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Biomedical subjects

M C Falk

Publications and source records attributed to M C Falk.

At least 37 records · Page 2Linked to original sources

Continuous venovenous haemofiltration in the acute treatment of inborn errors of metabolism.

The accumulation of toxic metabolites in children with inborn errors of metabolism may cause acute metabolic crises and result in long-term neurological dysfunction or death. Peritoneal dialysis often provides insufficient clearance to protect against these complications, while intermittent haemodialysis cannot prevent reaccumulation of metabolites between dialysis sessions. We describe the use of continuous venovenous haemofiltration (CVVH) or haemodiafiltration (CVVHD) in three infants with maple syrup urine disease (MSUD) and one child with carbamyl phosphate synthetase (CPS) deficiency. All children with MSUD had a satisfactory reduction in branched-chain amino acids within 24 h of onset of haemofiltration, and are now neurologically normal. The child with CPS deficiency had an ammonia level of < 100 mumol/l within 24 h of onset of therapy, but died 3 days later from unrelated cardiovascular complications. Complications of the therapy included the clotting of one haemofilter and the replacement of two vascular access catheters per patient on average per therapy. Two patients required blood transfusion. We report the successful use of CVVH and CVVHD in the acute management of metabolic crises associated with inborn errors of metabolism, and believe that these may be the optimal techniques for the acute clearance of toxic metabolites.

Acute Disease↗

Predominance of T cell receptor V delta 3 in small bowel biopsies from coeliac disease patients.

Increased numbers of T cells bearing the gamma delta antigen receptor (gamma delta T cells) have been reported in small bowel biopsies of patients with latent, active or treated coeliac disease. We have studied jejunal biopsies from seven children with coeliac disease and 10 children with normal gut histology to characterize gamma delta T cell receptor (TCR) variable region gene subfamily expression in resident gamma delta T cells and compared the results with the findings in peripheral blood mononuclear cells (PBMC) obtained on the same day as the gut biopsy. Molecular analysis of RNA extracted from PBMC and biopsies was performed by reverse transcription and amplification with the polymerase chain reaction using primers specific for six TCR V delta families and four TCR V gamma families. We report, first, that a significantly increased number of gamma delta T cells expressing the TCR V delta 3 subfamily (P = 0.008) was observed in jejunal biopsies from children with coeliac disease, and second, that gamma delta T cell V region subfamily populations in gut differed from those seen in PBMC for both control and coeliac patients. Significantly reduced numbers of TCR V delta 2, V delta 3, V delta 5 (P < 0.01) and V gamma 2, V gamma 4 (P < 0.01) T cells were found in gut compared with PBMC. The difference in gamma delta T cell repertoire observed between gut and blood may reflect differences in the nature of the antigens usually encountered in these two compartments. The over-representation of TCR V delta 3 in patients with coeliac disease suggests a specific role for these cells in the induction or maintenance of the jejunal abnormality associated with this disease.

Base Sequence↗

Extrapulmonary tuberculosis in children.

OBJECTIVE: To investigate an apparent increase in the number of children admitted to the Royal Alexandra Hospital for Children with extrapulmonary tuberculosis (TB). Further, to highlight both the seriousness of this disease and the difficulty of its diagnosis, and to draw attention to factors such as ethnic origin in identifying children at risk. DESIGN: Clinical and microbiological data were collected for all children admitted to the hospital with a confirmed diagnosis of TB. A standardised incidence ratio (SIR) was used to analyse the number of children admitted with extrapulmonary TB in 1990-1991 compared with 1982-1989, and in 1987-1991 compared with 1982-1986. RESULTS: Eleven children (five of these in 1990 and 1991) had extrapulmonary TB (4, central nervous system; 3, osteomyelitis; 2, cervical lymphadenitis; 2, abdominal). One was Aboriginal and 10 were from families of overseas origin. Twenty-one others had pulmonary TB and 17 of these were from families of overseas origin. The apparent increase in the number of admissions for extrapulmonary TB was not statistically significant. CONCLUSION: There has been a recent increase in the number of children hospitalised with extrapulmonary TB but when this is compared with the increase in children hospitalised for all causes, the increase is not significant. Immigration and the continuing contact of children with infected adults appear to account for most cases of TB in this series.

Adolescent↗

Factors influencing synthesis and mineralization of bone matrix from fetal bovine bone cells grown in vitro.

This study of the in vitro synthesis and mineralization of bovine bone demonstrates that sheets of mineralized matrix can be produced consistently within 18-24 days of cell isolation. Mineralization surpasses that achieved by other systems with other species: The deposition of mineral extends beyond nodules to form branching trabeculae and then solid wafers of bone. Comparison of the fetal age of the bone source, enzyme digestion methods, seeding density, culture surface, nutritive media, and concentration of fetal calf serum and other additives, including insulin and ascorbic acid, has yielded a set of optimal culture conditions. In the presence of ascorbic acid and beta-glycerol phosphate, insulin has a dose-dependent effect on the morphology of the mineralized bone matrix produced. Quantitative analysis shows that in these cultures calcium accumulates most rapidly between days 6 and 10 after the introduction of mineralization medium but that mineral accretion continues throughout 14-16 days of culture. Alkaline phosphatase levels rise up to 200-fold, concomitant with a rapid increase in the number of cells per culture during the early mineralization phases; both fall as mineralization proceeds. This system has been used to study the induction of mRNA of type I collagen, alkaline phosphatase, and several noncollagenous bone proteins during the course of mineralization. Because of the degree of mineralization achieved with this system, it has many potential applications.

Alkaline Phosphatase↗

Cytochemical properties of osteoblast cell membrane domains.

The interactions of osteoblasts with one another and with the extracellular milieu are of vital importance for cell function. These interactions are mediated by cell membrane-associated components. In the present work, we studied the distribution of several mediators known to be associated with the cell surface, using ultrastructural cytochemistry, to characterize the three cell membrane domains (osteoid, lateral, and vascular) of osteoblasts. Osteoblasts in neonatal rat calvariae were studied for cell surface distribution of alkaline phosphatase (APase), calcium-activated adenosine triphosphatase (Ca2+-ATPase), calcium, soybean agglutinin (SBA)-reactive sites, and peanut agglutinin (PNA)-reactive sites. APase was absent in the osteoid domain but was evenly distributed in the other domains. Ca2+-ATPase was found to be concentrated mainly in the lateral domains. In contrast, calcium was present in all cell membrane domains. Using lectins conjugated to horseradish peroxidase, we demonstrated that SBA binding sites were evenly distributed along the osteoblast cell membrane, whereas PNA binding sites were absent or minimally present in the osteoid and lateral domains but were evenly distributed in the vascular domain. These results suggest that the various functions of osteoblasts may be facilitated by specialized cell membrane domains which are cytochemically distinct. Previous reports have failed to demonstrate the cytochemical differences between the three domains of the osteoblast cell membrane.

Alkaline Phosphatase↗

Excitation energy transfer study of the spatial relationship between the carbonyl and metal cofactors in pig plasma amine oxidase.

9-Hydrazinoacridine irreversibly labeled pig plasma amine oxidase by covalent attachment to the active carbonyl cofactor. The visible absorption spectrum of the modified protein displays new absorption bands at 495 and 525 nm. Its emission spectrum exhibited maxima at 415 and 440 nm. In addition, both absorption and emission spectra were insensitive to pH changes between 6 and 10. Phase modulation fluorometry was used to determine fluorescence lifetimes of Zn2+- and Co2+-substituted acridinyl plasma amine oxidase. Energy transfer efficiency was 22%; the distance separating the Co2+ ion (in the copper binding site) and the acridine moiety (the amine substrate binding site) ranges between 11.7 and 14.7 A. This work defines the proximity of the metal and substrate (and hence the carbonyl cofactor) and precludes any direct interaction between Cu2+ and pyrroloquinoline quinone or between Cu2+ and the substrate.

Acridines↗

Antibody response to teichoic acid and peptidoglycan in Staphylococcus aureus osteomyelitis.

An enzyme-linked immunosorbent assay was used to evaluate the immunoglobulin G (IgG) response to Staphylococcus aureus crude teichoic acid (TA) and peptidoglycan (PG) in both rabbits and patients with osteomyelitis. In rabbits with experimental S. aureus osteomyelitis, elevated levels of IgG to TA were present in 13/18 (72%) of the serum samples obtained at 4 and 10 weeks postinfection. In contrast, only 5/18 (28%) of these sera were found to be positive for antibodies to PG. Of a total of 39 patients with confirmed S. aureus osteomyelitis (11 acute, 28 chronic), IgG to TA was elevated in 17 (44%), whereas antibodies to PG were found to be increased in only 1 (3%). Cross-reacting antibodies to S. aureus TA were detected in only 1/18 (6%) of the patients with osteomyelitis caused by organisms other than S. aureus. These studies indicate that IgG to TA is more prevalent than IgG to PG in patients with staphylococcal osteomyelitis. Although these results are encouraging, a larger number of patients is required for an adequate evaluation of the TA enzyme-linked immunosorbent assay for the diagnosis and management of suspected S. aureus osteomyelitis.

Acute Disease↗

Spatial relationship between the copper and carbonyl cofactors in the active site of pig plasma amine oxidase.

The ortho-, meta-, and para-trifluoromethylphenylhydrazine inhibitors of porcine plasma amine oxidase were synthesized. Titrations of plasma amine oxidase with these inhibitors demonstrated that 1 mol of trifluoromethylphenylhydrazine completely and irreversibly modifies 1 mol of enzyme by covalently binding to the active carbonyl cofactor. NMR relaxation measurements on the fluorine nuclei were obtained at 188.22 and 74.84 MHz for each inhibitor-enzyme adduct. These measurements were used to calculate the exact distance and orientation between the inhibitor-binding site and the copper cofactor. The copper lies in the plane of the aromatic ring of the inhibitor at distances of 10.9, 14.3, and 15.5 A from the fluorines in the ortho-, meta-, and para- positions of the ring, respectively. Since the inhibitors react with the active carbonyl cofactor, this defines the relationship between the copper and the active carbonyl cofactor in the enzyme, and provides a basis for choosing between mechanisms for the transfer of electrons from the amine substrate to oxygen.

Amine Oxidase (Copper-Containing)↗

Enzyme-linked immunosorbent assay for detection of antibodies to Staphylococcus aureus cell walls in experimental osteomyelitis.

An enzyme-linked immunosorbent assay was used to evaluate and compare the immunoglobulin G antibody response to Staphylococcus aureus cell walls of rabbits with either chronic staphylococcal osteomyelitis or subcutaneous abscesses. Osteomyelitis of the femur was produced by the intramedullary application of a sclerosing agent (3% sodium tetradecyl sulfate) and S. aureus. Radiographic evidence of osteomyelitis was observed in 10 of the 13 animals that survived the 10-week experimental period, and the diagnosis was confirmed by histopathology in 8 of the 10 instances. Abscess formation was initiated in a separate group of rabbits by the subcutaneous injection of S. aureus cells. All 10 of these rabbits subsequently developed abscesses, which usually resolved spontaneously within 3 to 5 weeks. Elevated levels of immunoglobulin G antibodies to the cell wall antigen were detected in 7 of 10 rabbits with osteomyelitis at 21 days postinfection, and these animals continued to display high antibody levels even at 59 days postinfection. In contrast, elevated levels of anti-cell-wall antibodies were only detected in 1 of 10 rabbits with subcutaneous abscesses. The enzyme-linked immunosorbent assay was found to be a rapid and sensitive serological technique for the detection of cell wall antibodies in this experimental osteomyelitis model and may be useful for the diagnosis of staphylococcal bone infections in humans.

Abscess↗

Stoichiometry of phenylhydrazine inactivation of pig plasma amine oxidase.

Pig plasma amine oxidase is irreversibly inactivated by phenylhydrazine. The stoichiometry of this inactivation was determined by monitoring the loss of catalytic activity, the formation of a new visible spectral band, changes in the circular dichroic spectrum and by equilibrium binding studies. In all cases, only 1 mol of phenylhydrazine reacted with the dimeric pig plasma amine oxidase; further additions of phenylhydrazine had no effect. Pretreatment of the enzyme with phenylhydrazine inhibited the binding of amine substrate. The phenylhydrazine-enzyme complex was found to be stable under various experimental conditions for at least 72 h. Circular dichroic spectra revealed the conformation of the phenylhydrazine-treated enzyme to be altered in the region around prosthetic groups and indicated some changes about the aromatic amino acids. No major conformational changes were detected by this technique. Isoelectric focusing experiments exposed no differences in the band pattern or isoelectric point between the untreated and phenylhydrazine-treated enzymes.

Amine Oxidase (Copper-Containing)↗

Heterogeneity of pig plasma amine oxidase: molecular and catalytic properties of chromatographically isolated forms.

Pig plasma amine oxidase was resolved into several fractions by ion-exchange and hydroxyapatite chromatography. These fractions were separately purified, and each fraction was analyzed for catalytic and structural properties. The relative amount of these fractions varied between preparations. Each fraction was composed of a unique set of bands on isoelectric focusing, as revealed by activity and protein staining. All the fractions contained 2 mol of Cu2+ and one "active-carbonyl" cofactor per 195 000 g of protein. There was no detectable difference in the amino acid contents of the fractions. The fractions all had similar catalytic properties using benzylamine as the substrate. The chromatographically resolved fractions had differing carbohydrate contents as revealed by gas chromatographic analysis and interaction with lectins. Further, some of the isoelectric focusing bands interacted with lectins of differing affinities. The results suggest that the heterogeneity may be due to variable carbohydrate content. Further, the practice of pooling the various chromatographic fractions may yield misleading results under certain circumstances.

Amine Oxidase (Copper-Containing)↗

Formamide-induced dissociation and inactivation of Escherichia coli alkaline phosphatase. Metal-dependent reassociation and restoration of activity from isolated subunits.

Alkaline phosphatase from Escherichia coli has been reversibly dissociated by treatment with low concentrations of formamide. The monomer retains the capacity to bind metals and to regenerate catalytically active dimer that is identical with the native dimeric enzyme. The rate and extent of dissociation of dimer to monomer depend upon pH, ionic strength, temperature, formamide concentration, and enzyme-bound metal. Under appropriate experimental conditions, reassociation can be greatly slowed, allowing the properties of the monomer to be examined in solution. The formamide-induced apo monomer has a conformation distinct from that of the dimer and zinc- or cobalt-containing monomers. The monomer tightly binds 1 mol of zinc or cobalt in a metal-binding site altered from those of the dimer but is catalytically inactive. pH, ionic strength, and formamide concentration all influence reassociation. Hydrophobic forces are implicated as important in subunit interactions. The effect of metal content on the dissociation--reassociation process underscores the essential role that metals play in maintaining enzyme tertiary structure and reveals a new role in stabilizing the quaternary structure.

Alkaline Phosphatase↗

Effect of magnesium on the properties of zinc alkaline phosphatase.

Alkaline phosphatase of Escherichia coli, isolated by procedures which do not alter its intrinsic metal content, contains 4.0 +/- 0.3 g-atoms of tightly bound zinc per mole (Kd less than 1 muM) and 1.3 +/- 0.2 g-atoms of magnesium per mole (Bosron, W.F., Kennedy, F.S., and Vallee, B.L. (1975), Biochemistry 14, 2275-2282). Importantly, the binding of magnesium is dependent both upon pH and zinc content. Hence, the failure to assign the maximal magnesium stoichiometry to enzyme isolated by conventional procedures may be considered a consequence of the conditions chosen for optimal bacterial growth and purification of the enzyme which are not the conditions for optimal binding of magnesium to alkaline phosphatase. Under the conditions employed for the present experimental studies, a maximum of six metal sites are available to bind zinc and magnesium, i.e., four for zinc and two for magnesium. Magnesium alone does not activate the apoenzyme, but it regulates the nature of the zinc-dependent restoration of catalytic activity to apophosphatase, increasing the activity of enzyme containing 2-g-atoms of zinc five-fold and that of enzyme containing 4-g-atoms of zinc 1.4-fold. Moreover, hydrogen-tritium exchange reveals the stabilizing effects of magnesium on the structural properties of phosphatase. However, neither the KM for substrate nor the phosphate binding stoichiometry and Ki are significantly altered by magnesium. Hence, magnesium, which is specificially bound to the enzyme, both stabilizes the dynamic protein structure and regulates the expression of catalytic activity by zinc in alkaline phosphatase.

Alkaline Phosphatase↗

Synthetic flavinyl peptides related to the active site of mitochondrial monoamine oxidase. I. Chemical and spectral properties.

Various 8 alpha-sulfur-linked peptides related to the flavinyl peptides isolated from mitochondrial monoamine oxidase were synthesized in high yield and purity. The peptides, protected by an acetyl-blocking group on the amino terminus, were synthesized by conventional liquid-phase techniques and coupled to a tetraacetylriboflavin derivative activated in the 8alpha position. In some cases, the ribityl side chains of the flavinyl peptides were selectively deacetylated. In other cases, the thioether functions were oxidized to form sulfones. These flavinyl peptides were studied by uv-visible absorption and circular dichroic spectroscopies. A close correspondence in spectroscopic and other chemical properties indicated the identity of the synthetic and naturally obtained flavinyl peptides. Differences between the tetraacetylriboflavinyl and riboflavinyl peptides indicate an interaction between the ribityl side chain and thioether function in aqueous media. Evidence was obtained for an intramolecular complex between the tyrosyl and isoalloxazine moieties in aqueous media. Substitution in the 8alpha position was accompanied by an impairment of the protonation of the N1 position of the isoalloxazine ring and a lowering of the redox potential relative to the parent 8-methyflavins.

Binding Sites↗