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S M Factor

Publications and source records attributed to S M Factor.

At least 55 records · Page 3Linked to original sources

An endothelial cell adhesion protein for monocytes recognized by monoclonal antibody IG9. Expression in vivo in inflamed human vessels and atherosclerotic human and Watanabe rabbit vessels.

BACKGROUND: Monocyte adhesion to the vascular endothelium, an important component of an inflammatory response, is one of the earliest detected events in the pathogenesis of atherosclerosis. We have identified a monocyte adhesion molecule, recognized by monoclonal antibody (mAb) IG9, on the cell surface of human umbilical vein endothelial cells (HUVEC) treated with tumor necrosis factor-alpha (TNF-alpha), interleukin-1, or lipopolysaccharide. Endothelial cell expression in vitro and in vivo of the protein recognized by mAb IG9 (IG9 protein) was further characterized. EXPERIMENTAL DESIGN: The kinetics of cytokine-induced IG9 protein expression on HUVEC were evaluated by enzyme-linked immunosorbent assay. TNF-alpha-treated HUVEC surface proteins, labeled with [125I]Na, were solubilized in NP-40 detergent and immunoprecipitated with mAb IG9 to determine the molecular weight of the IG9 protein. The functional role of the IG9 protein in monocyte binding in vitro to cytokine-activated endothelial cells was established in adhesion assays utilizing U937 cells (human promyelomonocytic cell line) and human peripheral blood monocytes. Minimally oxidized or modified low density lipoproteins (MM-LDL) have previously been shown to induce monocyte adhesion to endothelial cells for up to 48 hours after exposure. In order to characterize the adhesion molecule(s) contributing to this increase in monocyte binding, MM-LDL-treated HUVEC and human aortic endothelial cells were assayed for monocyte adhesion molecule expression by enzyme-linked immunosorbent assay. In addition, mAb IG9-mediated alterations in MM-LDL-induced monocyte binding were studied in endothelial-monocyte adhesion assays. To assess IG9 protein expression in vivo, formalin-fixed, paraffin-embedded sections of inflamed human tissues obtained from lung and healing myocardial infarctions, in addition to sections of human atherosclerotic coronary arteries, were analyzed by immunohistochemistry. Tissue sections from atherosclerotic Watanabe heritable hyperlipidemic rabbit aortas were also included in these studies. RESULTS: The IG9 protein, undetected on untreated HUVEC, was expressed on their cell surface within 3 hours of treatment with TNF-alpha, peaked at 4 to 9 hours, and persisted for up to 48 hours as determined by enzyme-linked immunosorbent assay. A similar kinetic profile was elicited by interleukin-1 and lipopolysaccharide, whereas interferon-gamma (IFN-gamma) had minimal effect on IG9 expression. The IG9 protein has a molecular weight of 105,000 as determined by immunoprecipitation studies with TNF-alpha-treated HUVEC protein lysates. mAb IG9 significantly inhibited the binding of U937 cells and human peripheral blood monocytes to TNF-alpha-treated HUVEC and had no effect on peripheral blood lymphocyte or granulocyte adhesion. Treatment of human aortic endothelial cells or HUVEC with MM-LDL for 24 hours induced IG9 protein expression 3-fold above background with no concomitant increase in binding of antibodies to intercellular adhesion molecule-1 (ICAM-1), E-selectin, or vascular cell adhesion molecule-1 (VCAM-1), endothelial cell adhesion proteins involved in monocyte binding. mAb IG9 F(ab')2 inhibited MM-LDL-induced monocyte adhesion to HAEC by 23%. Immunohistochemical analysis demonstrated that the endothelial cell lining of vessels in human lung and heart with evidence of inflammation characterized by an extensive mononuclear cell infiltration exhibited reactivity with mAb IG9, whereas vessels with no evidence of inflammation in the same sections as well as in sections from normal lung and heart were nonreactive.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of oxygen free radicals and scavengers on the cardiac extracellular collagen matrix during ischemia-reperfusion.

OBJECTIVE: Collagen is lysed early during ischemia-reperfusion, but whether this is due to ischemia or reperfusion injury is not known. The effect of oxygen free radicals and free radical scavengers on left ventricular hemodynamics, myocardial morphology and collagen content were studied in an isolated, Langendorff-perfused rat heart model of regional ischemia-reperfusion. METHODS: All hearts received left anterior descending coronary artery ischemia for 20 mins. Group 1 had ischemia only; group 2 had ischemia followed by reperfusion with oxygenated Krebs-Henseleit buffer for 20 mins; group 3 had oxygen free radicals generated by hypoxanthine and xanthine oxidase during reperfusion; group 4 had free radical scavengers with superoxide dismutase plus catalase; group 5 had both oxygen free radicals and free radical scavengers during reperfusion. RESULTS: Left ventricular developed pressure decreased significantly in group 3 during ischemia followed by reperfusion (58 +/- 3.1 mmHg versus 42 +/- 2.4 mmHg, P = 0.004), but did not change significantly in any of the other groups. Necrosis score on pathology was highest in group 3; this score also was higher than that in group 5 with free radical scavengers added (3.0 +/- 0.3 versus 2.0 +/- 0.4, P = 0.07) and higher than that of group 2 with reperfusion with buffer only (3.0 +/- 0.3 versus 1.4 +/- 0.5, P < 0.05). Collagen content decreased significantly compared with control in group 3 only with ischemia followed by reperfusion with the addition of oxygen free radicals (18.4 +/- 1.5 versus 11.9 +/- 1.7 g/mg protein, P < 0.05). The addition of free radical scavengers in group 5 mainly attenuated the collagen loss. Scanning electron microscopy revealed profound structural changes of the extracellular collagen matrix in numerous regions of 'stunning' independent of tissue necrosis. CONCLUSIONS: We conclude that: first, oxygen free radicals trigger significant collagen damage and left ventricular dysfunction during reperfusion; second, these changes extend beyond the ischemic damage alone; and third, free radical scavengers can effectively limit oxygen free radical-induced collagen loss and left ventricular dysfunction.

Animals↗

Peripartum versus idiopathic dilated cardiomyopathy in young women--a comparison of clinical, pathologic and prognostic features.

Clinicopathologic features of 13 women with peripartum cardiomyopathy were compared to 13 women aged 19 through 38 with idiopathic dilated cardiomyopathy. No presenting clinical or pathologic variable distinguished either group. However, the clinical course differed between the groups. Eleven of 13 patients with idiopathic dilated cardiomyopathy had a poor clinical outcome, defined as persistent heart failure or death. Patients in this group succumbed one year or more after disease onset. Five of 13 patients with peripartum cardiomyopathy had poor outcome, with death occurring 9 months or less after disease onset. The clinical course of peripartum cardiomyopathy appears distinct from that of idiopathic dilated cardiomyopathy in young women.

Adult↗

Spontaneous host endothelial growth on bioprosthetic valves and its relation to calcification.

We studied host endothelial growth and calcification of bovine pericardial valve prostheses treated with: (A) 0.625% glutaraldehyde + 4% formaldehyde, (B) 99.5% glycerol or (C) 99.5% glycerol + 4% formaldehyde. Twenty-three stentless chordally supported bileaflet pericardial mitral valves with treatments A (n = 6), B (n = 6) or C (n = 11) were implanted in juvenile sheep for 125-273 days. After sacrifice, the anterior cusp from the annulus to papillary muscle of each valve was examined by scanning electron microscopy for the presence of endothelial cells, and the intrinsic calcification of each valve was determined by measuring calcium (micrograms/mg dry weight) from another 1 cm2 piece of grossly normal cusp. Sixty pieces of 1 cm2 pericardium with treatment A, B or C (n = 20 in each group) were implanted in 30 rats for 70 days. Calcium analysis and histology study of the implants were performed. In sheep, within a similar range of implantation periods, the endothelial growth rate of the valves was the highest in group B, 100% (6/6); group C was 45.5% (5/11) and A 16.7% (1/6). There were no significant differences in calcium among groups A, B and C. In rat implants, the calcium of group B was much lower than that of A or C (B = 6.92 +/- 4.46 vs A = 144.52 +/- 27.66 or C = 240.54 +/- 13.47, P < 0.05) although its histology showed more severe degeneration and inflammatory changes. Pericardial mitral valves treated with glycerol show satisfactory biocompatibility with regard to host endothelial growth and prevention of calcification; however, these tissues show evidence of rapid degeneration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Post-ischaemic cardiac dilatation and remodelling: reperfusion injury of the interstitium.

Cardiac size and geometry have an important influence on clinical prognosis in heart disease. The cardiac interstitium would appear to play a major role in modulating muscle configuration after ischaemic insults. Ischaemic reperfusion injury of the heart should not be viewed as confined to the myocyte compartment. There are major events occurring in the interstitial compartment which could ultimately determine the long-term configuration and topography of the heart. Thus, permanent plastic changes in cardiac dimensions appear to evolve after initial alterations in the collagen matrix. The physiological, cellular, biochemical, and molecular considerations in the cardiac interstitium are quite different from those of the myocyte compartment. Accordingly, therapeutic interventions to modulate cardiac geometry and remodelling may differ.

Animals↗

Bioprosthetic cardiac valve degeneration: role of inflammatory and immune reactions.

Inflammatory and immune reactions are thought to mediate both calcification and biodegradation of bioprosthetic cardiac valve implants. To investigate the mechanisms of implant degeneration, we evaluated the role of inflammatory and immune reactions and the effects of tissue preservative treatment in three series of experiments. In the first experiment, three kinds of implants, i.e. glutaraldehyde-treated autograft Sprague-Dawley (SD) rat skin, xenograft Swiss-Webster (SW) mouse skin, and saline-treated autograft (control) were subcutaneously implanted in ten weanling SD rats, and retrieved after 70 days. There was no significant difference in the level of calcification in the autograft (113.13 +/- 27.09 micrograms/mg dry weight) and xenograft (78.27 +/- 31.53 micrograms/mg dry weight) (p > 0.05), but both differed significantly from the control specimens (1.55 +/- 0.87 micrograms/mg dry weight). In the second experiment, the immunological response to glutaraldehyde-treated bovine pericardium (glut tBP) and glycerol treated bovine pericardium (glyc tBP) implants were tested in vivo and in vitro. A Gore-Tex implant was used as a control. Sections of these materials were implanted to the abdominal muscle wall of Lewis rats, with each group composed of twelve animals. Lymphocytes and sera from the animals were isolated, and histological examination was performed at two or four weeks post-implantation. Collagen type 1 (calf skin) was used as antigen. Tritiated thymidine incorporation was used to measure lymphocyte response to antigen collagen type 1 (calf skin), and an Enzyme Linked Immunosorbent Assay (ELISA) was used to test antibodies. The results showed that lymphocytes from both the glut tBP and the glyc tBP groups responded to collagen type 1. The ELISA results showed that the glyc tBP group produced more antibodies than did the glut tBP group, with the difference being significant at a level of p < 0.02. Histology revealed that the glyc tBP had greater inflammatory changes and collagen degeneration than did the glut tBP. In the third experiment, sections of glut tBP and glyc tBP were implanted subcutaneously in two groups of ten weanling SD rats, and retrieved after 70 days. The results showed that glut tBP caused more calcification (197.04 +/- 83.56 micrograms/mg dry weight) than did the glyc tBP (6.74 +/- 0.55 microgram/mg dry weight), with the difference being significant at a level of p < 0.05. From these investigations it is concluded that tissue treatment prior to implantation was very important in determining the tendency of tissue to calcify, and that there was no obvious relationship between bioprosthetic calcification and immunogenicity.

Animals↗

Visceral myogenic tumors. A manifestation of HIV infection in children.

We report a primary smooth-muscle tumor of undetermined malignant potential of the liver in a child with acquired immune deficiency syndrome (AIDS). This patient represents the eighth child infected with the human immunodeficiency virus who developed a mesenchymal tumor other than Kaposi's sarcoma. All these children were younger than 10 years of age. These tumors often were histologically or clinically malignant and all but one were smooth-muscle tumors. These tumors arose exclusively in visceral organs, and the hepatobiliary, gastrointestinal, and tracheopulmonary systems were involved. Transmission of the virus occurred both vertically (in six children) and via blood transfusion (in two). Given the rarity of smooth-muscle tumors in uninfected children, the unusual frequency of these tumors suggests that immunosuppression induced by the virus permits the unregulated proliferation of a primitive mesenchymal cell disposed to myogenous differentiation, a situation not unlike that observed in the development of AIDS-related Kaposi's sarcoma in adults.

Child↗

Myocardial risk factors other than human immunodeficiency virus infection may contribute to histologic cardiomyopathic changes in acquired immune deficiency syndrome.

This study was designed to evaluate whether myocardial risk factors other than those strictly related to human immunodeficiency virus infection contribute to histologic cardiomyopathic changes in acquired immunodeficiency syndrome patients. We analyzed 91 consecutive adult human immunodeficiency virus-positive autopsy cases (85% acquired immunodeficiency syndrome by Centers of Disease Control criteria) from 1987-1991 for histologic cardiomyopathic changes (e.g. myocyte hypertrophy and myocardial fibrosis). We correlated the presence of cardiomyopathy with the following common myocardial risk factors: hypertension, coronary artery disease, alcoholism, diabetes mellitus, and valve disease. Forty percent of all cases had cardiomyopathy. Hypertension and coronary artery disease were both more common in the cardiomyopathy group (P < 0.05), compared with those human immunodeficiency virus-positive cases without cardiomyopathy. The other myocardial risk factors did not differ significantly between the two groups when compared individually, but when these data were pooled, 67% of cardiomyopathic patients had one or more myocardial risk factors versus 45% in the noncardiomyopathic group (P < 0.05). Cardiomyopathic patients were also more likely to have multiple myocardial risk factors (P < 0.05). Nineteen percent of cardiomyopathic patients had myocarditis versus 11% in the noncardiomyopathic group (P = NS). Patient age, gender, risk factors for human immunodeficiency virus infection (71% intravenous drugs), and history or autopsy findings of viral infection (e.g. cytomegalovirus) did not differ significantly between the two groups. In our patient population, which is heavily weighted towards intravenous drug use, myocardial risk factors other than human immunodeficiency virus are common, and appear to be major contributors to histologic cardiomyopathic changes that might otherwise be attributed to human immunodeficiency virus infection alone.

Acquired Immunodeficiency Syndrome↗

High expression of human beta S- and alpha-globins in transgenic mice: erythrocyte abnormalities, organ damage, and the effect of hypoxia.

A line of transgenic mice with two cointegrated transgenes, the human beta S- and alpha 2-globin genes, linked to the beta-globin locus control region was produced and bred with mice carrying a deletion of the mouse beta major-globin gene. In transgenic mice homozygous for the beta major deletion (alpha H beta S[beta MDD]; where alpha H is human alpha-globin and MD is mouse deletion), 72.5 +/- 2.4% (mean +/- SD) of the beta-chains are beta S and the ratio of alpha H- to beta S-globin was 0.73. Introduction of a heterozygous mouse alpha-globin deletion into mice homozygous for the beta major deletion (alpha H beta S[alpha MD beta MDD]) resulted in 65.1 +/- 8.5% beta S and a human alpha/beta ratio of 0.89 +/- 0.2. Sickling occurs in 95% of erythrocytes from alpha H beta S[beta MDD] mice after slow deoxygenation. Transmission electron microscopy revealed polymer fiber formation but not fascicles of fiber. Increased organ weight was noted in lung, spleen, and kidney of transgenic mice vs. controls that may be due to hypertrophy or increased blood volume in the lungs and/or increased tissue water content. The hemoglobin content of lung, spleen, and kidney was also elevated in transgenic animals due to trapped hemoglobin and/or increased blood volume. When transgenic and control mice were examined by magnetic resonance imaging at 9.4 tesla, some transgenic animals had enlarged kidneys with prolonged relaxation time, consistent with increased organ weight and water content. The glomerular filtration rate was elevated in transgenic animals, which is characteristic of young sickle cell patients. Furthermore, exposure to hypoxia resulted in significantly decreased hematocrit, increased erythrocyte density, and induced a urine-concentrating defect. We conclude that the transgenic mouse line reported here has chronic organ damage and further hematological and organ dysfunction can be induced by hypoxia.

Anemia, Sickle Cell↗

Demonstration of endothelial adhesion of sickle cells in vivo: a distinct role for deformable sickle cell discocytes.

Different morphologic and density classes of sickle cells (SS) may play distinct roles in the generation of vasoocclusion, explaining the complexity of this phenomena. The densest SS red blood cells (RBCs) (SS4) can induce vasoocculsion in ex vivo microcirculatory preparations as well as in an intact animal model. Previous studies of the interaction of SS deformable discocytes with endothelial monolayers or the rat ex vivo mesocecum preparation have shown adhesion that is desmopressin (dDAVP)-stimulated, von Willebrand factor (vWF)-mediated, and limited to the small venules. However, in vivo adhesion of SS RBCs to the endothelium has neither been demonstrated nor characterized; and, in particular, the relation of adhesion to vasoocclusion is unknown. Using an intact animal model that involves injecting saline-washed, density-defined SS RBCs into the femoral artery of a rat, we find that: (1) Quantitative studies of RBCs retained in the rat thigh using 99mTc-labeled RBCs and gamma camera imaging showed that dDAVP induces a threefold increase in retention of normal (AA) cells and deformable SS discocytes (SS2). (2) electron microscopy and Microfil injection show that the retention of SS2 cells is due to adhesion to the vascular endothelium with no evidence of obstruction. (3) H-1 magnetic resonance imaging showed that retention of SS4 cells induced a dose-dependent increase in tissue edema (presumable secondary to tissue hypoxia), while retention of AA or SS2 cells produced no change. We conclude that endothelial adhesion of deformable SS discocytes can be demonstrated in an in vivo animal model, that this adhesion is enhanced by dDAVP (presumably related to, but not necessarily limited to the release of vWF), and that this phenomenon per se does not lead to vasoocclusion. Nevertheless, adhesion of deformable SS discocytes may have consequences. We hypothesize that adhesion of SS discocytes could narrow the lumen of postcapillary venules and facilitate secondary trapping of SS4 cells and lead to subsequent vasoocclusion.

Anemia, Sickle Cell↗

Diphenylhydantoin inhibits calcification of bovine pericardial implants and myocardium: a preliminary study.

Calcification is a major cause of glutaraldehyde-fixed bioprosthetic valve failure. Recent studies have shown that dystrophic calcification shares basic features with normal bone mineralization, including crystal initiation through the mediation of cell membranes, usually in the form of extracellular vesicles. In this study, we observed that calcification of the myocardium of DBA/2J mice was inhibited or reversed by diets supplemented with 100 mg/kg diet diphenylhydantoin (dilantin) for 70 days, with a calcification incidence of 25% in the dilantin group versus 58% in control. We further studied the effects of dilantin on bioprosthetic valve calcification. Three groups of young male Sprague-Dawley rats (100 g, 9/group) were implanted subcutaneously with 1-cm2 pieces of glutaraldehyde-fixed bovine pericardium. Controls were fed a ground chow for 45 or 90 days postimplantation; experimentals received the same chow for the first 45 days postimplantation and then were fed the same diet supplemented with 1000 mg dilantin/kg for the succeeding 45 days. Calcium content (microgram/mg dry weight) of the implants in the dilantin group was 137 +/- 18.6 versus 214 +/- 34.3 in 90 days control and 79.9 +/- 41.5 in 45 days control (mean +/- SD, P < 0.01 and P < 0.05 respectively, t test). The tibia calcium content of the dilantin group was not significantly different from 90 days control. We conclude that orally administered dilantin inhibits calcification of glutaraldehyde-fixed bovine pericardial implants preferentially. It does not cause decalcification either of implants that have already calcified or of the bones. The anti-calcification effect of dilantin may be associated with its anti-vitamin D effect.

Animals↗

Histological evaluation of the inferior epigastric artery in patients with known atherosclerosis.

Comparative histological studies have been performed on the various arterial conduits available for myocardial revascularization including the inferior epigastric artery which has recently become the focus of intense investigation. In this study, 10 patients with known risk factors for atherosclerotic disease had their inferior epigastric artery harvested and the entire specimen examined for the microscopical presence of atherosclerosis or its precursors. Histopathological findings that have been shown to be theoretically protective against the progression of atherosclerosis were observed. These include the paucity of fenestrae in the internal elastic lamina, no medical calcification, the absence of foam cells and the absence of intimal smooth muscle cells. No specimen had atherosclerotic disease and only 3 specimens showed changes consistent with minimal intimal hyperplasia. Morphometric analysis of the 3 diseased specimens revealed only minimal luminal narrowing. These findings suggest that the inferior epigastric artery may not be prone to atherosclerosis. Thus, the inferior epigastric artery appears to be a safe myocardial conduit and long-term patency can be anticipated.

Abdominal Muscles↗

Cytokine gene expression of endothelial cells infected with Trypanosoma cruzi.

Coronary microvascular spasm and platelet hyperreactivity have been implicated in the pathogenesis of Chagas' cardiomyopathy. To clarify further the role of the microvasculature in this disease, alterations in cytokine gene expression due to Trypanosoma cruzi infection of human umbilical vein endothelial cells were examined. Northern blot analysis of total RNA from endothelial cells demonstrated that interleukin (IL)-1 beta, IL-6, and colony-stimulating factor 1 (CSF-1) mRNA expression was absent or minimal in uninfected cells but significantly increased in infected cells. c-sis mRNA levels diminished with increased time of infection. In situ hybridization studies also demonstrated high levels of IL-6 mRNA in individual infected cells. Significant levels of IL-6 and IL-1 beta protein were detected in the supernatants of infected endothelial cells. The serum of an acutely infected individual contained high levels of IL-6 protein, suggesting the potential importance of cytokines secreted by the vascular endothelium in the pathogenesis of Chagas' cardiomyopathy.

Animals↗

Beneficial effects of diltiazem on the natural history of hypertensive diabetic cardiomyopathy in rats.

Hypertensive diabetic rats develop a cardiomyopathy characterized by systolic and diastolic ventricular dysfunction, myocardial hypertrophy and fibrosis, pulmonary congestion and a very high mortality rate. Alterations in contractile proteins and sarcoplasmic reticular calcium (Ca2+) transport in diabetic myocardium and their partial reversal with verapamil suggest that calcium channel blockade may prevent death from congestive heart failure in hypertensive diabetic rats. A large group of rats with renovascular hypertension and streptozotocin diabetes were divided into four groups: untreated animals (Group 1) and animals treated with 100 (Group 2), 300 (Group 3) or 600 (Group 4) mg/kg per day of sustained release diltiazem mixed in their food. Treatment was begun shortly after the onset of hypertension and diabetes. Mortality rates after 4 months were 59% (19 of 32), 53% (17 of 32), 27% (7 of 26) and 35% (12 of 34) in Groups 1, 2, 3 and 4, respectively; the mortality rate in age-matched control rats was 5% (1 of 19). The reductions in mortality rates in Groups 3 and 4 were statistically significant. Diltiazem did not change systolic blood pressure, serum glucose concentration, heart rate or left ventricular mass. There was a trend to decreased left ventricular interstitial fibrosis and perivascular fibrosis in diltiazem-treated animals. Ventricular collagen concentration was similar in untreated hypertensive diabetic and control rats; levels were higher in hypertensive diabetic rats that died than in those that survived. There was a trend to decreased collagen concentration as diltiazem dose increased. Myosin isoenzyme distribution was not changed in Groups 3 and 4 (in comparison with Group 1). In all hypertensive diabetic groups, rats that died had a higher blood pressure, heart rate, relative left ventricular mass, lung weight and lung water than did survivors. The mortality rate was two to three times higher among rats with an initial blood pressure greater than or equal to 180 mm Hg. The beneficial effects of diltiazem on survival were most significant among rats with severe hypertension.

Animals↗

Murine adenovirus infection of SCID mice induces hepatic lesions that resemble human Reye syndrome.

Murine adenovirus type 1 (MAV-1) infection of CB-17 SCID mice (which are homozygous for the severe combined immunodeficiency mutation) induces hepatic histopathologic and ultrastructural features that are strikingly similar to human Reye syndrome. Gross pathologic examination of MAV-1-infected mice revealed only pale yellow liver tissue. Histopathologic studies of tissue from MAV-1-infected mice revealed diffuse hepatic injury manifested by microvesicular fatty degenerative changes of hepatocytes and electron microscopic evidence of focal mitochondrial swelling with disruption of cristae and depletion of glycogen. Serum aminotransferase activities increased markedly in the infected animals; however, plasma ammonia levels were not elevated at the times assayed. Although all mice infected with MAV-1 died, neutralizing anti-MAV-1 monoclonal antibodies provided a dose-dependent delay in the appearance of clinical disease and hepatic histopathologic findings. Other findings included rare viral inclusions with only minimal inflammation in spleen, adrenal, and liver of infected mice. Our findings indicate that MAV-1 infection of SCID mice may provide important insights into the pathogenesis of the hepatic lesions of Reye syndrome.

Adenoviridae↗

Aldehyde tanning: the villain in bioprosthetic calcification.

Preservation of bioprosthetic valves may play a role in valvular calcification. Subcutaneous implants in rats were used to test the effect of different preservation solutions. Fifty male Sprague-Dawley rats were divided into five groups. Fresh bovine pericardium was treated in one of five ways: group A: 99.5% glycerol for 1 week; group B: as group A, then normal saline wash and 0.25% formaldehyde storage for 24 h; group C: as group A, then normal saline wash and 4% formaldehyde storage for 24 h; group D: as group A, then normal saline wash and 0.625% glutaraldehyde storage for 24 h; group E: 0.625% glutaraldehyde and 4% buffered formaldehyde storage. Treated bovine pericardium was cut into 1-cm2 pieces and washed for 30 min with normal saline before implantation. In each animal, three pieces were implanted in the subcutaneous tissue of the back. After 70 days, retrieved specimens were examined grossly, and X-ray densitometry, calcium analysis, and histological examinations were carried out. The results showed that glycerol-treated tissue (group A) had less calcification (calcium 6.92 +/- 4.46 micrograms/mg dry weight) than other groups: group B (calcium 323.12 + 63.56 micrograms/mg dry weight); group C (calcium 240.65 + 13.47 micrograms/mg dry weight); group D (calcium 232.29 + 13.01 micrograms/mg dry weight). These differences were markedly significant (p less than 0.0001). It appears that aldehydes play an important role in the calcification of bioprosthetic valves. Experience with glutaraldehyde- and glycerol-treated pericardium in valvular applications in sheep support these observations.

Animals↗