PubMed HealthSearch

Biomedical subjects

R R Baker

Publications and source records attributed to R R Baker.

At least 19 recordsLinked to original sources

The hydrolysis of natural phosphatidylethanolamines by phospholipase A2 from rat serum: a degree of selectivity is shown for docosahexaenoate release.

The selectivity of phospholipase A2 from serum was evaluated using radioassays and mass analyses of fatty acids liberated from phosphatidylcholine and phosphatidylethanolamine. These natural phospholipid substrates were labelled at the sn-2 position with radioactive oleate, linoleate and arachidonate. The rates of release of fatty acids were compared with their abundance at the sn-2 position of these phospholipid substrates. While there was little or no selectivity in the liberation of these fatty acids from phosphatidylcholine, there was some evidence for a preferential release of arachidonate with respect to linoleate from phosphatidylethanolamine. Mass analyses of free fatty acid products revealed that docosahexaenoate was consistently liberated at levels that exceeded its abundance at the sn-2 position of phosphatidylethanolamine. Three different, natural phosphatidylethanolamines with varying levels of docosahexaenoate showed a 1.2-1.8-fold enrichment of this polyunsaturate in the free fatty acid products compared with its abundance at the sn-2 position. This preference could also be shown when phosphatidylethanolamine was mixed with synthetic phosphatidylcholine as co-sonicated substrates. This preferential release of docosahexaenoate by serum phospholipase A2 is of considerable significance in the nervous system which is enriched in this polyunsaturate. The potential competition between liberated docosahexaenoate and arachidonate may be of fundamental importance in the response of brain to hemorrhage.

Animals

Quantitation of alveolar distribution of liposome-entrapped antioxidant enzymes.

Liposome-encapsulated Cu,Zn superoxide dismutase (Cu,Zn SOD) and catalase (CAT) were instilled intratracheally in rabbits, and the temporal and spatial distribution of Cu,Zn SOD and CAT within the lung was assessed at the organ and cellular levels. Specific activities of Cu,Zn SOD and CAT were increased in both lung homogenates and isolated alveolar type II pneumocytes. Peak Cu,Zn SOD activities in lung homogenates and alveolar type II cells were observed 4 h after liposome instillation and returned to control levels by 24 h, whereas CAT activities remained significantly above controls. There were no significant differences in liposome distribution or antioxidant enzyme uptake among lung lobes. The distribution of fluorescently labeled Cu,Zn SOD and CAT was assessed with the use of epifluorescence microscopy and digital image processing to determine patterns of cellular incorporation of liposome-entrapped Cu,Zn SOD and CAT within the lung. Although the mean fluorescence intensity of alveoli from rabbits instilled with liposomes containing labeled Cu,Zn SOD and CAT was greater than autofluorescence observed with either no liposome or empty liposome instillation, fluorescence intensity varied between adjacent alveoli. Both fluorescently labeled Cu,Zn SOD and CAT were located cytosolically, and uptake was not limited to alveolar type II pneumocytes. These results demonstrate that a single intratracheal instillation of liposomes can effect increases in Cu,Zn SOD and CAT activities in distal lung cells, including alveolar type I and type II cells and macrophages.

Animals

The management of breast cancer with immediate or delayed reconstruction.

In patients with stage I and stage II disease who are candidates for a mastectomy, either immediate or delayed reconstruction can be accomplished with remarkably good cosmetic results. Age is not a specific contraindication to reconstruction, but, in my experience, the majority of women over 55 years of age are not interested. Mastectomy or modified radical mastectomy should be performed in these patients using a technique that facilitates delayed reconstruction. The patient may or may not elect to have the reconstruction eventually. Immediate or delayed reconstruction is appealing to a significant number of women under 55 years of age. They should see a plastic surgeon in consultation and the advantages and disadvantages of a subpectoral silicone implant vs. a myocutaneous flap (usually a transverse rectus abdominis musculocutaneous flap) should be discussed in detail. The patient's acceptance of the cosmetic result is better if she has an opportunity preoperatively to review photographs of reconstructed breasts and to discuss the results with women who have undergone a similar procedure. The timing of the reconstruction is a matter of clinical judgment; no prospective clinical trials have been performed. Immediate reconstruction is feasible if the skin flaps will accept the slight tension produced by either a subpectoral implant or a transposed muscle flap. A subpectoral silicone implant produces a satisfactory cosmetic result in the majority of patients, particularly if both breasts are supported by a properly fitting brassiere. In long-term follow-up, infection, contracture, and displacement requiring removal and reinsertion occur in approximately 15% of patients. Reconstruction by a myocutaneous flap is a technically more difficult operation. The operating time is prolonged significantly and blood loss is increased. In my opinion, a myocutaneous flap probably is not worth the risk of a heterologous transfusion. The long-term cosmetic results, however, are considerably better in comparison to a subpectoral silicone implant. The reconstructed breast is much more mobile, making it a more realistic replacement of the original breast. In most cases, it is better to perform this type of reconstruction with a myocutaneous flap as a delayed procedure. In experienced hands, however, immediate reconstruction, with the transverse rectus abdominis musculocutaneous flap harvested while the modified radical mastectomy is being performed, is perfectly feasible. Nipple/areolar reconstruction is available. However, the cosmetic results are only fair to good, and the patient should be aware of this before undergoing the procedure. The problem of symmetry between the breasts requires a good deal of judgment.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult

Mechanisms of H2O2-mediated injury to type II cell surfactant metabolism and protection with PEG-catalase.

Alterations in type II pneumocyte function, including surfactant biosynthesis, may play a significant role in the development and pathophysiology of oxidant-induced lung injury. The results of this study showed that type II cells exposed to 50-300 microM H2O2 demonstrated a dose-dependent decrease in phosphatidylcholine (PC) synthesis with only minimal changes in cell viability. The activities of the choline-phosphate cytidyltransferase and cholinephosphotransferase, specific enzymes of PC synthesis, were not significantly decreased by the exposure. However, the activity of glycerol-3-phosphate acyltransferase, a sulfhydryl-dependent enzyme involved in an early stage of phospholipid synthesis, was decreased by the exposures in a manner that was similar to that seen for PC synthesis. Further studies showed that incubation of type II cells with polyethylene glycol-conjugated catalase for 1 h resulted in an increase in the cell-associated catalase activity (53 +/- 5 vs. 6.7 +/- 1.5 units/mg protein for controls). Confocal microscopy analysis showed that a significant portion of this activity was located intracellularly. More importantly, these cells were protected from changes in PC synthesis rates when subsequently incubated with 300 microM H2O2. These results indicate that the deleterious effects of H2O2 on type II cell surfactant synthesis may be pharmacologically modified in vitro, a concept that may have utility with regard to the modulation of in vivo lung injuries.

Animals

Characterization of antioxidant activities of pulmonary surfactant mixtures.

Instillation of intratracheal surfactant is known to limit the morbidity and mortality of patients and animals with oxidant-induced lung injury. In this study we quantified the antioxidant properties of natural lung surfactant (NLS), consisting of 90% lipid and 10% protein, and of calf lung surfactant extract (CLSE) consisting of 99% lipid and 1% protein. NLS, but not CLSE, contained significant amounts of superoxide dismutase (SOD) and catalase activities (7 U SOD/mumol phospholipid (PL) and 1 U catalase/mumol PL). More than 90% of the SOD activity was abolished by 1 mM KCN, suggesting that this was the CuZn form of the enzyme. In addition, NLS significantly reduced extracellular H2O2 without losing its ability to reach minimum surface tensions below 1 dyn/cm upon dynamic compression. The NLS scavenging of H2O2 could not be accounted for by albumin. The presence of catalase and SOD activities in NLS was also verified by activity stains of proteins separated by native polyacrylamide gel electrophoresis. Intratracheal instillation of 7 ml of NLS (308 mumol PL) into rabbits significantly increased SOD content in type II cells isolated 12 h later. It is concluded that, in addition to promoting alveolar stability, instillation of pulmonary surfactant may offer significant protection to the alveolar epithelium by scavenging extracellularly generated partially reduced oxygen species and by enhancing intracellular antioxidant enzyme content.

Animals

Phosphatidylinositol synthetase activities in neuronal nuclei and microsomal fractions isolated from immature rabbit cerebral cortex.

The synthesis of phosphatidylinositol was studied using a nuclear fraction N1, a microsomal fraction P3, rough (R) and smooth (S) microsomal fractions and a microsomal fraction P derived from isolated nerve cell bodies. Each fraction was prepared using cerebral cortices of 15-day-old rabbits. In assays using CDP-diacylglycerol (prepared from egg phosphatidylcholine) and myo[3H]inositol at pH 7.4, fraction N1 had the highest maximal specific rates of phosphatidylinositol synthetase (EC 2.7.8.11) (expressed per mumol phospholipid in the fraction). However the three microsomal fractions achieved maximal specific activities at liponucleotide concentrations close to 50 microM, while fraction N1 required 200 microM concentrations. In certain cases (25-120 microM CDP-diacylglycerol, and at higher pH values) fraction R had specific activities which equalled or surpassed those of N1. However, with respect to inositol, fraction N1 had a distinctly lower Km than was shown for fractions R or P3. Each of the microsomal fractions and N1 required Mg2+ for the reaction, but for N1, maximal rates could be sustained at 0.1 mM, while for the microsomal fractions the optimal Mg2+ concentration was 1 mM. For each fraction Mn2+ could not replace Mg2+ in the reaction and Mn2+ was inhibitory. The optimal pH for the reaction was between 8.0 and 9.0. Phosphatidylinositol synthetase could also be shown using fraction N1 enriched in endogenous CDP-diacylglycerol. The relatively high specific activities of fraction N1, and the differences found between N1 and the microsomal fractions, for optimal CDP-diacylglycerol and Mg2+ concentrations and for Km values for inositol, support the existence of a neuronal nuclear phosphatidylinositol synthetase.

Animals

The eicosanoids: a historical overview.

Eicosanoids are biologically active compounds derived from 20 carbon unsaturated fatty acids, among which arachidonic acid is a substrate of particular importance. The history of the eicosanoids dates back to the thirties, when new biologically active compounds were found in human seminal plasma. These "prostaglandins" were purified, and their structures and mechanisms of biosynthesis were elucidated in the early sixties. Other eicosanoids, including thromboxane A2, a potent platelet aggregating agent, and prostacyclin, an antagonist to thromboxane A2, were discovered in the seventies. The inhibitory actions of acetylsalicylic acid on eicosanoid synthesis were also uncovered at this time. In 1979, a new metabolic sequence leading to the synthesis of a new group of eicosanoids, called leukotrienes, was reported. The leukotrienes have several biological activities, including the mediation of bronchoconstriction in allergic response. The eicosanoids comprise a diverse group of biologically active compounds; many of these arise from arachidonic acid, and are associated with injury, allergic responses, and platelet aggregation.

Eicosanoids

Unusual lesions and their management.

Treatment of a breast lesion should never be undertaken without a precise histologic diagnosis, which means careful examination of multiple sections of tissue embedded in paraffin and appropriately stained. The author described the clinical and histologic features of lobular and medullary cancers; cystosarcoma phylloides; carcinosarcoma; Paget's disease; adenoid cystic carcinoma; mucinous, tubular, and papillary cancers; and other unusual lesions that can originate elsewhere in the body. For each, treatment suggestions are offered.

Adenocarcinoma

Fatty acid release in incubations of serum with synaptosome and myelin subfractions of brain.

To study lipid breakdown in brain membranes following hemorrhage, synaptosome and myelin fractions isolated from rat brain were incubated with rat serum. After 3 h in vitro at 37 degrees C, 0.43 and 0.26 mumol of fatty acid were released in incubations containing synaptosomes (1.37 mumols phospholipid) or myelin (1.23 mumols phospholipid), respectively, in the presence of 0.25 mL serum. Less than 0.05 mumol of fatty acid was liberated in incubations containing only serum, synaptosomes, or myelin. For synaptosomes and serum, docosahexaenoate was the principal fatty acid released (28 mol% of total) after 3 h of incubation. This fatty acid and arachidonate made up 43 mol% of the liberated fatty acid. The presence of free docosahexaenoate was of interest, as this fatty acid is particularly enriched in phosphatidylserine and phosphatidylethanolamine, phospholipids found in the cytoplasmic half of the synaptosomal plasma membrane and in interior synaptosomal membranes. In incubations of serum and myelin, oleate was the major free fatty acid produced in 30 min to 3 h of incubation (29-35 mol% of total). After 3 h, docosahexaenoate contributed 20 mol% to the total. The release of fatty acids from the membranes may be mediated by serum phospholipase(s) or possibly by activated endogenous lipolytic activities.

Animals

The acylation of 1-acyl-sn-glycero-3-phosphate by neuronal nuclei and microsomal fractions of immature rabbit cerebral cortex.

The acylation of 1-acyl-sn-glycero-3-phosphate to form phosphatidic acid was studied using a neuronal nuclear fraction N1 and microsomal fractions P3, R (rough), S (smooth), and P (neuronal microsomes from nerve cell bodies) isolated from cerebral cortices of 15-day-old rabbits. The assays contained this lysophospholipid, ATP, CoA, MgCl2, NaF, dithiothreitol, and radioactive palmitate, oleate, or arachidonate. Of the subfractions, N1 and R had the highest specific activities (expressed per micromole phospholipid in the fraction). The rates with oleate were two to four times the values seen for phosphatidic acid formation from sn-[3H]glycero-3-phosphate and oleoyl-CoA. Using oleate or palmitate, fraction R had superior specific rates to N1 at low lysophosphatidic acid concentrations. With increasing lysophospholipid concentrations the specific rates of N1 and R came closer together and maintained at least a twofold superiority over fraction P. Fraction S had the lowest specific rates of phosphatidic acid formation. Fractions N1, R, and P showed a preference for palmitate and oleate over arachidonate, particularly at low concentrations of lysophosphatidic acid. For N1 and R, the preference was also more marked at higher concentrations of fatty acid. Thus a selectivity for saturated and monounsaturated fatty acids was shown in the formation of phosphatidic acid, as was a concentration of acylating activity in the neuronal nucleus and the rough endoplasmic reticulum.

Acylation

Endogenous xanthine oxidase-derived O2 metabolites inhibit surfactant metabolism.

The ability of xanthine oxidase (XO)-derived, partially reduced O2 species (PROS) to inhibit surfactant production was examined in freshly isolated alveolar type II (ATII) pneumocytes from New Zealand White rabbits. [Methyl-3H]choline chloride and [1-14C]palmitate incorporation into phosphatidylcholine (PC) decreased in a dose-dependent manner, whereas peak media hydrogen peroxide (H2O2) concentration increased, when 1, 5, or 10 mU/ml XO were added to cell suspensions containing 500 microM xanthine. Addition of 100 microM allopurinol inhibited H2O2 production and abolished the decrease in choline and palmitate incorporation into PC. ATII cells incubated with 500 microM xanthine alone incorporated choline and palmitate at 90 and 80% of control levels, respectively. However, 100 microM allopurinol restored precursor incorporation to control values. To identify a possible intracellular source of PROS, ATII cell xanthine dehydrogenase (XDH) and XO activities were measured. Both total activity (XDH + XO; 45 +/- 7 microU/mg protein) and the percentage activity in the oxidase form (%XO; 30 +/- 4%) remained unchanged in ATII cells incubated in media only (control) for 2 h. In contrast, incubation of ATII cells with 500 microM xanthine resulted in a 50% loss of XDH + XO activity and a 21% increase in %XO within 10 min. After 2 h there was no measurable XDH + XO activity in xanthine-treated cells. Total XDH + XO activity in cells incubated with 500 microM xanthine and 100 microM allopurinol was less than 6% of control values throughout the incubation.(ABSTRACT TRUNCATED AT 250 WORDS)

Allopurinol

Mechanisms of extracellular hydrogen peroxide clearance by alveolar type II pneumocytes.

This study quantified the ability of freshly isolated alveolar type II (ATII) pneumocytes to reduce extracellularly produced hydrogen peroxide (H2O2) and identify the mechanisms involved. ATII cells were isolated to high purity (greater than 85%) from rabbit lungs by enzymatic digestion and Percoll centrifugation and suspended in Eagle's minimum essential medium (MEM). They were then coincubated with either 500 microM xanthine and 10 mU/ml xanthine oxidase (XO; pH 7.4; 25 degrees C) or 300 microM H2O2. The extracellular H2O2 concentration [H2O2] was measured in the following conditions over a 60-min period: 1) MEM alone, 2) untreated (control), 3) 3-amino-1,2,4-triazole (ATZ)-treated, or 4) 1-chloro-2,4-dinitrobenzene-treated ATII cells. Addition of xanthine and XO to MEM alone resulted in a time-dependent increase in [H2O2], reaching a plateau value of approximately 300 microM after 45 min. In the presence of control ATII cells (1 x 10(6) cells/ml), [H2O2] remained at control levels. When coincubated with 300 microM H2O2, ATII cells cleared H2O2 at a higher rate than an equivalent amount of free catalase. Incubation with ATZ decreased ATII cell catalase activity by 89% and significantly impaired their ability to clear H2O2 (half-life = 18.1 +/- 2.7 vs. 1.3 +/- 0.1 min, P less than 0.01). ATZ-treated cells were more susceptible to oxidant injury, as shown by their decreased ability to exclude trypan blue after 60 min of H2O2 exposure. On the other hand, glutathione-depleted cells scavenged H2O2 at the same rate as controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Amitrole

Hemorrhagic infarction of hilar lymph nodes associated with combined heart-lung transplantation.

The histologic changes in lymph nodes transplanted during combined heart-lung transplantation were examined. We studied at autopsy nine patients who had received a total of 10 heart-lung transplants. Hemorrhagic infarction of hilar nodes was found in eight of the 10 transplanted lungs. Pulmonary parenchymal pathologic changes associated with lymph node infarction included acute rejection (two cases), chronic rejection with bronchiolitis obliterans (two cases), and pneumonia (four cases). In one of the transplants without lymph node infarction there was chronic rejection with bronchiolitis obliterans and in another there was evidence of bronchopneumonia. The hemorrhagic lymph node infarction seen in the recipients of combined heart-lung transplant's may be directly attributable to the interruption of bronchial arteries and veins by the surgical procedure. At present the possible contribution of node infarction to postoperative morbidity or mortality is unknown.

Adolescent

The military nurse experiment in Vietnam: stress and impact.

Demographic, health, and psychosocial data from two studies are presented on military nurses assigned to Vietnam. Army nurse subjects in the first study were grouped for comparison on three major variables: assignment to Vietnam before versus after the 1968 TET Offensive, type of nursing duties performed, and years of experience as a registered nurse (RN) prior to assignment in Vietnam. The second study compared another group of Army nurses with a group of Air Force and Navy nurses also assigned to Vietnam. Army nurses with less than two years RN experience prior to their assignment were found to be more at risk for such negative outcomes as difficulty establishing personal relationships and difficulty coping with stressful situations. Stress experiences, career dissatisfaction data, and health problems of military nurses and their children are reported. Also described are positive experiences of nurses in developing personal relationships in a rewarding professional environment.

Adaptation, Psychological

Congenital bronchopulmonary foregut malformations. Intralobar and extralobar pulmonary sequestrations communicating with the foregut.

Two unusual variants of bronchopulmonary foregut malformations are presented. The first case was that of a 12-year-old male with a history of pectus excavatum in whom severe lobar emphysema developed secondary to an intralobar pulmonary sequestration that communicated with the esophagus. This case was unusual in that foregut communications and associated congenital anomalies are generally believed to be restricted to extralobar pulmonary sequestrations. The second case was that of a 27-year-old woman with an extralobar pulmonary sequestration that communicated with the esophagus. The sequestration was unusual in that it arose in the anterior mediastinum and received the bulk of its blood supply from the pulmonary artery. The occurrence of mixed forms of pulmonary sequestrations supports the hypothesis that extralobar and intralobar sequestrations and sequestrations with foregut communication are related thoracic disorders that are best considered bronchopulmonary foregut malformations.

Abnormalities, Multiple

The clinical management of a normal contralateral breast in patients with lobular breast cancer.

Ninety-nine patients with the diagnosis of lobular carcinoma (LC) treated between 1970 and 1981 were reviewed. Thirteen patients had a contralateral mastectomy for duct cancer (DC) before the diagnosis of LC. Ten of the remaining 86 patients (11%) had simultaneous bilateral cancers detected by either physical examination or mammography, none by blind biopsy. Three of the surviving 38 patients (7.8%) developed a contralateral cancer an average of 143 months after operation. In comparison 167 patients with DC treated during the same period of time had a 1.8% incidence of synchronous cancer but the same incidence of subsequent cancer (7%). Lobular carcinoma in situ was not a reliable marker for predicting the presence of cancers in the contralateral breast. The diagnosis of LC is not an indication for either biopsy or removal of a normal contralateral breast.

Adult

Development of O2 tolerance in rabbits with no increase in antioxidant enzymes.

Instillation of exogenous surfactant into rabbits exposed to 100% O2 increases survival time and decreases alveolar epithelial injury. In this study we investigated whether rabbits with increased levels of endogenous pulmonary surfactant are more resistant to hyperoxia. Rabbits were exposed to 100% O2 for 64 h and then returned to room air for 8 days (preexposed). At this time, they had normal gas exchange and alveolar permeability to solute and increased levels of lavageable alveolar phospholipids compared with control rabbits breathing air (26 +/- 2 vs. 12 +/- 2 mumol/kg). Preexposed rabbits survived significantly longer than control rabbits when reexposed to 100% O2 (166 +/- 24 vs. 80 +/- 6 h; n = 7; P less than 0.05) and had significantly higher values of total lavageable phospholipids after 72 h in 100% O2 (15 +/- 2 vs. 5 +/- 2 mumol/kg). Controls developed arterial hypoxemia after 72 h in 100% O2. On the other hand, preexposed rabbits maintained arterial PO2 values greater than 100 Torr throughout the hyperoxic exposure and developed progressive respiratory acidosis. Specific activities of CuZn and Mn superoxide dismutase, catalase, and glutathione peroxidase in lung homogenates and isolated alveolar type II pneumocytes of preexposed rabbits were unchanged from those of controls before O2 reexposure and after 72 h in 100% O2. We concluded that 1) increases in pulmonary antioxidant enzyme specific activities are not necessary for the development of O2 tolerance in rabbits and 2) pulmonary surfactant may play a role in O2 adaptation.

Animals