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Biomedical subjects

G Kaysen

Publications and source records attributed to G Kaysen.

11 recordsLinked to original sources

Role of cytomegalovirus infection in allograft rejection: a review of possible mechanisms.

Several lines of evidence indicate that viral infections, particularly with cytomegalovirus (CMV), play a role in the pathogenesis of solid organ allograft rejection. A diagnostic feature of acute rejection is infiltration of allograft parenchyma by lymphocytes, a process regulated by induction of adhesion molecules on vascular endothelial cells and their ligand on leucocytes. Data derived from biopsies of CMV-infected transplant recipients, as well as from experimental models of transplantation, indicate that CMV infection can result in an upregulation of such adhesion molecules, thereby facilitating the inflammatory process. Infection with CMV is also associated with an increased expression of MHC class II on multiple cell types. Since recognition of nonself MHC antigens is the major determinant of allograft rejection, an upregulation of these molecules could contribute to graft failure. Infection with CMV has also been implicated in the induction of smooth muscle proliferation and intimal thickening, both hallmarks of transplant atherosclerosis, which constitutes the most common cause of heart allograft failure. CMV can be classified into four, possibly five, different genotypes based on restriction length polymorphism of the envelope glycoprotein B gene; these genotypes may exhibit varied geographic and demographic frequency distributions and also differ in their pathogenicity and cell tropism. Further studies are needed to evaluate these issues and in particular the genetic contribution of the recipient to CMV modulation of rejection.

Animals↗

Blood-tissue transport of exogenous albumin and immunoglobulin G in genetically analbuminemic rats.

Tracer uptake studies were carried out in adult female Nagase (NA) strain analbuminemic rats [derived from Sprague-Dawley (SD) stock] and in adult female SD controls to determine the extent to which capillary permeability to plasma proteins is altered in the absence of endogenous albumin. Accessory measurements (arterial pressure, central venous pressure, plasma and interstitial fluid protein concentrations and oncotic pressures, plasma volume, and interstitial fluid volume) confirm the report of Joles et al. [Am. J. Physiol. 257 (Renal Fluid Electrolyte Physiol. 26): F23-F28, 1989] that shows elevated plasma volumes, normal interstitial fluid volumes, nearly normal plasma oncotic pressures (due to elevated globulin concentrations), and lower interstitial fluid oncotic pressures. In skin, skeletal muscles, and heart muscle, clearances of exogenous heterologous (bovine) albumin were 20-40% higher in NA than in SD controls. In intestine, albumin clearances were 20-30% lower. In NA rats blood-to-tissue clearances of heterologous (bovine) immunoglobulin G in skin and heart were higher and in the intestine they were lower than in SD controls; however, clearances in skeletal muscles were not elevated. The differences between NA and SD are small compared with the large increases in macromolecular permeabilities reported by others for organs and single microvessels perfused with albumin-free fluids.(ABSTRACT TRUNCATED AT 250 WORDS)

Albumins↗

Role of the kidneys in the metabolism of circulating mevalonate in humans.

Previous studies in several animal species have demonstrated that the kidneys are the primary site of mevalonate metabolism by the oxidative or shunt pathway. To determine the role of the human kidney in mevalonate oxidation, we studied mevalonate shunt activity in patients undergoing hemodialysis for varying degrees of renal failure. Surprisingly, at least half of the uremic patients and even anephric patients had normal ability to oxidize mevalonate by the shunt pathway. In addition, we found a strong negative correlation (R = -0.94) between mevalonate shunt activity and serum phosphorus levels in uremic patients. The resulting inhibition of mevalonate oxidation by high serum phosphorus levels was reversed by lowering the serum phosphorus in one patient. Finally, a positive correlation was found between mevalonate oxidation and serum PTH levels. The results of this study suggest that, in humans, extrarenal tissues can be major contributors to mevalonate oxidation. It is therefore probable that in humans, in contrast to other animals, the kidney is not the primary site of mevalonate metabolism by this oxidative pathway. Finally, the strong negative correlation between serum phosphorus levels and the ability of uremic patients to oxidize mevalonate suggests a regulatory role for the phosphate ion in the mevalonate shunt pathway.

Adult↗

The effects of alcohol on blood pressure and electrolytes.

The interaction between alcohol abuse, changes in blood pressure, and electrolyte abnormalities is complex. Some effects of alcohol are seen only with acute ingestion, some during withdrawal, and some only in chronic drinkers. Careful attention to the interactions between the metabolism of various electrolytes can prevent unnecessary morbidity and mortality in alcoholic patients.

Acid-Base Imbalance↗

Long-term renal function in kidney donors. Sustained compensatory hyperfiltration with no adverse effects.

Twenty patients who underwent uninephrectomy for kidney donation between 1964 and 1968 participated in a long-term study of the function of the solitary kidney. Mean follow up after uninephrectomy was 15.8 +/- .3 years. One patient with a strong family history of essential hypertension developed de novo mild hypertension. The current creatinine clearance of the donors was 80 +/- 4 ml/min. The 1-week, 3-6 months and 14-18 years postuninephrectomy percentages of predonation creatinine clearance were 72 +/- 3%, 76 +/- 3% and 78 +/- 2%, respectively. The 24-hr urine protein excretion in kidney donors was significantly higher than in controls (141 +/- 20 mg vs. 74 +/- 3 mg, respectively, P less than .0005). Except for one donor who may have developed glomerulonephritis, the donors had normal urinary albumin excretion. The cause of the slightly elevated nonalbumin proteinuria is not known. However, this long-term study of kidney donors shows no adverse effects on the blood pressure and renal function after many years of compensatory hyperfiltration.

Adult↗

Potential pitfalls in the evaluation of the usefulness of hemodialysis for the removal of lithium.

A 50-year old female who was comatose from an overdose of lithium was treated with hemodialysis. Serum lithium concentrations declined 47% during a 3-h hemodialysis but increased afterwards, peaking 8 h after hemodialysis was stopped. Hemodialysis clearances were estimated by equations using extraction ratios of lithium from whole blood, serum, and red cells, and flows of whole blood, serum or red cells. The amount of lithium removed was calculated from these clearances as well as measured directly in the dialysate. Errors were introduced into the calculation of the amount of lithium removed by hemodialysis unless whole blood concentrations of lithium and whole blood flows were used. These arose because extraction of lithium from serum (0.7 +/- 0.3, mean +/- SD) was greater than that from whole blood (0.49 +/- 0.06) or from red blood cells (0.18 +/- 0.12). Despite the rapid decrease in serum concentrations of lithium during hemodialysis and rebound afterwards, the patient's neurologic status did not change concurrently. The patient did not regain consciousness until lithium concentrations fell to less than 0.4 meq/L in serum and 0.1 meq/L in cerebrospinal fluid. The lack of parallel change in serum concentrations and coma probably reflects the lag time in equilibration between lithium concentrations in serum and brain.

Female↗

Alpha macroglobulins and the low-density-lipoprotein-related protein/alpha-2-macroglobulin receptor in experimental renal fibrosis.

In this study, we evaluated the location of non-specific proteinase inhibitors and their receptor in experimental glomerular and interstitial fibrosis. The alpha macroglobulins alpha-2-macroglobulin (alpha2M) and alpha-1-inhibitor 3 (alpha1I3) are proteinase inhibitors, including metalloproteinases and serine proteases. Using immunohistochemistry, we detected alpha1I3 in the glomerular mesangium in control rats. In acute and chronic fibrosis, the alpha1I3 protein expression was dramatically increased throughout the glomerulus and at sites of increased extracellular matrix deposition in the interstitium. The presence of alpha1I3 in normal and nephrotic kidneys was confirmed by Western blotting. Under chemically reducing conditions, we found that, in contrast to native alpha1I3, kidney-derived alpha1I3 has reacted upon by proteinases, thereby revealing a functional role for this macroglobulin under normal and pathological conditions. Double staining revealed that high amounts of glomerular alpha1I3 were present in sclerotic lesions. alpha2M was absent in glomeruli and interstitium from control rats, but present in small amounts in glomerular mesangial areas of acute nephrotic rats. alpha2M was also present in significant amounts in glomeruli from rats with chronic fibrosis. The receptor mediating the uptake of proteinase inhibitor-proteinase complexes, the low-density-lipoprotein-related protein/alpha-2-macroglobulin receptor, was found in the glomerular mesangium and tubulo-interstitium from control rats. Significant increments in receptor expression were found in glomeruli and interstitium of rats with chronic fibrosis, with a preferential localization in fibrotic areas. Interstitial staining for low-density-lipoprotein-related protein/alpha-2-macroglobulin receptor was attributed to fibroblasts, since double staining ruled out dendritic cells and macrophages. In conclusion, these studies demonstrate the intrarenal presence of plasma-derived proteinase inhibitors together with their receptors. These findings may point to a novel mechanism for renal fibrosis wherein matrix-degrading proteinases are inhibited, resulting in renal fibrosis.

Acute-Phase Proteins↗