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Published on: September 8, 2021
Renal tubular dysfunction in schizophrenic patients treated with antipsychotic drugs
Maria J Tutor-Crespo1, Eduardo Paz, Jesús Hermida
1Unidad Monitorización Fármacos, Laboratorio Central, Hospital Clinico Universitario, Santiago de Compostela, Spain.
Abstract:
Several factors have been considered in relation to the free radical formation in schizophrenia, such as the disease itself, drug treatment and smoking. Several chemicals and drugs may cause damage to the renal tubules by different subcellular mechanisms including oxidative stress, and the aim of our study was the investigation of tubular dysfunction in schizophrenic patients. The urinary excretion of beta-N-acetylhexosaminidase (Hex) and its isoenzymes Hex A and Hex B, alpha1-microglobulin, albumin, total proteins and fractionated porphyrins were determined in 45 schizophrenic patients treated with first- and second-generation antipsychotics. In 7 patients, an increase in proteinuria of tubular origin was found, and in one as a result of mixed glomerular/tubular origin. The group of patients had a significantly higher level of excretion than the control group (n = 54) of total Hex (p < 0.001), Hex A (p < 0.05), Hex B (p < 0.001) and the relative proportion of this isoenzyme (p < 0.001). In some cases with normal levels of total Hex and urinary alpha1-microglobulin, the proportion of Hex B was already increased. Significant correlations were found for total Hex and its isoenzymes with alpha1-microglobulin (p < 0.001). Also, the porphyrins had significant correlations with total Hex (p < 0.001), Hex A (p < 0.05), Hex B (p < 0.005) and alpha1-microglobulin (p < 0.001). In the group of patients studied, it was possible to reveal early tubular cell damage (affected structural integrity) with increased excretion of Hex B, possibly mediated by free radicals, previous to the decrease in tubular reabsorption of proteins with low molecular mass filtered by the glomerulus (affected functional integrity).
Insights
Schizophrenic patients show increased urinary excretion of beta-N-acetylhexosaminidase (Hex) and its isoenzymes, indicating early kidney tubular damage. This damage, potentially linked to oxidative stress, may precede detectable changes in protein reabsorption.
Area of Science:
- Nephrology
- Psychiatry
- Biochemistry
Background:
- Schizophrenia is associated with factors like oxidative stress, potentially impacting kidney function.
- Antipsychotic medications and disease processes may contribute to renal tubule damage.
Purpose of the Study:
- To investigate tubular dysfunction in schizophrenic patients.
- To assess urinary biomarkers of kidney damage in individuals with schizophrenia.
Main Methods:
- Analyzed urinary excretion of beta-N-acetylhexosaminidase (Hex) and its isoenzymes (Hex A, Hex B), alpha1-microglobulin, albumin, total proteins, and porphyrins.
- Compared 45 schizophrenic patients (on antipsychotics) with 54 healthy controls.
- Assessed proteinuria and correlated biomarker levels.
Main Results:
- Schizophrenic patients exhibited significantly higher urinary levels of total Hex, Hex A, Hex B, and a greater proportion of Hex B compared to controls.
- Increased Hex B excretion was observed even with normal total Hex and alpha1-microglobulin levels, suggesting early tubular cell damage.
- Significant correlations were found between Hex levels, alpha1-microglobulin, and porphyrins.
Conclusions:
- Elevated urinary Hex B may serve as an early indicator of kidney tubular cell damage in schizophrenia, potentially mediated by oxidative stress.
- This biomarker change may precede functional decline in tubular reabsorption.
- Urinary Hex isoenzymes are valuable markers for detecting subclinical kidney injury in schizophrenic patients.
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