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Neonatal screening and monitoring system in Taiwan.

Neonatal screening in Taiwan started as a pilot program in 1981. The coverage rate increased to 90% in 1990, and is currently more than 99%. Five diseases are covered in the screening program including congenital hypothyroidism, phenylketonuria, homocystinuria, galactosemia, and glucose-6-phosphate dehydrogenase deficiency. A monitoring system was established at the same time to ensure correct diagnosis and treatment for positive cases. Neonatal screening is not compulsory by law in Taiwan, but the government is very concerned about it. New tests for neonatal screening have recently been included as pilot programs. Parents of the newborns have to pay for these tests, for which informed consent has to be given. These additional tests include screening for congenital adrenal hyperplasia and tandem mass screening. The results of these pilot programs will be offered to the government for policy decision-making in the future.

Congenital Hypothyroidism↗

Neonatal screening for inborn errors of metabolism: cost, yield and outcome.

OBJECTIVES. To systematically review the literature on inborn errors of metabolism, neonatal screening technology and screening programmes in order to analyse the costs and benefits of introducing screening based on tandem mass-spectrometry (tandem MS) for a wide range of disorders of amino acid and organic acid metabolism in the UK. To evaluate screening for cystic fibrosis, Duchenne muscular dystrophy and other disorders which are tested on an individual basis. HOW THE RESEARCH WAS CONDUCTED. Systematic searches were carried out of the literature on inborn errors of metabolism, neonatal screening programmes, tandem MS-based neonatal screening technology, economic evaluations of neonatal screening programmes and psychological aspects of neonatal screening. Background material on the biology of inherited metabolic disease, the basic philosophy, and the history and current status of the UK screening programme was also collected. Relevant papers in the grey literature and recent publications were identified by hand-searching. Each paper was graded. For each disease an aggregate grade for the state of knowledge in six key areas was awarded. Additional data were prospectively collected on activity and costs in UK neonatal screening laboratories, and expert clinical opinion on current treatment modalities and outcomes. These data were used to construct a decision-analysis model of neonatal screening technologies, comparing tandem MS with the existing phenylketonuria screening methods. This model determined the cost per additional case identified and, for each disease, the additional treatment costs per case, and the cost per life-year saved. All costs and benefits were discounted at 6% per annum. One-way sensitivity analysis was performed showing the effect of varying the discount rate, the incidence rate of each disorder, the number of neonates screened and the cost of tandem MS, on the cost per life-year gained. RESEARCH FINDINGS. The UK screening programmes for phenylketonuria and congenital hypothyroidism have largely achieved the expected objectives and are cost-effective. Current concerns are the difficulty of maintaining adequate coverage, perceived organisational weaknesses, and a lack of overview. For many of the organic acid disorders it was necessary to rely on data obtained from clinically-diagnosed cases. Many of these diseases can be treated very effectively and a sensitive screening test was available for most of the diseases. Except for cystic fibrosis, there have been no randomised controlled trials of the overall effectiveness of neonatal screening. Despite the anxiety generated by the screening process, there is strong parental support for screening. The effects of diagnosis through screening on subsequent reproductive behaviour is less clear. Conflicts exist between current concepts and the traditional principles of screening. The availability of effective treatment is not an absolute prerequisite: early diagnosis is of value to the family concerned and, to the extent that is leads to increased use of prenatal diagnosis, may help to reduce the overall burden of disease. Neonatal screening is also of value in diseases which present early but with non-specific symptoms. Indeed, almost all of the diseases considered could merit neonatal screening. The majority of economic evaluations failed to incorporate the health benefits from screening, and therefore failed to address the value of the information which the screening programmes provided to parents. The marginal cost of changing from present technology to tandem MS would be approximately 0.60 pounds per baby at a workload of 100,000 samples a year, and 0.87 pounds at 50,000 samples per year. The ability to screen for a wider range of diseases would lead to the identification of some 20 additional cases per 100,000 infants screened, giving a laboratory cost per additional diagnosis of 3000 pounds at an annual workload of 100,000 babies per year.(ABSTRACT TRUNCATED)

Cost-Benefit Analysis↗

Phenylketonuria detected by the neonatal screening program in Thailand.

Neonatal screening for phenylketonuria (PKU) was introduced as a pilot project in Thailand from 1992--1995, and mass screening was started in 1996 by the Department of Medical Sciences, Ministry of Public Health. Blood samples were collected by heelprick on filter paper either at 48 hours of life or before discharge from the hospital. Elevated blood phenylalanine was identified by screening with the Guthrie method, then followed by the fluorometric method: All infants with a phenylalanine level equal to or greater than 4 mg/dl were recalled and retested using the fluorometric method and confirmed by plasma amino acid analysis and urinary pterins for tetrahydrobiopterin deficiency. A total of 1,062,676 newborns were screened from October 1992--March 2001, with 5 cases confirmed with PKU. The incidence was 1 in 212,535. All patients have been treated with low phenylalanine diet. The results of this study confirm the benefit of early detection and treatment of PKU through the screening program.

Biopterins↗

Impact of genetic counselling after neonatal screening for Duchenne muscular dystrophy.

In a pilot neonatal screening programme for Duchenne muscular dystrophy (DMD) conducted in the Canadian province of Manitoba, a cohort of eight affected males was identified between 1 January 1986 and 31 December 1989. Demographic information, knowledge of DMD, reproductive outcome, and attitudes to prenatal diagnosis and neonatal screening for DMD were obtained through questionnaires distributed in May 1992 to the eight sets of parents of index cases, two high probability carrier aunts, and one high probability carrier sister. Personal interviews were subsequently conducted in the summer of 1992. Although there is overall consensus among the families in favour of routine neonatal screening for DMD, five of seven subsequent pregnancies reported in six women were not monitored by prenatal diagnosis and have resulted in the birth of two affected boys. In a comparable time interval, prenatal diagnosis was acceptable to carrier females whose affected male relatives were traditionally diagnosed at four or five years. We conclude that, although molecular genetic analysis now allows for precise diagnosis of DMD, highly accurate carrier testing and prenatal diagnosis, very early DMD carrier identification, and genetic counselling after the identification of DMD males in a population based neonatal screening programme may not be an effective way of decreasing the number of repeat cases of DMD within families or the overall population frequency of DMD.

Adolescent↗

Reduced morbidity in patients with cystic fibrosis detected by neonatal screening.

The effects of neonatal diagnostic screening on cystic-fibrosis (CF) -related morbidity were evaluated by comparing hospital admissions for CF-related illness in the first 2 years of life in 40 patients detected by means of neonatal screening and 56 patients born in the 3 years before screening began. Unscreened patients without meconium ileus had a mean of 27.25 hospital days for CF-related illness, and screened patients a mean of 3.9 days. There was no trend with time towards fewer days spent in hospital: the change was sudden. The difference was significant and could not be attributed to non-comparability of groups, changes in admission policy, or changes in management. In patients with meconium ileus there was no significant difference in hospital admissions between the groups. Neonatal screening significantly reduces CF morbidity in the first 2 years of life.

Child, Preschool↗

Worldwide survey of neonatal screening for biotinidase deficiency.

Neonatal screening for biotinidase deficiency has been conducted in 14 countries since 1984. To 31 December 1990, 8,532,617 newborns were screened. One hundred and forty-two infants with biotinidase deficiency were identified; 76 infants with profound deficiency (less than 10% of mean normal serum activity) and 66 infants with partial deficiency (10-30% of mean normal activity). The estimated incidence of profound biotinidase deficiency is 1:112,271 (1:85,000 to 1:145,000; 95% confidence limits) and the incidence of partial deficiency is 1:129,282 (1:112,700 to 1:177,000). The incidence of combined profound and partial deficiency is 1:60,089 newborns (1:49,500 to 1:73,100). The estimated frequency of the allele for biotinidase deficiency is 0.004 and an estimated 1 in 123 individuals is heterozygous for the disorder.

Amidohydrolases↗

Neonatal screening for cystic fibrosis in Brittany, France: assessment of 10 years' experience and impact on prenatal diagnosis.

BACKGROUND: Neonatal screening for cystic fibrosis has been a subject of debate over the past few years. This study assesses 10 years of neonatal screening in Brittany, France, and examines its impact on prenatal screening of subsequent pregnancies in couples with an affected child. METHODS: The study included all the neonates screened for cystic fibrosis in Brittany from Jan 1, 1989, to Dec 31, 1998. The screening consisted of an immunoreactive trypsinogen assay from dried blood spots, plus, from 1993, mutation analysis. Data were collected on incidence of cystic fibrosis, and genotypic and biochemical characteristics. The use of prenatal screening of subsequent pregnancies in affected families was also investigated. FINDINGS: Of the 343,756 neonates screened, 118 children with cystic fibrosis were identified, giving an incidence of one in 2913. All mutated alleles were characterised: 34 different mutations resulting in 36 genotypes were detected. The introduction of DNA analysis into the protocol greatly reduced the recall rate and increased the sensitivity of the test. The mean cost of the screening programme was US$2.32 per screened child. 39 (34%) of the families identified by neonatal screening opted for subsequent prenatal diagnosis at least once. 12 couples would have benefited from this procedure while their first child was still symptom-free. 42 healthy children were born, and 18 pregnancies were terminated (therapeutic abortion rate of 100%). INTERPRETATION: We have shown the feasibility of neonatal screening for cystic fibrosis in Brittany. Through the detection of a large range of mutations, neonatal screening provides the opportunity for more reliable prenatal diagnosis and cascade screening. The neonatal screening programme described here could provide a good model for other countries intending to initiate such a scheme.

Cystic Fibrosis↗

Using the fluorescence spot test for neonatal screening of G6PD deficiency.

To establish the neonatal screening method of glucose-6 phosphate dehydrogenase (G6PD) deficiency, G6PD activity was measured using the fluorescence spot test (FST) using dried blood samples on filter paper. The G6PD/6PGD rate test of venous blood samples was further performed for confirmation. The positive G6PD deficiency rate was 4.2% and its detection rates were 3.7% for all neonates and 5.2% only for male newborns when FST was used for neonatal screening. Conformation rates by use of G6PD/ 6PGD ratio test for G6PD deficiency were 86.8% and 100% particularly in the severely deficient groups. Both sensitivity and specificity were very high in the severely deficient groups. FST can be used in neonatal screening of G6PD deficiency because of its high accuracy, applicability, and simplicity. Moreover, a high volume of dried blood samples on filter paper can be tested quickly. It is very favorable to diagnose and treat G6PD deficiency early in high incidence districts.

Blood Specimen Collection↗

[Neonatal screening of deafness: evoked otoacoustic emissions or acoustic distortion products?].

Transiently evoked otoacoustic emissions (TEOAE) allows an auditory screening in neonates above 30 dB and between 2 kHz to 4 kHz. Another type of otoacoustic emissions, the distortion product (DP) allows a similar screening and provides more specific frequency information over a broader frequency range, including frequencies below 2 kHz and above 4 kHz. The goal of this study was to determine 1) the interest of distortion product in comparison with TEOAE in a auditory screening program in neonates; 2) The predictive value of information extracted from otoacoustic emissions recordings, on frequential parameters of distortion product (DP). In this prospective study, TEOAE and DP were successively recorded in 20 neonates (34 ears) with risk of hearing impairment, using the ILO92 software and hardware. When TEOAs were no detectable (9/34), the DPs were no detectable neither (10/34). When TEOAs were detectable, the Dps carried more specific frequency information above 1 kHz in 52 to 80% of the patients. DP amplitudes have been quantitatively correlated with TEOA energy bands. Correlations between DP and TEOA have been objectivized for DP2.5 and DP4 with OE2, and for DP4 and DP6 with OE5. The correlation predictive value was above 85%. In conclusion, this study demonstrated that analysis of TEOA spectrums procures frequential information without requiring DP recordings.

Audiometry, Evoked Response↗

Neonatal screening for metabolic, endocrine, infectious, and genetic disorders. Current and future directions.

There are good reasons to expect that future neonatal screening will expand both to include more disorders and to cover more of the global newborn population. Disorders for which neonatal screening will be given high priority in the health care field in the future are CH and PKU. Screening for CH is likely to expand faster than screening for PKU, especially in the developing world. In the future, screening for CAH will be practiced much more widely than today. Screening for CF is likely to qualify for routine neonatal screening in the future, especially if gene therapy becomes successful. Screening for infectious diseases is an area that is also developing rapidly. Which disorders to screen for neonatally will depend on a number of factors that are unique to each society, such as the prevalence, economy, and ethics. This must be realized when international guidelines are drafted. Technical development, which is of major importance for neonatal screening, includes MS-MS, different DNA techniques, and automation. The expansion of biomedical knowledge in a wide variety of fields will establish new grounds for neonatal screening.

Chromosome Disorders↗

Clinical effectiveness and cost-effectiveness of neonatal screening for inborn errors of metabolism using tandem mass spectrometry: a systematic review.

OBJECTIVES: To evaluate the clinical and cost-effectiveness of tandem mass spectrometry (MS)-based neonatal screening for inborn errors of metabolism (IEM). DATA SOURCES: Fourteen electronic bibliographic databases covering biomedical, science, economic and grey literature, the reference lists of relevant articles and abstracts of conference proceedings and 18 health services research-related resources. REVIEW METHODS: This review is an update of two previous HTA reports of neonatal screening for IEM. These reports have been updated by a systematic review of published research (between 1995 and January 2002) on neonatal screening of inherited metabolic disorders using tandem MS. This was supplemented by a search for economic literature and the application of a modelling exercise to investigate the economics of using tandem MS within a neonatal screening programme in the UK. RESULTS: Evidence from the reviews of IEM found that the UK screening programme for phenylketonuria (PKU) was well established and there was universal agreement that neonatal screening for PKU was justified. Of the many other disorders that can be detected by tandem MS, the best candidate condition for a new screening programme was medium-chain acyl-coenzyme A dehydrogenase (MCAD) deficiency. For many other IEM that can be detected by tandem MS, robust clinical evidence was limited. Cost-effectiveness analysis using economic modelling indicated that substituting the use of tandem MS for existing technologies for the screening of PKU alone could not be justified. However, results from the economic modelling indicate that the addition of screening for MCAD deficiency as part of a neonatal screening programme for PKU using tandem MS would be economically attractive. Using an operational range of 50,000-60,000 specimens per system per year, the mean incremental cost for PKU and MCAD deficiency screening combined using tandem MS from the model was -23,312 British pounds for each cohort of 100,000 neonates screened. This cost saving is associated with a mean incremental gain of 59 life-years. Additional economic modelling using the available evidence does not support including other inherited metabolic diseases within a neonatal screening programme at present. CONCLUSIONS: The evidence appears to support the introduction of tandem MS into a UK neonatal screening programme for PKU and MCAD deficiency combined. Tandem MS has the potential for simultaneous multi-disease screening using a single analytical technique. Although the marginal cost of extending the programme to include other conditions may be relatively small, the application of this new technology to PKU and MCAD deficiency screening does not imply the wholesale inclusion of all disorders detectable by tandem MS. It is suggested that the primary focus of further research should be on the long-term effectiveness of treatment strategies on adverse outcomes (disabilities and impairments) under conventional management and the potential impact of early diagnosis using tandem MS.

Cohort Studies↗

Procedure for neonatal screening for congenital adrenal hyperplasia due to 21-hydroxylase deficiency.

The value of screening of neonates for congenital adrenal hyperplasia is not universally accepted. Procedures for screening are recommended here in order to provide a structure to the testing and ultimately bring together data that will allow the effect of screening to be judged for benefit or dismissed as no better than clinical recognition of the disease state.

Adrenal Hyperplasia, Congenital↗

[Outcome of neonatal screening for hearing loss in neonatal intensive care unit and well-born nursery infants].

A newborn hearing screening was conducted on 319 neonatal intensive care unit (NICU) and 1200 well-born nursery (WBN) infants. Mean NICU birth weight was 1997 g and mean gestational age 34 weeks. Auditory brainstem response was studied in screening in NICU infants. Otoacoustic emission (OAE) or automated auditory brainstem response (AABR) was used in primary WBN screening. All infants not bilaterally passing hearing screening before discharge were recalled for outpatient retesting. If the outcome was still failure, ABR screening was conducted. The prevalence of infants diagnosed with hearing loss was 1.1% (16 of 1519). Of these 16, 75% were from the NICU and 75% were at risk for hearing loss. Mean age at hearing loss identification was 12.9 weeks in the WBN and mean age at hearing aid fitting was 16.1 weeks. Mean age at hearing aid fitting was lower for WBN than for NICU infants. Hearing loss identification and hearing aid fitting are thus feasible in NICU and WBN infants in universal newborn hearing screening.

Female↗

Attitudes of parents of cystic fibrosis children towards neonatal screening and antenatal diagnosis.

Information on parents' attitudes towards neonatal screening for cystic fibrosis (CF) and antenatal diagnosis by chorion villus biopsy (CVS) has been derived from a detailed questionnaire administered to parents of CF babies diagnosed early following newborn screening (18 babies), and later on account of clinical criteria (11 babies). Screening was by measurement of immunoreactive trypsin (IRT) on Guthrie card blood spots, which was the basis of the Wales/West Midlands IRT Screening Survey, 1985-1989. Families questioned were from Wales. Most parents supported screening: parents of 15/18 (83%) screened babies and 10/11 (91%) unscreened babies. Following antenatal diagnosis, 15/29 (52%) of families would abort a CF foetus. Neither standard of education nor social class correlated with attitudes to screening or antenatal diagnosis, although these factors were related to the parents' knowledge of CF in general. Several families emphasised the importance of minimal delay between the initial mention of the possibility of CF on IRT testing and confirmation (or otherwise) of the diagnosis. Four mothers acknowledge temporary rejection of their babies during the period of uncertainty or following the procedures of diagnosis, emphasising that neonatal screening for CF can have a psychological impact on the parent-child bonding. Although most families supported neonatal screening for CF, this study underlines some of the difficulties which may be encountered during the procedure of screening for CF by IRT.

Abortion, Eugenic↗

Cost-effectiveness of 4 neonatal screening strategies for cystic fibrosis.

OBJECTIVES: The purpose of this work was to assess the costs of 4 neonatal screening strategies for cystic fibrosis in relation to health effects. In each strategy, the first test was the measurement of serum concentration of immunoreactive trypsin. The second step consisted of either a second immunoreactive trypsin test (strategy 1) or a multiple mutation analysis (strategy 2). In strategies 3 and 4, a third step was added to strategy 2: a second immunoreactive trypsin test (strategy 3) or an extended mutation analysis of the cystic fibrosis gene, that is, a denaturing gradient gel electrophoresis analysis (strategy 4). METHODS: We conducted an economic-modeling exercise in the Netherlands based on published data and expert opinions. Subjects were a hypothetical cohort of 200 000 neonates, the approximate number of children born annually in the Netherlands, and we assessed the costs and number of life-years gained as a result of neonatal screening for cystic fibrosis. The costs and effects of changes in reproductive decisions because of neonatal screening were also assessed. RESULTS: Immunoreactive trypsin + immunoreactive trypsin had the most favorable cost-effectiveness ratio of 24,800 euro per life-year gained. Immunoreactive trypsin + DNA + denaturing gradient gel electrophoresis achieved more health effects than immunoreactive trypsin + DNA + immunoreactive trypsin at lower cost. The incremental costs per life-year gained of the immunoreactive trypsin + DNA + denaturing gradient gel electrophoresis strategy compared with the immunoreactive trypsin + immunoreactive trypsin strategy were 130,700 euro, whereas the incremental costs of the immunoreactive trypsin + DNA strategy compared with the immunoreactive trypsin + DNA + denaturing gradient gel electrophoresis strategy were 2,154,300 euro. When changes in reproductive decisions as a result of neonatal screening are also taken into account, neonatal screening for cystic fibrosis may lead to financial savings of approximately 1.8 million euro annually, depending on the screening strategy used. CONCLUSIONS: Cystic fibrosis screening for neonates is a good economic option, and positive health effects can also be expected. Immunoreactive trypsin + immunoreactive trypsin and immunoreactive trypsin + DNA + denaturing gradient gel electrophoresis are the most cost-effective strategies.

Cost-Benefit Analysis↗

[Leipzig neonatal screening center--experiences with introduction of screening for congenital hypothyroidism].

The development of neonatal screening for congenital hypothyroidism in the GDR and particularly in Saxony after German reunification is described in this paper. The results of the studies and the experiences in respect of realisation and organisation of the screening for hypothyroidism in the screening centre of Leipzig are discussed. Measurement of TSH in the blood spot of about 65,000 newborn yielded an incidence rate of congenital hypothyroidism of 1:3,200. The onset of therapy within the first three weeks of life has been ensured until now since no children with congenital hypothyroidism were involved in cases of occasionally delayed blood sampling and/or postal delay. However, there has been some organisational disparity due to individually different handling of health insurance fund payments of screening fees for hypothyroidism in Saxony and also in the other federal states. The disadvantages of this lack of uniform regulations are explained. Neonatal screening for evidence of congenital adrenal hyperplasia by determining 17-alpha-hydroxyprogesterone, is under preparation.

Congenital Hypothyroidism↗