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Biomedical subjects

J Diamond

Publications and source records attributed to J Diamond.

At least 109 records · Page 6Linked to original sources

Sympathetic nerves in adult rats regenerate normally and restore pilomotor function during an anti-NGF treatment that prevents their collateral sprouting.

We have used anti-nerve growth factor (anti-NGF) [corrected] administration to study the NGF dependency of the reinnervation of denervated skin by sympathetic nerves in the adult rat. Sympathetic pilomotor fields were revealed by electrical stimulation of selected dorsal cutaneous nerves; the affected skin rapidly assumed a "gooseflesh" appearance, sharply demarcated from surrounding unstimulated skin. Examined 2-5 days after section of neighboring nerves, the "isolated" pilomotor field of the spared nerve was found to be coextensive with an area of amine-fluorescent fibers that were associated with pilomotor muscles and blood vessels. After its isolation, a pilomotor field begins to expand into the surrounding deprived territory, reaching a maximum size at approximately 40 days. Fluorescence studies confirmed that new sympathetic fiber growth had occurred into the expanded regions of such fields. Daily injections of polyclonal anti-NGF serum completely prevented these pilomotor field expansions. Following termination of the anti-NGF treatment, expansion proceeded normally. Finally, if the onset of anti-NGF treatment was delayed until pilomotor field expansion had already commenced, further expansion was halted. Regeneration of sympathetic fibers was evoked by crushing a selected nerve. Recovery of pilomotor function in the totally denervated skin was first detected at about 20 days postcrush, and the field progressively enlarged over the next 40 days. Although the imposed NGF deprivation is known to cause a demonstrable shrinkage, and presumably atrophy, of sympathetic ganglia, the anti-NGF treatment appeared to impair neither the restoration of a pilomotor field after nerve crush, nor its continued expansion into skin regions well beyond that originally supplied by the nerve, i.e., into territory whose invasion by collateral sprouts would have been totally prevented by the treatment. During such NGF deprivation, fluorescent regenerating fibers were visualized in the nerve trunk. We conclude that even though the regenerating and collaterally sprouting sympathetic fibers probably utilise the same degenerating dermal pathways to reach and functionally reinnervate the same denervated targets, only the collateral sprouting of the uninjured axons is dependent upon endogenous NGF. These findings extend the results described earlier for nociceptive fibers, and suggest that the contrasting dependencies upon growth factors of sprouting and regeneration might apply throughout the adult nervous system.

Animals↗

Antibody to NGF inhibits collateral sprouting of septohippocampal fibers following entorhinal cortex lesion in adult rats.

We have used an antiserum raised against mouse 2.5S NGF to examine the involvement of endogenous neurotrophins in the collateral sprouting of septohippocampal fibers in the adult rat brain. The antiserum was administered intraventricularly. Immunocytochemical techniques indicated that the injected antibodies penetrated into brain tissue that included the basal forebrain, cortex, striatum, corpus callosum, and hippocampus. Unilateral lesioning of the entorhinal cortex was done to evoke the sprouting of the cholinergic septohippocampal fibers. At 8 days postlesion, the sprouting was much advanced, as evidenced by an increase in density of the acetylcholinesterase (AChE) staining in the outer molecular layer (OML) of the dentate gyrus and by the associated increase in the absolute number of AChE-positive fibers in the OML. As well, there was a widening of the inner molecular layer (IML), interpreted as being due to sprouting of noncholinergic axons in that region. In rats injected daily with anti-NGF or anti-NGF Fab fragments, no increase in AChE density, or in the population of AChE-positive fibers, was observed in the OML. In contrast, the widening of the IML seemed to be unaffected by the anti-NGF treatment. No changes were observed in the AChE related parameters in the dentate gyrus of nonlesioned animals treated similarly for 8 days with anti-NGF; there was, however, a decrease of choline acetyltransferase (ChAT) immunostaining in the ChAT-positive cells of the basal forebrain. Our findings and the confirmation that our polyclonal anti-NGF also recognizes other members of the NGF neurotrophin family, specifically brain-derived neurotrophic factor and neurotrophin-3, indicate that at least one of these neurotrophins plays a key role in the collateral sprouting of the cholinergic septohippocampal fibers (but not that presumed to occur within the IML) following an entorhinal cortex lesion.

Acetylcholinesterase↗

Translocation of protein kinase C in bovine tracheal smooth muscle strips: the effect of methacholine and isoprenaline.

Investigations into the mechanisms involved in the contraction of smooth muscle have suggested that the generation of diacylglycerol and the activation of protein kinase C (PKC) may be important in the generation or maintenance of smooth muscle tone. The present study examined the possible role of PKC in the contraction of bovine tracheal smooth muscle. Methacholine (10 microM) induced a rapid elevation in PKC activity associated with the membrane fraction. PKC levels were significantly elevated in the membrane fraction 30 s after agonist addition, reached a maximum at 1 min and then declined to and remained at a lower level which was still elevated above basal. A concomitant decrease in cytosolic PKC activity of smaller magnitude was observed during this period of stimulation. This methacholine-induced re-distribution of PKC from the cytosol to the membrane was concentration-dependent and was blocked by atropine. Pre-treatment of tissues for 2 min with 100 microM isoprenaline prevented both the re-distribution of PKC and the contraction produced by 1 microM methacholine. Addition of 1 microM isoprenaline to tissues pre-contracted with 1 microM methacholine reversed the re-distribution of PKC produced during contraction and completely relaxed the tissues. Thus, under these conditions, translocation of PKC from the cytosol to the membrane seems to be well correlated with contractions of bovine tracheal smooth muscle. Whether the PKC translocation is responsible for the observed changes in muscle tone or whether the enzyme translocation is a result of drug-induced changes in [Ca2+]i, remains to be determined.

Analysis of Variance↗

The matches, achieved by natural selection, between biological capacities and their natural loads.

Natural selection tends to eliminate unutilized capacities because of their costs. Hence we ask how large are the reserve capacities by which biological capacities exceed natural loads, and how closely are related biological capacities matched to each other. Measured capacities (Vmax values) of small intestinal brush-border nutrient transporters are typically around twice their natural loads (dietary intakes of their substrates); the ratio is higher for a transporter of a hyperessential nutrient. Preliminary evidence suggests matching of capacities between different steps in carbohydrate metabolism, and between the intestine, liver, kidneys, and spleen. Symmorphosis - the postulated matching of capacities to each other and to loads - is a testable hypothesis of economic design, useful in detecting and explaining cases of apparently uneconomic design.

Animals↗

Alterations of G protein function in cardiac tissues from streptozotocin-induced chronic diabetic rats.

1. This study was performed to investigate G protein function in cardiac tissues from chronic diabetic rats by using pertussis toxin (PTX) and cholera toxin (CTX) as probes for G(i) and Gs proteins, respectively. 2. In the 10-week control group, i.v. injection of PTX significantly elevated the basal heart rate without having any effect on the chronotropic response of right atria to increasing concentrations of isoproterenol (ISO). In the 10-week diabetic rats, PTX treatment had no effect on the basal heart rate or on the response of right atria to ISO. In the 6-month groups, PTX did not exert any effects on basal or ISO-stimulated heart rate in either control or diabetic rat. 3. The inhibitory effect of carbachol (CCH) on cardiac tension in ISO-stimulated left atria was completely abolished by i.v. injection of PTX in the 10-week groups (both control and diabetic rats). The same treatment, however, only slightly reduced the effect of CCH on left atria contraction in rats from 6-month groups. 4. In both control and diabetic rats in the 10-week groups, incubation with CTX caused a significant increase in heart rate in right atria, and in developed cardiac tension in left atria preparations. The magnitude of the increase was the same in both control and diabetic rats. 5. Studies carried out using ADP-ribosylation technique indicated that the amount of G(i) protein was not changed in the ventricular muscle of the 10-week diabetic rat. Labelling of Gs protein could not be detected in either control or diabetic rat heart.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate Ribose↗

Income expectations of first-year students at Jefferson Medical College as a predictor of family practice specialty choice.

The recent decline in the number of medical students choosing careers in the primary care specialties has engendered increasing concern that economic factors are becoming more important in influencing the career choices of medical students. In order to assess the relationship of first-year medical students' income expectations to whether they chose to specialize in family practice, the authors analyzed data from 532 graduates of Jefferson Medical College (classes of 1987-1989), using the Jefferson Longitudinal Study. At entrance to medical school, each student listed his or her initial specialty preference and future expected peak income; the determination of actual specialty choice was based on the first year of postgraduate training. Both expected peak incomes and freshman specialty choices were independent predictors of actual specialty choices. The students who entered family practice residencies had lower initial expected peak incomes than did the students entering other specialties, especially the surgery specialties. In addition, according to logistic regression analysis, the students with relatively lower income expectations and a freshman preference for family practice were predicted to be nine times more likely to enter family practice residencies than were students with higher income expectations and no initial family practice preference (56% versus 6%). This study suggests that a freshman's income expectation is an important predictor of family practice specialty choice, independent of age, sex, degree of indebtedness, and initial specialty preference. The authors discuss their results in light of the decline in the number of medical students choosing family practice and the other primary care specialties.

Career Choice↗

Regulation of brush-border enzyme activities and enterocyte migration rates in mouse small intestine.

We adapted the Weiser method, previously used to fractionate enterocytes of rat and rabbit intestine, to the much smaller intestine of mice. By histological, morphometric, enzymatic, histochemical, and immunocytochemical evidence, the method succeeded in removing mouse enterocytes sequentially along the crypt-villus axis while preserving cell viability and minimizing mixing among cell fractions. Activities of three brush-border enzymes [alkaline phosphatase (AP), sucrase, and gamma-glutamyl transpeptidase (GGP)] varied simultaneously with dietary substrate level, intestinal region, and position along the crypt-villus axis. All three enzymes proved to be stimulated by dietary substrate: sucrase by dietary sucrose, AP and GGP by dietary protein. We also studied cell migration rates and life-times by autoradiography and by our modified Weiser method. By both methods, injected [3H]thymidine after short times was virtually confined to crypt cells, whereas after 40-48 h it was distributed from the crypt over the whole villus except for the villus tip. Villus height decreased twofold from duodenum to ileum, parallel to the regional decrease in cell migration rates because the cell lifetime of 68 h was independent of region. When we varied dietary carbohydrate and protein levels reciprocally while maintaining protein above the maintenance level, both cell migration rate and cell lifetime proved independent of diet.

Alkaline Phosphatase↗

Effect of diet on glucose transporter site density along the intestinal crypt-villus axis.

High-carbohydrate diets stimulate intestinal brush-border glucose uptake and increase the number of glucose-protectable phlorizin binding sites, but it has been unknown where along the crypt-villus axis these effects are expressed. We attacked this problem by three methods. First, by measuring phlorizin binding to isolated mouse enterocytes fractionated along the crypt-villus axis by the Weiser method, we identified a high-affinity binding site predominating from villus tip to midvillus and a site of possibly lower affinity predominating in the crypts. A high-carbohydrate diet increased by severalfold the density of the villus sites and probably also of the crypt sites, without changing their binding constants. Second, autoradiography revealed increased glucose-protectable phlorizin binding along the whole crypt-villus axis on a high-carbohydrate diet. Finally, a polyclonal antibody against the Na(+)-glucose cotransporter recognized a protein in the brush-border membrane of villus cells. Hence, substrate-dependent upregulation of intestinal glucose transport involves increased numbers of transporters along the crypt-villus axis.

Analysis of Variance↗

Crypt-villus site of glucose transporter induction by dietary carbohydrate in mouse intestine.

Intestinal brush-border glucose uptake rate is regulated by dietary carbohydrate level. However, this uptake response takes a day or more after a change in dietary carbohydrate level. Is this dietary signal perceived in the crypts, and is the glucose transporter activity of enterocytes irreversibly programmed there? If so, this time lag could reflect cell migration times along the crypt-villus axis, since glucose transport is not fully expressed until cells reach the midvillus. Alternatively, however, the time lag could arise from the induction process itself, if glucose transporter activity in mature villus enterocytes can be reversibly reprogrammed by dietary carbohydrate levels. Hence, we measured glucose-protectable phlorizin binding (as a measure of glucose transporter site density) in mouse enterocytes fractionated along the crypt-villus axis by the Weiser method, as a function of time after an abrupt switch in dietary carbohydrate level. For an increase or decrease in dietary carbohydrate, an increase or decrease in phlorizin binding site density first appeared in the crypts and marched over the course of several days to the villus tips. Hence, the signal for glucose transporter regulation is perceived in the crypts, and the observed lag in uptake is due largely to cell migration times.

Animals↗

Ontogenetic development of nutrient transporters in rat intestine.

We measured intestinal brush-border uptakes of three sugars and three amino acids, plus intestinal morphometric parameters, in rats from the day of birth until adulthood. Rates of body weight gain had pronounced peaks in the suckling phase and again during weaning, separated by a dip at the onset of weaning. These two peaks coincided with peaks or plateaus in intestinal growth and in glucose (Glc) and proline (Pro) uptake capacities, which may provide the basis for high rates of body growth. Pro uptake declined relative to Glc uptake upon weaning, reflecting decreasing protein needs for growth and decreasing protein intake relative to carbohydrate intake. Fructose (Frc) and lysine uptake increased steeply on weaning, whereas galactose uptake declined relative to that of Glc. Rats prevented from normal weaning by being maintained on dry milk were generally similar to normal rats weaned onto chow. Notably, their Frc uptake still rose steeply on weaning despite low dietary Frc levels, suggesting hard-wired regulation of Frc transporter development. Our in vitro uptakes are similar to modern in vivo values in the same strain of rats. Nutrient uptake capacities exceed normal dietary intakes by only a modest safety margin.

Aging↗

Ontogenetic development of nutrient transporters in cat intestine.

Cats are unusual among mammals in several features of nutritional ontogeny related to their strict carnivory as adults. Hence we measured intestinal brush-border uptakes of three sugars and six amino acids, plus intestinal morphometric parameters, in cats from birth until after weaning. The ratio of amino acid to sugar uptake increases with age, in parallel with the increasing protein/carbohydrate ratio of the natural diet. At weaning, when galactose disappears from the natural diet of cats, the galactose/glucose uptake ratio declines steeply, implying a developmental sequence of multiple aldohexose transporters. Fructose uptake remains low at all ages. Uptakes of arginine (hyperessential to cats) and of lysine are notably high throughout the suckling period. The intense perinatal intestinal hyperplasia observed in many other mammal species is absent in cats. The developmental course of intestinal uptake capacities normalized to metabolic live mass parallels the course of relative body growth rates. The "safety margin" of uptake capacity over intake is greater for essential than nonessential amino acids and is greatest for the hyperessential arginine.

Aging↗

Sensory nerves in adult rats regenerate and restore sensory function to the skin independently of endogenous NGF.

We have investigated the possible roles of NGF, and of impulse activity, in the regeneration of sensory nerves. Unexpectedly, the ability of crushed axons to regrow and to restore functional recovery of three sensory modalities in adult rat skin (A alpha-mediated touch, A delta-mediated mechanonociception, and C-fiber-mediated heat nociception) was totally unaffected by anti-NGF treatment. This finding applied even when the anti-NGF dosage was almost eight times that which entirely blocked collateral sprouting of the undamaged axons of both classes of nociceptive nerves (the A alpha-axons do not sprout in adult animals). In the same anti-NGF-treated animal, regeneration would proceed normally on the one side, while collateral sprouting was prevented on the other. Light microscopic and EM examination revealed that in the denervated skin the regenerating axons utilized the same dermal perineurial pathways followed by collaterally sprouting axons. Regeneration within these antibody-accessible pathways progressed normally during anti-NGF treatment, extending 1-2 cm beyond the former field borders, that is, into territory whose invasion by collaterally sprouting axons was totally blocked. The blood-nerve barrier is absent within the degenerating peripheral nerve trunk, a putative NGF source for regenerating fibers but not for sprouting ones. The NGF-independent regeneration was also found to be unaffected when putative spinal cord sources of NGF were eliminated by dorsal root excision. Anti-NGF treatment also failed to block regeneration across 4 mm excision gaps in the nerve trunk. The daily anti-NGF regime continued to be effective for at least 8 weeks, at which time newly evoked collateral sprouting could still be blocked. Exogenous NGF, in doses that evoke collateral sprouting de novo in normal skin, failed to influence regeneration. Finally, an electrical stimulus regime, which markedly reduces the latency of collateral sprouting, failed to affect the time to arrival of regenerating axons at the skin, or the rate of their arborization in it. We conclude that, in striking contrast to their collateral sprouting, the regeneration of nociceptive axons occurs independently of endogenous NGF and is unaffected by impulse activity. These findings further support the proposal that these two growth behaviors have basically different biological functions in the organism.

Animals↗

Comparative effects of receptor inactivation, 17 beta-estradiol and pertussis toxin on dopaminergic inhibition of prolactin secretion in vitro.

Akin to receptor inactivation with phenoxybenzamine (PBZ) (1 microM, 1 hr), treatment of anterior pituitary cells with 17 beta-estradiol (10 nM, 3 days) right-shifted the dose-response curve for inhibition of prolactin (PRL) secretion by the full agonist R-(-)-N-n-propylnorapomorphine (NPA) and reduced the maximal effect [EC50 (pM) and percent maximal effect: control, 25.4 and 81.2; PBZ, 115.3 and 57.9; 17 beta-estradiol, 358 and 58.6]. PBZ treatment of 17 beta-estradiol-pretreated cultures further reduced the maximal response but did not alter the EC50. Plots of receptor occupancy vs. response indicated a large receptor reserve for NPA (approximately 60%) in control cultures but its abolition by 17 beta-estradiol. 17 beta-Estradiol pretreatment elicited identical rightward shifts (4.5-fold) and similar reductions in maximal PRL inhibition by quinpirole and (+)-3-PPP, although these drugs were partial agonists with dissimilar efficacies relative to NPA (0.61 and 0.12, respectively) at presynaptic striatal D2 receptors. However, receptor inactivation experiments with (+)-3-PPP and quinpirole, and subsequent comparison of receptor occupancy vs. response plots, demonstrated that the relative efficacies of quinpirole and (+)-3-PPP were reversed in the striatum and anterior pituitary. In striatum, half-maximal response to quinpirole and (+)-3-PPP required 6.2 and 30% receptor occupancy, respectively, whereas 25.6 and 9.6% occupancy was required in the pituitary. Pertussis toxin treatment (10 ng/ml, 24 hr) produced large shifts in the dose-response curves for all three agonists (8.4-21.9-fold), but was distinguished from the effects of both PBZ and 17 beta-estradiol by a significant (P < .001) decrease in the slope factor.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Sodium nitroprusside increases cyclic GMP in fetal rat bone cells and inhibits resorption of fetal rat limb bones.

To elucidate the role of cGMP in bone resorption, the nucleotide was measured in bone and bone cells in response to several agents including stimulators of bone resorption. In other experiments, sodium nitroprusside (SNP), which elevates bone cGMP, was tested for effects on resorption. In cells from 20-day fetal rat calvaria, cGMP was 52.4 +/- 8.4 fmol/10(6) cells; cAMP was 5.3 +/- 0.3 pmol/10(6) cells. SNP, 0.1 mM, in the presence of IBMX, increased cGMP 74% with no significant effect on cAMP. Parathyroid hormone (PTH), 0.5 microM, did not significantly affect cGMP, but increased cAMP 711%. Calcitriol did not affect either nucleotide. In bone resorption studies, 0.1 mM SNP inhibited the effects of PTH and calcitriol. Lower concentrations of SNP (0.001, 0.01 mM) had no effects on hormone-stimulated resorption. Unstimulated control bones were not affected by 1 nM-1 mM SNP. The results suggest that elevated cGMP could result in inhibition of bone resorption.

1-Methyl-3-isobutylxanthine↗

Endogenous NGF and nerve impulses regulate the collateral sprouting of sensory axons in the skin of the adult rat.

We have investigated the co-involvement of endogenous NGF and impulses in the collateral sprouting of cutaneous sensory nerves in adult rats, specifically the A delta-axons involved in mechanonociception and the C-fibers that mediate heat nociception. Their collateral sprouting was measured by the progressive expansion, respectively, of the behaviorally defined "pinch" and "heat" fields into surrounding denervated skin (the light-touch A alpha-fibers do not sprout in adult mammals). The expansions of such "isolated" fields were totally prevented in animals injected daily with anti-NGF serum, but developed normally after treatment was discontinued. Light microscopic and EM examination of the skin confirmed that the effect of the anti-NGF treatment was attributable to its prevention of collateral sprouting. Initiation of treatment would also rapidly halt sprouting already in progress. Finally, intradermal injections of purified NGF protein would not only increase the rate of nociceptive fiber sprouting, but also evoke sprouting de novo within normally innervated skin (again, A alpha-axons were unaffected). We conclude that the collateral sprouting of intact nociceptive nerves following partial denervation of skin is entirely dependent on endogenous NGF. The observed latency of this sprouting was 10-12 d; we estimate, however, that at least 2 d of field expansion is required for its reliable detection. Thus, about 8-10 d are required for NGF levels in the skin to rise to effective levels, and for the neurons to respond and initiate sprouting. From indirect findings, the NGF component of this sprouting latency appears to be about 2 d. In accord with earlier findings, the remaining "initiation time" was reduced by 5-6 d if the neurons were briefly excited, even 2 d prior to the isolation of their fields. Unexpectedly, this phenomenon of "precocious sprouting" requires that endogenous NGF be available; the sprouting latency reverted to normal values when the conditioning impulses were evoked during a 2 d anti-NGF "umbrella." In contrast to the impulse-sensitive neuronal mechanisms involved in the initiation of sprouting, those underlying the sprouting rate were unaffected by nerve activity and were entirely dependent on the level of endogenous NGF. We suggest that interactions like that revealed in these studies between a sprouting agent and impulses that seem to prime the neuron's response to it contribute to plasticity within the nervous system.

Animals↗

Colour perception in pathologists: the Farnsworth-Munsell 100-hue test.

The value of many histological stains depends on the ability of the observer to differentiate colour. This ability was assessed in 30 histopathologists and cytopathologists of varying experience using the Farnsworth-Munsell 100-hue test. As a group, the pathologists performed better than a reference population. Twenty eight subjects showed a wide ranging ability to differentiate colour: none was colour blind. Three of the 30 pathologists, however, fell below the twentieth centile for normal subjects and only one was aware of this deficiency! They may unknowingly misinterpret subtle stains. Two of these three had specific and major defects which could affect their ability to interpret a wide range of less subtle stains. Those with the poorest colour discrimination were not those with the least experience of microscopy. Pathologists should be apprised of the importance of their ability to discriminate colour, and that formal colour vision testing of prospective histopathologists may be appropriate.

Adult↗

Nutrient extraction by cold-exposed mice: a test of digestive safety margins.

We examined the size of the "safety margin," if any, by which the small intestine's daily capacities to absorb nutrients exceed prevailing daily intakes of those nutrients. This safety margin, also known as reserve capacity, is widely assumed to be enormously large. As a test, we suddenly transferred mice from an ambient temperature of 22 to 6 degrees C and measured food intake, apparent digestive efficiency, intestinal morphometrics, and intestinal brush-border uptake capacities for D-glucose and L-proline over the next 28 days. Food intake jumped 68% within the first 12 h and rose in 2 days to a new plateau level 2.5 times the previous intake. Nevertheless, apparent digestive efficiency remained unchanged, even within the first 12 h, and intestinal transit times also remained unchanged, implying the existence of at least some safety margin. Masses of the small and large intestine, liver, kidneys, and spleen nevertheless increased within 4 days by 16-20%. Glucose and proline uptakes per milligram intestine increased by approximately 5%, so that the intestine's summed uptake capacities for these solutes increased by 24-26%. The animal's intestinal adaptation expressed in these increased uptake capacities implies that safety margins at the new plateau value of food intake would otherwise have been dangerously narrow. Comparison of calculated summed uptake capacities with measured dietary intakes suggests that safety margins are approximately 220-300% in mice at 22 degrees C, only 27-50% in mice at 6 degrees C before intestinal adaptation, but 60-88% in mice at 6 degrees C after intestinal adaptation.

Animal Nutritional Physiological Phenomena↗