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Biomedical subjects

D Mullaney

Publications and source records attributed to D Mullaney.

8 recordsLinked to original sources

Thyroid function in very low birth weight infants.

OBJECTIVES: The purpose of this study was to test the hypothesis that low circulating thyroxine concentrations characteristic of very low birth weight (VLBW) neonates (< 1500 g) are the result of decreased protein binding of thyroid hormones and to elucidate the mechanism(s) responsible and possible significance thereof. DESIGN: Cross-sectional comparison of thyroid related measurements in cord blood specimens from VLBW infants and from full term infants. Longitudinal comparison in cord and 2- and 4-week blood specimens from VLBW infants. PATIENTS: Cord blood specimens were analysed from 47 VLBW and 45 full term infants weighing > or = 2500 g. Repeat analyses in venous bloods from 32 of the VLBW infants were analysed at 2 weeks of age and again at 4 weeks in 23. The first cohort of patients was studied in 1994 and comprised 28 VLBW and 24 full term infants (Cohort A). The studies were repeated in 1995-96 in 19 VLBW infants and 21 full term infants (Cohort B). MEASUREMENTS: T4, free T4 (FT4), T3, thyroxine binding globulin (TBG), and TSH were measured in cord blood and 2- and 4-week venous specimens from VLBW infants and in cord blood specimens of full term infants. Molar ratios of T4/TBG were calculated. RESULTS: (1) Cord blood TBG, T4 and T3 concentrations of VLBW infants were each 60% of those of term infants. TBG concentrations were 397 +/- 111 vs 680 +/- 172 nmol/l (P < 0.0005). T4 concentrations were 76 +/- 22 vs 139 +/- 26 nmol/l (P < 0.0005). FT4 concentrations were in the normal adult range in both neonatal groups. T4/TBG ratios did not differ between the neonatal groups but were significantly less than that of adults (P < 0.001). (2) TSH concentrations in VLBW infants at 2 and 4 weeks were less than 50% of cord blood values. At 2 weeks, TBG concentrations of VLBW infants were unchanged from cord blood concentrations but mean T4 concentration fell by 18% and T4/TBG ratios by 21% (P < 0.005). Mean FT4 rose by 78% (P < 0.02). The changes in mean T4 and FT4 were due largely to FT4 concentrations of 37-113 pmol/l and T4 concentrations of 13-48 nmol/l in 5 infants. These infants also had lower T4/TBG ratios and were smaller and more ill than the remainder of the cohort. The changes disappeared by 4 weeks in 3 of the 4 infants tested. CONCLUSIONS: Cord T4/TBG ratios are the same in very low birth weight and term infants and are significantly lower than in adult blood. These are more than compensated for in term infants by a 236% increase in thyroxine binding globulin concentrations. The lower thyroxine binding globulin concentrations in very low birth weight infants explain their much lower T4 concentrations. Cord FT4 concentrations of full term and very low birth weight infants are in the normal adult range. T4 concentrations are further depressed and free T4 concentrations elevated in the most ill very low birth weight infants at 2 weeks of age in a manner analogous to that of the 'sick euthyroid syndrome'.

Cross-Sectional Studies↗

Molecular mechanism underlying the action of a novel fusion inhibitor of influenza A virus.

In the initial stages of influenza virus infection, the hemagglutinin (HA) protein of influenza virus mediates both adsorption and penetration of the virus into the host cell. Recently, we identified and characterized BMY-27709 as an inhibitor of the H1 and H2 subtypes of influenza A virus that specifically inhibits the HA function necessary for virus-cell membrane fusion (G.-X. Luo, R. Colonno, and M. Krystal, Virology 226:66-76, 1996). Studies presented herein show that the inhibition is mediated through specific interaction with the HA protein. This binding represses the low-pH-induced conformational change of the HA protein which is a prerequisite for membrane fusion. In an attempt to define the binding pocket within the HA molecule, a number of drug-resistant viruses have been isolated and characterized. Sequence analyses of the HA gene of these drug-resistant viruses mapped amino acid changes responsible for drug resistance to a region located near the amino terminus of HA2. In addition, we have identified inactive analogs of BMY-27709 which are able to compete out the inhibitory activity of BMY-27709. This finding suggests that inhibition of the HA-mediated membrane fusion by this class of compounds is not solely the result of binding within the HA molecule but requires specific interactions.

Animals↗

Characterization of inhibition of M2 ion channel activity by BL-1743, an inhibitor of influenza A virus.

The influenza A virus M2 integral membrane protein has ion channel activity that can be inhibited by the antiviral drug amantadine. Recently, a spirene-containing compound, BL-1743 (2-[3-azaspiro (5,5)undecanol]-2-imidazoline), that inhibits influenza virus growth was identified (S. Kurtz, G. Lao, K. M. Hahnenberger, C. Brooks, O. Gecha, K. Ingalls, K.-I. Numata, and M. Krystal, Antimicrob. Agents Chemother. 39:2204-2209, 1995). We have examined the ability of BL-1743 to inhibit the M2 ion channel when expressed in oocytes of Xenopus laevis. BL-1743 inhibition is complete as far as can be measured by electrophysiological methods and is reversible, with a reverse reaction rate constant of 4.0 x 10(-3) s(-1). In contrast, amantadine inhibition is irreversible within the time frame of the experiment. However, BL-1743 inhibition and amantadine inhibition have similar properties. The majority of isolated influenza viruses resistant to BL-1743 are also amantadine resistant. In addition, all known amino acid changes which result in amantadine resistance also confer BL-1743 resistance. However, one BL-1743-resistant virus isolated, designated M2-I35T, contained the change Ile-35-->Thr. This virus is >70-fold more resistant to BL-1743 and only 10-fold more resistant to amantadine than the wild-type virus. When the ion channel activity of M2-I35T was examined in oocytes, it was found that M2-I35T is BL-1743 resistant but is reversibly inhibited by amantadine. These findings suggest that these two drugs interact differently with the M2 protein transmembrane pore region.

Amantadine↗

Evaluation of the neonatal nurse practitioner role: the next frontier.

The neonatal nurse practitioner (NNP) role at Dartmouth Hitchcock Medical Center in Lebanon, New Hampshire, has been in place since 1989. As part of the professional growth and development of this NNP group, the necessity for a useful evaluation instrument emerged. This instrument needed to be congruent with the job description, practice philosophy, and strong commitment to peer review. The literature search and institutional survey failed to uncover an acceptable option, so an evaluation instrument was developed, tested, and refined. This instrument captures the diverse scope of NNP practice and incorporates a continuum of novice to expert competencies based on the work of Patricia Benner. This evaluation mechanism has had a profound effect on our group, encouraging the development of a shared vision of the NNP role and stimulating professional growth.

Clinical Competence↗

Practice model: development of a nurse-managed unit and the advanced practitioner role.

Health care reform has provided opportunities for the creation of nurse-managed centers and the expansion of an autonomous nursing role. This article describes a program established by Massachusetts General Hospital for cardiac patients that has reduced delays in transfer and improved access to the hospital from referral centers. The program merges a strong primary nursing staff with a new advanced practice nursing role to create an alternative to the traditional model of inpatient care.

Heart Diseases↗

Secretion of apolipoprotein B-containing lipoproteins from HeLa cells is dependent on expression of the microsomal triglyceride transfer protein and is regulated by lipid availability.

To elucidate the role of the microsomal triglyceride transfer protein (MTP) in lipoprotein assembly, MTP and apolipoprotein B-53 (apoB 53; the N-terminal 53% of apoB) were expressed in HeLa cells. The results showed that apoB-53 could be expressed in HeLa cells with or without expression of MTP. In contrast, efficient secretion of apoB-53 required expression of MTP. Ultracentrifugal density flotation analysis showed that apoB-53 was secreted predominantly as a particle with the density of high density lipoprotein. An essentially identical apoB-53 particle density distribution was obtained after transient expression of apoB-53 in McArdle RH-7777 rat hepatoma cells. The mass of apoB-53 secreted was greater, and the flotation density was lower, from cells fed lipid, suggesting that apoB secretion in HeLa cells was regulated by lipid availability, similar to what has been described for lipoprotein-producing cell lines. These results indicate that MTP is necessary and sufficient to direct the regulated secretion of apoB-53 in HeLa cells.

Animals↗