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Biomedical subjects

J D Erickson

Publications and source records attributed to J D Erickson.

At least 91 records · Page 5Linked to original sources

Can maternal risk factors influence the presence of major birth defects in infants with Down syndrome?

Although the manifestations of Down syndrome (DS) are well known, certain major birth defects such as duodenal atresia and endocardial cushion defects are present in some infants but not others, suggesting the possible role of other genetic or environmental factors interacting with the trisomy genotype. To explore the possible role of maternal factors in the presence of major defects among DS infants, we examined data from an epidemiologic study of DS conducted in metropolitan Atlanta. Of 219 DS infants born between 1968 and 1980, 50 had recorded cardiac defects, 9 had selected gastrointestinal atresias and 4 had oral clefts. We evaluated the association of these defects with several maternal factors including age, race, first trimester cigarette smoking, alcohol use, and fever. We found that different maternal factors were associated with several defects: (1) mother's race with cardiac defects (40% in blacks vs. 17% in whites, P less than 0.01), (2) mother's age with oral clefts (6% for less than 25 years, 1% for 25-34, and 0% for greater than 34, P less than 0.05), and (3) maternal first trimester fever with gastrointestinal defects (15% in infants with history of fever and 3% in infants without a history of fever, P less than 0.01). We also observed an inverse relationship between maternal alcohol use and the presence of ventricular septal defect. These findings suggest that maternal risk factors may influence the clinical manifestations of DS. In addition to searching for a genetic basis for the DS phenotype, we suggest that the role of environmental factors and maternal exposures be specifically explored in clarifying the genesis of various birth defects in Down syndrome.

Alcohol Drinking↗

Birth prevalence study of the Apert syndrome.

Estimates of the Apert syndrome birth prevalence and the mutation rate are reported for Washington State, Nebraska, Denmark, Italy, Spain, Atlanta, and Northern California. Data were pooled to increase the number of Apert births (n = 57) and produce a more stable birth prevalence estimate. Birth prevalence of the Apert syndrome was calculated to be approximately 15.5/1,000,000 births, which is twice the rate determined in earlier studies. The major reason appears to be incomplete ascertainment in the earlier studies. The similarity of the point estimates and the narrow bounds of the confidence limits in the present study suggest that the birth prevalence of the Apert syndrome over different populations is fairly uniform. The mutation rate was calculated to be 7.8 x 10(-6) per gene per generation. Apert syndrome accounts for about 4.5% of all cases of craniosynostosis. The mortality rate appears to be increased compared to that experienced in the general population; however, further study of the problem is necessary.

Acrocephalosyndactylia↗

The changing epidemiology of neural tube defects. United States, 1968-1989.

OBJECTIVE: To describe the recent trends and epidemiologic characteristics of neural tube defects in the United States. RESEARCH DESIGN: Ongoing surveillance data. SETTING: Two birth defect surveillance systems: the nationwide Birth Defects Monitoring Program and the Metropolitan Atlanta (Ga) Congenital Defects Program for 1970 through 1989 and 1968 through 1989, respectively. PARTICIPANTS: Between 1970 and 1989, using discharge diagnoses of approximately 1 million live-born and stillborn infants per year, the Birth Defects Monitoring Program identified 15,503 cases of spina bifida and anencephaly. Between 1968 and 1989, using discharge diagnoses and clinical records until age 1 year of 38,000 infants per year, the Metropolitan Atlanta Congenital Defects Program identified 800 cases of spina bifida and anencephaly. INTERVENTIONS: None. MEASUREMENTS/MAIN RESULTS: Nationwide, neural tube defect rates have declined from 1.3 per 1000 births in 1970 to 0.6 per 1000 births in 1989. In Atlanta, neural tube defect rates have declined from 2.0 per 1000 births in 1968 to 0.6 per 1000 births in 1989. Several changes in the epidemiologic characteristics of neural tube defects were observed: (1) the proportion of spina bifida cases has increased; (2) the proportion of neural tube defect cases compared with the proportion of other unrelated defects has increased; (3) the race ratio of whites to other races for isolated neural tube defect cases has declined in Atlanta; and (4) the rate of isolated neural tube defects in females has also decreased. CONCLUSIONS: The declining rates of neural tube defects can be partially explained by increased widespread prenatal diagnostic techniques, strongly suggesting the role of environmental factors in neural tube defects. In particular, the use of multivitamins and folic acid to prevent the occurrence of neural tube defects needs further evaluation. Nevertheless, the changing clinical and epidemiologic characteristics of cases over time points to the etiologic heterogeneity of these conditions.

Anencephaly↗

Interpretation of recurring weak associations obtained from epidemiologic studies of suspected human teratogens.

Epidemiological studies of suspected human teratogens not infrequently lead to recurring weak or moderate associations (relative risks or odds ratios ranging from greater than 1 to 3 for adverse effects and from 1/3 to less than 1 for protective effects) between specific defects and prenatal exposures. Examples of such associations include cigarette smoking and oral clefts (odds ratios between 1 and 2) and periconceptional multivitamin/folic acid supplementation and neural tube defects (odds ratios from 1/3 to 1). In this paper, we illustrate that low relative risk recurring in well-designed studies may reflect underlying biologic mechanisms and should not be readily dismissed. Low relative risks could be the result of a combination of the following factors: 1) unmeasured confounding, 2) exposure misclassification (often related to the inability to pinpoint relevant dose and timing), 3) outcome misclassification (related to the etiologic heterogeneity of birth defects), 4) biologic interactions (related to teratogenic effects in population subgroups defined by genetic susceptibility or the presence of other exposures), and 5) differential prenatal survival (related to the combined impact of the exposure and the defect on prenatal survival). These issues can be addressed in epidemiologic studies by using biological markers of exposure and susceptibility, dysmorphologic evaluation of affected infants, subgroup analysis for etiologic heterogeneity, a search for biologic interactions, and the use of prospective cohort studies. Finally, low relative risks in the face of common exposures can reflect an important public health contribution of the exposure to the occurrence of the defect in the population.

Abnormalities, Drug-Induced↗

Sites of synthesis of chromogranins A and B in the human brain.

The sites of synthesis of the chromogranins A and B, and their potential processed peptides, were examined by quantitating the levels of chromogranin A and B mRNA in various regions of the human brain by Northern blot analysis. Chromogranin A and B mRNA expression in the brain is region-specific and confined to grey matter. In situ hybridization histochemistry detected chromogranin A and B mRNA in pyramidal neurons of human cerebral cortex. Cell-specific expression in subpopulations of cerebrocortical neurons suggest that chromogranin A and B gene products may play a role in central neuronal function.

Brain↗

Risk factors for birth defects: data from the Atlanta Birth Defects Case-Control Study.

The Atlanta Birth Defects Case-Control Study data comprises information obtained from interviews with parents of 4,900 babies born with major birth defects and with the parents of 3,000 babies born without defects. The source of cases is the Centers for Disease Control's Metropolitan Atlanta Congenital Defects program; the case-control study is population-based. Birth defects are classified into 92 groups and cross-tabulated by 105 exposure/risk factor variables; data from selected cross-tabulations are presented. The associations of each of the 105 exposure variables with all types of defects combined are presented, as are the associations of each of the 92 defect groups with the specific exposure variable, maternal diabetes. These data can be used to evaluate hypotheses arising from other sources, and for the purpose of "generating" hypotheses. The data describing all 92 x 105 cross-tabulations are available to other investigators on floppy disk; write to Chief, Birth Defects and Genetic Diseases Branch, Centers for Disease Control, Atlanta, Georgia 30333.

Analysis of Variance↗

Patterns and trends of multiple congenital anomalies in birth defects surveillance systems.

Infants with multiple congenital anomalies (MCA) can provide important clues in the detection of teratogenic agents. Definition, classification, and ascertainment of MCA vary, however. We present comparative epidemiologic data on MCA from two U.S. surveillance systems: the Metropolitan Atlanta Congenital Defects Program, which ascertains major birth defects during the first year of life, and the Birth Defects Monitoring Program, a nationwide system that relies on newborn hospital-discharge diagnoses. This system has two components: the Commission on Public Hospitals Activities (CPHA) and the McDonnell Douglas Health Information System (MDHIS). Our analyses were based on over 600,000 births occurring in Atlanta, and over 5 million births occurring nationwide. Infants were classified as having MCA if they had two or more major defects from different categories (central nervous system, eye, orofacial, gastrointestinal, cardiovascular, genitourinary, and musculoskeletal). Additional analyses were also done on infants with three or more defects. Compared with the nationwide system, Atlanta showed 1) a much higher rate of MCA (16.2 per 10,000 births vs. 4.9 and 3.8 per 10,000 births in CPHA and MDHIS, respectively) and 2) a higher rate of MCA with chromosomal syndromes (2.0 per 10,000 births vs. 0.6 and 0.3 per 10,000 births in CPHA and MDHIS, respectively). Moreover, in Atlanta, the proportion of MCA with recorded chromosomal syndromes increased substantially during 20 years. These data point to differences in the ascertainment of MCAs in birth defects surveillance systems. More effort is needed to improve the ascertainment and comparability of MCA in surveillance systems, an important step toward better detection of human teratogens.

Abnormalities, Drug-Induced↗

Regional distribution and partial molecular characterization of CD4-related mRNA in human brain and peripheral tissues.

We purified human poly(A)+ RNA from 11 individuals to assess the regional distribution of CD4 and CD4-related mRNA transcripts in human brain and in peripheral tissues by Northern blot hybridization. A 3.0 kb CD4 mRNA transcript was expressed in all brain areas and several peripheral tissues examined. A second CD4-related 1.8 kb mRNA species showed an uneven distribution in the brain with cortical regions possessing highest levels and basal ganglia, thalamus, cerebellum and spinal cord containing relatively lower amounts. Messenger RNA transcripts for CD8, a T cell specific marker, were not detectable in human brain by Northern analysis, yet were as abundant as CD4 in spleen. The expression of the 1.8 kb mRNA was tissue specific as it was not observed in peripheral tissues such as spleen, adrenal, colon, or lung, nor was it found in the choroid plexus, dorsal root ganglion and human neuronal (SY5Y) or astroglial (N132N1) cell lines. Blot hybridization and S1 nuclease protection analysis of poly(A)+ RNA with selective probes derived from CD4 indicated that the 1.8 kb mRNA transcript is truncated, lacking the extracellular protein coding region of CD4, and may in fact be a unique transcript from the CD4 gene locus rather than an alternatively spliced or processed CD4 mRNA.

Adult↗

Differential responsiveness of the pituitary-thyroid axis to thyrotropin-releasing hormone in mouse lines selected to differ in central nervous system sensitivity to ethanol.

Long-sleep (LS) and short-sleep (SS) mice are genetic lines that differ in central nervous system sensitivity to ethanol. The possible role of TRH in mediating the difference in the thyroid status between these two lines was investigated. An increase in TRH gene expression in the paraventricular nucleus and TRH peptide levels in the hypothalamus between postnatal days 8-14 in both SS and LS mice coincided with increased circulating levels of thyroxine during this critical period of central nervous system development. No significant differences in TRH biosynthesis were observed between LS and SS mice during this time. Exogenous administration of TRH to LS and SS mice on day 8, when endogenous serum thyroxine levels were equivalent, resulted in a greater increase in serum thyroxine in SS mice (150%) than LS mice (51%). The differential response to the TRH stimulation test was also present on day 14 (SS, 43%; LS, 18%). The differential responsiveness of the pituitary-thyroid axis to exogenous TRH paralleled the differential increase in endogenous serum thyroxine observed between day 8 and 14 in these mice. Administration of TRH to day 20 and adult (60 days) LS and SS mice resulted in nearly equivalent (approximately 75%) increases in free thyroxine serum levels, yet the magnitude of thyroxine release was 50% greater in SS mice, due perhaps to between-line differences within the thyroid glands. It is unlikely that dissimilar endogenous levels of TRH account for the intrinsic difference in the thyroid status in LS and SS mice. Instead, the increased pituitary-thyroid responsiveness to TRH in SS mice during the second postnatal week may translate into increased functional capacity of the thyroid gland in adult SS relative to LS mice.

Animals↗

Chloride ion increases [3H]dopamine accumulation by synaptic vesicles purified from rat striatum: inhibition by thiocyanate ion.

The effect of chloride ion on the transport of [3H]dopamine into synaptic vesicles purified from rat striatum has been evaluated. The inclusion of 10 mM chloride ion in the incubation medium produced a 100% increase in temperature-sensitive [3H]dopamine uptake into synaptic vesicles from approximately 1800 pmol/mg to 3600 pmol/mg of protein. Half-maximal effects were observed with chloride ion at 4 mM concentration. The anion selectivity of stimulation supports the presence of anion channels within the membranes of dopaminergic storage organelles. Low concentrations of thiocyanate ion (less than 10 mM), 4-acetamido-4'-isothiocyano-2-2'-disulfonic acid stilbene (100 microM), and duramycin (5 micrograms/ml) selectively blocked the chloride ion stimulated accumulation of [3H]dopamine. Higher concentrations of these agents are required to significantly reduce [3H]dopamine uptake in the absence of chloride ion. These results suggest that both components of the proton electrochemical gradient (delta psi and delta pH) are important for dopamine uptake by brain vesicles. This article presents the first demonstration that chloride ion plays a role in the transport of dopamine into vesicles isolated from the CNS.

Animals↗

On the measurement and interpretation of birth defect associations in epidemiologic studies.

The extent of clustering of 2 or more defects in the same infant can be expressed as the ratio of the observed number of infants with the defects (O) over the expected number of such infants (E). The expected is usually derived from the product of population rates of individual defects. Because large O/E ratios are obtained for many defect combinations, it has been suggested that clustering of defects is generalized and nonspecific. To control for the tendency of nonspecific clustering of defects, an alternative method is to perform the same calculations among multimalformed infants only. A main limitation of this method is that it adjusts for the clustering tendency of all defects rather than the ones of interest, often resulting in spuriously low O/E ratios. We present a new method to adjust for the tendency for nonspecific clustering between defects that overcomes this limitation. With this method, adjusted O/E ratios are inversely related to the proportion of infants who are multimalformed and have one or more of the defects being examined. Using data from the Metropolitan Atlanta Congenital Defects Program, we apply this method to the previously described associations among VACTERL defects and midline or "schisis" defects. We show that adjusted O/E ratios obtained are greater than those obtained by using multimalformed infants. For midline defects, many of the adjusted ratios were close to one, indicating nonspecific clustering of these defects. Finally, using the example of isotretinoin embryopathy, we show that O/E ratios depend highly on the frequency of exposure in the population, and thus, they should be interpreted with caution.

Abnormalities, Drug-Induced↗

Sensitivity, specificity, and positive predictive value of multiple malformations in isotretinoin embryopathy surveillance.

Isotretinoin causes serious birth defects in about 25% of babies exposed in the first trimester of pregnancy. Despite warnings about the drug's teratogenicity, cases of isotretinoin embryopathy continue to occur; more than 80 such cases have been reported since 1982. The true magnitude of the problem is unknown, however, and case estimates range to more than 1,000. The need for isotretinoin embryopathy (IE) surveillance is therefore great. Sixty-one known cases were evaluated to determine the sensitivity (proportion of cases with a given defect pattern) of various defect combinations. Using data from the Metropolitan Atlanta Congenital Defects Program for the period before isotretinoin was available, we evaluated the specificity (proportion of malformed infants without exposure who do not have the pattern of defects) for the various defect combinations. Ear malformations (microtia, anotia, absence or stricture of auditory canal, missing pinnae) have an associated sensitivity of 70.5% and a specificity of 99.5%. Ear defects combined with central nervous system (CNS) defects (microcephalus, hydrocephalus, reduction deformities of the brain) and cardiovascular (CVS) defects (conotruncal defects, aortic arch abnormalities) have an associated sensitivity of 19.7% and a specificity of 100.0%. The case definition of ear defects combined with either CNS or CVS defects maximizes both specificity (99.9%) and sensitivity (45.9%). The investigators are now evaluating the feasibility of using this pattern of defects to monitor for IE within a national monitoring program.

Central Nervous System↗

Diabetes mellitus during pregnancy and the risks for specific birth defects: a population-based case-control study.

Although the excess risk for birth defects among children of mothers with diabetes mellitus is well documented, there are few data concerning the risk for specific malformations. In the Atlanta Birth Defects Case-Control Study, those risks for malformations were evaluated. The population-based study included 4929 live and stillborn babies with major malformations ascertained by the Metropolitan Atlanta Congenital Defects Program in the first year of life born to residents of Metropolitan Atlanta between 1968 and 1980. The study also included 3029 nonmalformed live babies who were frequency-matched to case babies by race, period of birth, and hospital of birth. The relative risk for major malformations among infants of mothers with insulin-dependent diabetes mellitus (n = 28) was 7.9 (95% confidence interval [CI]1.9, 33.5) compared with infants of nondiabetic mothers. The relative risks for major central nervous system and cardiovascular system defects were 15.5 (95% CI = 3.3, 73.8) and 18.0 (95% CI = 3.9, 82.5), respectively. The absolute risks for major, central nervous system, and cardiovascular system malformations among infants of diabetic mothers were 18.4, 5.3, and 8.5 per 100 live births, respectively. Infants of mothers with gestational diabetes mellitus who required insulin during the third trimester of pregnancy were 20.6 (95% CI = 2.5, 168.5) times more likely to have major cardiovascular system defects than infants of nondiabetic mothers. The absolute risk for infants of this group of diabetic mothers was 9.7%. No statistically significant differences were found among infants of mothers with gestational diabetes mellitus who did not require insulin during pregnancy.(ABSTRACT TRUNCATED AT 250 WORDS)

Case-Control Studies↗

Human teratogens, prenatal mortality, and selection bias.

Etiologic inferences on human teratogens are usually derived from case-control studies conducted either at birth or in spontaneous abortion series. Because both teratogens and defects may be associated with an increased risk of prenatal mortality, the possibility exists that selection bias may affect etiologic inferences. The authors derive relations between the true odds ratio (OR) relating a teratogen and a defect at the time of the occurrence of the defect and the apparent odds ratios observed in spontaneous abortion series and at birth, as functions of prenatal mortality. Depending on the pattern of interaction between the teratogen and the defect in affecting the rate of prenatal mortality, selection bias may lead to overestimation or underestimation of the true odds ratio. With increasing multiplicative effects on prenatal mortality, changes in selection bias tend to increase the observed odds ratio in spontaneous abortion series but to decrease the observed odds ratio at birth. For a range of rates of prenatal mortality, weak associations between exposures and defects (OR = 0.3-3) may well be due to selection bias; conversely, weak teratogens (OR less than 3) may be missed in case-control studies of defects conducted at birth. Selection bias due to prenatal mortality must be considered in the interpretation of etiologic studies of birth defects.

Abortion, Spontaneous↗

Clinical-epidemiologic assessment of pattern of birth defects associated with human teratogens: application to diabetic embryopathy.

The concepts of sensitivity, specificity, and predictive value can be used to assess patterns of birth defects associated with human teratogens. Although sensitivity of any single defect is generally low for many known teratogens, the presence of specific defect combinations is usually predictive of the teratogen. To evaluate the patterns of birth defects associated with diabetic embryopathy, a sensitivity-specificity analysis was performed on 4929 infants with major defects ascertained by the population-based Metropolitan Atlanta Congenital Defects Program between 1968 and 1980. By reviewing hospital records, maternal insulin-dependent diabetes mellitus was confirmed in 26 infants. Patterns of defects were evaluated among infants born to mothers with insulin-dependent diabetes mellitus and compared with the rest of the Metropolitan Atlanta Congenital Defects Program case population. Multiple logistic regression analysis was used to assess defect combinations that predict for insulin-dependent diabetes mellitus. Of 26 infants, 8 had multiple defects. However, most defects and their combinations were poorly sensitive and predictive for insulin-dependent diabetes mellitus. The predictive value for insulin-dependent diabetes mellitus was greatest for the combination of vertebral and cardiovascular anomalies (6.5%). Also, several pathogenetic mechanisms were noted among patients with insulin-dependent diabetes mellitus, such as cell migration defects, cell death events, deformations, and cardiac flow lesions. The inability to find a clear-cut phenotype for diabetic embryopathy may be due to several etiologic factors and mechanisms associated with diabetic embryopathy.

Abnormalities, Drug-Induced↗

Periconceptional use of multivitamins and the occurrence of neural tube defects.

We studied the association between multivitamin use during the periconceptional period and the occurrence of neural tube defects using data from the Atlanta Birth Defects Case-Control Study. There were 347 babies with neural tube defects who were live born or stillborn to residents of metropolitan Atlanta from 1968 through 1980. The 2829 control-babies born without birth defects were randomly selected through birth certificates. Periconceptional multivitamin use was defined as reported use for each of the three months before conception through the first three months of pregnancy. Mothers who reported not using multivitamins any time during the six-month period were defined as nonusers. Fourteen percent of mothers reported periconceptional multivitamin use and 40% reported nonuse. Multivitamin users were different from nonusers in a number of demographic, health-related, and life-style characteristics. We found an overall apparent protective effect of periconceptional multivitamin use on the occurrence of neural tube defects, with a crude estimated relative risk of 0.40 (95% confidence interval, 0.25 to 0.63). At this time, it is not possible to determine whether this apparently lower risk is the direct result of multivitamin use or the result of other characteristics of women who use multivitamins.

Adult↗

Congenital malformations and intrauterine growth retardation: a population study.

The relationship between congenital malformations and intrauterine growth retardation was investigated using data from the population-based Metropolitan Atlanta Congenital Defects Program. Between 1970 and 1984, the system ascertained 13,074 infants with major structural malformations diagnosed in the first year of life and born to metropolitan Atlanta residents. These infants were classified as having intrauterine growth retardation if their birth weight was below the race-, sex-, and gestational age-specific tenth percentile limits for all Atlanta births. Overall, the frequency of intrauterine growth retardation among malformed infants was 22.3% (relative risk 2.6). Of 48 defect categories evaluated, 46 were associated with excess intrauterine growth retardation, most notably chromosomal anomalies (eg, 83.7% for infants with trisomy 18, relative risk 46) and anencephaly (73.3%, relative risk 25). Only a few isolated defects (such as isolated polydactyly, pyloric stenosis, and congenital hip dislocation) were not associated with excess intrauterine growth retardation. Among infants with multiple malformations, the frequency of intrauterine growth retardation increased markedly with increasing number of defects--from 20% for infants with two defects to 60% for infants with nine or more defects. The relationship between malformations and intrauterine growth retardation can be explained by one or more of three mechanisms: (1) intrauterine growth retardation can be a secondary disturbance to the presence of malformations; (2) intrauterine growth retardation can predispose the fetus to malformations; and (3) intrauterine growth retardation can coexist with malformations because of common etiologic factors.(ABSTRACT TRUNCATED AT 250 WORDS)

Anencephaly↗