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Biomedical subjects

A Kaplan

Publications and source records attributed to A Kaplan.

At least 127 records · Page 7Linked to original sources

Adaptation to Low CO(2) Level in a Mutant of Anacystis nidulans R(2) which Requires High CO(2) for Growth.

The mutant E(1) of Anacystis nidulans R(2) requires high CO(2) concentration for growth but was able to adapt to low CO(2) concentration. This was exhibited by the increased ability to accumulate inorganic carbon within the cells and the large increase in the amount of a 42-kilodalton polypeptide located in the cytoplasmic membrane. The adaptation occurred in E(1) cells at an extracellular CO(2) concentration as high as 0.3%, which was 8 times the concentration for maximal adaptation in R(2) cells. The ability of E(1) cells to exhibit low CO(2) characteristics at a higher CO(2) concentration was attributed to lower intracellular CO(2) concentration.

Journal Article↗

Energization and activation of inorganic carbon uptake by light in cyanobacteria.

The requirement of the inorganic carbon (C(i)) transport system for light in cyanobacteria was investigated in Anabaena variabilis by the filtering centrifugation technique and in a mutant (E(1)) isolated from Anacystis nidulans using a gas exchange system. C(i) transport capability increased with time of preillumination and decreased following darkening. Full activity could not be obtained by operating either photosystem II (PSII) or photosystem I alone. 3(3,4 Dichlorophenyl)-1,1 dimethylurea strongly inhibited C(i) uptake. Very low activity of PSII was sufficient to activate C(i) uptake. However, in the presence of dithiothreitol PSII activity was not required. We conclude that light may be required to activate as well as to energize C(i) uptake in cyanobacteria.

Journal Article↗

Chlorhexidine for prophylaxis against oral infections and associated complications in patients receiving bone marrow transplants.

Intensive chemoradiotherapy damages the mucosal barrier of the mouth and throat and is often associated with severe oral inflammation and infection. This study examined the use of a 0.12% chlorhexidine gluconate mouthrinse for prophylaxis against oral complications in patients receiving bone marrow transplants. Use of chlorhexidine mouthrinse produced reductions in oral soft tissue disease and oral microbial burden, including a significant decrease in oral mucositis and Candida infections. The advantage for patients undergoing intensive antineoplastic therapy, and potentially for other immunocompromised patients susceptible to oral infections, was studied.

Adolescent↗

Histopathologic correlates of inducible ventricular tachycardia in two experimental canine models of myocardial infarction.

Ventricular tachyarrhythmias are the leading cause of sudden cardiac death. Determination of the substrates conducive to the initiation of ventricular tachyarrhythmias remains an important clinical goal. The purpose of this study was to correlate electrophysiologic and histopathologic parameters conducive to the initiation of sustained ventricular tachycardia using programmed electrical stimulation in two canine models of myocardial infarction. Histopathologic correlates included: infarct pattern (heterogeneous vs. homogeneous morphology), distribution (viable epicardial or endocardial rim), and size. Twenty-one adult dogs were randomly divided into two groups: (1) 12 dogs underwent two-stage, 2-hour occlusion of the proximal left anterior descending coronary artery (LAD); and (2) nine animals had permanent, complete occlusion of the LAD with latex embolization. Using programmed ventricular pacing with two premature ventricular extrastimuli, initiation of ventricular tachycardia was attempted at both 1 and 2 weeks after infarction with the chest closed and opened each time. Electrophysiologic evaluation of the infarct type correlated significantly with the histologic morphology of the infarction (p less than 0.001), the presence of a viable epicardial rim was an extremely important discriminating variable for ability to induce sustained ventricular tachycardia (p = 0.04). The presence of an endocardial rim was not significant (p = 1.0). Infarct size alone was only marginally related to ventricular tachycardia inducibility (p = 0.08). Non-uniform infarcts were more conducive to the initiation of sustained ventricular tachycardia than homogeneous infarcts (p = 0.025). The presence of a large, non-uniform infarct was the best overall discrimination variable for inducibility (p = 0.0002). Thus, in these experimental models, specific infarct morphologies correlate significantly with susceptibility to inducible sustained ventricular tachyarrhythmias.

Animals↗

Comparison of performances of transfer students and first-year acceptees.

Graduates of the Medical College of Pennsylvania during 1970-1977 were studied to determine the impact of three types of preclinical training on prelicensure clinical performance. The 586 students who comprised these groups consisted of 471 students admitted to the first year, 53 students admitted with advanced standing from U.S. medical or graduate programs, and 62 students admitted with advanced standing from foreign medical schools. Academic performances among the groups differed as measured by scores on the examinations of the National Board of Medical Examiners. However, perceived clinical performances of both transfer groups, as measured by honors awarded in year four and by first-year residency evaluation, were on a par with that of the original matriculants.

College Admission Test↗

Adaptation to CO(2) Level and Changes in the Phosphorylation of Thylakoid Proteins during the Cell Cycle of Chlamydomonas reinhardtii.

The photosynthetic performance of synchronously grown Chlamydomonas reinhardtii alternated rhythmically during the cell cycle. The activity of the "CO(2) concentrating mechanism" including the ability to accumulate CO(2) internally and the activity of carbonic anhydrase peaked after 6 to 9 hours of light and reached minimum after 6 to 9 hours of dark. Consequently, the apparent photosynthetic affinity to extracellular CO(2) alternated rhythmically. At the end of the dark period the cells behaved as if they were adapted to high CO(2) even though they were continuously aerated with air. Results from experiments in which the light or dark periods were extended bear on the interaction between the internal (cell cycle or biological clock) and the external (light) signal. The observed rhythmical alterations in photosynthetic V(max) may result from changes in PSII activity. The latter may be partly explained by the capacity for phosphorylation of thylakoid proteins, which reached maximum after 9 hours of light and decreased toward the dark period.

Journal Article↗

High CO(2) Requiring Mutant of Anacystis nidulans R(2).

Some physiological characteristics of a mutant (E(1)) of Anacystis nidulans R(2), incapable of growing at air level of CO(2), are described. E(1) is capable of accumulating inorganic carbon (C(i)) internally as efficiently as the wild type (R(2)). The apparent photosynthetic affinity for C(i) in E(1), however, is some 1000 times lower than that of R(2). The kinetic parameters of ribulose 1,5-bisphosphate carboxylase/oxygenase from E(1) are similar to those observed in R(2). The mutant appears to be defective in its ability to utilize the intracellular C(i) pool for photosynthesis and depends on extracellular supply of Ci in the form of CO(2). The very high apparent photosynthetic K(m) (CO(2)) of the mutant indicate a large diffusion resistance for CO(2). Data obtained here are used to calculate the permeability coefficient for CO(2) between the bulk medium and the carboxylation site of cyanobacteria.

Journal Article↗

Nonarrhythmogenicity of therapeutic cryothermic lesions of the myocardium.

There is increasing interest in the application of surgical methods to the treatment of refractory ventricular tachyarrhythmias (VT). Cryothermic ablation is one of the more promising techniques. However, there is clinical concern that a cryothermic lesion may lead to later arrhythmias. Previous studies have shown that dogs with nonhomogeneous, transmural infarctions are susceptible to VT initiation using programmed electrical stimulation (PES). The purpose of this study was to compare the incidence of inducing VT in dogs with transepicardial cryothermic myocardial damage (Group A) versus dogs with nonhomogeneous transmural infarctions resulting from 2-hr occlusion of the left anterior descending coronary artery (LAD) and subsequent reperfusion (Group B). Twelve dogs in each group were studied 10-14 days later using PES with unipolar cathodal ventricular pacing and two ventricular extrastimuli. Initiation of VT was attempted from at least six normal intramyocardial sites in each dog along the distribution of the LAD and in close proximity (less than or equal to 1 cm) to areas of chronically cryoablated damaged tissue. All dogs survived the initial procedure. VT was not inducible in any dog in Group A. Histological as well as electrophysiological evaluation, including determination of regional excitability thresholds and refractory periods employing strength-interval curves, revealed that all of the Group A dogs had homogeneous transmural infarcts with variable subendocardial sparing. In conclusion (1) cryothermal injury produces homogeneous damage; and (2) the lesion produced is not arrhythmogenic at 7-14 days.

Animals↗

Transit of alpha-mannosidase during its maturation in Dictyostelium discoideum.

We proposed that Dictyostelium discoideum contains two linked pools of mature alpha-mannosidase (Wood, L., R. N. Pannell, and A. Kaplan, 1983, J. Biol. Chem., 258:9426-9430). To obtain physical evidence for these pools, cells were pulse-labeled with [35S]methionine, homogenized, and subjected to Percoll gradient centrifugation. After immune precipitation of alpha-mannosidase, its polypeptides were separated by sodium dodecyl sulfate polyacrylamide gel electrophoresis and detected by fluorography. After a 30-min pulse with [35S]methionine, the precursor and small amounts of cleaved enzyme were detected in a low density fraction (1.04 g/ml). Subsequently, cleaved enzyme was transferred to higher density fractions (1.05 and 1.07 g/ml) that were enriched in lysosomal enzymes. The half time for formation of the 1.07 g/ml pool was approximately 45 min, whereas formation of the 1.05 g/ml pool was not detected until 1.5 h after the pulse. The transfer of mature forms out of the 1.04 g/ml pool was inhibited by monensin (3.5 microM). Thus, alpha-mannosidase precursor appears to be cleaved in a prelysosomal organelle. The data also indicate that starving cells secrete precursor directly from this organelle to the extracellular space, whereas cleaved forms are first transferred into lysosomes before they are secreted. Furthermore, 2 h after starvation, the secretion of mature forms ceases even though both transit of mature forms between the two pools and secretion of precursor continues. From this we inferred that the cessation of secretion of mature forms is due to a halt in fusion of lysosomes with the plasma membrane and that precursor follows a different route to the plasma membrane.

Biological Transport↗

Photosynthesis and Inorganic Carbon Accumulation in the Acidophilic Alga Cyanidioschyzon merolae.

The intracellular pH and membrane potential were determined in the acidophilic algae Cyanidoschyzon merolae as a function of extracellular pH. The alga appear to be capable of maintaining the intracellular pH at the range of 6.35 to 7.1 over the extracellular pH range of 1.5 to 7.5. The membrane potential increase from -12 millivolts (negative inside) to -71 millivolts and thus DeltamuH(+) decreased from -300 to -47 millivolts over the same range of extracellular pH. It is suggested that the DeltamuH(+) may set the upper and lower limits of pH for growth. Photosynthetic performance was also determined as a function of pH. The cells appeared to utilize CO(2) from the medium as the apparent K(m(co(2))) was 2 to 3 micromolar CO(2) over the pH range of 1.5 to 7.5 C. merolae appear to possess a ;CO(2) concentrating' mechanism.

Journal Article↗

Histopathologic factors conducive to experimental ventricular tachycardia.

Ventricular tachyarrhythmia is the leading cause of sudden cardiac death. Determination of the substrates conducive to the initiation of this arrhythmia remains an important clinical goal. The purpose of this study was to correlate histopathologic findings, specifically: pattern (heterogeneous versus homogeneous infarct morphology), distribution (viable epicardial and/or endocardial rim), and infarct size, with susceptibility to the initiation of sustained ventricular tachycardia employing programmed electrical stimulation in two canine models of experimental myocardial infarction. Twenty-one adult dogs were randomly divided into two groups: 12 dogs underwent two-stage, 2-hour occlusion of the proximal left anterior descending coronary artery and nine animals underwent permanent, complete occlusion of the left anterior descending coronary artery with latex embolization. With programmed ventricular pacing with two premature ventricular extrastimuli, initiation of ventricular tachycardia was attempted, open chest, two weeks after infarction. Electrophysiologic evaluation of the infarct type correlated significantly with the histologic morphology of the infarction (p less than 0.001). The presence of a viable epicardial rim was an extremely important variable for ability to induce sustained ventricular tachycardia (p = 0.04). The presence of an endocardial rim was not significant (p = 1.0). Infarct size alone was only marginally related to ventricular tachycardia inducibility (p = 0.08). Nonuniform infarcts were more conducive to the initiation of sustained ventricular tachycardia than were homogeneous infarcts (p = 0.025). The presence of a large, nonuniform infarct correlated best with inducibility (p = 0.0002). Thus in these experimental models, specific infarct morphologies correlate significantly with susceptibility to inducible sustained ventricular tachyarrhythmias.

Animals↗

Maturation of alpha-mannosidase in Dictyostelium discoideum. Acquisition of endoglycosidase H resistance and sulfate.

alpha-Mannosidase from Dictyostelium discoideum is a heterogenous glycoprotein which is derived from a precursor as a result of proteolytic processing. Its oligosaccharides are phosphorylated and sulfated. We investigated the sulfation of the enzyme by means of pulse-chase labeling and specific immunoprecipitation followed by endoglycosidase H treatment and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The earliest detectable form of the precursor was shown to be glycosylated and sensitive to endoglycosidase H. With time some of its oligosaccharides were sulfated and became partially resistant to endoglycosidase H. In the same time period, the precursor was proteolytically cleaved, yielding four species with different molecular masses (46-58 X 10(3) daltons). When first generated each of these was sensitive to endoglycosidase H but with time the 54,000- and 58,000-dalton forms developed degrees of endoglycosidase H resistance. The fully mature cleaved forms all contained sulfate. Sulfate from pulse-labeled precursor could only be detected in two of the forms implying that sulfation of the others occurs either after precursor cleavage or before cleavage but subsequent to the pulse period. When secretion of precursor was triggered by starvation only the endoglycosidase H-resistant forms were secreted.

Dictyostelium↗

Nature of the Inorganic Carbon Species Actively Taken Up by the Cyanobacterium Anabaena variabilis.

The nature of the inorganic carbon (C(i)) species actively taken up by cyanobacteria CO(2) or HCO(3) (-) has been investigated. The kinetics of CO(2) uptake, as well as that of HCO(3) (-) uptake, indicated the involvement of a saturable process. The apparent affinity of the uptake mechanism for CO(2) was higher than that for HCO(3) (-). Though the calculated V(max) was the same in both cases, the maximum rate of uptake actually observed was higher when HCO(3) (-) was supplied. C(i) uptake was far more sensitive to the carbonic anhydrase inhibitor ethoxyzolamide when CO(2) was the species supplied. Observations of photosynthetic rate as a function of intracellular C(i) level (following supply of CO(2) or HCO(3) (-) for 5 seconds) led to the inference that HCO(3) (-) is the species which arrives at the inner membrane surface, regardless of the species supplied. When the two species were supplied simultaneously, mutual inhibition of uptake was observed.On the basis of these and other results, a model is proposed postulating that a carboic anhydrase-like subunit of the C(i) transport apparatus binds CO(2) and releases HCO(3) (-) at or near a membrane porter. The latter transports HCO(3) (-) ions to the cell interior.

Journal Article↗