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Biomedical subjects

Mary Jo Holechek

Publications and source records attributed to Mary Jo Holechek.

3 recordsLinked to original sources

Expanding the living organ donor pool: positive crossmatch and ABO incompatible renal transplantation.

There is a significant shortage of donor kidneys. As a result, kidney transplant candidates wait for prolonged periods of time for an organ, and over eight die every day while awaiting a kidney transplant. To improve this situation, the transplant community has actively sought creative solutions to the organ shortage. Many patients have willing live donors who are excluded from donation due to a positive crossmatch or blood group incompatibility. Plasmapheresis and intravenous immunoglobulin in combination can efficiently remove antibodies against donor tissue and blood group antigens and prevent these antibodies from returning after transplantation. Both strategies are complex but have good success rates and provide an opportunity for transplantation to those who might wait years for an organ or die waiting on the list Knowledge of these novel protocols is essential for the nephrology nurse who is often the first health care provider to discuss transplantation with end stage renal disease (ESRD) patients.

ABO Blood-Group System↗

Glomerular filtration: an overview.

The formation of urine is a process that begins with glomerular filtration and is greatly influenced by changes in renal hemodynamics. Selective filtration of the blood is possible because of the unique characteristics of the glomerulus and renal circulation. Many factors interact to maintain a consistent blood flow allowing filtration and urine formation to continue despite systemic changes in blood pressure. Factors that impact on renal hemodynamics include the autoregulatory mechanism, the renin-angiotensin mechanism, eicosanoids, kinins, the sympathetic nervous system (SNS), catecholamines, antidiuretic hormone, endothelin, nitric oxide, atrial natriuretic peptide, and dopamine. Knowledge of the effects of these factors will allow the nephrology nurse to predict, identify, and assist in the treatment of clinical conditions that can alter renal hemodynamics and glomerular filtration.

Creatinine↗

Renal hemodynamics: an overview.

The formation of urine is a process that begins with glomerular filtration and is greatly influenced by changes in renal hemodynamics. Selective filtration of the blood is possible because of the unique characteristics of the glomerulus and renal circulation. Many factors interact to maintain a consistent blood flow allowing filtration and urine formation to continue despite systemic changes in blood pressure. Factors that impact on renal hemodynamics include the autoregulatory mechanism, the renin-angiotensin mechanism, eicosanoids, kinins, the sympathetic nervous system (SNS), catecholamines, antidiuretic hormone, endothelin, nitric oxide, atrial natriuretic peptide, and dopamine. Knowledge of the effects of these factors will allow the nephrology nurse to predict, identify, and assist in the treatment of clinical conditions that can alter renal hemodynamics and glomerular filtration.

Angiotensins↗