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Biomedical subjects

T W Jones

Publications and source records attributed to T W Jones.

At least 19 recordsLinked to original sources

Antibody patterns in rabbits showing different levels of susceptibility to an experimental Trypanosoma evansi infection.

Using SDS-PAGE and Western blotting, the antibody spectrum of rabbits infected with Trypanosoma evansi to homologous T. evansi antigens was monitored. Animals that developed parasitaemia later or had lower levels of parasitaemia as the infection progressed were considered to have a degree of resistance to the infection. Sera of these resistant animals recognised the T. evansi antigens earlier and subsequently identified more antigens than their susceptible counterparts. The susceptible animals developed patent parasitaemia earlier and had higher parasite counts as the infection progressed, and their sera recognised T. evansi antigens later with fewer parasite components labelled during the course of the infection. These observations demonstrate clear differences between animals in response to T. evansi infections. Selection of T. evansi-tolerant animals on an individual basis may be possible as has been suggested for other trypanosome species.

Animals

Impairment of counterregulatory hormone responses to hypoglycemia in pregnant women with insulin-dependent diabetes mellitus.

Intensive insulin therapy directed at elimination of hyperglycemia is advocated during pregnancy in women with insulin-dependent diabetes mellitus. Because such treatment is complicated by frequent hypoglycemic episodes, we evaluated maternal and fetal responses in nine intensively treated pregnant women with insulin-dependent diabetes mellitus during an insulin-induced, gradual, controlled fall in plasma glucose levels. In contrast to values in nonpregnant control women, reductions in glucose to 44 +/- 2 mg/dl in pregnant diabetic patients failed to elicit an increase in glucagon levels. Epinephrine release during hypoglycemia was also markedly suppressed in the pregnant diabetic subjects (106 +/- 32 vs 327 +/- 52 pg/ml in controls, p less than 0.001). Furthermore, the plasma glucose level at which epinephrine and growth hormone were released was 5 to 10 mg/dl lower in the pregnant women with insulin-dependent diabetes mellitus (p less than 0.05). The basal fetal heart rate remained unchanged and continued to manifest accelerations during the hypoglycemic state. We conclude that the high frequency of hypoglycemia in intensively treated pregnant women with insulin-dependent diabetes mellitus may be due in part to impaired counterregulatory hormonal responses.

Adult

Pathology of experimental Trypanosoma evansi infection in rabbits.

Histopathological examination of tissue sections from the organs of rabbits experimentally infected with Trypanosoma evansi revealed evidence of a vigorous immunological response. Changes in the spleen, lymph nodes, vulva, eyelids and ears indicated a protective immune response, but changes in the kidneys, lungs and heart were destructive in nature and capable of causing sudden death of the host. Hepatic damage capable of interfering with the host's immune response was also observed. The presence of many parasites in the vulval tissue calls for further investigation into the possibility of sexual transmission of T. evansi.

Animals

Identification of the surface components of Trypanosoma evansi.

125I-labelling was used to characterise the surface components of five stocks of Trypanosoma evansi. Two components of 67 and 60.5 kD were labelled in two of the stocks, a single 60.5 kD component in two other stocks and no components in the remaining stock. These differences are probably related to the labelling method and biochemical differences between the stocks.

Animals

Complement (C3) levels and activation in rabbits experimentally infected with Trypanosoma evansi.

Rocket immunoelectrophoresis was used to monitor the levels of the third complement component (C3) in the blood of rabbits experimentally infected with Trypanosoma evansi. Although a reduction in the circulating levels of C3 was associated with C3 activation in rabbits with high levels of parasitaemia, there was no evidence for C3 activation in uninfected rabbits, rabbits with early-stage, light infections or rabbits cleared of infection by drug treatment. Host-tolerance to current infection and to re-exposure to the parasite are probably affected by such changes in C3.

Animals

Stimulation of N-methyl-D-aspartate receptor-mediated calcium entry into dissociated neurons by reduced and oxidized glutathione.

The effects of GSH (gamma-glutamylcysteinylglycine) and GSSG on intracellular calcium levels ([Ca2+]i) were investigated using fura-2-loaded dissociated brain cells from newborn rat pups. Both produced concentration-dependent increases in [Ca2+]i (EC50 values of 914.3 +/- 190.5 and 583.0 +/- 97.2 microM for GSH and GSSG, respectively), similar to that observed with N-methyl-D-aspartate (NMDA) and other agonists at the NMDA receptor. Maximum response (expressed as percentage change in [Ca2+]i relative to basal) was significantly greater for GSSG (37.5 +/- 1.6%) than for GSH (25.3 +/- 1.6%). The response to both agents was prevented or reversed by competitive (100 microM) (-)-2-amino-5- phosphonovalerate and noncompetitive (400 nM) MK-801 or 1.0 mM Mg2+ antagonists of NMDA receptor-mediated calcium entry, even at concentrations of GSH and GSSG normally producing maximal response. The idea that these effects are mediated, at least in part, by interaction with the NMDA receptor was supported by the effects of GSH and GSSG on the binding of the NMDA receptor ligand [3H]CGP-39653 to membranes isolated from hippocampal and cortical homogenates. Both GSH and GSSG displaced bound [3H]CGP-39653, with IC50 values of 0.93 +/- 0.18 and 11.02 +/- 1.22 microM, respectively, and produced an increase in the apparent Kd of binding (control, 8.92 +/- 0.83 nM, and GSH, 13.31 +/- 1.19 nM; control, 11.59 +/- 0.35 nM, and GSSG, 18.73 +/- 0.66 nM). However, both also produced modest reductions in Bmax (control, 1265 +/- 69 fmol/mg of protein, and GSH, 901 +/- 73 fmol/mg of protein; control, 1068 +/- 30 fmol/mg of protein, and GSSG, 730 +/- 18 fmol/mg of protein) and Hill slopes (GSH, 0.66 +/- 0.02; GSSG, 0.62 +/- 0.04). This suggests complex kinetics for the interaction of GSH and GSSG with the NMDA receptor. Taken together, the results suggest the potential for modulation of the NMDA receptor complex by GSH and GSSG.

2-Amino-5-phosphonovalerate

Mechanism of the nephrogenic repair response. Studies on proliferation and vimentin expression after 35S-1,2-dichlorovinyl-L-cysteine nephrotoxicity in vivo and in cultured proximal tubule epithelial cells.

Studies were performed in vivo using 35S-(1,2-dichlorovinyl)-L-cysteine, a nephrotoxin that damages the S3 segment of the proximal tubule after metabolism to a reactive intermediate. Initiation of damage (35S covalent binding) was complete by 6 hour, and an early proliferative response was observed by 24 hour in the S2 or S3C segments. Necrosis in the S3M and increased blood urea nitrogen were maximal at 48 hours and were accompanied by an increase in proliferation of cells at the wound site. Regeneration was marked by the appearance of vimentin expressing cells that lacked brush border enzymes. The loss of differentiated character in the regenerative epithelium persisted after the proliferation (bromodeoxyuridine incorporation) had stopped; redifferentiation occurred between days 5 and 13. Much of the process was reproduced by culturing rat kidney proximal tubule epithelial cells in defined medium. As growth increased, the cells expressed vimentin and lost brush border marker enzymes. However, as the cells reached high density and stopped dividing there was an increase in brush border markers, as was seen in vivo. Vimentin expression did not decrease, however. The data support a mechanism for damage and nephrogenic repair composed of 1) interaction of the toxin with the target cells, 2) necrosis and exfoliation, 3) loss of differentiation and cell growth, 4) recovery of the damaged area and cessation of cell growth, and 5) differentiation of the quiescent cells. Nephrogenic repair may have similarities with the differentiation of the tubular epithelium during development.

Alkaline Phosphatase

The toxicity of menadione (2-methyl-1,4-naphthoquinone) and two thioether conjugates studied with isolated renal epithelial cells.

Menadione (2-methyl-1,4-naphthoquinone) was used as a model compound to test the hypothesis that thioether conjugates of quinones can be toxic to tissues associated with their elimination through a mechanism involving oxidative stress. Unlike menadione, the glutathione (2-methyl-3-(glutathion-S-yl)-1,4-naphthoquinone; MGNQ) and N-acetyl-L-cysteine (2-methyl-3-(N-acetylcysteine-S-yl)-1,4-naphthoquinone; M(NAC)NQ) thioether conjugates were not able to arylate protein thiols but were still able to redox cycle with cytochrome c reductase/NADH and rat kidney microsomes and mitochondria. Interestingly, menadione and M(NAC)NQ were equally toxic to isolated rat renal epithelial cells (IREC) while MGNQ was nontoxic. The toxicity of both menadione and M(NAC)NQ was preceded by a rapid depletion of soluble thiols and was associated with a depletion of soluble thiols and was associated with a depletion of protein thiols. Treatment of IREC with the glutathione reductase inhibitor, 1,3-bis(2-chloroethyl)-1-nitrosourea, potentiated the thiol depletion and toxicity observed with menadione and M(NAC)NQ indicating the involvement of oxidative stress in this model of renal cell toxicity. The lack of MGNQ toxicity can be attributed to an intramolecular cyclization reaction which destroys the quinone nucleus and therefore eliminates its ability to redox cycle. These findings have important implications with regard to our understanding of the toxic potential of quinone thioether conjugates and of quinone toxicity in general.

Animals

Nephrotoxicity of 2-bromo-(cystein-S-yl) hydroquinone and 2-bromo-(N-acetyl-L-cystein-S-yl) hydroquinone thioethers.

The in vivo toxicity of isomeric cystein-S-yl and N-acetylcystein-S-yl conjugates of 2-bromohydroquinone was determined in male Sprague-Dawley rats. 2-Bromo-(dicystein-S-yl)hydroquinone [2-Br-(diCYS)HQ] and 2-bromo-(di-N-acetyl-L-cystein-S-yl)hydroquinone [2-Br-(diNAC)HQ] were considerably more nephrotoxic than their corresponding monosubstituted thioethers and 2-Br-(diCYS)HQ was more nephrotoxic than 2-Br-(diNAC)HQ. 2-Br-(diCYS)HQ caused elevations in blood urea nitrogen (BUN) concentrations and increases in the urinary excretion of glucose, lactate dehydrogenase (LDH), and gamma-glutamyl transpeptidase (gamma-GT) at a dose of 25 mumol/kg (iv). In contrast, 2-Br-(diNAC)HQ caused significant elevations in BUN at 100 mumol/kg and glucosuria and enzymuria at 50 mumol/kg. 2-Br-3-(CYS)HQ and 2-Br-5&6-(CYS)HQ caused increases in the biochemical indices of nephrotoxicity at doses between 50 and 150 mumol/kg whereas 2-Br-5-(NAC)HQ and 2-Br-6-(NAC)HQ required doses of 150-200 mumol/kg to cause smaller, though significant increases in urinary glucose, gamma-GT, and LDH excretion. The histological alterations caused by each thioether were qualitatively similar; only differences in the extent of the renal proximal tubular damage were observed. The initial lesion appears to involve the cells of the medullary ray and the S3M within the outer stripe of the outer medulla. The in vivo nephrotoxicity of 2-Br-(DiCYS)HQ, 2-Br-(diNAC)HQ, and the most potent monosubstituted thioethers, 2-Br-5&6-(CYS)HQ and 2-Br-6-(NAC)HQ, was investigated further. Pretreatment of animals with aminooxyacetic acid, an inhibitor of cysteine conjugate beta-lyase (beta-lyase), had no effect on the toxicity of 2-Br-(diCYS)HQ, partially inhibited the toxicity of 2-Br-5&6-(CYS)HQ, and almost completely protected against the toxicity of both 2-Br-6-(NAC)HQ and 2-Br-(diNAC)HQ. Thus, the nephrotoxicity of 2-Br-5&6-(CYS)HQ, 2-Br-6-(NAC)HQ, and 2-Br-(diNAC)HQ may be mediated, in part, via their processing by beta-lyase. Pretreatment of animals with probenecid, an inhibitor of renal organic anion transport, completely protected against the toxicity of 2-Br-(diNAC)HQ but had no effect on the toxicity of the other thioethers.

Aminooxyacetic Acid

Inhibition of gamma-glutamyl transpeptidase potentiates the nephrotoxicity of glutathione-conjugated chlorohydroquinones.

Administration of either 2,5-dichloro-3-(glutathion-S-yl)-1, 4-benzoquinone (DC-[GSyl]BQ) or 2,5,6-trichloro-3-(glutathion-S-yl)-1,4-benzoquinone (TC-[GSyl]BQ) to male Sprague-Dawley rats caused dose-dependent (50-200 mumol/kg; iv) renal proximal tubular necrosis, as evidenced by elevations in blood urea nitrogen (BUN), and in the urinary excretion of lactate dehydrogenase (LDH), gamma-glutamyl transpeptidase (gamma-GT) and glucose. Renal proximal tubular necrosis was also confirmed by histological examination of kidney slices prepared from DC-(GSyl)BQ- and TC-(GSyl)BQ-treated animals. Administration of the corresponding hydroquinone conjugates (DC-[GSyl]HQ and TC-[GSyl]HQ), prepared by reducing the quinones with a threefold molar excess of ascorbic acid, resulted in a substantial increase in nephrotoxicity. Moreover, in contrast to other glutathione (GSH)-conjugated hydroquinones, the nephrotoxicity of both DC-(GSyl)HQ and TC-(GSyl)HQ was potentiated when rats were pretreated with AT-125, an irreversible inhibitor of gamma-GT. Neither the quinone-GSH nor the hydroquinone-GSH conjugates caused any effect on liver histology or serum glutamate-pyruvate transaminase levels. The results suggest that coadministration of ascorbic acid with DC-(GSyl)BQ or TC-(GSyl)BQ decreases their interactions with extrarenal nucleophiles, including plasma proteins, and thus increases the concentration of the conjugates delivered to the kidney, and hence toxicity. Furthermore the ability of AT-125 to potentiate the nephrotoxicity of DC-(GSyl)HQ and TC-(GSyl)HQ suggests that metabolism of these conjugates by gamma-GT constitutes a detoxication reaction.

Animals

Trypanosoma evansi infection in worked and unworked buffaloes (Bubalus bubalis) in Indonesia.

The effect of controlled amounts of exercise on the outcome of Trypanosoma evansi infection was studied in groups of swamp buffaloes (Bubalus bubalis) experimentally infected with T. evansi. Daily body temperature, packed cell volume (PCV) and parasitaemia measurements were obtained from each animal for up to 110 days after infection. Exercise did not appear to exacerbate the effect of T. evansi infection in that similar temperature, PCV and parasitaemia profiles were obtained with both exercised and rested animals. Trypanosoma evansi infection, however, had a marked effect on temperature and PCV profiles, both of which could adversely affect an infected animal's work output and work tolerance.

Animals

Trypanosoma evansi infection in cattle, buffaloes and horses in Indonesia.

Cattle, buffaloes and horses in several areas of Indonesia were examined for evidence of infection with Trypanosoma evansi by the microhaematocrit centrifugation technique (MHCT) and an enzyme-linked immunosorbent assay (ELISA) for detection of antibodies to T. evansi. Evidence of infection was found in animals at each sampling site although differences were seen in prevalence rates between sites. Prevalence rates in buffalo were usually higher than in cattle in the same area while in horses they were much lower than in cattle or buffalo. An age-dependent prevalence rate was seen in buffalo and cattle with the highest rates seen in animals older than 2 years. These results concur with the view that T. evansi infection is widespread throughout most of the livestock-producing areas of Indonesia. The apparent lack of any obvious disease owing to T. evansi infection in the sampled animals suggests that a form of stability exists in most endemic areas which serves to ameliorate the effect of T. evansi infection and has an immunological basis linked to the parasite's limited antigenic diversity.

Animals

Trypanosoma evansi infection in bovine and buffalo calves in Indonesia.

Fifteen bovine and 11 buffalo calves born on different farms in a Trypanosoma evansi-endemic area of West Java were monitored for the presence of T. evansi and T. evansi antibody at monthly intervals until they were 12 months of age. Fifty percent of the bovine and 83% of the buffalo calves sampled in the first month of life were antibody positive. This antibody was considered to be of colostral origin. Antibody developing later in life persisted for up to 12 months and was considered to have arisen in response to T. evansi infection. No protective function could be ascribed to the colostral antibody.

Age Factors

Suppression of counterregulatory hormone response to hypoglycemia by insulin per se.

Although assessment of counterregulatory hormone responses to hypoglycemia relies upon insulin to lower the glucose level, it is not known if the exogenous insulin does used itself influences the magnitude of the hormone response. To assess this, 12 normal subjects randomly received 2 hypoglycemic clamp studies in which the only variable was the insulin dose (0.6 or 5.0 mU/kg-min). Despite 10-fold differences in circulating insulin (265 +/- 29 vs 2576 +/- 222 pmol/L respectively), the hypoglycemic stimulus did not vary. Glucose levels fell over one hour, and then were maintained for two hours at the same hypoglycemic plateau (approximately 3.1 mmol/L for each study) by a variable glucose infusion. Although basal counterregulatory hormone levels in low and high dose studies were indistinguishable, during hypoglycemia the response of epinephrine, growth hormone, and glucagon was significantly suppressed when the degree of hyperinsulinemia was increased. We conclude that raising the magnitude of hyperinsulinemia suppresses the magnitude of the counterregulatory hormone response to hypoglycemia in normal subjects. This modulating effect of insulin per se is yet another variable in the interpretation of hypoglycemic counterregulation.

Adult

Independent effects of youth and poor diabetes control on responses to hypoglycemia in children.

To evaluate the effects of childhood and poorly controlled insulin-dependent diabetes mellitus (IDDM) on counterregulatory hormone and symptomatic responses to hypoglycemia, we studied 16 nondiabetic children (13 +/- 2 yr), 19 nondiabetic adults (26 +/- 3 yr), and 13 children with IDDM (14 +/- 2 yr, HbA, 15.1 +/- 3.3%) during a gradual reduction in plasma glucose with the glucose-clamp technique. Plasma glucose was reduced from approximately 5 to approximately 2.8 mM over 240 min with serial assessment of counterregulatory hormone levels and symptom awareness. The plasma glucose level that triggered a sustained rise in plasma epinephrine was consistently higher in nondiabetic children than in adults (3.9 +/- 0.06 vs. 3.2 +/- 0.06 mM, P less than 0.001). Poorly controlled IDDM further elevated the glucose threshold for epinephrine release to normoglycemic levels (4.9 +/- 0.2 mM, P less than 0.001 vs. both control groups). Age and IDDM also produced an upward shift in the glucose level at which growth hormone release and symptom awareness were initiated. In contrast to the effect on glucose thresholds, maximal epinephrine responses and symptom scores were increased only by age and not IDDM (2-fold higher in children). We conclude that childhood and poor diabetes control independently contribute to an upward shift in glucose thresholds for counterregulatory hormone release and symptom awareness during mild hypoglycemia. Normoglycemic counterregulation may interfere with efforts to control diabetes in young patients.

Adolescent

Does insulin species modify counterregulatory hormone response to hypoglycemia?

OBJECTIVE: To examine whether pork and human insulin induce different counterregulatory responses to hypoglycemia. RESEARCH DESIGN AND METHODS: The responses to a mild hypoglycemic stimulus were determined in 35 healthy young adults with the glucose-clamp technique to ensure standardization of glucose and insulin levels. Either pork (n = 15) or human (n = 20) regular insulin was infused (0.8 mU.kg-1.min-1) to lower plasma glucose from 4.7 +/- 0.07 to 3.3 +/- 0.04 mM (both groups) over approximately 40 min. Plasma glucose was maintained at that level (with variable rate glucose infusion) for an additional 60 min. RESULTS: Steady-state insulin levels were similar in both groups (316 +/- 50 vs. 280 +/- 29 pM, pork vs. human). Before insulin administration, basal counterregulatory hormone levels were indistinguishable. Most importantly, after plasma glucose was lowered, hormonal responses were nearly identical. No significant differences in peak values of epinephrine (1769 +/- 404 vs. 1775 +/- 311 pM, pork vs. human), norepinephrine (1.64 +/- 0.23 vs. 1.87 +/- 0.20 nM, pork vs. human), glucagon (163 +/- 29 vs. 175 +/- 20 ng/L, pork vs. human), growth hormone (14 +/- 3 vs. 17 +/- 3 micrograms/L, pork vs. human), or cortisol (543 +/- 83 vs. 458 +/- 28 nM, pork vs. human) occurred. CONCLUSIONS: Our data suggest that pork and human insulin produce a comparable and robust hormonal response in healthy adults under conditions of controlled hypoglycemia.

Adult

Some viral and protozool diseases in the European wildcat (Felis silvestris).

Ten European wildcats (Felis silvestris) were examined at necropsy and an additional 23 were examined clinically for evidence of viral diseases in Scotland. Two plasma samples taken from live free-living wildcats showed positive ELISA reactions to feline leukemia antigen. A feline leukemia virus of subgroup A was isolated from one of these samples, taken from a wildcat in north-western Scotland. No antibodies to feline coronavirus or feline immunodeficiency virus were detected in any sample. Three of the live wildcats and one of the dead had chronic mucopurulent rhinotracheitis suggestive of "cat flu." One other dead wildcat had diffuse enlargement of anterior lymph nodes. The findings indicated that feline leukemia virus infection can occur in free-living Felis silvestris. It is possible that the disease exists as a sustained infection in some wildcat populations, although the close interaction between wildcat and the domestic cat means that the latter could act as a continual source of infection.

Animals