University School of Medicine, Nagakute, Japan
- 6 Department of Infection Control and Prevention, Aichi Medical University School of Medicine, Nagakute, Japan
- 7 Department of Infection Control and Prevention, Aichi Medical University School of Medicine, Nagakute, Japan
- 8 Department of Pharmacy, Aichi Medical University School of Medicine, Nagakute, Japan
- 9 Department of Infection Control and Prevention, Aichi Medical University School of Medicine, Nagakute, Japan
Abstract
Previous study suggested that low body weight was one of the risk factors of thrombocytopenia induced by linezolid in non-hemodialysis patients. However, there have been little investigations for the linezolid-induced thrombocytopenia in hemodialysis patients. This study was to evaluate the association between several factors of body size descriptors and thrombocytopenia in hemodialysis-patients. No factor of body size descriptors showed significant correlation with linezolid-induced thrombocytopenia (patients with thrombocytopenia vs patients without thrombocytopenia: body weight; 60.0 kg vs 55.3 kg, p = 0.82: body mass indices; 21.1 kg/m 2 vs 21.2 mg/m 2 , p = 0.44: ideal body weight; 61.2 kg vs 59.5 kg, p = 0.21: lean body weight; 50.1 kg vs 45.7 kg, p = 0.64: dosage amount; 20.0 mg/kg vs 21.7 mg/kg, p = 0.74: body surface area; 1.65 m 2 vs 1.54 m 2 , p = 0.43). There were not significant differences in the body size descriptors between linezolid therapy for more than 14 days and for less than 13 days (more than 14 days vs less than 13 days: body weight; 53.5 kg vs 56.8 kg, p = 0.75: body mass indices; 20.9 kg/m 2 vs 21.1 mg/m 2 , p = 0.47: ideal body weight; 60.3 kg vs 59.9 kg, p = 0.17: lean body weight; 44.3 kg vs 47.7 kg, p = 0.56: dosage amount; 22.4 mg/kg vs 21.1 mg/kg, p = 0.67: body surface area; 1.51 m2 vs 1.59 m 2 , p = 0.37). Our data suggested that dosage adjustment of linezolid based on body weight was not recommended in hemodialysis-patients.
- Stevens, D.L., Herr, D., Lampiris, H., Hunt, J.L., Batts, D.H. and Hafkin, B. (2002) Linezolid versus Vancomycin for the Treatment of Methicillin-Resistant Staphylococcus aureus Infection. Clinical Infectious Diseases, 34, 1481-1490. http://dx.doi.org/10.1086/340353
- Takahashi, Y., Takesue, Y., Nakajima, K., Ichiki, K., Tsuchida, T., Tatsumi, S., Ishihara, M., Ikeuchi, H and Uchino, M. (2011) Risk Factors Associated with the Development of Thrombocytopenia in Patients Who Received Linezolid Therapy. Journal of Infection and Chemotherapy, 17, 382-387. http://dx.doi.org/10.1007/s10156-010-0182-1
- Kato, H., Hamada, Y., Hagihara, M., Hirai, J., Yamagishi, Y., Matsuura, K. and Mikamo, H. (2015) Bicytopenia, Especially Thrombocytopenia in Hemodialysis and Non-Hemodialysis Patients Treated with Linezolid Therapy. Journal of Infection and Chemotherapy, 21, 707-712. http://dx.doi.org/10.1016/j.jiac.2015.06.007
- Lemmens, H.J., Brodsky, J.B. and Bernstein, D.P. (2005) Estimating Ideal Body Weight—A New Formula. Obesity Surgery, 15, 1082-1083. http://dx.doi.org/10.1381/0960892054621350
- Janmahasatian, S., Duffull, S.B., Ash, S., Ward, L.C., Byrne, N.M. and Green, B. (2005) Quantification of Lean Body Weight. Clinical Pharmacokinetics, 44, 1051-1065. http://dx.doi.org/10.2165/00003088-200544100-00004
- Fujimoto, S., Watanabe, T., Sakamoto, A., Yukawa, K. and Morimoto, K. (1968) Studies on the Physical Surface area of Japanese. 18. Calculation Formulae in Three Stages over All Ages. Nippon Eiseigaku Zasshi, 5, 443-450. http://dx.doi.org/10.1265/jjh.23.443
- Hirano, R., Sakamoto, Y., Tachibana, N. and Ohnishi, M. (2014) Retrospective Analysis of the Risk Factors for Linezolid-Induced Thrombocytopenia in Adult Japanese Patients. International Journal of Clinical Pharmacy, 36, 795-799. http://dx.doi.org/10.1007/s11096-014-9961-6
- Sasaki, T., Takane, H., Ogawa, K., Isagawa, S., Hirota, T., Higuchi, S., Horii, T., Otsubo, K. and Ieiri I. (2011) Population Pharmacokinetic and Pharmacodynamics Analysis of Linezolid and a Hematologic Side Effect, Thrombocytopenia, in Japanese Patients. Antimicrobial Agents and Chemotherapy, 55, 1867-1873. http://dx.doi.org/10.1128/AAC.01185-10
- Natsumoto, B., Yokota, K., Omata, F. and Furukawa, K. (2014) Risk Factors for Linezolid-Associated Thrombocytopenia in Adult Patients. Infection, 42, 1007-1012. http://dx.doi.org/10.1007/s15010-014-0674-5
- Brier, M.E., Stalker, D.J., Aronoff, G.R., Batts, D.H., Ryan, K.K., O’Grady, M., Hopkins, N.K. and Jungbluth, G.L. (2003) Pharmacokinetics of Linezolid in Subjects with Renal Dysfunction. Antimicrobial Agents and Chemotherapy, 47, 2775-2780. http://dx.doi.org/10.1128/AAC.47.9.2775-2780.2003