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Biomedical subjects

V Grill

Publications and source records attributed to V Grill.

At least 127 records · Page 7Linked to original sources

Brain uptake and release of amino acids in nondiabetic and insulin-dependent diabetic subjects: important role of glutamine release for nitrogen balance.

We measured net uptake and release of amino acids in the brain of 7 nondiabetic and six diabetic subjects. Duration of insulin-dependent diabetes (IDDM) was 19.4 +/- 2.1 years. Arteriojugular vein measurements were performed before and after 120 minutes of insulin infusion and ensuing Biostator-regulated normoglycemia. Cerebral blood flow was measured during normoglycemia by 11-CH3-F and positron emission tomography. During hyperglycemia in the IDDM subjects, arterial concentrations of valine and leucine were higher, and those of glutamic acid and arginine lower, than in nondiabetic subjects. Insulin infusion lowered levels of most amino acids in both groups. Insulin treatment did not significantly affect the uptake or release of amino acids. Significant net uptake of branched-chain amino acids was noted in both groups, as well as uptake of lysine and phenylalanine in the IDDM subjects. The sum of measured differences was not different from zero in either group. Nitrogen balance depended on impressive release of glutamine from the brain (-963 +/- 147 and -960 +/- 303 nmol/100 g/min), which amounted to 73% and 69% of net release in nondiabetic and IDDM subjects, respectively. We conclude that balance between uptake and release of amino acids is similar in nondiabetic and in long-term IDDM subjects.

Adult↗

Hypercalcemia in cancer.

Hypercalcemia may occur as a complication of haematological malignancies, in association with solid tumors with bone metastases, and with solid tumors in the absence of bone metastases. The latter syndrome, known as the humoral hypercalcemia of malignancy (HHM) shares many features with primary hyperparathyroidism. A parathyroid hormone-related protein (PTHrP) has been identified, isolated and cloned, which is most likely responsible for the calcium disturbances in HHM, PTHrP is a previously unrecognized hormone which has limited amino-terminal sequence homology with PTH and is the product of a separate gene. Tissue localization studies have identified PTHrP in squamous cell carcinomata, renal cortical carcinomata, in a proportion of breast cancers and in adult T-cell leukemia/lymphoma. In normal tissues, PTHrP has been immunohistochemically localized in keratinocytes, placenta and fetal parathyroid glands. In addition to its role in mediating hypercalcemia in cancer, PTHrP is likely to have an important endocrine role in the fetus, and perhaps a paracrine function in several organs.

Animals↗

Parathyroid hormone-related protein: a possible endocrine function in lactation.

OBJECTIVE: Parathyroid hormone-related protein (PTHrP), initially discovered as the factor responsible for the syndrome of humoral hypercalcaemia of malignancy, has also been found to be expressed in placenta, in pregnant uterus, in the fetus at many locations, and in the lactating mammary gland. This study sought to establish whether PTHrP reaches the maternal circulation when it is expressed in mammary tissue during lactation or in the maternal reproductive tract during gestation. DESIGN: Blood samples were collected from 53 subjects: 18 pregnant women in all stages of gestation, 19 lactating mothers and 16 non-lactating post-partum controls. MEASUREMENTS: PTHrP was measured using a specific and validated radioimmunoassay. Parathyroid hormone was measured by two-site immunoradiometric assay. Total calcium was measured by atomic absorption spectrophotometry. RESULTS: Circulating levels of PTHrP were readily detectable in 12 of 19 nursing mothers (range 2.7-7.8 pmol/l) but in none of the mothers who were bottle feeding. PTHrP was also detected in one of 18 pregnant subjects. Parathyroid hormone concentrations were lower in lactating mothers (2.3 +/- 1.0 pmol/l), than in non-lactating mothers (3.5 +/- 1.2 pmol/l) (P < 0.01). CONCLUSION: PTHrP reaches the maternal circulation during lactation in amounts which could produce a systemic effect.

Adult↗

Impact of uncoupling glucose stimulus from secretion on B-cell release and biosynthesis.

We studied the impact of a defined degree of long-term hyperglycemia with or without blockade of attendant insulin release on subsequent B-cell secretory responsiveness and biosynthesis. Nondiabetic rats were infused for 48 h with glucose to produce marked hyperglycemia (21.3 +/- 0.5 mmol/l). Comparable levels of hyperglycemia were upheld when additions were made to this protocol. Hyperglycemia increased plasma insulin 12-fold but depressed glucose (27 mmol/l)-induced insulin secretion in vitro (isolated islets) by 67% compared with saline-infused rats. Addition of diazoxide infusion during hyperglycemia completely inhibited the hyperglycemia-induced rise in plasma insulin but enhanced glucose-induced insulin release in vitro eightfold compared with islets from rats infused with glucose alone. Addition of insulin (2 U/day) to the diazoxide plus hyperglycemia protocol inhibited the secretory response to glucose in vitro by 46% (P less than 0.05). Proinsulin biosynthesis was enhanced by 67% in islets from rats infused with glucose alone; this effect was paralleled by a similar increase in preproinsulin mRNA. Diazoxide in vivo did not affect these stimulatory effects of hyperglycemia on insulin biosynthesis; however, insulin infusion in vivo abolished the hyperglycemia-induced increase in proinsulin biosynthesis. We conclude that impairment by hyperglycemia of glucose-induced insulin secretion occurs concomitant with stimulation of biosynthesis. Uncoupling of glucose stimulus from secretion crucially affects subsequent secretory responsiveness but not biosynthesis. Insulin biosynthesis is depressed by direct or indirect effects of circulating insulin.

Animals↗

Production of parathyroid hormone-related protein by the rat mammary gland in pregnancy and lactation.

Production of parathyroid hormone-related protein by the rat mammary gland in pregnancy and lactation. Am. J. Physiol. 263 (Endocrinol. Metab. 26): E1077-E1085, 1992.--Production of parathyroid hormone-related protein (PTHrP) by the mammary gland of Sprague-Dawley rats has been examined using immunohistochemistry and in situ hybridization to detect PTHrP and PTHrP mRNA, respectively. PTHrP and PTHrP mRNA could be demonstrated in nests of epithelial cells of the developing mammary gland at day 14 of pregnancy and in the epithelial secretory cells lining the alveoli during the latter stages of pregnancy and during lactation. A specific radioimmunoassay was also used to measure the concentration of PTHrP secreted in the milk throughout lactation. The concentration of PTHrP in milk was relatively low initially but increased during the latter stages of lactation, whereas calcium concentrations remained virtually constant throughout lactation. No correlation was found between the concentrations of calcium and PTHrP in rat milk. These results show that PTHrP is present in rat milk and also in mammary tissue before parturition, and therefore it may assist in the development of the mammary gland during pregnancy.

Animals↗

Circulating PTH and PTHrP levels before and after treatment of tumor induced hypercalcemia with Pamidronate Disodium (APD).

The effect of lowering ionized calcium on circulating parathyroid hormone (PTH) and parathyroid hormone-related protein (PTHrP) was assessed in twenty patients with hypercalcemia of malignancy following treatment with Pamidronate Disodium. Ionized calcium levels fell rapidly in all treated patients. PTH concentrations were initially suppressed below normal in 18 patients, but rose from 0.48 +/- 0.42 pmol/L to 3.63 +/- 3.13 pmol/L (p less than 0.01) after treatment, reaching higher than normal values in some patients even in the presence of persistent hypercalcemia. PTHrP concentrations did not change significantly after treatment. These findings are consistent with an increased sensitivity of parathyroid tissue to changes in ionized calcium following prolonged exposure to hypercalcemia. Regulation of tumor secretion of PTHrP by calcium was not apparent within the range of calcium concentrations in this study.

Calcium↗

[Intake of disopyramide led to diagnosis of insulinoma].

A single dose of 250 mg disopyramide provoked severe hypoglycaemia and confusion in a 75-year-old woman. During subsequent investigation, fasting provoked symptomatic hypoglycaemia (venous blood glucose, 1.6 mumol/1) after 23 hours, plasma concentrations of insulin and C peptide then being 19 micrograms/ml and 0.85 pmol/l, respectively; computerised tomography and ultrasonography of the pancreas n.a.d. However, at laparotomy, a 10 mm diameter insulinoma was detected by intra-operative ultrasonography and palpation. The tumour was removed. To our knowledge, this is the first reported case of an insulinoma being detected due to intake of disopyramide.

Aged↗

Lack of effects of neutralization of parathyroid hormone-related protein on calcium homeostasis in neonatal mice.

Large quantities of parathyroid hormone-related protein (PTHrP) are present in the milk of various species. It has been suggested that PTHrP may play a role in neonatal calcium homeostasis. In the present study we evaluated the effect of neutralization of amino-terminal PTHrP activity by passive immunization in 1-day-old mouse pups. Neutralization of amino-terminal PTHrP activity had no significant effect on serum calcium or whole-body calcium content in the neonatal mice. In additional studies, we demonstrated that subcutaneous administration of PTHrP-(1-34) increased serum calcium, whereas oral administration had no significant effect in 3-day-old pups. The studies therefore demonstrate that the amino terminus of PTHrP may not play a significant role in neonatal calcium homeostasis. Local effects of PTHrP cannot be excluded by the results of the present study.

Administration, Oral↗

Facilitated transport of glucose from blood to brain in man and the effect of moderate hypoglycaemia on cerebral glucose utilization.

The effect of steady-state moderate hypoglycaemia on human brain homeostasis has been studied with positron emission tomography using [U-11C]-D-glucose as tracer. To rule out any effects of insulin, the plasma insulin concentration was maintained at the same level under normo- and hypoglycaemic conditions. Reduction of blood glucose by 55% increased the glucose clearance through the blood-brain barrier by 50% and reduced brain glucose consumption by 40%. Blood flow was not affected. The results are consistent with facilitated transport of glucose from blood to brain in humans. The maximal transport rate of glucose from blood to brain was found to be 62 +/- 19 (mean +/- SEM) mumol hg-1 min-1, and the half-saturation constant was found to be 4.1 +/- 2.3 mM.

Biological Transport↗

Influence of severe diabetes mellitus early in pregnancy in the rat: effects on insulin sensitivity and insulin secretion in the offspring.

We studied the influence of severe diabetes early in pregnancy on insulin sensitivity and insulin secretion in the offspring. Diabetes (blood glucose greater than 20 mmol/l) was induced in female Sprague-Dawley rats before mating. Diabetic dams were insulin treated during the second half of pregnancy (mean blood glucose 10.6 mmol/l). The offspring were reared by foster mothers. Offspring of both sexes were insulin resistant at four and seven months of age as evidenced by normal glucose tolerance after glucose (2 g/kg body weight intraperitoneally) concomitant with higher than normal rises in insulin levels. Regardless of fetal environment the male rats had higher glucose and insulin levels than the female rats. Insulin responses to glucose (27 mmol/l) in vitro in perfused pancreases were not increased by maternal diabetes, male gender or higher age. Conversely responses to 3-isobutyl-1-methylxanthine (1.0 mmol/l) were enhanced by all three conditions. The pancreatic content of insulin was only marginally affected by maternal diabetes. We conclude that severe diabetes during early pregnancy affects glucose homeostasis in the offspring primarily by diminishing insulin sensitivity and that susceptibility to this effect is not sex- or age-dependent.

Aging↗

The insulin-like growth factor binding protein-1 in low and high insulin responders before and during dexamethasone treatment.

To investigate the influence of normal insulin levels on levels of the insulin-like growth factor binding protein-1 (IGFBP-1) we measured this peptide postabsorptively and during hyperglycemic clamp in 17 healthy subjects, nine with low insulin response (LIR) and eight with high insulin response (HIR). The study was performed before and after 60 hours of treatment with dexamethasone 6 mg/d. The fasting levels of IGFBP-1 were significantly higher in LIR, 36 +/- 2.5 micrograms/L, than in HIR, 22 +/- 2.6 micrograms/L (P less than .01), while no differences in glucose, insulin, and C-peptide concentrations were found. Dexamethasone induced an increase in basal concentrations of insulin, while IGFBP-1 levels decreased to 18.8 +/- 2 micrograms/L in LIR (P less than .01) and to 14.0 +/- 0.9 micrograms/L in HIR (P less than .05). There was no correlation between the individual basal IGFBP-1 concentrations and basal insulin levels. In contrast, basal levels of IGFBP-1 were inversely correlated to the integrated insulin or C-peptide concentrations during the hyperglycemic clamp both before (r = -.67, P less than .01) and during dexamethasone (r = -.79, P less than .001). Dexamethasone, which increased the insulin resistance, did not change the relationship between basal IGFBP-1 and the glucose-induced insulin release. In conclusion, the morning levels of IGFBP-1 in healthy subjects reflect the acute beta-cell responsiveness to glucose, which may correspond to integrated diurnal insulin levels. The inhibitory effects of dexamethasone on the morning levels of IGFBP-1 can be explained by attendant hyperinsulinemia.

Adult↗

Immunocytochemical demonstration of PTHrP protein in neoplastic tissue of HTLV-1 positive human adult T cell leukaemia/lymphoma: implications for the mechanism of hypercalcaemia.

The infiltrated tissues from seven West Indian patients with HTLV-1 positive adult T cell lymphoma/leukaemia (ATLL) have been analysed by immunocytochemical techniques for the presence of immunoreactive parathyroid hormone-related protein (PTHrP), a hormonal mediator of humoral hypercalcaemia of malignancy. Six of the seven were hypercalcaemic at some stage of the course of their disease. Four of the six evaluable patients showed evidence of specific cellular and extracellular expression of PTHrP protein in neoplastic tissues. This finding suggests that PTHrP may be involved in the production of hypercalcaemia in at least some cases of T cell lymphoma - proof of a causal relationship however must await the demonstration of tissue release of PTHrP resulting in raised circulating hormone levels.

Adult↗

Multiple abnormalities in insulin responses to nonglucose nutrients in neonatally streptozotocin diabetic rats.

Insulin responses to nutrient secretagogues were investigated in neonatally streptozotocin-injected (n-STZ) rats, i.e. an animal model of noninsulin-dependent diabetes. In the perfused pancreas 16 mM L-glutamine induced and 10 mM octanoate tended to induce (P less than 0.2) higher responses in n-STZ than in nondiabetic rats. Addition of 3.9 mM glucose potentiated responses to glutamine and octanoate more in n-STZ (3.3- and 3.4-fold) than in nondiabetic rats (1.5- and 1.9-fold). Conversely, the succinate derivative succinate monomethylester (Succ ME) induced lesser response in n-STZ rats (57% of that in nondiabetic rats) and coperfusion with 3.9 mM glucose increased the response less in n-STZ (1.4-fold) than in nondiabetic rats (3.8-fold). Pyruvate (20 mM) mimicked the potency of 3.9 mM glucose, i.e. pyruvate potentiated the response to Succ ME only nonsignificantly (1.2-fold) in n-STZ but markedly (4.9-fold) in nondiabetic rats. Dichloroacetate (20 mM) failed to affect the response to Succ ME together with pyruvate in n-STZ rats. To investigate the role of hyperglycemia for octanoate-induced secretion, nondiabetic rats were made hyperglycemic by 48-h glucose infusions. Octanoate-induced secretion from perfused pancreas was enhanced 3.8-fold after moderate hyperglycemia (13.2 +/- 0.6 mM) and 17-fold after marked hyperglycemia (22.7 +/- 0.6 mM). This positive association between response and degree of hyperglycemia was not found with a nonnutrient secretagogue, 3-isobutyl-1-methylxanthine. Results with glutamine and octanoate indicate that oxidation of nonglucose nutrients which normally do not regulate secretion is enhanced secondary to chronic hyperglycemia. Results with Succ ME and pyruvate suggest that early steps of oxidation of glucose are impaired in n-STZ rats.

1-Methyl-3-isobutylxanthine↗

Ontogeny of parathyroid hormone-related protein in the ovine parathyroid gland.

PTH-related protein (PTHrP) has been implicated in calcium regulation during fetal life. In this study the ontogeny of PTHrP was examined in ovine parathyroid glands. Immunohistochemical techniques, Western blot analysis, and a RIA with antisera raised against synthetic fragments of human (h) PTHrP (i.e. 1-34, 1-40, 50-69, and 107-141) were used to detect the presence of immunoreactive PTHrP in parathyroid glands from fetal and neonatal lambs and maternal ewes. Positive immunostaining for PTHrP was observed in fetal (from 116 days of gestation) and lamb (up to 180 days post birth) but not maternal parathyroid glands with the PTHrP(50-69) antiserum. Fetal and lamb parathyroid glands consisted entirely of one cell type in which PTHrP immunoreactivity to PTHrP(50-69) antiserum was found. In contrast, immunoreactivity to PTHrP could not be detected in sections of fetal, lamb, or maternal parathyroid glands with antisera raised against PTHrP(1-34) or PTHrP(107-141). However, PTHrP immunoreactivity in urea/acid extracts of newborn lamb parathyroid glands could be detected by Western blot analysis and RIA with antisera raised against the N-terminal portion of PTHrP. Western blot analysis with the PTHrP(1-34) antisera revealed that urea/acid extracts of newborn lamb parathyroid glands contained a substance with a mol wt of 14.4K, which corresponded in size to that of hPTHrP(1-84). Newborn lamb parathyroid glands contained 0.35 ng PTHrP/micrograms extract, whereas maternal parathyroid glands contained only 0.035 ng PTHrP/micrograms extract when tested in a RIA employing recombinant hPTHrP(1-84) as standard and an antibody raised against hPTHrP(1-40). The detection of immunoreactive PTHrP in the developing ovine parathyroid gland provides further evidence to support the suggestion that PTHrP produced in the parathyroid gland is involved in the normal hormonal regulation of calcium metabolism in the mammalian fetus and neonate.

Animals↗

Immunohistochemical detection of parathyroid hormone-related protein in human fetal epithelia.

PTH-related protein (PTHrP) is commonly produced by squamous cell carcinomata and is the mediator of the PTH-like features of humoral hypercalcemia of malignancy. It has also been implicated in calcium regulation during fetal development. In this study immunohistochemical techniques, using rabbit polyclonal antibodies to synthetic PTHrP peptides, have been used to localize PTHrP in human fetal tissues from one fetus of 7 weeks and two of approximately 18 and 20 weeks gestation, respectively, in order to identify sites of potential functional significance. PTHrP immunoreactivity was identified in epithelia from many sources, including skin, bronchus, pancreas, pharynx, gut, stomach, and renal pelvis. Thyroid and parathyroid glands, which develop from epithelial origins, also stained positive for PTHrP, as did kidney collecting tubules, adrenal tissue, and skeletal and smooth muscle. PTHrP immunoreactivity was also located in developing long bones and calvaria, where it may have relevance in bone turnover during fetal development. The role of PTHrP at these locations remains to be elucidated, but the identification of specific PTHrP immunoreactivity in fetal epithelia is consistent with PTHrP production by cancers of epithelial origin and supports the hypothesis that PTHrP may have a role in epithelial growth and differentiation.

Bronchi↗

Parathyroid hormone-related protein: elevated levels in both humoral hypercalcemia of malignancy and hypercalcemia complicating metastatic breast cancer.

A RIA for PTH-related protein (PTHrP) is described, using a polyclonal goat antiserum against synthetic PTHrP-(1-40) and recombinant PTHrP-(1-84) as standard. The detection limit is 2 pmol/L, and intra- and interassay coefficients of variation are 4.8% and 13.6%, respectively. This assay does not detect PTH even at concentrations of up to 2000 pmol/L. Cross-reactivity studies using various synthetic PTHrP peptides localize the antibody-binding epitope between residues 20 and 29. Hypercalcemic patients with a range of solid tumors and no evidence of bone metastases on radionuclide scanning (n = 27) all had detectable PTHrP levels (range, 2.8-51.2 pmol/L). Of 17 patients with solid tumors (other than breast) and bone metastases, 11 (64%) also had detectable PTHrP levels (range, 4.9-47.5 pmol/L). Twenty samples from breast cancer patients with hypercalcemia, 19 with evidence of bone metastases, and 1 with a negative bone scan were assayed, and detectable PTHrP levels were found in 13 (65%; range, 3.8-61.6 pmol/L). Patients with squamous cell carcinomata and normal serum calcium levels (n = 11) had no detectable PTHrP or levels close to the detection limit of the assay (range, less than 2 to 3.7 pmol/L). Plasma levels in normal volunteers were below the detection limit of the assay in all but 1 of 38 normal subjects. Patients with chronic renal failure on hemodialysis (n = 18) and patients with primary hyperparathyroidism (n = 14) all had undetectable PTHrP in this assay. This assay allows positive identification of patients with PTHrP-mediated hypercalcemia and, therefore, should be useful in the clinical investigation of the hypercalcemic patient. Furthermore, it has allowed detection of circulating PTHrP in hypercalcemic breast cancer patients with bone metastases, indicating a significant role for PTHrP in this disease.

Adult↗

Parathyroid hormone-related protein in milk and its correlation with bovine milk calcium.

Parathyroid hormone-related protein (PTHrP) has been shown to be present in milk of various mammals. We have assayed PTHrP in milk of various species by radioimmunoassay and estimated the molecular weights by Western blot analysis. PTHrP concentrations in bovine, ovine and human milk were 59.2 +/- 18.5, 74.1 +/- 35.0 and 36.6 +/- 20.7 micrograms/l (mean +/- S.D.) respectively, in pooled samples collected at various stages of lactation. PTHrP in mammalian milk was found to exist in two forms with molecular weights of 17.5 kDa and 21.5 kDa approximating those of PTHrP(1-108) and (1-141) respectively. In comparison, marsupial milk PTHrP appeared as a single low molecular weight form of 14.4 kDa which approximated to that of PTHrP(1-84). We performed a longitudinal study measuring the concentration of PTHrP in milk throughout lactation in cows, and found it to increase with the duration of lactation (r = 0.669, n = 91). We further examined the relationship between the concentration of PTHrP and total calcium in bovine milk, and the differences between these constituents in milk from Friesian and Jersey cows. PTHrP concentrations correlated positively with total milk calcium (r = 0.346, n = 105). The mean milk concentration of PTHrP of the Jerseys was significantly higher than that of the Friesians (52.6 +/- 5.4 micrograms/l compared with 41.0 +/- 4.8 micrograms/l, P less than 0.01), as was the mean milk calcium concentration (30.5 +/- 3.0 mmol/l compared with 26.7 +/- 2.7 mmol/l, P less than 0.01). We therefore postulate that production of PTHrP by the mammary gland may be associated with calcium transport from blood to milk. Also PTHrP may play a role in the development of milk fever in Jerseys which are predisposed to this condition.

Animals↗