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S M Shalet

Publications and source records attributed to S M Shalet.

At least 19 recordsLinked to original sources

Sexual dimorphism of cortisol metabolism is maintained in elderly subjects and is not oestrogen dependent.

OBJECTIVE: The net interconversion of inactive cortisone to active cortisol by 11beta-hydroxysteroid dehydrogenase type 1 (11betaHSD1) may determine hepatic and adipose tissue exposure to glucocorticoid action. Cortisol metabolism exhibits a sexual dimorphism with an apparently lower activity of 11betaHSD1 in females that, in an animal model, has been attributed to the effects of oestrogen. The aim of this study is to determine whether the sexual dimorphism of cortisol metabolism persists between post-menopausal, oestrogen-deficient women and elderly men. PATIENTS: Fifteen healthy men, aged 60.8-82.0 years, and 7 healthy women, aged 62.4-87.5 years, were studied. None of the subjects was receiving steroid medication at the time of the study. All the women were post-menopausal and none was receiving sex steroid replacement therapy. MEASUREMENTS: 24-h urine collections were taken from each patient and assayed for steroid metabolites by gas chromatography. Body composition was determined by dual energy X-ray absorptiometry. Blood was drawn, after an overnight fast, for the determination of serum IGF-I and IGFBP1 levels. RESULTS: The ratio of 11-hydroxy cortisol metabolites to 11-oxo cortisol metabolites (Fm/Em) was significantly higher in men than in women, 0.80 (0.55-1.86) vs. 0.67 (0.46-0.98) (P < 0.02), as was the ratio of allo-tetrahydrocortisol (5alpha-THF) + tetrahydrocortisol (THF)/tetrahydrocortisone (THE), 0.74 (0.37-2.08) vs. 0.40 (0.22-1.10) (P < 0.047). In the group as a whole there was a negative correlation between Fm/Em and percent body fat, r = - 0. 43 (P < 0.05), and the negative relationship between cortisol and cortisone metabolite (Fm/Em) and total fat mass approached significance, r = - 0.39 (P = 0.07). These relationships were not apparent in the women when considered alone. Among the men there were negative relationships between Fm/Em and total fat mass, r = - 0.48, and Fm/Em and trunk fat mass, r = - 0.48 which approached significance (both P = 0.07). Serum IGFBP-1 levels were not significantly different between the two sexes. There was a significant correlation between IGFBP-1 and Fm/Em in the men, r = 0. 84 (P < 0.0001) which persisted when total body fat mass, r = 0.85 (P < 0.0001) and trunk fat mass, r = 0.83 (P < 0.0001), were controlled for. This relationship was not evident among the women. CONCLUSION: This study demonstrates that the previously described sexual dimorphism in cortisol metabolism is not dependent on oestrogen, although the possibility that oestrogen exerts a permanent modifying effect on 11beta-HSD1 gene expression during the pre-menopausal period cannot be excluded. The findings confirm the primary importance of body fat as a determinant of cortisol-cortisone conversion.

Aged↗

Pre-treatment IGF-I level is the major determinant of GH dosage in adult GH deficiency.

OBJECTIVE: Severe GH deficiency in adults is a definite clinical entity, the effects of which can be reversed by administration of subcutaneous recombinant GH. The ideal dosing regimen and determinants of the maintenance dose have, however, yet to be elucidated. PATIENTS: In an open study of GH replacement we treated 65 GH-deficient adults of mixed adult- and childhood-onset, of mean age 35.5 (range 17-72) years, and comprising 38 females and 27 males, using an individualized low-dose titration regimen aimed at normalization of the serum IGF-I and induction of clinical improvement. RESULTS: Before initiation of GH therapy, median IGF-I SD was significantly lower in female than male patients (- 3.3 vs. - 1.9, P = 0.007) and in childhood-onset compared with adult-onset patients (- 3.9 vs. - 2.0, P < 0.001). Once maintenance dosage had been achieved, the median GH requirement was significantly greater in female than male patients (1.6 vs. 0.8 IU/day, P = 0.013) and childhood-onset compared with adult-onset patients (1.6 vs. 0.8 IU/day, P = 0.019). The median maintenance GH dose for the cohort overall was 1.2 (range 0.4-2.4) IU/day. By univariate analysis a significant negative correlation was observed between the maintenance GH dose and baseline IGF-I SD (r = - 0.63, P < 0.001). No significant correlation was demonstrated between maintenance GH dose and either age or weight. Multiple linear regression analysis using age, gender, weight, time of onset of GH deficiency, peak GH to the insulin tolerance test (ITT) and baseline IGF-I SD as independent variables demonstrated baseline IGF-I SD to account for 51% of the variation in GH dose required to normalize the IGF-I SD (P < 0.001). Those patients with the lower IGF-I SD at initiation of GH therapy required the greater GH dose. None of the other variables studied significantly influenced the maintenance dose. CONCLUSION: We have demonstrated that the GH dose required in an individual is dependent on the serum IGF-I SD before commencement of replacement. In contrast, the severity of GH deficiency as judged by the peak GH response to an ITT was unrelated to the maintenance GH requirement. The effect of age, gender and age at onset of GH deficiency on the final GH dose are accounted for by the lower pretreatment IGF-I SD in young, female and childhood-onset patients relative to older, male and adult-onset patients, respectively.

Adolescent↗

The impact of mild Leydig cell dysfunction following cytotoxic chemotherapy on bone mineral density (BMD) and body composition.

BACKGROUND: Overt testosterone deficiency is associated with a reduction in BMD and alteration in body composition. However, there are few data concerning the impact of mild hypogonadism on these parameters. PATIENTS AND METHOD: We have identified a cohort of 36 men aged < 55 years with mild Leydig cell impairment, defined by a raised LH level (LH >/= 8 IU/l) in the presence of a testosterone level in the lower half of the normal range or frankly subnormal (< 20 nmol/l), following treatment with procarbazine-containing chemotherapy regimens or high-dose chemotherapy for haematological malignancy. These men underwent measurements of BMD (measured by dual-energy X-ray absorptiometry (DXA), single energy X-ray absorptiometry (SXA) and quantitative CT (QCT)), body composition (DXA), markers of bone turnover, serum lipids and serum IGF-1. To allow for changes that may be directly attributable to the underlying disease or its treatment, results were compared with those obtained in 14 men who had received the same chemotherapy for the same diseases but had normal LH and testosterone levels (controls). RESULTS: When data from all 50 men were considered together there were significant reductions in BMD of the lumbar spine both by DXA (Z = - 0.34, P = 0.01) and QCT (Z = - 1.5, P < 0. 0001), at the femoral neck (Z = - 0.52, P < 0.0001) and distal forearm (Z = - 0.21, P = 0.05). Mean femoral neck BMD was significantly lower in patients compared with controls (Z = - 0.68 vs. Z = - 0.11, P = 0.05) and there was a nonsignificant trend towards lower lumbar spine BMD measured by QCT (Z = - 1.64 vs. Z = - 1.10; P = 0.09). In addition, serum testosterone level and testosterone:LH ratio significantly correlated with femoral neck BMD (r = 0.28, P = 0.05 and r = 0.37, P = 0.008, respectively). There were no significant differences in lean body mass, fat mass and percentage fat between the patients and controls. There was, however, a difference in the distribution of body fat with a propensity for the patients to accrue truncal fat, and the serum testosterone level significantly inversely correlated with percentage of truncal fat (r = - 0.29, P = 0.04). There were no significant differences in lipid levels, IGF-1 levels or markers of bone turnover between the patients and controls. CONCLUSIONS: These data suggest that mild Leydig cell impairment may have significant effects on bone mineral density and may result in subtle body composition changes, although in men who have received cytotoxic chemotherapy, other factors also contribute to the observed osteopenia. Testosterone replacement may be beneficial in some of these men and this requires further evaluation.

Adult↗

Fatigue, sexual function and mood following treatment for haematological malignancy: the impact of mild Leydig cell dysfunction.

Fatigue, sexual dysfunction, anxiety and depression are all more common in patients who have previously been treated with cytotoxic chemotherapy and radiotherapy (XRT) for haematological malignancies. Following therapy, a significant proportion of men have biochemical evidence of Leydig cell dysfunction, defined by a raised luteinizing hormone level in the presence of a low/normal testosterone level. We postulated that mild testosterone deficiency may account for some of the long-term side-effects of treatment, and we have therefore assessed fatigue, mood and sexual function by questionnaire in 36 patients with Leydig cell dysfunction (group 1), and also in a group of 30 patients (group 2) with normal hormone levels who underwent the same treatment for cancer. There was no significant difference in anxiety and depression scores between the two groups although anxiety scores were higher than those previously reported for normal men. Eighty-seven per cent of group 2 were sexually active compared with only 69% of group 1 (P= 0.1), and patients in group 1 engaged less in sexual activity than those in group 2 (mean of 1.8 times per week compared with 3.2 times per week; P = 0.02) Fatigue scores were significantly higher in both groups compared with normal men, but there were no significant differences in any of the fatigue subscales between the two groups. We conclude that mild Leydig cell insufficiency following treatment with cytotoxic chemotherapy +/- XRT is not associated with higher levels of fatigue and anxiety but may result in reduced sexual function. These results do not provide a convincing argument that androgen replacement therapy is mandatory to improve quality of life in the majority of these patients, although it may be beneficial in a minority. To establish criteria for selection of patients for a trial of androgen therapy a randomized placebo-controlled study will be necessary.

Antineoplastic Combined Chemotherapy Protocols↗

Changes in lipoprotein(a) levels measured by six kit methods during growth hormone treatment of growth hormone-deficient adults.

Lipoprotein(a) [Lp(a)], an independent risk factor for cardiovascular disease, has previously been reported to increase, decrease or show no change in growth hormone (GH)-deficient individuals receiving GH replacement. To assess whether these inconsistencies could be attributed to differences in immunoassay methods, Lp(a) was measured by six commercial kits at 0, 3, 6 and 9 months in nine GH-deficient individuals (median age 68.3 years, six male) during 9 months GH therapy. There was a significant rise in Lp(a) with the INCStar immunoturbidimetric (IT) method and the Mercodia enzyme linked immunosorbent assay (ELISA) (P</=0.05, two-tailed Wilcoxon signed rank test), a non-significant rise with the Pharmacia immuno-radiometric assay and the Biopool ELISA methods (P =0.06), and no change with the Immuno ELISA and WAKO IT kits. There was also considerable variation in the values reported within each individual. These results suggest that the previously reported inconsistencies may in part be due to methodological differences, and that the effect of GH on Lp(a) remains unknown. This study highlights the need for a more common approach to the standardization of Lp(a) methods and the selection of antibodies used in them. Better performing methods may allow a more reliable interpretation of the effects of GH on Lp(a)

Aged↗

Growth hormone and neurofibromatosis.

Data collected from 102 neurofibromatosis (NF) children with growth hormone (GH) deficiency (GHD) who were receiving GH replacement therapy were reviewed to assess the efficacy and safety of GH therapy in this condition. GH was administered at a mean dose of 0. 18 mg/kg/week. During the 1st year the median height velocity increased significantly from 4.2 cm/year before treatment to 7.1 cm/year, and the median height standard deviation score increased from -2.4 to -1.9. The response to therapy, however, was not as good as that observed in patients with idiopathic GHD. GH therapy did not influence the progression of any of the features of NF, including intracranial tumours, and was not associated with an excess of other adverse events. We conclude that GH treatment of NF patients with GHD is beneficial in terms of improved growth rate and is well tolerated.

Adolescent↗

Treatment of growth hormone deficiency in adults.

In analogy with other hormonal replacement therapy GH treatment should be commenced with a low starting dose, independent of body weight or body surface area. Hormonal replacement should mimic the normal physiology to minimize the risk of side effects in the life-long replacement of adults. We should, therefore, consider individual responsiveness and also be aware of the difference between pattern of GH under normal condition and during s.c. administration. The safety and monitoring of GH replacement therapy in adults have been addressed in the Growth Hormone Research Society Consensus Guidelines for Diagnosis and Treatment of Adults with GH Deficiency from the Port Stephens Workshop, April 1997. Besides finding better and more accurate biochemical markers for choosing correct GH replacement dose, future research should address the long-term benefits and safety with GH replacement in adults, with special emphasize on incipient risks in terms of cardiovascular disease and of neoplasia, in particular.

Adult↗

Modulation of cortisol metabolism by low-dose growth hormone replacement in elderly hypopituitary patients.

11 beta-hydroxysteroid dehydrogenase type 1 (11beta-HSD1) functions as a net reductase converting cortisone to cortisol. GH inhibits 11beta-HSD1, resulting in a shift in cortisol metabolism favoring cortisone, an observation that may have significance in patients with ACTH deficiency who are unable to compensate for such changes. We have studied the effect of three doses of GH replacement (0.17, 0.33, and 0.5 mg each given for 12 weeks in ascending order) on cortisol metabolism in nine patients, aged 62-70 yr, with hypopituitarism who were receiving fixed doses of oral hydrocortisone. Serum insulin-like growth factor I levels rose in a dose-dependent manner over the course of the study. Fat mass decreased significantly at 24 weeks (P = 0.02), a change that was maintained at 36 weeks. Fasting serum insulin levels did not change significantly over the course of the study. The ratio of urine cortisol to cortisone metabolites (Fm/Em) fell significantly at 12 weeks (GH dose, 0.17 mg/day) from 1.32 (0.91-2.20) at baseline to 1.08 (0.89-2.11) (P < 0.05). Although it did not fall further as the dose of GH was increased, the reduction in the Fm/Em ratio persisted at 24 weeks (GH dose, 0.33 mg/day), 1.09 (0.8-2.11) (P < 0.05 vs. baseline), and 36 weeks (GH dose, 0.5 mg/day), 1.19 (0.82-2.31) (P < 0.05 vs. baseline). The Fm/Em ratio did not correlate with serum insulin-like growth factor I, fat mass, or fasting insulin levels at any time during the study. This study confirms the inhibitory effect of GH on 11beta-HSD1 but has shown that the effect occurs maximally at very low GH doses and is not mediated indirectly by change in circulating insulin. Patients with partial or total ACTH deficiency, in whom cortisol replacement is suboptimal, may be at risk of the clinical manifestations of cortisol deficiency when they are commenced on GH therapy.

11-beta-Hydroxysteroid Dehydrogenases↗

Gonadotrophin-releasing hormone analogues: a novel treatment for premenstrual asthma.

Premenstrual exacerbation of asthma, as reflected by a reduction in peak expiratory flow rate (PEFR), has been demonstrated in 40-100% of female asthmatics. Epidemiological data demonstrate that admission to hospital with an exacerbation of asthma occurs more frequently perimenstrually. Therapeutic interventions aimed at modifying this precipitating factor, however, remain limited. We report on a 32-yr old female with asthma in whom a marked increase in symptoms and reduction in PEFR occurred premenstrually, necessitating recurrent admissions to hospital. Frequent severe exacerbations resulted in the chronic use of oral maintenance corticosteroids. In order to suppress gonadotrophin secretion and ovarian function, a long-acting gonadotrophin-releasing hormone analogue was administered with a view to inducing a reversible menopause. This resulted in improvement in respiratory symptoms, the absence of PEFR dips premenstrually, a reduction in maintenance prednisolone dosage and no further hospital admissions during a follow-up period of 14 months. The authors propose that gonadotrophin-releasing hormone-analogue therapy is a rational and innovative adjuvant treatment worthy of further study in cases of severe premenstrual asthma.

Adult↗

Reduced bone mineral density in young adults following cure of acute lymphoblastic leukaemia in childhood.

Bone mineral density (BMD), serum osteocalcin and type I collagen C-telopeptide (ICTP) were assessed in a cohort of 31 (16 males) adults who had received cranial irradiation in childhood as part of their treatment for acute lymphoblastic leukaemia (ALL). Markers of bone turnover were compared with those of 35 age and body mass index (BMI) matched young adults (18 male). Growth hormone status had previously been determined using an insulin tolerance test and arginine stimulation test. Eight patients were classified as severe growth hormone deficiency (group 1), 12 patients as growth hormone insufficient (group 2) and 11 patients as normal (group 3). Vertebral trabecular BMD, lumbar spine and femoral neck integral BMD and forearm cortical bone mineral content (BMC) was measured 17.8 (6.8-28.6) years after cranial irradiation and was expressed as Z (standard deviation) scores. There was a significant reduction in vertebral trabecular BMD (median Z score -1.25, P < 0.001), in lumbar spine integral BMD (median Z score -0.74, P = 0.001), in forearm cortical BMC (median Z score -1.35, P < 0.001), and less so in femoral neck integral BMD (median Z score -0.43, P = 0.03). There was no difference among the growth hormone status groups for the following BMD measurements: vertebral trabecular BMD, lumbar spine integral BMD or femoral neck integral BMD (P = 0.8, P = 0.96 and P = 0.4 respectively). There was only a marginal significant difference for BMD at the wrist between growth hormone status groups (P = 0.04). There was no correlation between the BMD measurements with time since or age at diagnosis and no difference in markers of bone turnover between patients and controls; median serum osteocalcin 13.3 and 12.0 ng ml (P = 0.7), respectively, and for ICTP 5.0 and 4.9 microg L (P = 0.67) respectively. In conclusion, there is a highly significant reduction in BMD in young adults following treatment for ALL in childhood. The reduction in BMD affects both trabecular and cortical bone but did not seem to be related to time since diagnosis, age at diagnosis, or current growth hormone status. Possible explanations include a direct effect of chemotherapy, steroids or both on bone during childhood and hence an effect on the accretion of bone mass. In view of the risk of fractures in patients with osteopenia, adults treated for ALL in childhood may be at an increased risk of bone fractures later in life irrespective of the underlying cause of the osteopenia and thus intervention should be considered.

Adolescent↗

Novel DAX1 mutations in X-linked adrenal hypoplasia congenita and hypogonadotrophic hypogonadism.

OBJECTIVE: Mutations of the DAX1 gene (Dosage-sensitive sex reversal-Adrenal hypoplasia congenita critical region on the X chromosome gene 1), which encodes a novel orphan nuclear receptor, have been identified in patients with X-linked adrenal hypoplasia congenita (AHC) and hypogonadotrophic hypogonadism (HHG). We have investigated two kindreds with AHC and HHG for DAX1 mutations. METHODS: Two kindreds with five affected males, four carrier females and four unaffected males were investigated. The gonadotrophin deficiency in three of the boys was observed to be partial until mid-puberty. DAX1 mutations in the entire 1413 bp coding region were sought by DNA sequence analysis. RESULTS: Two DAX1 mutations, situated within exon 1, were detected. These consisted of an insertional mutation at codon 183 that led to a frameshift and a premature Stop at codon 184, and a missense mutation Leu278Pro that involved a highly conserved leucine residue within the proposed ligand binding domain. Co-segregation of these mutations with the disease in each family, and their absence from 107 alleles in 73 (39 males and 34 females) unrelated control individuals, was demonstrated by allele specific oligonucleotide hybridization (ASO) analysis for the insertional mutation, and by Ban I restriction endonuclease analysis for the missense mutation. CONCLUSIONS: Two novel DAX1 mutations have been detected in two families with adrenal hypoplasia and hypogonadotrophic hypogonadism. The finding of partial gonadotrophin deficiency in the affected males from these families is notable and an early recognition of such a possibility in a patient, which may be facilitated by DAX1 mutational analysis, may help to prevent the sequelae of delayed androgen replacement therapy.

Adolescent↗

The effect of chronic hexarelin administration on the pituitary-adrenal axis and prolactin.

OBJECTIVE: With the development of growth hormone (GH) releasing agents and their use in human subjects, it is clear that these agents are not specific for GH release. More recent studies in humans have demonstrated acute increases in adrenocorticotrophic hormone (ACTH), cortisol and prolactin (PRL) after boluses of intravenous or subcutaneous GHRPs. The potential adverse effects of repeated episodes of transient hyperprolactinaemia and hypercortisolaemia during long-term therapy with growth hormone releasing peptides (GHRPs) and similar agents have raised concern. We have therefore assessed the impact of chronic hexarelin administration on the pituitary-adrenal axis and serum prolactin levels. DESIGN: Each subject received twice-daily subcutaneous hexarelin therapy (1.5 micrograms/kg body weight) for 16 weeks. The ACTH, cortisol and PRL responses to the morning subcutaneous injection of hexarelin were assessed. Hexarelin was administered at time 0 and blood samples were taken at -10, 0, 10, 20, 30, 40, 50, 60, 90, 120, 170 and 180 min. The ACTH and PRL responses were assessed at baseline and after 16 weeks of therapy. The cortisol response was assessed at baseline, 16 weeks and also 4 weeks after completion of hexarelin therapy. Basal levels of cortisol binding globulin (CBG), 24-h urinary free cortisol (UFC) estimations, thyroid stimulating hormone (TSH) and total thyroxine (TT4) were performed at baseline, weeks 16 and 20. RESULTS: The mean (+/- SEM) area under the cortisol curve (AUCCORT) at baseline, week 16 and week 20 were 1506 (+/- 77) nmol/l/h, 1222 (+/- 92) nmol/l/h and 1586 (+/- 58) nmol/l/h, respectively. There was a significant change in AUCCORT over the study period (P = 0.008). Compared with baseline, AUCCOPRT had decreased significantly (P < 0.05) after 16 weeks of hexarelin therapy. Four weeks after completion of hexarelin therapy, the AUCCORT increased significantly compared with AUCCORT at week 16 (P < 0.01) and was no longer significantly different from baseline values. There were no significant changes in UFC (P = 0.3), basal cortisol measurements (P = 0.19), area under the ACTH curve (AUCACTH) (P = 0.24) or CBG (P = 0.6) over the study period. The mean (+/- SEM) area under the PRL curve (AUCPRL) at the baseline and week 16 were 624 (+/- 82) mU/l/h and 641 (+/- 83) mU/l/h, respectively. There was no significant change in AUCPRL over the study period (P = 0.35). CONCLUSION: The present study demonstrates clearly that in this hexarelin dosage regimen, over-stimulation of the pituitary adrenal axis and prolactin secretion do not occur. In fact the impact of chronic hexarelin therapy on the pituitary-adrenal axis, i.e. decreased AUCCORT, contradict the findings reported after acute hexarelin administration and cannot be explained by changes in CBG. The lack of change in UFC, however, suggests that these changes are unlikely to be of clinical significance although the underlying mechanism requires further study.

Administration, Cutaneous↗

Hyperleptinaemia in young adults following cranial irradiation in childhood: growth hormone deficiency or leptin insensitivity?

OBJECTIVE: In order to explore the mechanism of obesity in long-term survivors of childhood leukaemia, fat mass, lean body mass and serum leptin were assessed in a cohort of 32 (17 males) adults who had received cranial irradiation (XRT) in childhood as part of their treatment for acute lymphobiastic leukaemia (ALL), and compared with 35 age and body mass index (BMI) matched young adults (18 male). DESIGN: Thirty-one patients and 18 controls had fat mass and lean body mass assessed by dual x-ray absorptiometry (DEXA), using a lunar DPX-L scanner. Serum leptin concentrations were also measured in 27 patients and all controls. Growth hormone status had previously been determined using an insulin tolerance test and arginine stimulation test. Nine patients were classified as severe growth hormone (GH) deficient (group 1), 12 patients as GH insufficient (group 2) and 11 patients as normal (group 3). RESULTS: BMI and absolute fat mass were not significantly different between the patients and controls regardless of their gender (P = 0.1 and P = 0.14 respectively). In contrast, absolute lean mass was significantly reduced (P < 0.01) and leptin concentrations were significantly increased (P < 0.001) in patients compared with controls. BMI, fat mass and leptin concentrations but not lean mass were significantly different between the three GH status groups (P < 0.01, P < 0.01, P = 0.004, and P = 0.67 respectively). When leptin concentrations were expressed per unit of fat mass, they were increased in the patients compared with the controls (P = 0.03) with significant differences between the GH status groups (P = 0.004), being significantly higher in the severe GH deficient group. CONCLUSIONS: Young adults who receive cranial irradiation in childhood are prone to GH deficiency and hyperleptinaemia. The pathophysiological significance of the hyperleptinaemia remains to be established but it has occurred either as a consequence of radiation induced hypothalamic damage or GH deficiency.

Adolescent↗

Dose titration and patient selection increases the efficacy of GH replacement in severely GH deficient adults.

OBJECTIVE: Previous studies of GH replacement in adults have used unselected cohorts of GH deficient (GHD) adults and weight-based dosing regimens resulting in supraphysiological serum IGF-I levels and a high frequency of side-effects and withdrawal from these studies. By choosing patients with a high level of morbidity at baseline and using a low dose GH titration regimen we aimed to avoid over-replacement and increase the efficacy of treatment. DESIGN: An open study of GH replacement, initiating treatment with a dose of 0. 8 U/day and titrating the dose by 0.4 U increments to normalize the IGF-I SDS between - 2.0 and + 2.0 SD of the age-related normal range. PATIENTS: 65 severely GHD patients (peak GH < 9 mU/l to provocative testing), 25 males, of mixed adult and childhood-onset and mean age 38.7 (range 17-72) years. Inclusion criterion was that of subjectively poor quality of life on clinical interview. MEASUREMENTS: Height, weight, waist and hip circumference were measured to allow calculation of body mass index (BMI) and waist-hip ratio (WHR). Bone mineral density (BMD) was measured by dual X-ray absorptiometry (DEXA). Serum haemoglobin A1C (HbA1C), lipid profile and insulin like growth factor 1 (IGF-I) were measured. The Psychological General Well-Being Schedule (PGWB) and Adult Growth Hormone Deficiency Assessment (AGHDA) self-rating questionnaires (SRQ) were used to assess quality of life. RESULTS: Baseline characteristics were consistent with those previously described in severely GHD adults; mean IGF-I SDS - 2.4 (+/- 2.7), BMI 28.8 (+/- 5. 4) kg/m2, total cholesterol 6.17 (+/- 1.2) mmol/l, reduced BMD z-scores at the lumbar spine (- 0.8 +/- 1.2) and femoral neck (- 0. 44 +/- 1.4), and SRQ scores considerably lower than reported in previous studies of GH deficient adults and normal controls. Following initiation of GH serum IGF-I SDS was increased significantly from baseline to a mean level of 0.15 +/- 2.7 (P < 0. 001) and 0.31 +/- 2.0 (P < 0.001) at three and eight months, respectively. The mean PGWB score increased from 59.7 +/- 19.9 to 75. 8 +/- 15.0 (P < 0.001) and 73.7 +/- 19.5 (P = 0.001) at three and eight months, respectively. An increase of 14 points represents the largest improvement in quality of life, using this index, that has been reported in GHD adults. The mean AGHDA score also demonstrated considerable improvement, falling from 15.3 +/- 6.0 to 10.4 +/- 6.2 (P < 0.001) and 9.8 +/- 6.5 (P < 0.001) at three and eight months, respectively. The changes observed in both the PGWB and AGHDA scores between baseline and at both three and eight months were shown to correlate significantly with the respective baseline score. A significantly greater improvement was observed in the PGWB following GH replacement in those with a baseline PGWB score of < 60 than in those with a score > 60. This observation was significant at both three (27.1 vs 6.7, P = 0.0001) and eight (25.6 vs 3.3, P = 0.0003) months. All PGWB subscales showed significant improvement though that of vitality was of greatest magnitude. A strong correlation was observed between the generic and disease-specific SRQ (r = - 0.73, P < 0.001). CONCLUSIONS: The observed improvement in quality of life in GH deficient adults is proportional to the degree of impairment before commencing therapy. The use of low-dose titration and selection of a population with greater morbidity reduces the occurrence of over-replacement and increases the efficacy of treatment. This allows direction of resources to those in greatest need.

Adolescent↗