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Biomedical subjects

J H Shinaberger

Publications and source records attributed to J H Shinaberger.

8 recordsLinked to original sources

A volume controlled apparatus for ultrafiltration and hemofiltration with acetate or bicarbonate solutions.

To meet a growing need, a single dialysis apparatus has been developed that can easily be employed by conventionally trained staff to perform volume programmed ultrafiltration hemodialysis, sequential ultrafiltration-hemodialysis, hemofiltration, or any combination of these with either acetate or bicarbonate based dialysate. Continued studies will be necessary to establish its full suitability for general use. However, we feel that the investigations of the various modes of dialysis therapy that this device makes so readily available show great potential for improving the treatment of ESRD.

Acetates

Acute interstitial nephritis due to methicillin.

Fourteen patients are described with a syndrome of methicillin-induced interstitial nephritis. In all patients severe renal dysfunction developed with an average peak serum creatinine of 8 mg/100 ml. An increased total peripheral eosinophil count was found in all patients. All patients had sterile pyuria and each of nine patients studied by Wright's stain of urine sediment had marked eosinophiluria. These findings are suggestive of methicillin-induced interstitial nephritis, although proteinura was a variable finding in our patients. Eight of 14 patients in our study received prednisone therapy for their interstitial nephritis, and the time lapse between maximal and final base line serum creatinine levels was statistically less in the prednisone-treated compared to the nontreated groups. Clinical manifestations of this syndrome are discussed, and the light and electron microscopic and immunofluorescent findings on renal biospy are described.

Adult

Thyroid function in patients undergoing maintenance hemodialysis: unexplained low serum thyroxine concentration.

Thyroid function was studied in 55 patients undergoing maintenance hemodialysis who were all judged to be clinically euthyroid. The dialysis patients, in comparison to normal control subjects, had significantly lower mean values for serum T4 (4.0 +/- 1.4 [SD] microgram/dl versus 7.9 +/- 1.5 microgram/dl, p less than 0.001), T3 (118 +/- 31 ng/dl versus 147 +/- 28 ng/dl, p less than 0.001), free T4 measured by equilibrium dialysis (1.22 +/- 0.38 ng/dl versus 2.15 +/- 0.67 ng/dl, p less than 0.001), free T3, free T4 index, and free T3 index. Serum TBG, measured by radioimmunoassay, was similar to that of the controls and serum TSH, 2.2 +/- 1.3 micromicron/ml, was also similar to that of control values, 2.0 +/- 1.1 micromicron/ml. The serum PBI did not change during the dialysis procedure, but serum inorganic iodine fell slightly from 2.1 +/- 1.1 microgram/dl before dialysis to 1.2 +/- 0.6 microgram/dl after dialysis (p less than 0.05). The marked reduction in serum total T4 and free T4 concentrations and the moderate reduction in serum total T3 and free T3 levels in apparently euthyroid patients undergoing hemodialysis has not been explained. The normal serum TSH levels in the face of these low concentrations of thyroid hormone suggests an abnormality in the control of TSH secretion in these patients.

Adult

Dialysis therapy and transplantation in uremia: which to use when.

In the United States, 10,000 to 18,000 new patients require therapy for end-stage renal disease each year. A combination of medical and psychosocial criteria can be used to predict whether renal transplantation or maintenance hemodialysis or peritoneal dialysis may be the most efficacious treatment. In most cases, dialysis therapy should be initiated when signs and symptoms of uremia are only subtle, usually when creatinine clearance is between 3 and 6 ml/min. One mode of therapy can be exchanged for another to suit changing needs, and vascular access should be created even in patients who ultimately will undergo peritoneal dialysis or receive a transplant.

Creatinine

Erythropoietin alert: risks of high hematocrit hemodialysis.

The impending release of erythropoietin (EPO) is expected to result in a dramatic increase in hematocrit (Hct) for most hemodialysis (HD) patients. Our studies indicate that as Hct rises, dialyzer mass transport for some clinically critical solutes will be adversely affected. When whole blood clearances are corrected for solute-specific blood-water flows (QBH2O), the effect on the surrogate molecule, urea, used in urea kinetic modeling (UKM) is deceptively minimal, because only urea can diffuse almost instantly from red cells into blood water. For the critical solutes, potassium and phosphate, QBH2O is reduced to Q (plasma water). With a KoA of 690 ml/min at QB = 300, clearance of potassium falls at least 19.3% as Hct rises from 20 to 40% so that steady-state predialysis potassium could rise from 6.0 to 6.95 mEq/L. Already inadequate phosphate clearance falls at least 10% and additional loss results from physical interference by RBCs with solute diffusion. Hcts are further increased with rapid weight losses during high-efficiency dialyses (0.15 per 5% weight loss in 3 hours, r = 0.82) resulting in blood-side pressures such that most dialysis machines cannot provide adequate dialysate pressures to maintain low ultrafiltration rates (UFRs) at the high QB levels. The combination of pre-existing diffuse vascular disease, postdialysis hypovolemia, hypotension, decreased cardiac output, and increased blood viscosity has and will produce disastrous syndromes of organ ischemia, thrombosis, and infarction. Predialysis hypertension can worsen. Extreme caution and adjustment of dialysis regimen is necessary as patient Hct rises above 36%.

Adult