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Biomedical subjects

P C Hindmarsh

Publications and source records attributed to P C Hindmarsh.

At least 19 recordsLinked to original sources

Rate of change (modulation) of serum growth hormone concentrations is a more important factor in determining growth rate than duration of exposure.

OBJECTIVE: To determine whether duration of exposure to GH and/or rate of change of serum GH concentration are important factors in determining the growth rate of short children. DESIGN: An analysis of parameters of occupancy percentage and rate of change of serum GH concentration was performed as part of a prospective study investigating the relationship between growth and GH in childhood. PATIENTS: Sixty-four short prepubertal children (48 male, 16 female) aged between 4.7 and 11.9 years were studied. Thirty-one children were growing with a height velocity standard deviation score between 0 and -0.8 and were defined as short normal. Thirty-three children were growing with a height velocity standard deviation score less than -0.8 and were defined as short slowly growing. MEASUREMENTS: Twenty-four hour serum GH concentration profiles were constructed by withdrawing samples at 20-minute intervals. Analysis of occupancy percentage was performed on each data array by determining cumulative distributions and plotting these as linear probits against log serum GH concentration. Estimates of peak (OC95), intermediate (OC50) and trough (OC5) occupancies were calculated. A first-order derivative of the concentration-time data array was determined for each profile as a measure of rate changes. RESULTS: First-order derivative values were significantly greater in the short normal group than in the short slowly growing children (short normal median 1.41 mU/l/min; short slowly growing median 0.72 mU/l/min; P less than 0.001). OC95 values were significantly higher in the short normal group (median 19.31 mU/l) than the short slowly growing group (median 7.69 mU/l) (P less than 0.001). There was no difference in OC50 values. OC5 values were lower in short normal children (median 0.20 mU/l) than in the short slowly growing children (0.55 mU/l) (P less than 0.003). The most important factor in determining growth rate was the rate of change in serum GH concentration (FOD). Occupancy percentage played no part in the relationship. The regression equation was Height velocity SDS = 1.16 (In FOD) - 1.03; r = 0.75; P less than 0.001 CONCLUSIONS: These data suggest that the pattern of presentation of GH in the circulation is an important factor in determining target organ response. Although occupancy percentages at differing serum GH concentrations differ between short slowly growing and short normal children, it is the rate of change of the hormone in the circulation which appears to be the more important 'signal' in terms of modulating growth.

Child

Half-life of exogenous growth hormone following suppression of endogenous growth hormone secretion with somatostatin in type I (insulin-dependent) diabetes mellitus.

OBJECTIVE: To estimate the half-life of growth hormone in young adult patients with type I (insulin-dependent) diabetes mellitus following bolus injection and prolonged exposure for the purpose of deconvolution analysis of plasma growth hormone profiles to determine growth hormone secretory rates. DESIGN: In the bolus study, an intravenous bolus injection of 100 mU of biosynthetic human growth hormone was given while endogenous growth hormone was suppressed by a continuous infusion of somatostatin under three different glucose clamp conditions: normoglycaemia (5 mmol/l) with normoinsulinaemia (65 pmol/l); hyperglycaemia (12 mmol/l) with normoinsulinaemia; and normoglycaemia with hyperinsulinaemia (360 pmol/l). In the infusion study, the effect of prolonged and repeated growth hormone exposure upon the growth hormone half-life was estimated. Three pulses of 60 minutes growth hormone infusion (6 mU/kg/pulse) two hours apart under euglycaemic somatostatin suppression were applied. PATIENTS: Six young adult patients with type I (insulin-dependent) diabetes mellitus were studied in both the bolus and the infusion study. RESULTS: Mean GH half-lives by mono-exponential analysis were not significantly different remaining unaltered by the short-term metabolic changes of hyperglycaemia and hyperinsulinaemia. Data were therefore pooled yielding an overall mean GH half-life of 13.6 minutes (range 11.9-19.4). Applying a bi-exponential model mean GH half-lives were 3.1 minutes (range 2.5-5.9) for the rapid phase of distribution of the hormone and 13.8 minutes (range 9.6-16.9) for the decay of GH from the circulation. The GH half-life during the infusions studies did not vary with repeated exposure but was significantly longer (mean half-life of 25.7 minutes; range 19.4-37.1) than during the bolus studies (P less than 0.001). CONCLUSIONS: The half-life of exogenous r-hGH is not affected by glucose or insulin concentrations but increases after prolonged GH exposure in young adults with type I (insulin-dependent) diabetes mellitus.

Adolescent

Analysis of trough serum growth hormone concentrations: comparison of an immunoradiometric assay and a sensitive ELISA for growth hormone.

OBJECTIVES: We compared a sensitive assay for GH (ELISA) with a conventional immunoradiometric (IRMA) assay with particular reference to the oscillatory activity detected by Fourier transformation and the estimation of trough concentrations using occupancy analysis. DESIGN: Eight healthy adult male volunteers underwent 24-hour profiles during which samples were drawn at 20-minute intervals. Samples were analysed by an ELISA and an IRMA system. MEASUREMENTS: The 24-hour serum GH concentration profiles were subjected to Fourier transformation and to occupancy analysis. RESULTS: No additional GH periodicities could be determined in the ELISA data other than the well documented 180-200-minute periodicity. Median observed concentrations (OC) at 5% occupancy were 0.035 mU/l (range 0.004-0.22) for the ELISA and 0.035 mU/l (range 0.001-0.50) for the IRMA. For all OC parameters, 5, 50 and 95%, there was a good correlation between the ELISA and IRMA systems. The mean difference (bias) between the ELISA and IRMA were -0.05, -0.28 and -1.40 mU/l at OC values of 5, 50 and 95% respectively and the standard deviations of the difference at the same OC values were 0.10, 0.50 and 1.61 mU/l. CONCLUSION: Although there is a qualitative improvement on visual inspection of individual 24-hour serum GH profiles obtained using the ELISA system, there is little additional information gained in terms of pulse periodicity or occupancy analysis.

Adult

The effect of changing somatostatin tone on the pituitary growth hormone and thyroid-stimulating hormone responses to their respective releasing factor stimuli.

Somatostatin (SS) inhibits GH and TSH secretion, but its role in modulating their pulsatility is unclear. We studied GH and TSH responses to GH-releasing hormone (GHRH) and TRH stimulation upon a variable background infusion of saline, SS-(1-14) at 20 and 100 micrograms/m2.h, and oral pyridostigmine (30 and 60 mg) in six adult males. Basal GH levels were unaffected by SS-(1-14). Deconvolution analysis of serum GH values demonstrated that the pituitary responded to two GHRH stimuli 90 min apart without attenuation of the second response. The higher dose of SS-(1-14) significantly blunted the first GH response; second GH responses were further attenuated by both SS-(1-14) doses. Maximum GH release and "switch-off" rates for both stimuli were reduced without changes in the 50% secretion time. Pyridostigmine enhanced the first GH response to GHRH with an increase in the GH release rate; second GH responses were not augmented. GH secretion was prolonged by pyridostigmine, although the 50% secretion time remained unchanged. Peak stimulated serum TSH was attenuated by both SS-(1-14) doses, but pyridostigmine had no effect. All other TSH parameters examined were unaffected. We conclude that the GH response to GHRH is dependent on SS tone, but that the thyrotroph is not tonically inhibited by SS. SS attenuates the rate of GH release without changing the duration of secretion and appears important in terminating GH secretion.

Adult

Growth hormone secretion in patients with Turner's syndrome as determined by time series analysis.

Twenty-four-hour growth hormone (GH) profiles in 26 girls with Turner's syndrome were compared with those of 26 normally growing short children and 24 slowly growing short children. All children were prepubertal and below 12 years of age. A subgroup of 13 girls was treated with ethinyl estradiol and a 24-h GH profile was reassessed. In an additional group of 45 girls with Turner's syndrome (aged 6.7-18.9 years) the effect of age, spontaneous breast development and ethinyl estradiol treatment was studied. The profiles were assessed by Fourier analysis. The oscillatory activity and the mean 24-h GH concentration were similar in children with Turner's syndrome and the normally growing short children, in contrast to lower levels in the slowly growing short children. The periodicity of GH secretion was similar in all groups. In the longitudinal study, ethinyl estradiol treatment resulted in a significant increase in pulse amplitude, but not in periodicity. In the cross-sectional study there was no significant difference between the subgroups of girls with either presence or absence of breast development or ethinyl estradiol treatment. GH secretion was not significantly related to age, height in standard deviation score or height velocity. These data imply that there is no abnormality in GH secretion in girls with Turner's syndrome.

Aging

What is a normal stimulated growth hormone concentration?

In a retrospective analysis, we have compared the response of serum GH concentration to insulin-induced hypoglycaemia in 148 short prepubertal children (114 males, 34 females) aged between 3.9 and 11.9 years with the growth rate of the individual to determine 'cut-off' values for the diagnosis of GH insufficiency. Sixty-three children grew with a height velocity standard deviation score (SDS) greater than -0.8 (group 1), which represents the growth velocity of children progressing along or closely parallel to the third height centile. Eighty-five children had a height velocity SDS of less than -0.8 (group 2). Median peak serum GH concentration responses to insulin-induced hypoglycaemia were 19.9 mU/l (range 1.5-54.4) in group 1 and 9.9 mU/l (range 0.7-46.2) in group 2 (Mann-Whitney; P less than 0.001). Using growth rate as the determinant of normality, the efficiency, sensitivity and specificity of the insulin-induced hypoglycaemia test were calculated using different serum GH concentration cut-off values to diagnose GH insufficiency. In our (Hybritech) assay, a cut-off value of 13.5 mU/l provided optimal performance in terms of efficiency (66%), sensitivity (64%) and specificity (70%). The response of serum GH concentration to insulin-induced hypoglycaemia in short children growing at different growth rates was continuous. Each laboratory measuring serum GH concentrations needs to construct its own 'normal' cut-off value.

Child

Growth hormone treatment in idiopathic short stature: a preliminary analysis of cardiovascular effects.

Growth hormone (GH) hypersecretion is associated with an increased incidence of hypertension and cardiac hypertrophy, resulting in excess cardiovascular morbidity and mortality. Abnormalities in the renin-angiotensin-aldosterone (RAA) system have been reported in acromegaly and in normal adults treated with recombinant human GH. The RAA system was investigated in prepubertal children with idiopathic short stature during treatment with recombinant human GH in doses up to 40 IU/m2/week. In addition, left ventricular size and function were assessed by serial echocardiography over an initial 12-month period. Modest and transient increases in blood pressure and body weight were observed during the first 7 days of GH treatment, but this was not accompanied by activation of the RAA system. Echocardiographic parameters of left ventricular size and function remained within the normal range for age and body size. Short-term GH treatment of idiopathic short stature was thus not associated with an increase in risk factors known to be associated with later cardiovascular morbidity. Longer follow-up studies will be required to confirm the safety of high-dose GH in this respect.

Blood Pressure

The somatotropic axis in puberty.

Sex steroids markedly affect GH pulsatility by altering GH pulse amplitude without affecting GH pulse frequency. The type of sex steroid (testosterone or estrogen) appears to determine the timing of the pubertal growth spurt although both steroids appear to influence the amount of GH released from the pituitary. GH levels also affect gonadal secretion of sex steroids. The effects of the two are synergistic, but there is a real therapeutic dilemma of what to increase and when in children who are deficient in either GH or gonadotrophin secretion. Augmented GH pulsatility, particularly during the day, may alter markedly the interpretation of standard endocrine tests. Finally, the insulin resistance arising from an increased circulating concentration of GH may have important implications for the management of insulin-dependent diabetes during puberty.

Child

Performance of proficiency survey samples in two immunoradiometric assays of human growth hormone and comparison with patients' samples.

The immunoradiometric assay (IRMA) used in our laboratory for the measurement of growth hormone (hGH; somatotropin) performed badly in the national proficiency survey program, the U.K. External Quality Assessment Scheme (EQAS). We compared our assay with another IRMA, which gave similar results for patients' samples and performed adequately in EQAS. The samples from EQAS are collected from patients with polycythemia and fall into two categories: those containing endogenous hGH and those supplemented with pituitary-derived hGH. Analysis of the two groups separately showed that the differences between the two IRMAS were in the measurement of the endogenous hormone. The reason for this appears to be a matrix effect related to the fact that the EQAS serum samples are collected from polycythemic patients.

Growth Hormone

Reproducibility of 24-hour serum growth hormone profiles in man.

OBJECTIVE: To study the reproducibility of 24-h serum growth hormone (GH) concentration profiles in adults. DESIGN: 24-h serum GH concentrations were constructed by drawing blood samples at 20-min intervals. Four study occasions over a period of 1 year were chosen to assess the reproducibility. SUBJECTS: Six healthy adult male volunteers of normal height and weight and aged between 20 and 22 years. MEASURES: The resulting GH data arrays were analysed by Fourier transformation. Between and within individual variations were calculated and expressed in terms of coefficients of variation and data plotted to show variations between groups and individuals. RESULTS: The frequency component of GH secretion occurred with a dominant periodicity of between 160 and 240 min. Precise estimates of spectral power (strength of oscillatory activity) and period were obtained for group data, but such estimates cannot be inferred from a single profile. There was no significant difference in 24-h mean serum GH concentration over the year of study: occasion 1 (February) mean 2.0 mU/l (SD 0.5); occasion 2 (March) mean 3.7 mU/l (SD 2.8); occasion 3 (July) mean 2.7 mU/l (SD 1.4); occasion 4 (February) 2.5 mU/l (SD 1.5) (mean within individual coefficient of variation 35%, range 9-58). The concentrations of factors known to influence GH synthesis and secretion, insulin-like growth factor I, thyroxine, testosterone and oestradiol, varied little over the year of study. CONCLUSIONS: These data demonstrate that group data are reproducible in terms of oscillatory activity and the amount of GH secreted and that 24-h GH profiles should be used predominantly for analysing group data. The variability between individual profiles limits their value in the investigation of children with growth failure and suspected GH insufficiency.

Adult

The pituitary gland is capable of responding to two successive doses of growth hormone releasing hormone (GHRH)

We have studied the serum growth hormone (GH) response to two consecutive doses of growth hormone releasing hormone (GHRH) (50, 100, 200 micrograms) given 1, 2 or 3 h apart in seven adult males. The serum GH profile was analysed by deconvulution incorporating a variable half-life for GH. All three doses of GHRH stimulated maximal GH secretion: 50 micrograms, 146.0 mU/min (SEM 24.0); 100 micrograms, 128.1 mU/min (SEM 14.3); 200 micrograms, 134.1 mU/min (SEM 20.5) (one-way ANOVA, P = NS). The magnitude of the second secretory burst after the second dose of GHRH was less than that induced by the first injection of GHRH, particularly when doses of 200 micrograms were used. Factors influencing the response to the second dose were the GH secretory status at the point that the stimulus was applied and the time interval between administration of the first and second doses. These studies demonstrate that the pituitary gland is capable of responding to two consecutive doses of GHRH although the second response is always less than the first. The data demonstrate the importance of using methods of assessing GH secretion and not relying simply on measured serum GH concentration values.

Adult

A distribution method for analysing the baseline of pulsatile endocrine signals as exemplified by 24-hour growth hormone profiles.

OBJECTIVE: To develop a method for quantifying the distribution of concentrations present in hormone profiles, which would allow an observer-unbiased estimate of the time concentration attribute and to make an assessment of the baseline. DESIGN: The log-transformed concentrations (regardless of their temporal attribute) are sorted and allocated to class intervals. The number of observations in each interval are then determined and expressed as a percentage of the total number of samples drawn in the study period. The data may be displayed as a frequency distribution or as a cumulative distribution. Cumulative distributions may be plotted as sigmoidal ogives or can be transformed into discrete probabilities (linear probits), which are then linear, and amenable to regression analysis. Probability analysis gives estimates of the mean (the value below which 50% of the observed concentrations lie, which we term 'OC50'). 'Baseline' can be defined in terms of percentage occupancy--the 'Observed Concentration for 5%' (which we term 'OC5') which is the threshold at or below which the hormone concentrations are measured 5% of the time. PATIENTS: We report the use of applying this method to 24-hour growth hormone (GH) profiles from 63 children, 26 adults and one giant. RESULTS: We demonstrate that GH effects (growth or gigantism) in these groups are more related to the baseline OC5 concentration than peak concentration (OC5 +/- 95% confidence limits: adults 0.05 +/- 0.04, peak-height-velocity pubertal 0.39 +/- 0.22, giant 8.9 mU/l). CONCLUSIONS: Pulsatile hormone profiles can be analysed using this method in order to assess baseline and other concentration domains.

Circadian Rhythm

The interaction of growth hormone releasing hormone and somatostatin in the generation of a GH pulse in man.

OBJECTIVE: To study the regulation of the growth hormone (GH) response to growth hormone releasing hormone (GHRH) in the presence or absence of somatostatin pretreatment. DESIGN: Seven healthy adult male volunteers of normal height and weight and aged between 19 and 29 years underwent four separate studies (each containing three cycles in one day) in random order. The studies were separated from each other by at least a week. On day 1, three consecutive cycles (between 0800 and 2000 hours) consisted each of a saline infusion for 3 hours which was stopped prior to a bolus injection of saline and followed by 60 minutes of more intensive blood sampling. On day 2, the bolus injections were of GHRH given after saline infusion. On days 3 and 4 somatostatin infusions were administered instead of saline over the 3-hour periods followed by bolus injections of saline or GHRH respectively. In all studies, samples were collected for the measurement of serum GH concentration at 15-minute intervals from time 0 to 180 minutes and then at 5-minute intervals for a further 60 minutes, this cycle being repeated three times. MEASUREMENTS: Serum GH concentrations were analysed by serial array averaging. RESULTS: Prompt release of GH was observed in response to GHRH given against a saline background (day 2, cycle 1) (mean at 60 minutes 49.2 +/- 14.7 mU/l) but the responses observed during the second and third cycles were attenuated (mean at 60 minutes 17.2 +/- 4.0 mU/l; P = 0.025). GH release between somatostatin infusions (somatostatin withdrawal; day 3) occurred twice as often as that observed during saline infusions (62% day 3: 29% day 1). The response, although qualitatively similar to that induced by GHRH, was reduced in amplitude and the time of onset variable (5-45 minutes). On day 4, the administration of GHRH as a bolus injection combined with somatostatin withdrawal led to consistent and repeatable GH responses (mean at 60 minutes, cycle 1, 39.7 +/- 10.8 mU/l; cycles 2 and 3, 37.4 +/- 9.4 mU/l) which were similar to those observed with GHRH alone (day 2, cycle 1) (mean 39.7 +/- 10.8 mU/l) (P = NS). CONCLUSIONS: These data suggest that endogenous somatostatin secretion is important in determining the ability of the somatotroph to respond to repeated growth hormone releasing hormone stimulation and that for regular GH pulse generation a close interplay between growth hormone releasing hormone and somatostatin is required.

Adult

Growth characteristics and response to growth hormone therapy in patients with hypochondroplasia: genetic linkage of the insulin-like growth factor I gene at chromosome 12q23 to the disease in a subgroup of these patients.

Hypochondroplasia, a heterogeneous and usually mild form of chondrodystrophy, is a common cause of short stature. It often goes unrecognized in childhood and is diagnosed in adult life when disproportionate short stature becomes obvious. We performed restriction enzyme analysis of the insulin-like growth factor I (IGF-I) gene on the families of 20 white British Caucasian children with short stature attributed to hypochondroplasia by radiological and clinical criteria, who were undergoing human growth hormone (r-hGH) treatment, in 60 children with isolated growth hormone deficiency and in 50 normal individuals. The frequency of the heterozygous pattern (Hind III: 8.2, 5.2, 4.8, 3.2 kb fragments, Pvu: 8.4, 5.1, 4.7, 2.5 kb fragments) in children with hypochondroplasia was significantly higher (chi2: P less than 0.05) than in the control groups. The hypochondroplastic children whose response to r-hGH treatment was characterized by a proportionate increase in both spinal and subischial leg length were all heterozygous for two co-inherited IGF-I gene restriction fragment length polymorphism (RFLP) alleles (Hind III: 5.2, 4.8 kb; Pvu II: 5.1, 4.7 kb). Children whose response was characterized by accentuation of the body disproportion by r-hGH treatment were all homozygous for these alleles (Hind III: 4.8, 4.8 kb; Pvu II: 4.7, 4.7 kb). Their response to r-hGH treatment is significantly different (P less than 0.01). Studies of the families of the heterozygous affected children demonstrated strong linkage (lod score 3.311 at zero recombination) of the IGF-I gene locus at chromosome 12q23 to this subgroup of hypochondroplasia. The 5.2 kb Hind III and 5.1 kb Pvu II alleles are in strong linkage disequilibrium with this trait. These data indicate that IGF-I gene may be a candidate gene for involvement in the aetiology of short stature presenting with hypochondroplastic features and a proportionate response to r-hGH treatment; they also provide support for the concept of genetic heterogeneity in chondrodystrophy.

Achondroplasia

Growth of children with hypochondroplasia treated with growth hormone for up to three years.

Hypochondroplasia is a skeletal dysplasia characterised by poor childhood growth and an inadequate pubertal growth spurt. 31 children with a radiological diagnosis of hypochondroplasia have been treated for up to 3 years with recombinant human growth hormone, mean dose 17.9 U/m2/week as daily subcutaneous injections. Mean pre-treatment height velocity standard deviation score (SDS) was -0.51; this increased to +1.58 after 1 year of treatment. This improvement diminishes over the next 2 years. The effect on final height remains unknown. There was a considerable variation in clinical response within the group treated.

Adolescent