Glycogen synthase kinase 3 (GSK3) plays an important role in the development of diabetes mellitus and renal injury. GSK3 inhibition increases glucose uptake in insulin-insensitive muscle and adipose tissue, while it reduces albuminuria and glomerulosclerosis in acute kidney injury. The effect of chronic GSK3 inhibition in diabetic nephropathy is not known. We tested the effect of lithium, the only clinical GSK3 inhibitor, on the development of diabetes mellitus and kidney injury in a mouse model of diabetic nephropathy. Twelve-week old female BTBR-ob/ob mice were treated for 12 weeks with 0, 10 and 40 mmol LiCl/kg after which the development of diabetes and diabetic nephropathy were analysed. In comparison to BTBR-WT mice, ob/ob mice demons...
In antidiuresis, vasopressin (AVP) occupation of V2 receptors in renal collecting ducts activates ad...
Lithium (Li+) salts are widely used to treat bipolar mood disorders. Recent trials suggest a potenti...
Objectives: Lithium is a drug of choice in maniac disorder. Lithium inhibits the glycogen synthase k...
Glycogen synthase kinase 3 (GSK3) plays an important role in the development of diabetes mellitus an...
Contains fulltext : 181190.pdf (publisher's version ) (Open Access)Glycogen syntha...
Chronic lithium treatment for bipolar disease causes mainly side effects in the kidney. A subset of ...
Lithium, given to bipolar disorder patients, causes nephrogenic diabetes insipidus (Li-NDI), a urina...
Trace amounts of lithium are essential for our physical and mental health, and administration of lit...
Rhabdomyolysis is characterized by muscle damage and leads to acute kidney injury (AKI). Clinical an...
Contains fulltext : 138547.pdf (publisher's version ) (Closed access)Vasopressin-r...
While lithium remains the most efficacious treatment for bipolar disorder, it can cause significant ...
Tubule-interstitial injury (TII) is a critical step in the progression of renal disease. It has been...
Psychiatric patients treated with lithium (Li+) may develop nephrogenic diabetes insipidus (NDI). Al...
Vasopressin (AVP)-stimulated translocation and transcription of aquaporin-2 (AQP2) water channels in...
Male BALB/C mice were separated into different experimental groups as described in the Materials and...
In antidiuresis, vasopressin (AVP) occupation of V2 receptors in renal collecting ducts activates ad...
Lithium (Li+) salts are widely used to treat bipolar mood disorders. Recent trials suggest a potenti...
Objectives: Lithium is a drug of choice in maniac disorder. Lithium inhibits the glycogen synthase k...
Glycogen synthase kinase 3 (GSK3) plays an important role in the development of diabetes mellitus an...
Contains fulltext : 181190.pdf (publisher's version ) (Open Access)Glycogen syntha...
Chronic lithium treatment for bipolar disease causes mainly side effects in the kidney. A subset of ...
Lithium, given to bipolar disorder patients, causes nephrogenic diabetes insipidus (Li-NDI), a urina...
Trace amounts of lithium are essential for our physical and mental health, and administration of lit...
Rhabdomyolysis is characterized by muscle damage and leads to acute kidney injury (AKI). Clinical an...
Contains fulltext : 138547.pdf (publisher's version ) (Closed access)Vasopressin-r...
While lithium remains the most efficacious treatment for bipolar disorder, it can cause significant ...
Tubule-interstitial injury (TII) is a critical step in the progression of renal disease. It has been...
Psychiatric patients treated with lithium (Li+) may develop nephrogenic diabetes insipidus (NDI). Al...
Vasopressin (AVP)-stimulated translocation and transcription of aquaporin-2 (AQP2) water channels in...
Male BALB/C mice were separated into different experimental groups as described in the Materials and...
In antidiuresis, vasopressin (AVP) occupation of V2 receptors in renal collecting ducts activates ad...
Lithium (Li+) salts are widely used to treat bipolar mood disorders. Recent trials suggest a potenti...
Objectives: Lithium is a drug of choice in maniac disorder. Lithium inhibits the glycogen synthase k...