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Biomedical subjects

A M Gerdes

Publications and source records attributed to A M Gerdes.

At least 19 recordsLinked to original sources

Chromosome abnormalities in benign hyperproliferative disorders of epithelial and stromal breast tissue.

Cytogenetic analysis of short-term cultures from 15 cases of benign proliferative breast disease (PBD), 10 diffuse PBD and 5 papillomas, and 15 fibroadenomas of the breast revealed clonal chromosome abnormalities in 7 diffuse PBD lesions, 4 papillomas and 5 fibroadenomas. The remaining 14 cases had a normal female chromosome complement. Cytogenetically unrelated abnormal clones were seen in 4 fibroadenomas and 2 PBDs. A single abnormal clone was found in 9 PBDs and 1 fibroadenoma. Three clonal abnormalities were seen as recurrent changes in 6 cases, namely interstitial deletions of 3p with 3p 12-14 as the minimally common deleted segment (in 1 papilloma, 1 diffuse PBD with atypia and 1 mixed-pattern lesion with both papilloma and atypical diffuse PBD features), r(9)(p24q34) (in 1 diffuse PBD and 1 fibroadenoma), and del(1)(q12)(again in 1 diffuse PBD and 1 fibroadenoma). Intriguingly, 6 of the 16 abnormal cases had chromosome changes that have been seen repeatedly as primary abnormalities in breast carcinomas: der(16)t(1;16)(q10;p10), del(3)(p12p14), and del(1)(q12). We conclude that some of the chromosome anomalies frequently found in breast carcinomas are also present in PBD and fibroadenomas. These aberrations may be accepted as early, neoplasia-relevant mutations. However, they do not seem to be sufficient by themselves to unleash a malignant process.

Breast

Structural remodeling and mechanical dysfunction of cardiac myocytes in heart failure.

End stage heart failure due to ischemic (ICM) or dilated (DCM) cardiomyopathy is characterized by a dilated, relatively thin-walled ventricle. The hypothesis has been proposed that the structural basis of ventricular expansion is due to side-to-side slippage of myocytes within the wall. Although this represents one potential mechanism for the observed phenomena of chamber dilatation and subsequent wall thinning, the degree of slippage claimed is not necessarily in harmony with the magnitude of chamber enlargement and mural thinning. Moreover, sarcomere extension was not examined in the base to the apical regions of the heart, leaving open the question as to the role of changes in resting sarcomere length in acute chamber dilatation. In this regard, an alternative etiology for the detrimental cardiac architectural rearrangement seen in dilated failure can be supplied by postulating the occurrence of maladaptive remodeling of cardiac myocyte morphology. In this model, myocytes increase in length by an increase in the number of sarcomeres in series, thus increasing chamber diameter in an attempt to maintain cardiac output. However, these cells do not enlarge to any significant degree in the transverse diameter preventing the heart from developing adequate force. This hypothesis is supported by recent evidence from patients with ICM and DCM indicating that myocyte lengthening alone could account for all the dilatation observed. Furthermore, it appears that the thinning of the ventricular wall in failure is due to inadequate transverse growth of cardiac myocytes coupled with scattered myocyte cell loss throughout the ventricular wall.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Regression of cardiac hypertrophy after closing an aortocaval fistula in rats.

To determine whether the series addition of sarcomeres observed during eccentric hypertrophic growth is reversible upon removal of the initiating stimulus, an aortocaval fistula was created and myocyte geometry evaluated at 2 and 12 wk after shunt occlusion. A 76% cardiac enlargement was produced in rats with an aortocaval fistula. This enlargement was reduced to 22 and 18% at 2 and 12 wk of fistula reversal, respectively. Hemodynamic performance was altered as a result of fistula induction as evidenced by a 28% increase in peak rate of pressure rise. This pressure increase remained elevated by 30% 2 wk after fistula reversal but was not different from sham-operated control animals at 12 wk of reversal. Significant increases in overall myocyte length were detected as a result of the creation of the fistula [left ventricle (LV), 20%; right ventricle (RV), 29%; septum, 23% greater than shams]. Although these increases diminished only slightly 2 wk after closure of the fistula (LV, 12%; RV, 17%; septum, 12% greater than shams), linear measurements of myocyte length in two of three regions had reverted to values that were not significantly different from those of age-matched, sham-operated controls at 12 wk after fistula closure (LV, 8%; RV, 10%; septum, 7%). Myocyte cross-sectional area and cell volume followed a similar pattern. Thus myocytes possess the necessary machinery to remove recently added series sarcomeres, returning altered pump function and dilated ventricular chamber geometry toward control values. In addition, it appears that cardiac hypertrophic growth with this experimental model of volume overload is largely, but not completely, reversible.

Animals

Congenital myopathy with fiber type disproportion: a family with a chromosomal translocation t(10;17) may indicate candidate gene regions.

A patient with myopathy and congenital fiber type disproportion presented at birth with arthrogryposis multiplex congenita, dislocation of the hips and mild scoliosis. Later in life she developed marked muscle weakness. A balanced chromosomal translocation t(10;17) (p11.2;q25), transmitted by the clinically healthy mother, who nevertheless showed discrete signs of myopathy, was demonstrated. DNA analysis excluded maternal uniparental disomy for loci on both chromosomes 10 and 17. We suggest that the translocation breakpoints are candidate regions for a myopathy gene.

Chromosomes, Human, Pair 10

Changes in nuclear size of cardiac myocytes during the development and progression of hypertrophy in rats.

It is generally believed that nuclear enlargement indicates polyploidy. The purpose of this study was to establish whether nuclear enlargement is also a marker for cellular hypertrophy. Using isolated myocytes, we examined the growth of cardiac myocyte nuclei during cellular hypertrophy in rats with aortocaval fistulas or left ventricular myocardial infarction. A Coulter Channelyzer was used to measure the volume of the myocytes. Isolated myocytes were stained with the DNA-specific fluorochrome 4'-6-di-amidino-2 phenylindole-HCl for measurements of nuclear length and width, and calculation of nuclear volume. One week, 1 month and 5 months after aortocaval fistula surgery, the nuclear volume of right ventricular myocytes increased by 24, 55 and 56% respectively. Increased length, rather than width, accounted for most of the nuclear growth. Nuclear hypertrophy was associated with a progressive increase in cell volume at each time point (34, 88 and 118%). Adaptive growth of left ventricular myocytes followed the same trend, though the extent of cellular and nuclear hypertrophy was reduced. One month after producing a myocardial infarction, there was an increase in nuclear volume (18%) and nuclear length (11%) in right ventricular myocytes, but no changes in the surviving left ventricular myocytes. The cell volume increased in both right and left ventricles (72 and 18%, respectively). Thus, nuclear size increased as myocytes enlarged, though at a slower rate. Since nuclear DNA content does not increase in rats with aortocaval fistulas or myocardial infarction, the increase in nuclear volume was associated with cellular enlargement rather than increased polyploidy.

Animals

Transverse shape characteristics of cardiac myocytes from rats and humans.

The shape of the cardiac myocyte is complex; but, in general, it resembles that of an elliptical cylinder. Quantitative data, however, are lacking and adaptive changes in cross-sectional shape are unknown. The major and minor transverse diameters of myocytes from adult rats were measured using three independent methods: profile tracings of intact isolated myocytes, sectioned isolated myocytes, and whole-sectioned tissue. Values for major and minor diameters were virtually identical with all three methods. Using profile tracings of intact isolated myocytes, major and minor diameters were examined in isolated myocytes from freshly explanted human hearts. Five were non-failing donor hearts regarded as unsuitable for transplantation, of which 2 were normal hearts and 3 had concentric hypertrophy. Six were dilated, failing human hearts with ischemic cardiomyopathy. Major and minor diameters from the normal hearts were similar to those from normal rats. Although the number of patients was limited, the minor diameter was largest in myocytes from patients with concentric hypertrophy while the major diameter was greatest in cells from patients with ischemic cardiomyopathy. We conclude that the cross-sectional shape of structurally-intact myocytes is not altered by cell isolation. The data suggest that the transverse shape of normal human cardiac myocytes is similar to that found in rats, and that it may be altered in hypertrophy and failure.

Animals

Increased IFN-alpha-induced sensitivity but reduced reactivity of 2',5'-oligoadenylate synthetase (2,5AS) in trisomy 21 blood lymphocytes.

2,5AS is induced by interferon-alpha, -beta (IFN-alpha, -beta) and polymerizes adenosine triphosphate (ATP) into pppA (2'p5'A) oligomers, leading to inhibition of protein synthesis and virus growth. The gene coding for the IFN-alpha, -beta receptor is localized to chromosome 21. In trisomy 21 cells from patients with Down's syndrome a 50% increase in gene dosage is present for the genes on this chromosome. Corresponding increase of gene products has been shown for several of these genes, e.g. the IFN-alpha, -beta receptor molecules. Here, we show a direct proportionality between the number of IFN-alpha, -beta receptors and both the basal activity of 2,5AS and the sensitivity of this enzyme for IFN-alpha, -beta. The relative increase of 2,5AS activity (the reactivity) becomes reduced consistent with the increased basal 2,5AS activity in trisomy 21 cells compared with control cells.

2',5'-Oligoadenylate Synthetase

Nuclear DNA content and nucleation patterns in rat cardiac myocytes from different models of cardiac hypertrophy.

Nuclear DNA content and number of nuclei were examined in cardiac myocytes isolated from controls and rats with volume and pressure overload hypertrophy to determine if haemodynamic overload alters these nuclear parameters. The experimental groups were comprised of normotensive (WKY) and Spontaneously Hypertensive rats (SHR). Additionally, Sprague-Dawley rats with aortic constriction (AC), pulmonary stenosis (PS), myocardial infarction (MI), and 5 month arteriovenous fistulas (F) were studied along with appropriate shams for each of these groups. Nuclear DNA content was measured from DAPI-stained nuclei using an image analysis microdensitometry system. Myocyte volume was measured with a Coulter Channelyzer system. Approximately 83% of the left ventricular myocytes from the SHR and WKY groups contained a diploid DNA content with the remainder being tetraploid. The remaining experimental and sham groups, all female Sprague-Dawley rats (SD), were approximately 93% diploid. The nucleation patterns differed slightly between rat strains with the SHR/WKY expressing approximately 85% binucleation, 14% mononucleation and 5% tri- or tetranucleation. All SD groups, control and hypertrophied, showed approximately 89% binucleation, and 10% mononucleation with the remainder being tri- or tetranucleated. In summary: (1) cardiac myocytes from SHR/WKY strains are predominantly diploid but to a lesser degree than myocytes from SD; (2) nuclear number follows the same pattern with SHR/WKY showing a smaller percentage of binucleated myocytes than SD myocytes; (3) neither the duration, severity, or type of overload caused a significant change in the extent of polyploidy in overloaded hearts from SD rats; and (4) the extent of polyploidy in cardiac myocytes from both the right and left ventricles of SHR and WKY animals does not differ statistically.

Animals

Structural remodeling of cardiac myocytes in patients with ischemic cardiomyopathy.

BACKGROUND: Chronic ischemic heart disease may lead to ventricular dilation and congestive heart failure (ischemic cardiomyopathy [ICM]). The changes in cardiac myocyte shape associated with this dilation, however, are not known. METHODS AND RESULTS: Left ventricular myocyte dimensions were assessed in cells isolated from explanted human hearts obtained from patients with ICM (n = 6) who were undergoing heart transplantation. Cells were also examined from three nonfailing donor hearts with normal coronary arteries (NCA). Compared with cells from patients with NCA, myocyte length was 40% longer in hearts from patients with ICM (197 +/- 8 versus 141 +/- 9 microns, p less than 0.01), cell width was not significantly different, and cell length/width ratio was 49% greater (11.2 +/- 0.9 versus 7.5 +/- 0.6, p less than 0.01). Sarcomere length was the same in myocytes from both groups. The extent of myocyte lengthening is comparable to the increase in end-diastolic diameter commonly reported in patients with ICM. CONCLUSIONS: These data suggest that increased myocyte length (an intracellular event), instead of myocyte slippage (an extracellular event), is largely responsible for the chamber dilation in ICM. Furthermore, maladaptive remodeling of myocyte shape (e.g., increased myocyte length/width ratio) may contribute to the elevated wall stress (e.g., increased chamber radius/wall thickness) in ICM.

Animals

Gene dosage and down-regulation of the alpha-interferon receptor.

The gene coding for the alpha,beta-interferon (alpha,beta-IFN) receptor is localized to chromosome 21. Cells from patients with Down's syndrome (trisomy 21) contain an extra chromosome 21, which results in a 1.5 times increase of dosage for the genes localized to this chromosome. Trisomy 21 cells express more cell-surface alpha-IFN receptors, consistent with the increased gene dosage. Down-regulation of the alpha-IFN receptors in trisomy 21 and normal cells was studied by incubating the cells with alpha-IFN. The alpha-IFN-induced effects showed 1.6 times more internalized cell-surface alpha-IFN receptors in trisomy 21 cells compared with normal cells, but no statistically significant change in the dissociation constants. A close relationship was found between the alpha-IFN receptor number and the biological response expressed as 2',5'-oligoadenylate synthetase activity.

Down Syndrome

Remodeling of ventricular myocytes during cardiac hypertrophy and heart failure.

Cardiac hypertrophy due to pressure or volume overloading leads to changes in myocyte shape which reflect gross anatomical alterations in ventricular geometry. Specifically, pressure overloading causes an increase in wall thickness, little or no change in chamber volume, and an increase in myocyte cross-sectional area only. Hypertrophy due to volume overloading, however, is characterized by a proportional increase in chamber radius and wall thickness and an equal increase in myocyte length and diameter. The underlying cellular changes associated with ventricular dilation and cardiac decompensation, however, have not been clarified. Preliminary myocyte size data collected from failing, explanted human hearts suggests that our current perception of the mechanism of dilation is incorrect. Understanding the true nature of the dilation process associated with congestive heart failure should provide new directions for potential therapies and prevention.

Animals

Multipoint linkage analysis in Menkes disease.

Linkage analyses were performed in 11 families with X-linked Menkes disease. In each family more than one affected patient had been diagnosed. Forty informative meioses were tested using 11 polymorphic DNA markers. From two-point linkage analyses high lod scores are seen for DXS146 (pTAK-8; maximal lod score 3.16 at recombination fraction [theta] = .0), for DXS1 (p-8; maximal lod score 3.44 at theta = .0), for PGK1 (maximal lod score 2.48 at theta = .0), and for DXS3 (p19-2; maximal lod score 2.90 at theta = .0). This indicates linkage to the pericentromeric region. Multilocus linkage analyses of the same data revealed a peak for the location score between DXS146(pTAK-8) and DXYS1X(pDP34). The most likely location is between DXS159 (cpX289) and DXYS1X(pDP34). Odds for this location relative to the second-best-supported region, between DXS146(pTAK-8) and DXS159 (cpX289), are better than 74:1. Visualization of individual recombinant X chromosomes in two of the Menkes families showed the Menkes locus to be situated between DXS159(cpX289) and DXS94(pXG-12). Combination of the present results with the reported absence of Menkes symptoms in male patients with deletions in Xq21 leads to the conclusion that the Menkes locus is proximal to DXSY1X(pDP34) and located in the region Xq12 to Xq13.3.

Female

Results of prenatal alcohol exposure on the dimensions and binucleation of cardiac myocytes in neonatal and weanling rats.

Sprague-Dawley rats were exposed to ethyl alcohol in utero. The effect of chronic prenatal exposure was examined by giving mature females alcohol in isocaloric liquid diets which served as the sole source of liquid and caloric intake before mating and throughout gestation. Controls consisted of females maintained on laboratory chow or an isocaloric liquid diet minus alcohol before and during gestation. The offspring were sacrificed at 21 days of age (weanlings) and the hearts dissociated enzymatically to give purified cardiac myocytes. The effects of daily acute prenatal alcohol exposure were studied by gastric intubation of alcohol to chow-fed females for the duration of pregnancy. The doses used approximated 4 and 5 shots of 80 proof liquor per day by a person weighing 150 lb. These offspring were sacrificed at 2, 6, and 21 days postnatal and cardiac myocytes prepared as above. Heart weights were determined and cardiac myocytes were analyzed for cell length, volume, cross-sectional area, and percent binucleation. Additionally, nuclear DNA content was measured in all of the 21 day offspring. Statistical analysis of the data showed no significant differences between hearts exposed to prenatal alcohol and nonexposed controls with either regimen with the exception of percent binucleation which was significantly but only slightly higher in the 6-day-old hearts. These findings are discussed in relation to anatomical heart defects found in patients with full fetal alcohol syndrome.

Aging

Regional increase in isolated myocyte volume in chronic myocardial infarction in cats.

Healing of myocardial infarction is associated with hypertrophy of a region surrounding the scar. In order to characterize the pattern of regional hypertrophy after healing of small myocardial infarctions, we used a Coulter Channelyzer to measure directly regional cell volume and light microscopy to measure cell length of isolated myocytes. Acute left ventricular myocardial infarctions were surgically created in adult cat hearts. After healing for 10.4 +/- 5.0 months, cells were dissociated by collagenase perfusion. Myocardial cells were isolated from three regions of the infarcted ventricle and the same three anatomical regions of unoperated control hearts: (1) remote from the infarct, (2) non-scarred tissues adjacent to the infarct, and (3) from the infarct. The volume of cells from control hearts was correlated significantly with individual body weight resulting in large inter-animal variations, but small intra-animal variations. Inter-animal comparisons were made by normalizing adjacent and infarct regions to percent change from its remote region. Myocyte volumes from hearts with healed infarcts were increased by 31% in the infarct region and by 20% in the adjacent region, relative to the corresponding regions from control hearts (P less than 0.05). Cell lengths were not different from control in any region. Calculated cross-sectional areas followed the same pattern as was observed for cell volumes. We conclude that there is a region of hypertrophy surrounding a small, transmural healed myocardial infarction that is characterized by increased myocyte cross sectional area with no change in cell length. This pattern is typical of the concentric hypertrophy observed with pressure overload rather than eccentric hypertrophy observed with volume overload.

Analysis of Variance

Nuclear size and DNA content in rat cardiac myocytes during growth, maturation and aging.

Changes in nuclear volume and DNA content were examined in cardiac myocytes isolated from 21-day-old (weanling, W), 3-month-old (adult, A), and 2-year-old (old, O) rats to document normal parameters for nuclear growth and DNA content. Nuclear volume was calculated from direct measurements of isolated myocyte nuclear profiles and DNA content was measured from DAPI-stained nuclei using an image analysis microdensitometry system. Myocyte volume was measured with a Coulter Channelyzer system. Nuclear volume increased 79% from W to A as a result of an increase in nuclear length. Nuclear width was unchanged. Nuclear volume was not changed from A to O. Approximately 98% of the left ventricular myocytes from all three rat groups contained a diploid DNA content with the remainder of nuclei being tetraploid. The degree of polyploidy increased slightly, but significantly, in right ventricular myocytes from O. Due to the substantially greater increase in myocyte volume relative to nuclear volume, nuclear volume percentage decreased from 3.65 +/- 0.28 to 1.64 +/- 0.13 from W to A but was unchanged from A to O. To summarize: (1) nuclear volume of rat cardiac myocytes increases significantly during normal physiological growth (W to A) but the rate of nuclear growth is less than that of cell volume; (2) the increase in nuclear size from W to A is not due to an increase in DNA content; (3) cardiac myocytes from Sprague-Dawley rats are predominantly diploid; and (4) there is little change in DNA content of cardiac myocytes from rats of this strain during growth, maturation and aging.

Aging

Interferon stimulates the expression of 2',5'-oligoadenylate synthetase and MHC class I antigens in insulin-producing cells.

The pathogenesis of type 1 diabetes involves autoimmune processes directed against the pancreatic beta-cells. The etiology is not known, but circumstantial evidence suggests a connection between virus infection and development of the disease. Therefore, because the interferon-(IFN) dependent 2',5'-oligoadenylate (2-5A) synthetase system constitutes an important part of the nonspecific immune defense against viral infections, the activity of the enzyme was examined in islets of Langerhans, RIN cells, and GH3 cells. First, the 2-5A synthetase was expressed constitutively in all cell types and, second, all cells were sensitive to stimulation with IFN-alpha. The 2-5A synthetase activity induced by 1,000 U/ml of IFN-alpha increased by 400% in pancreatic islets and by more than 1000% in GH3 and RIN cells. However, the IFN-alpha concentration needed to induce half-maximal 2-5A synthetase activity was nearly the same in the three cell types (i.e., ranging from 59 to 66 U/ml IFN-alpha). The 2-5A synthetase present in islets and RIN cells was highly sensitive to poly (I:C). In pancreatic islets and RIN cells, the 2-5A synthetase enzyme generated dimers and trimers of 2',5'-oligoadenylates. Furthermore, exposure of RIN cells to IFN-alpha showed an increase in MHC class I expression already at 5 U/ml and maximal expression at about 200 U/ml IFN-alpha. The examined endocrine cells express the 2-5A synthetase enzyme as well as MHC class I antigen constitutively, but also by stimulation with IFN in vitro.(ABSTRACT TRUNCATED AT 250 WORDS)

2',5'-Oligoadenylate Synthetase

High 64Cu uptake and retention values in two clinically atypical Menkes patients.

We have investigated two previously published atypical Menkes patients with 64Cu uptake and retention studies. Both of these analyses gave significantly increased results in the range seen for classical Menkes patients. 64Cu uptake analyses on female relatives gave the same uptake pattern as seen for other families with classical Menkes disease.

Cells, Cultured

Regional changes in hemodynamics and cardiac myocyte size in rats with aortocaval fistulas. 1. Developing and established hypertrophy.

The effects of a large arteriovenous fistula on left and right ventricular hemodynamics and cardiac myocyte size were examined in adult rats at 1 week and 1 month after surgery. Cardiac output, left ventricular function, and right ventricular function were evaluated before obtaining isolated myocytes for cell size measurements. Average heart weight increased 35% at 1 week and 86% at 1 month in rats with fistulas. In general, myocyte hypertrophy was due to a proportional increase in length and width (length/width ratio remained constant). This change was more evident in the large hearts from rats with 1-month fistulas. At both the 1-week and 1-month intervals, the hypertrophic response of right ventricular myocytes was slightly greater than that observed in the left ventricle or interventricular septum. Left ventricular systolic pressure and dP/dtmax were significantly reduced at 1 week but returned to normal after 1 month of overloading. Left ventricular end-diastolic pressure was increased approximately fivefold and twofold at 1 week and 1 month, respectively. Right ventricular systolic pressure and dP/dtmax were increased at both intervals examined. We conclude that severe volume overloading from a large aortocaval fistula in the rat is characterized by 1) depressed left ventricular function at 1 week followed by a large compensatory hypertrophy and near normal function at 1 month, 2) right ventricular pressure overload, and 3) changes in myocyte shape that resemble normal physiological growth.

Animals