PubMed Health⌕ Search

Biomedical subjects

A Chakrapani

Publications and source records attributed to A Chakrapani.

14 recordsLinked to original sources

'Ready to drink' protein substitute is easier is for people with phenylketonuria.

UNLABELLED: In phenylketonuria (PKU), compliance with taking protein substitute is an issue in teenage and older patients. A 'ready to drink' protein substitute may overcome many of the practical issues associated with its administration. OBJECTIVE: To investigate the efficacy of a liquid protein substitute in a 6-week, three-part, randomized, crossover, controlled study. METHODS: 27 subjects (15 female; 12 male) with PKU with a median age of 30 years (range 8-49 years) were recruited. One subject withdrew from the study. Their median daily dose of protein equivalent was 60 g (range 45-75 g). In parts 1 and 2, subjects were randomized to either a liquid or a powder protein substitute with the same nutritional composition per unit (each 130 ml liquid pouch or 25 g powder sachet contained 15 g protein equivalent). In part 3, subjects chose liquid, powder or a combination of both. Weekly blood phenylalanine (Phe) concentrations were estimated, and during weeks 2, 4 and 6 subjects completed a daily questionnaire on administration issues. RESULTS: All but one of 26 subjects chose the liquid in part 3 as either their sole (69%, n = 18) or partial source (28%, n = 7) of protein substitute. Blood Phe concentrations were significantly better on the liquid (p = 0.03). With the liquid protein substitute, subjects were less self-consciousness (p = 0.003) and found it easier to take away from home (p = 0.001). Overall, the liquid was easier (p < 0.0001), more convenient (p = 0.002) and resulted in less wastage of protein substitute (p = 0.001). CONCLUSION: Liquid protein substitute was popular and efficacious, reduced self-consciousness and overall improved compliance of teenagers and adults with PKU.

Adolescent↗

Protein substitute dosage in PKU: how much do young patients need?

BACKGROUND: The optimal dose of protein substitute has not been determined in children with phenylketonuria (PKU). AIM: To determine if a lower dose of protein substitute could achieve the same or better degree of blood phenylalanine control when compared to the dosage recommended by the UK MRC.(1) METHODS: In a six week randomised, crossover study, two doses of protein substitute (Protocol A: 2 g/kg/day of protein equivalent; Protocol B: 1.2 g/kg/day protein equivalent) were compared in 25 children with well controlled PKU aged 2-10 years (median 6 years). Each dose of protein substitute was taken for 14 days, with a 14 day washout period in between. Twice daily blood samples (fasting pre-breakfast and evening, at standard times) for plasma phenylalanine were taken on day 8-14 of each protocol. The median usual dose of protein substitute was 2.2 g/kg/day (range 1.5-3.1 g/kg/day). RESULTS: When compared with control values, median plasma phenylalanine on the low dose of protein substitute increased at pre-breakfast by 301 mumol/l (95% CI 215 to 386) and in the evening by 337 micromol/l (95% CI 248 to 431). On the high dose of protein substitute, plasma phenylalanine concentrations remained unchanged when compared to control values. However, wide variability was seen between subjects. CONCLUSIONS: A higher dosage of protein substitute appeared to contribute to lower blood phenylalanine concentrations in PKU, but it did have a variable and individual impact and may have been influenced by the carbohydrate (+/- fat) content of the protein substitute.

Child↗

Home delivery of dietary products in inherited metabolic disorders reduces prescription and dispensing errors.

UNLABELLED: In the UK, for patients with inherited metabolic disorders (IMD) the traditional system for acquiring essential dietary products [patient prompted prescriptions generated by a medical general practitioner (GP) and dispensed by a chemist] is problematic. OBJECTIVE: To investigate the efficacy of a home delivery service (HDS) for essential dietary products (EDP) (i.e. protein substitutes, milk replacements, energy and vitamin and mineral supplements) for subjects with IMD, particularly examining any prescription and dispensing errors, metabolic control and consumer satisfaction. METHODS: A prospective, controlled, home delivery trial for EDP was conducted in patients with IMD for 12 months. Sixty-two patients with IMD [50 with phenylketonuria (PKU); 12 with other IMD: aged 6 months-30 years] were recruited. Thirty subjects used a monthly HDS (Homeward: Nutricia) to receive EDP, 32 remained on the traditional system. Each month, the HDS checked home stock levels of EDP, obtained their prescriptions directly from GP's, and then delivered them to the subjects' homes. An independent researcher completed monthly telephone interviews with patients/parents about any EDP prescription errors or delay in receipt. RESULTS: Incorrect protein substitute was dispensed once by the HDS compared with nine subjects who had 12 errors in the control group (P = 0.01); incorrect flavours of protein substitute were dispensed to the home delivery group once compared with eight subjects getting 11 errors via the chemist (P = 0.03). The HDS delayed delivery of protein substitute for one subject on three occasions compared with 39 occasions in 16 subjects via the chemist (P = 0.001). In patients with PKU, plasma phenylalanine control deteriorated in the control group (P < 0.05) but not in the HDS group. CONCLUSIONS: The long-term use of a HDS for EDP in IMD is safer, effective and more reliable than conventional systems.

Adolescent↗

Biochemical, clinical and molecular findings in LCHAD and general mitochondrial trifunctional protein deficiency.

General mitochondrial trifunctional protein (TFP) deficiency leads to a wide clinical spectrum of disease ranging from severe neonatal/infantile cardiomyopathy and early death to mild chronic progressive sensorimotor poly-neuropathy with episodic rhabdomyolysis. Isolated long-chain 3-hydroxyacyl-CoA dehydrogenase (LCHAD) deficiency resulting from the common Glu510Gln mutation usually gives rise to a moderately severe phenotype with multiorgan involvement with high morbidity and mortality. However, isolated LCHAD deficiency can also be consistent with long-term survival in patients identified and treated from an early age. We present biochemical, clinical and mutation data in 9 patients spanning the full spectrum of disease. Fibroblast acylcarnitine profiling shows good correlation with clinical phenotype using the ratio C18(OH)/(C14(OH)+C12(OH)). This ratio shows a gradation of values, from high in four patients with severe neonatal disease (2.5+/-0.8), to low in two neuromyopathic patients (0.35, 0.2). Fibroblast fatty acid oxidation flux assays also show correlation with the patient phenotype, when expressed either as percentage residual activity with palmitate or as a ratio of percentage activity of myristate/oleate (M/O ratio). Fibroblasts from four patients with severe neonatal disease gave an M/O ratio of 4.0+/-0.6 compared to 1.97 and 1.62 in two neuromyopathic patients. Specific enzyme assay of LCHAD and long-chain 3-ketothiolase activity in patient cells shows lack of correlation with phenotype. These results show that measurements in intact cells, which allow all determinative and modifying cellular factors to be present, better reflect patient phenotype. Mutation analysis reveals a number of alpha- and beta-subunit mutations. Peripheral sensorimotor polyneuropathy, often as the initial major presenting feature but usually later accompanied by episodic rhabdomyolysis, is a manifestation of mild TFP protein deficiency. The mild clinical presentation and relative difficulty in diagnosis suggest that this form of TFP is probably underdiagnosed.

Acyl-CoA Dehydrogenase, Long-Chain↗

A new, low-volume protein substitute for teenagers and adults with phenylketonuria.

Some older patients with phenylketonuria (PKU) fail to consume their protein substitute (with or without vitamin and mineral supplements) in prescribed amounts, which contributes to poor blood phenylalanine control. PKU Express (Vitaflo), is a new low-volume (amino acids 72 g/100 g), low-carbohydrate, phenylalanine-free protein substitute with added vitamins and minerals designed for people with PKU over 8 years of age. In an open intervention study, the aim was to investigate its acceptability and effectiveness in a group of teenagers and adults with PKU. Twenty-three subjects (15 female; 8 male) with PKU, who had a median age of 17 years (range 8-37 years) took the substitute for 8 weeks. A 3-day prospective diet diary, height, weight, plasma amino acids, biochemical and haematological nutritional analytes were measured at weeks 0 and 8. Skin-puncture bloods for plasma phenylalanine were collected every 2 weeks. The median weight of protein substitute (with or without vitamin and mineral supplements) consumed decreased by 33% from 150 g (range 140-180) daily to 100 g (range 100-125) daily ( p <0.001). Median change in energy intake decreased by a median of 10% (95% CI 2.0 to 18.0) when compared to intake on original protein substitute. On PKU Express, the intakes of all nutrients exceeded the dietary reference values but none was excessively high. Blood phenylalanine decreased by a mean of 37 micromol/L (95% CI-27 to 102) during the trial. Body mass index decreased in 40% of subjects. Changes in blood phenylalanine or body mass index were not statistically significant. Most of the nutritional, haematological and biochemical indices stayed within normal reference ranges for the analytes studied. Sixteen (70%) of the subjects had low plasma selenium at the start, but only 13 (57%) at the study end. Plasma vitamin B12 was high in 8 subjects at the start of the study and 9 at the end. Twenty-one subjects (96%) stated that the product was convenient and easy to prepare. However, 7 (32%) described the smell and 9 (46%) the texture as the same as or worse than those of previous protein substitutes. Because of the use of the premeasured sachets, some subjects were able to prepare their own protein substitute for the first time. PKU Express is a safe, efficacious, protein substitute that significantly reduces the daily volume of prescribed protein substitute.

Adolescent↗

Protein substitutes for PKU: what's new?

Protein substitutes are an essential component in the management of phenylketonuria. A series of studies at Birmingham Children's Hospital have investigated their optimal dosage, timing and practical administration as well as the efficacy and tolerance of novel protein substitutes. The key findings are as follows. (1). Lower dosages of protein substitute (1.2 g/kg per day of protein equivalent) adversely affect blood phenylalanine control in children aged 1-10 years. (2). There is wide variability in 24 h blood phenylalanine concentrations. (3). Adjusting protein substitute timing during daytime does not reduce blood phenylalanine variability. (4). Repeated 4 h administration of protein substitute throughout 24 h markedly reduces phenylalanine variability and leads to lower phenylalanine concentrations. (5). The new, concentrated, low-volume protein substitutes and amino acid tablet preparations are efficacious and well tolerated by patients. (6). Administration of protein substitute as a gel or paste has reduced difficulties with administration of protein substitute in children. These findings are important in rationalizing treatment strategies, improving patient compliance and overall in improving blood phenylalanine control.

Dietary Proteins↗

Trifunctional protein deficiency: three families with significant maternal hepatic dysfunction in pregnancy not associated with E474Q mutation.

We report five families with trifunctional protein deficiency in which, during pregnancy, three mothers experienced significant hepatic disease when carrying an affected fetus. Diagnoses were based on increased levels of long-chain hydroxyacylcarnitines and deficiencies of 3-hydroxyacyl-CoA dehydrogenase (LCHAD) and 3-ketoacyl-CoA thiolase activity in fibroblasts. All affected infants lacked the common E474Q mutation associated with isolated LCHAD deficiency. This mutation is thought to be a predisposing factor for maternal hepatic disease in pregnancy. Our findings suggest that other defects in this enzyme complex might be responsible for maternal hepatic complications in pregnancy.

3-Hydroxyacyl CoA Dehydrogenases↗

The Proteus syndrome.

A race case of Proteus syndrome is presented. The main features of this hamartomatous condition are partial gigantism of hands and feet, hemihypertrophy, subcutaneous masses, epidermal nevi and bony abnormalities. The condition is extremely rare. Though the child had severe cosmetic disability, motor intellectual and language development was found to be normal.

Aftercare↗

Bacteriological profile of neonatal septicemia cases (for the year 1990-91).

Blood culture reports were studied in 1266 cases of clinically suspected neonatal septicemia, to determine the bacteriological profile and antibiotic sensitivity pattern of the cultured isolates. Blood culture was positive in 24.88% of cases. Gram negative septicemia was encountered in 87.1% of these neonates. Klebsiella and Enterobacter species were the predominant pathogens amongst Gram negative organisms. Of Gram positive isolates, Staphylococcus aureus was the predominant isolate (79.0%). Salmonella species was isolated in 2.4% of these cases.

Anti-Bacterial Agents↗