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Biomedical subjects

L L Jones

Publications and source records attributed to L L Jones.

31 records · Page 2Linked to original sources

Regulation of thrombospondin in the regenerating mouse facial motor nucleus.

Thrombospondin (TSP) is a multifunctional extracellular matrix protein that plays a role in neuronal migration and axonal outgrowth in the developing central nervous system. In the current study we have examined the localization and regulation of TSP immunoreactivity (TSP-IR) during neuronal regeneration in the axotomized facial motor nucleus using Western blotting and light and electron microscopy. Transection of the facial nerve led to a gradual increase in TSP-IR in the regenerating motoneurons, peaking 4-7 days after injury (DAI). In addition to regenerating neurons, axotomy also caused a rapid upregulation of TSP-IR on activated microglia throughout the facial nucleus, with a maximum of 2-3 DAI, and a second increase at 14-21 DAI on microglial aggregates surrounding degenerating motoneurons and in neuronophagic microglia. In summary, injury leads to the induction of thrombospondin on axotomized neurons and activated microglia, peaking at the times of maximal posttraumatic microglial proliferation and during neuronal phagocytosis. Since thrombospondin is a multimodal extracellular matrix protein with a variety of cell attachment sites, thrombospondin might serve to link microglia and injured neurons, followed by microglial proliferation and removal of the neuronal debris.

Animals↗

The impact of exit-site care and catheter design on the incidence of catheter-related infections.

The optimal approach to catheter exit-site care and catheter design in terms of catheter-related infections (e.g., exit-site infections, peritonitis) in children remains elusive. We retrospectively compared the incidence of exit-site infections and peritonitis in 33 pediatric peritoneal dialysis patients who used one of three exit-site care/catheter combinations. The catheters used were single-cuffed, curled Tenckhoff (T), and double-cuffed Swan neck (SN). Exit-site care included either povidone-iodine (PI) or chlorhexidine (CHL) as cleansing agents. Our data suggest that the use of chlorhexidine versus povidone-iodine is associated with a significant decrease (p < 0.05) in the frequency of catheter exit-site infections in children. The use of the Swan-neck double-cuffed catheter does not appear to have any further impact on the frequency of exit-site infections. Neither the use of chlorhexidine nor Swan neck catheters had an effect on our peritonitis rate. Our review suggests that a prospective evaluation of a chlorhexidine-based exit-site care regimen in children should be encouraged.

Anti-Infective Agents, Local↗

Early and rapid de novo synthesis of Alzheimer beta A4-amyloid precursor protein (APP) in activated microglia.

Upon acute activation, microglia, the immuneffector cells of the brain parenchyma, express the amyloid precursor protein (APP) that is otherwise prominent in pathological structures related to Alzheimer's disease. In this disease complex amyloid-bearing neuritic plaques contain beta A4-amyloid protein, the APP, and numerous inflammatory proteins. The accompanying activation of microglia has mostly been viewed as a secondary reaction to amyloid deposits. Activation of microglia was performed in a graded fashion. Transection of peripheral nerves such as the facial or sciatic nerve causes a microglial reaction within hours in the nucleus of origin or in projection areas of the CNS. A predominantly glial up-regulation of APP mRNA and protein could be detected as early as 6 h post lesion not only at the site of affected neuronal cell bodies but also in corresponding projection areas. Its time course suggests rapid transneuronal signalling to glial cells in the projection area. Light and electron microscopy demonstrate that microglia, which are cells of mononuclear phagocyte lineage and comprise up to 20% of all glial cells, are the dominant source for non-neuronal APP expression. Ultrastructurally, brain perivascular cells within the basal lamina constitutively express APP and thus are a possible source of vascular amyloid. Additionally, microglia express leukocyte-derived (L)-APP mRNA and protein that have recently been described in mononuclear cells of the immune system. Increased L-APP expression may serve as a potential marker for glial/microglial activation. Such immune-mediated amyloidogenesis initiated by microglia might have implications for the treatment of neurodegenerative diseases.

Amyloid beta-Protein Precursor↗

The benefits and costs of caregiving and care receiving for daughters and mothers.

In accordance with social exchange theory (Thibaut and Kelley, 1959), this study examined the outcomes of caregiving for elderly mothers and their caregiving daughters (N = 141 pairs). Data were gathered through face-to-face interviews. Principal components factor analyses revealed three factors for mothers: Helplessness, Feeling Loved, and Anger; and three factors for daughters: Insufficient Time, Frustration, and Anxiety. Block regressions with an initial block of demographic variables and a second block of situational variables were performed to determine the relative influence of these two sets of independent variables on caregiving outcomes. The regressions revealed limited influence of demographic variables and significant influence of situational variables. Of particular importance for daughters is the role of perceived intimacy with the mother: Daughters with better relationships experience fewer caregiving costs. Mothers' health plays a critical role in the outcomes of care receiving: Mothers in poorer health experience greater helplessness and are less likely to feel loved.

Aged↗

Effects of short-term training on cardiac function during prolonged exercise.

To determine the relationship between the training-induced increases in plasma volume (PV) and alterations in cardiac performance during prolonged submaximal cycle exercise, seven male subjects were studied prior to and following a short-term (3 d) training period (2 h.d-1 at 65% VO2max). Mean (range) VO2max was 3.42 l.min-1 (2.96-3.87). Training resulted in a 20% increase (P less than 0.05) in plasma volume (PV) and a 12% increase (P less than 0.05) in total blood volume (TBV). In contrast, training had no effect (P greater than 0.05) in altering exercise VO2, VCO2, VE BTPS, or RER. Cardiac output (Q) was higher (P less than 0.05) posttraining at all exercise sampling times (30, 60, 90, and 120 min). The elevations in Q were accompanied by an average decrease (P less than 0.05) in stroke volume (SV) of 22 ml. Arteriovenous O2 (a-v O2) difference was depressed (P less than 0.05) during exercise following the training. Although elevations (P less than 0.05) in core temperature (degrees C) occurred during the exercise, the training-induced PV increases did not affect thermoregulatory behavior. These results indicate that an early adaptive response to exercise training is an elevation in Q, an increase in SV, and a reduction in HR. These effects persist during prolonged exercise in spite of the progressive increase in body heat content. It is proposed that the increase in Q serves primarily to increase muscle blood flow and maintain arterial O2 delivery, while the altered cardiodynamic behavior serves to increase cardiac reserve, providing a greater tolerance to prolonged heavy exercise.

Adult↗

Autonomy and decision making between single older women and their caregiving daughters.

We examined perceptions of decisional autonomy and decision-making processes among 64 elderly, single mothers and their caregiving daughters. Mothers were highly involved in decisions affecting their lives, ranging from daily care to major health decisions; daughters were particularly influential over major health, financial and housing decisions. Mothers' level of personal care dependency was negatively associated with both mothers' and daughters' confidence in the mothers' decision-making abilities.

Adult↗

Muscle energetics during prolonged cycling after exercise hypervolemia.

This study examined the question of whether increases in plasma volume (hypervolemia) induced through exercise affect muscle substrate utilization and muscle bioenergetics during prolonged heavy effort. Six untrained males (19-24 yr) were studied before and after 3 consecutive days of cycling (2 h/day at 65% of peak O2 consumption) performed in a cool environment (22-23 degrees C, 25-35% relative humidity). This protocol resulted in a 21.2% increase in plasma volume (P less than 0.05). During exercise no difference was found in the blood concentrations of glucose, lactate, and plasma free fatty acids at either 30, 60, 90, or 120 min of exercise before and after the hypervolemia. In contrast, blood alanine was higher (P less than 0.05) during both rest and exercise with hypervolemia. Measurement of muscle samples extracted by biopsy from the vastus lateralis muscle at rest and at 60 and 120 min of exercise indicated no effect of training on high-energy phosphate metabolism (ATP, ADP, creatine phosphate, creatine) or on selected glycolytic intermediate concentrations (glucose 1-phosphate, glucose 6-phosphate, fructose 6-phosphate, lactate). In contrast, training resulted in higher (P less than 0.05) muscle glucose and muscle glycogen concentrations. These changes were accompanied by blunting of the exercise-induced increase (P less than 0.05) in both blood epinephrine and norepinephrine concentrations. Plasma glucagon and serum insulin were not affected by the training. The results indicate that exercise-induced hypervolemia did not alter muscle energy homeostasis. The reduction in muscle glycogen utilization appears to be an early adaptive response to training mediated either by an increase in blood glucose utilization or a decrease in anaerobic glycolysis.

Adult↗

Training-induced hypervolemia: lack of an effect on oxygen utilization during exercise.

To investigate the effect of training-induced increases in plasma volume on maximal aerobic power, 8 male subjects (age 19 to 24 yr) underwent a 4-d training program (2 h X d-1) at an estimated 71% maximal aerobic power. Following training, plasma volume measured using 131I-human serum albumin increased by 20.3% (P less than 0.01) whereas red cell volume remained unchanged and total blood volume increased by 12.3% (P less than 0.01). During progressive sub-maximal cycle exercise, oxygen consumption, carbon dioxide production, ventilation, and blood lactate concentration remained unchanged following the training whereas heart rate was significantly elevated (P less than 0.05). Significant post-training elevations were also noted in carbon dioxide production (P less than 0.05), blood lactate (P less than 0.01), and peak power output (P less than 0.05) during maximal exercise. Maximal aerobic power and ventilation were not altered. It is concluded that hypervolemia induced by short-term exercise training does not affect oxygen consumption either during sub-maximal or maximal exercise.

Adult↗

Mechanistic aspects of ingested chlorine dioxide on thyroid function: impact of oxidants on iodide metabolism.

Toxicological studies dealing with recent findings of health effects of drinking water disinfectants are reviewed. Experiments with monkeys and rodents indicate that the biological activity of ingested disinfectants is expressed via their chemical interaction with the mucosal epithelia, secretory products, and nutritional contents of the alimentary tract. Evidence exists that a principal partner of this redox interaction is the iodide of nutritional origin that is ubiquitous in the gastrointestinal tract. Thus the observation that subchronic exposure to chlorine dioxide (ClO2) in drinking water decreases serum thyroxine levels in mammalian species can be best explained with changes produced in the chemical form of the bioavailable iodide. Ongoing and previously reported mechanistic studies indicate that oxidizing agents such as chlorine-based disinfectants oxidize the basal iodide content of the gastrointestinal tract. The resulting reactive iodine species readily attaches to organic matter by covalent bonding. Evidence suggests that the extent to which such iodinated organics are formed is proportional to the magnitude of the electromotive force and stoichiometry of the redox couple between iodide and the disinfectant. Because the extent of thyroid uptake of the bioavailable iodide does not decrease during ClO2 ingestion, it seems that ClO2 does not cause iodide deficiency of sufficient magnitude to account for the decrease in hormonogenesis. Absorption of one or more of iodinated molecules, e.g., nutrients, hormones, or cellular constituents of the alimentary tract having thyromimetic or thyroid inhibitory properties, is a better hypothesis for the effects seen.

Animals↗

Detection and isolation of minor lipid constituents.

The use of thick layers of adsorbent for the concentration and subsequent isolation of neutral lipid constituents is described. Lipids not perceptible by conventional methods are demonstrated in concentrates of bovine heart extracts and identified as fatty aldehydes, O-alk-1-enyl diglycerides (neutral plasmalogens), and O-alkyl diglycerides (alkoxydiglycerides).

Adsorption↗

Hemostatic imbalances produced by plasma exchange.

Ten patients who underwent intensive therapeutic plasma exchange were studied prospectively to determine the nature and extent of changes induced in their coagulation mechanisms. The patients' plasma was replaced with serum albumin and normal saline. Significant changes were noted acutely in the prothrombin time, activated partial thromboplastin time, plasma fibrinogen, and platelet counts. Chronically, significant decreases were found in plasma fibrinogen concentrations and platelet counts. Intensive plasma exchange with fluids devoid of coagulation factors results in defects in the normal hemostatic mechanism.

Adult↗