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Biomedical subjects

M Hughes

Publications and source records attributed to M Hughes.

At least 163 records · Page 9Linked to original sources

Chromosomal abnormalities in fetuses with omphalocele. Significance of omphalocele contents.

Twenty-six consecutive fetuses with a sonographically detectable omphalocele and known karyotype were reviewed to identify risk factors that might be associated with chromosomal abnormalities. Risk factors that were analyzed included contents of the omphalocele sac, maternal age, fetal sex, sonographically detectable concurrent anomalies, and any major concurrent anomaly. Chromosomal abnormalities were found in 10 cases (38%) from trisomy 18 (n = 4), trisomy 13 (n = 4), trisomy 21 (n = 1), or 45, X (n = 1). The absence of liver from the omphalocele sac (intracorporeal liver) was strongly associated with an abnormal karyotype; chromosomal abnormalities were present in all 8 fetuses with an intracorporeal liver compared to 2 of 18 fetuses with an extracorporeal liver (p less than .0001, two-tailed Fisher exact test). Other risk factors that were statistically associated with chromosomal abnormalities included advanced maternal age (greater than or equal to 33 years, p = .03) and sonographically detectable concurrent malformations (p = .05). We conclude that sonographic findings can help determine the relative risk of chromosomal abnormalities in fetuses with omphalocele; abnormal karyotypes were significantly associated with the absence of liver from the omphalocele sac and sonographically detectable concurrent malformations in this series. Sonographers should also be aware that omphaloceles that contain bowel alone tend to be small and can be missed or mistaken for other abdominal wall defects (gastroschisis or umbilical hernia).

Adolescent↗

Cloning and expression of full-length cDNA encoding human vitamin D receptor.

Complementary DNA clones encoding the human vitamin D receptor have been isolated from human intestine and T47D cell cDNA libraries. The nucleotide sequence of the 4605-base pair (bp) cDNA includes a noncoding leader sequence of 115 bp, a 1281-bp open reading frame, and 3209 bp of 3' noncoding sequence. Two polyadenylylation signals, AATAAA, are present 25 and 70 bp upstream of the poly(A) tail, respectively. RNA blot hybridization indicates a single mRNA species of approximately equal to 4600 bp. Transfection of the cloned sequences into COS-1 cells results in the production of a single receptor species indistinguishable from the native receptor. Sequence comparisons demonstrate that the vitamin D receptor belongs to the steroid-receptor gene family and is closest in size and sequence to another member of this family, the thyroid hormone receptor.

Amino Acid Sequence↗

A human 200-kDa protein binds selectively to DNA fragments containing G.T mismatches.

G.T mispairs, the sole mismatch type that can arise in "resting" mammalian DNA (through spontaneous hydrolytic deamination of 5-methylcytosine), are corrected in vivo with high efficiency and mostly to a G.C. We identified a protein factor, present in HeLa cell extracts, that binds selectively to DNA substrates containing this mismatch. The partially purified protein was shown by gel-filtration chromatography and UV cross-linking experiments to have an apparent molecular mass of 200 kDa. Its binding to G.T mispairs was not influenced by sequences flanking the mismatch, but methylation of guanines either within the mismatch itself or in its immediate vicinity abolished the formation of the protein-DNA complex. The protein appears to lack both endo- and exonuclease activities and requires neither magnesium nor zinc nor ATP for binding. We discuss the possible role of this protein in a repair pathway, which helps mammalian cells counter the mutagenic effect of the hydrolytic deamination of 5-methylcytosine.

Base Composition↗

Cell killing by various monofunctional alkylating agents in Chinese hamster ovary cells.

Cell killing by N-methyl-N'-nitro-N-nitrosoguanidine (MNNG), N-methyl-N-nitrosourea (MNU), N-ethyl-N-nitrosourea (ENU), and methyl methanesulfonate (MMS) was measured in Chinese hamster ovary (CHO) cells using the colony-formation assay. Cell killing by these agents was determined in exponentially growing asynchronous cells, in synchronous cells as a function of cell-cycle position and in nondividing cells. Distinct differences in the cytotoxic effect of the 4 alkylating agents were found in respect to dose-response, cell cycle phase-sensitivity and growth state. MNNG and MNU showed the same biphasic dose-survival relationship in exponentially growing cells, with an initial steep decline followed by a shallow component. The shallow component disappeared in growth-arrested cells. MNNG and MNU differed, however, in the cell-cycle age response. No cell-cycle phase difference was seen with MNNG, whereas cells in G1 seemed more sensitive to MNU than cells in S phase. MMS and ENU both showed shouldered dose-response curves for exponentially growing asynchronous cells, and the same cell-cycle pattern for synchronous cultures with cells in early S phase being the most sensitive. However, survival of nondividing cells versus dividing cells was reduced much more by MMS than by ENU. Caffeine, which interferes with the regulation of DNA synthesis and is known to modify cell killing by DNA-damaging agents, enhanced cell killing by all agents. It is concluded that there must be a number of factors which contribute to cell killing by monofunctional alkylating agents, and that besides alkylation of DNA reaction with other cellular macromolecules should be considered.

Alkylating Agents↗

Characterization of a CHO variant in respect to alkylating agent-induced biological effects and DNA repair.

From the Chinese hamster ovary line CHO-9 a resistant variant, Cl 3, was isolated after treatment with N-methyl-N'-nitro-N-nitrosoguanidine (MNNG). Cl 3 cells were much more resistant to the cytotoxic effects of MNNG (D10 of 1.8 microgram/ml MNNG as compared to 0.23 microgram/ml for parental line) and other methylating N-nitroso compounds, but they had the same sensitivity to various other alkylating agents. MNNG was equally effective in sensitive parent line and resistant variant in inducing sister-chromatid exchanges (SCEs) and mutations to 6-thioguanine resistance. The increased resistance of Cl 3 was not due to reduced cellular uptake of MNNG, to a more efficient repair of methylated purine bases, or to differences in MNNG-induced inhibition of DNA synthesis. It is concluded that the resistant variant has some unknown tolerance mechanism which alters the cytotoxic, but not the SCE- and mutation-inducing effects of methylating N-nitroso compounds.

Alkylating Agents↗

High-dose carbonyl iron for iron deficiency anemia: a randomized double-blind trial.

To determine if high doses of oral iron could shorten the duration of therapy necessary to treat Fe deficiency anemia, high-dose Fe 600 mg three times per day (given as nontoxic carbonyl Fe) was compared with standard ferrous sulfate 60 mg Fe++ three times per day in a randomized, double-blind, 3-wk trial involving 36 female blood donors with mild Fe deficiency anemia. In animal studies, both forms of Fe have similar bioavailability when administered in equal amounts. High-dose carbonyl Fe was well tolerated with gastrointestinal side effects similar those observed with standard FeSO4 therapy. The 10-fold larger amount of Fe resulted in a mean 1.5-fold increase in estimated Fe absorption. Both regimens corrected anemia but neither replenished storage Fe. These results suggest that the principal advantage to the use of carbonyl Fe would derive from its safety rather than from the large doses that can be given.

Adolescent↗

The bone marrow in human cerebral malaria: parasite sequestration within sinusoids.

Bone marrow aspirates from patients with cerebral malaria were studied with the light and electron microscopes. Various abnormalities were found including: (1) an increase in plasma cells and macrophages, sometimes to a marked degree; (2) phagocytosis of parasitized red cells by macrophages and of merozoites by neutrophil metamyelocytes, neutrophil granulocytes and macrophages; (3) an increase in the proportion of eosinophil granulocytes and their precursors; (4) the presence of giant metamyelocytes; and (5) morphological abnormalities of erythroblasts, particularly irregularly-shaped nuclei and karyorrhexis. A high percentage of the red cells within marrow sinusoids were parasitized and the parasitized cells were attached to the endothelium. Some marrow sinusoids were packed with and completely obstructed by parasitized cells. Strands of electron-dense material were sometimes found connecting the knobs of parasitized red cells to endothelial cells or to the knobs of adjacent parasitized red cells. A striking finding was a complex interdigitation between cytoplasmic processes developed by some of the parasitized red cells and those developed by the endothelial cells to which they were attached. Occasionally, cytoplasmic processes arising from marginated parasitized red cells completely penetrated the endothelial cell and emerged extravascularly. Several parasitized red cells were also found extravascularly between haemopoietic cells. Sequestration of parasitized red cells within small blood vessels may play a part in the pathogenesis not only of the encephalopathy of cerebral malaria but also of the bone marrow dysfunction in severe malaria.

Adolescent↗

Affinity purification of tetanus toxin using polyclonal and monoclonal antibody immunoadsorbents.

Tetanus toxin has been immunopurified on immunoadsorbent columns derived from equine polyclonal antitoxin coupled to cyanogen bromide-activated Sepharose CL4B. Desorption of bound toxin in active form was achieved only when the immunoadsorbent was mixed with Sephadex G15 and this mixture overlaid on a further volume of Sephadex G15. With equine antibody, 64% of adsorbed toxin was recovered with a specific activity of 2400 limiting flocculation units (Lf)/mg protein N (1.2 X 10(8) minimum lethal doses (MLD)/mg protein N). Similarly prepared immunoadsorbent derived from murine monoclonal antitoxin of low affinity had improved desorption with less acidic desorbents, without the requirement for Sephadex G15; greater than 80% of adsorbed toxin was recovered with a specific activity of 3000 Lf/mg protein N (1.6 X 10(8) MLD/mg protein N).

Animals↗

Somatostatin's ability to inhibit gastric acid is not prostaglandin-mediated in the dog.

The role of prostaglandins in the effect of somatostatin to inhibit cholinergically stimulated gastric acid output was examined in gastric fistula dogs. Methacholine stimulation of gastric acid output to a maximum of 810 +/- 423 mu eq of [H+] per 15 min was inhibited by 10 nM somatostatin to the same extent either in the presence and/or the absence of indomethacin. In contrast, histamine-induced acid secretion was stimulated weakly by 10 nM somatostatin. Our data do not support a role for prostaglandins in somatostatin's action to inhibit cholinergically stimulated acid secretion.

Animals↗

Uptake pathways for amino acids in mouse intestine.

This paper characterizes amino acid (AA) uptake pathways in an everted-sleeve preparation of mouse jejunum. AA uptake is linear with time for 2-4 min, depending on the particular AA and its uptake rate. Escape of tracer to the serosal surface is still negligible at these times. Errors due to metabolism of labeled AAs to volatile products can be minimized by using 14C- rather than 3H-labeled AAs and by not drying tissues before counting. The dependence of AA uptake on concentration shows saturable kinetics, with apparent Km values in the range 1-4 mM. By 25 or 50 mM an uptake plateau is reached for leucine, lysine, methionine, and methylaminoisobutyric acid but not for aspartic acid, histidine, or proline. Proline kinetics are the result of a saturable Na+-dependent component, a linear diffusional component, and possibly a small saturable Na+-independent component. The Na+-dependent component of uptake for six AAs averages 83% of the total at 0.01 mM and 54% at 25 or 50 mM. Leucine and D-glucose exhibit modest (32%) cross-inhibition of Na+-dependent uptake. For the same six AAs we determined the percent inhibition of both the Na+-dependent and the Na+-independent components by the other AAs. These results suggest the presence of at least five or six AA uptake pathways in mouse jejunum: distinct Na+-dependent pathways for acidic, basic, and neutral AAs and for imino acids; a shared Na+-independent pathway for basic and neutral AAs; and possibly a Na+-independent pathway for acidic AAs. Comparisons of AA uptake pathways in mouse, rabbit, and rat intestine reveal many similarities but also some differences.

Amino Acids↗

Hemodynamic effects of platelet activating factor in the dog kidney in vivo.

The effect of platelet activating factor (PAF) on renal hemodynamics and function was examined in anesthetized dogs. The infusion of PAF into the renal artery at 5, 10, and 20 ng X min-1 X kg-1 body weight resulted in dose-dependent reductions in renal blood flow, glomerular filtration rate, urine volume, and urinary sodium excretion, whereas the infusion of vehicle alone in the contralateral kidney did not result in significant changes in these parameters. The maximum decrease expressed as the percent change from baseline was 22.2 +/- 1.7% for renal blood flow, 50.8 +/- 11% for glomerular filtration rate, 67.3 +/- 4.2% for urine volume, and 69.0 +/- 8.5% for urinary sodium excretion, respectively. These renal effects were not accompanied by significant alterations in systemic arterial blood pressure and heart rate. Pretreatment with indomethacin to block prostaglandin synthesis enhanced the effect of PAF on kidney function. Our data demonstrate that, unlike the rat kidney, intrarenal PAF infusion into the intact dog results in vasoconstriction and serve reduction in glomerular filtration rate.

Animals↗