1.Therapeutic drug monitoring of vancomycin in a patient with Duchenne muscular dystrophy (DMD): A case report.
Sang Won LEE ; Seonghae YOON ; Kyung Sang YU ; Seunghwan LEE
Translational and Clinical Pharmacology 2016;24(3):124-126
Vancomycin is a widely used glycopeptide antibiotic that requires therapeutic drug monitoring (TDM) owing to its narrow therapeutic window. It is primarily eliminated by renal excretion; thus, estimating the renal function of a patient is vital in the TDM of vancomycin. In patients with Duchenne muscular dystrophy (DMD), it is difficult to estimate the glomerular filtration rate using the serum creatinine level owing to the pathophysiological nature of the disease. Here, we report a case of a patient in whom TDM of vancomycin was performed, and explore the appropriate methods for evaluating renal function in patients with DMD based on serum levels of creatinine and cystatin C.
Creatinine
;
Cystatin C
;
Drug Monitoring*
;
Glomerular Filtration Rate
;
Humans
;
Muscular Dystrophy, Duchenne*
;
Renal Elimination
;
Vancomycin*
2.Augmented renal clearance
Translational and Clinical Pharmacology 2018;26(3):111-114
Adding to the complexity of caring for critically ill patients is the fact that many of them have a creatinine clearance that exceeds 130 mL/min/1.73 m². This phenomenon, termed augmented renal clearance (ARC), has only recently been widely recognized and its pathogenesis remains incompletely understood. However, ARC has been shown to result in increased dose requirements for drugs that are primarily eliminated by renal excretion, including many antimicrobial agents and enoxaparin. Recognition of ARC is hampered by the fact that the standard creatinine-based equations used to estimate renal function are not accurate in this clinical setting and the diagnosis is best established using both serum and urine creatinine measurements to calculate clearance. So a high index of clinical suspicion and awareness is usually required before this step is taken to confirm the diagnosis of ARC.
Anti-Infective Agents
;
Creatinine
;
Critical Illness
;
Diagnosis
;
Enoxaparin
;
Humans
;
Renal Elimination
3.A Case of Isolated Glycosuria Mediated by an SLC5A2 Gene Mutation and Characterized by Postprandial Heavy Glycosuria Without Salt Wasting.
Kyeong Min KIM ; Soon Kil KWON ; Hye Young KIM
Electrolytes & Blood Pressure 2016;14(2):35-37
Familial renal glycosuria (FRG) is an inherited disorder characterized by persistent glycosuria in the absence of hyperglycemia. It is caused by mutations in the sodium-glucose co-transporter, leading to increase in the renal excretion of glucose and sodium. However, there have been no studies on the role of fasting and postprandial changes in the urinary sodium excretion in patients with FRG. We report a case of renal glycosuria, which was confirmed by a SLC5A2 mutation via gene sequencing, and compared the postprandial urinary glucose and sodium excretion. A 26-year-old man sometimes experienced glycosuria on routine screening; however, other laboratory findings were normal. His fasting and postprandial urinary glucose excretion levels were 295mg/dL and 2,170mg/dL, respectively. The fasting and postprandial urinary sodium excretion levels were 200mEq/L and 89mEq/L, respectively. In patients with FRG, excessive diuresis might be prevented by a compensatory mechanism that reduces postprandial sodium excretion.
Adult
;
Diuresis
;
Fasting
;
Glucose
;
Glycosuria*
;
Glycosuria, Renal
;
Humans
;
Hyperglycemia
;
Mass Screening
;
Renal Elimination
;
Sodium
;
Sodium-Glucose Transport Proteins
4.Effect of Corticosteroids on Renal Excretion of Lithium.
Shin Yul OH ; Jeoung Hee HA ; Kwang Youn LEE ; Won Joon KIM
Yeungnam University Journal of Medicine 1986;3(1):229-235
Lithium salts are being used increasingly to treat patient with affective disorders, especially acute mania, or bipolar manic-depressive illness. For therapeutic effect the lithium content must be maintained at or above a particular level. Lithium poisoning due to overdosage may be seen occasionally, and its course is determined primarily by the rate of renal lithium elimination. A search is therefore indicated for procedures that could raise the lithium clearance. In a number of reports renal lithium excretion has been studied in relation to the excretion of water, sodium, potassium and hydrogen, but effects of sodium or water on the lithium excretion has not yet been clarified. Hence the present study was undertaken to investigate the effects of corticosteroid on the excretion of lithium ion. The female rat (Sprague-Dowley), weighing from 200 to 300g, was injected with 50mg/kg of lithium chloride intraperitoneally, and then injected with graded dosage of fludrocortisones and dexamethasone in each group. During the injected rats were incubated in metabolic cage, 24 hour urine of rats were collected. At 24 hours after injection, the rats were sacrificed with guillotine, the blood were collected. And then the concentrations of Na⁺, K⁺, Li⁺ of collected urine and serum were checked by Flame photometer. The results are summarized as follows 1. Fludrocortisone decreased the serum concentration of lithium and increased the urinary excretion of lithium. 2. In the group treated with low dose of dexamethasone (0.1 mg/kg), the serum concentration of lithium was decreased and high dose of dexamethasone (1 mg/kg) increased the urinary excretion of lithium. 3. Fludrocortisone increased the urinary [Na⁺]/[K⁺] in serum and decreased [Na⁺]/[K⁺] inurine, but opposite effects were occurred in dexamethasone. By above results, it may be concluded that corticosteroid increased the urinary excretion of lithium and decreased the serum concentration of lithium, but it seems to be there in no relationship between these effects of corticosteroid and of the renal Na⁺ or K⁺ transport.
Adrenal Cortex Hormones*
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Animals
;
Bipolar Disorder
;
Dexamethasone
;
Female
;
Fludrocortisone
;
Humans
;
Hydrogen
;
Lithium Chloride
;
Lithium*
;
Mood Disorders
;
Poisoning
;
Potassium
;
Rats
;
Renal Elimination*
;
Salts
;
Sodium
;
Water