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Biomedical subjects

M S Blum

Publications and source records attributed to M S Blum.

At least 19 recordsLinked to original sources

Ammonia chemical ionization tandem mass spectrometry in structural determination of alkaloids. II. Tetraponerines from pseudomyrmecine ants.

Chemical ionization tandem mass spectrometry (CI-MS/MS) of alkaloids with ammonia reagent gas and collision-activated dissociation as well as EI-MS/MS were applied to the tetraponerine alkaloids in extracts from six pseudomyrmecine ants of the genus Tetraponera. The MS/MS techniques along with gas chromatography Fourier transform infrared (GC/FTIR) spectra allowed identification in two extracts of seven of the eight known tetraponerines. The EI-MS/MS fragmentations proved diagnostic for the ring system and the CI-MS/MS patterns for the C-8 or C-9 substitution, while the Bohlmann bands in FTIR spectra were diagnostic for the C-8 or C-9 configurations. An Indian ant (T. allaborans) had T-2, T-4 and T-8, while a Chinese ant (T. binghami) had T-5, T-6, T-7 and T-8. Four other ants, T. rufonigra (India), T. penzigi (Africa), T. clypeata (Africa) and T. sp. cf. emeryi (Africa), had no tetraponerines.

Alkaloids↗

Novel chemistry of abdominal defensive glands of nymphalid butterfly Agraulis vanillae.

Abdominal defensive glands of both sexes of the Gulf fritillary butterfly, Agraulis vanillae (Linnaeus) (Nymphalidae:Heliconiinae) emit a pronounced odor when disturbed. We have identified 6-methyl-5-hepten-2-one; oleic, palmitic, and stearic esters of the corresponding alcohol 6-methyl-5-hepten-2-ol; hexadecyl acetate; 1,16-hexadecanediol diacetate; and 1,15-hexade-canediol diacetate in the glandular exudate. Since we have determined that free-flying birds or birds in a butterfly conservatory discriminate against A. vanillae as prey, we suggest that the constituents in the glands may play a defensive role against potential avian predators.

Abdomen↗

Proteolytic enzymes from larvae of the fire ant, Solenopsis invicta. Isolation and characterization of four serine endopeptidases.

The imported red fire ant (Solenopsis invicta) is a problematic pest in the Southern United States. The stages of development for these ants are as follows: egg, 1st, 2nd, 3rd, and 4th instar larvae, prepupae, pupae, and adult. The 4th instar larvae plays an important role in the survival of the colony in that it is totally responsible for the digestion of solid foods and the source of nutrients for the queen and adult workers. In our studies we have been successful in purifying and characterizing four proteinases from the 4th instar larvae. Based on substrate specificity, they appear to represent two chymotrypsin-like and two elastase-like proteinases. These are referred to as Soli C1, Soli C2, Soli E1, and Soli E2, with molecular masses of 25, 28, 23, and 24 kDa, respectively, based on SDS-PAGE. All enzymes were inhibited by diisopropyl fluorophosphate, a general serine class inhibitor. Various synthetic substrates with either Phe or Val in the P1 position, were readily cleaved by Soli C1/C2 or E1/E2, respectively. Each enzyme has been characterized as to pH optimum, pH stability, isoelectrofocusing and susceptibility to inhibition by a broad range of natural and synthetic proteinase inhibitors. Such compounds may prove useful for the development of insecticides to control fire ant infestation.

Amino Acid Sequence↗

Medication administration in schools: the Massachusetts experience.

In 1991, the School Health Unit of the Massachusetts Department of Public Health defined medication administration as a priority policy development area for school health. The decision was based on: a) the increased numbers of children requiring medications during the school day; b) a lack of consistent standards within Massachusetts schools; c) the need to update an outdated statute concerning psychotropic medications; and d) the more than 50 weekly telephone calls from school health personnel regarding this subject. This article describes the Massachusetts experience of developing medication administration regulations for public and private schools and implementing the regulations throughout the commonwealth. The Massachusetts experience may provide guidance to other states, cities, and towns as they address this important child health issue.

Drug Therapy↗

Cytoskeletal rearrangement mediates human microvascular endothelial tight junction modulation by cytokines.

The tight junction (TJ) is a specialized intercellular structure responsible for the regulation of ionic and macromolecular flux across cell monolayers. Because plasma leakage is believed to occur mainly across the microvasculature, we hypothesized that microvascular endothelial cells (MVEC) may form more intact, regulatable TJ than other endothelial cell (EC) types, allowing further insight into the control of EC permeability. Primary cultures of MVEC monolayers produced transmonolayer electrical resistances (TER) of 120-155 omega.cm2, approximately 10 times that of large-vessel EC. Treatment with tumor necrosis factor and interferon-gamma caused a 50% decrease in the TER and a striking fragmentation of the basal, continuous interendothelial cell zonula occludens-1 protein (ZO-1) distribution determined by immunofluorescence. Fragmentation was inhibited by cytochalasin D, and confocal microscopy demonstrated a colocalization between F actin and ZO-1. These findings suggest that the F actin cytoskeleton plays a central role in endothelial TJ barrier regulation and that dynamic cytoskeletal alterations may primarily control vascular permeability.

1-Methyl-3-isobutylxanthine↗

Semiochemical parsimony in the Arthropoda.

A wide variety of arthropods have adapted their own semiochemicals to subserve multiple functions in diverse contexts. Semiochemicals, the pheromones and allomones, have been detected in arthropod species in six orders, and it has been clearly established that these compounds are used with great parsimony. The versatility of these invertebrates in using these natural products for an incredible diversity of functions emphasizes the significance of semiochemicals in the evolutionary biology of Arthropoda. Multifunctional pheromones have proved to be especially characteristic of the queens of eusocial species. Compounds such as the queen substance of the honey bee, Apis mellifera, possess unrelated primer and releaser functions for the workers and act as a sex attractant for drones. Females of other hymenopterous species exploit the secretions of sting-associated glands as sex pheromones, whereas a variety of nonhymenopterous species have adapted components in diverse defensive secretions to function as sex pheromones. The alarm pheromones of many arthropods are also used as defensive allomones, activity inhibitors, cryptic alarm pheromones, aggregative attractants, robbing agents, digging agents, trail pheromones, and antimicrobial agents. Defensive allomones also possess some of these parsimonious roles; in addition, however, some of these compounds possess highly distinctive roles, such as functioning as lethal attractants for prey, or, in he aquatic milieu, cuticular wetting agents. Clearly, the availability of a variety of pheromones and allomones has enabled arthropods to evolve an elegant semiochemical parsimony with which to exploit the biological milieu.

Journal Article↗

Serine proteinase inhibitor profiles in the hemolymph of a wide range of insect species.

1. The inhibition of trypsin, chymotrypsin, neutrophil elastase and cathepsin G, and pancreatic elastase by the hemolymph of 14 insect species in six orders has been investigated. 2. All samples showed great diversity in terms of both total proteinase inhibitory capacity and specificity. 3. The highest total inhibitory capacity was found in the larval hemolymph of species in the beetle family Tenebrionidae and the lowest in that of an adult coreid bug, Acanthocephala femorata.

Amino Acid Sequence↗

Purification and characterization of insect toxins derived from the mite, Pyemotes tritici.

Three low mol. wt proteins which have contracting-paralyzing activity in insects were isolated from extracts of the straw itch mite, Pyemotes tritici. One of these toxins, referred to as TxP-I, was purified to apparent homogeneity using the following sequence: ion-exchange, affinity, hydroxyapatite and reverse-phase chromatography. The other two toxins, referred to as TxP-II, remained as a mixture. Peptide mapping and immunoblot analysis suggest that TxP-I and TxP-II are probably isoproteins. The apparent mol. wt of native TxP-I and of the two components of TxP-II were 27,000, 28,000 and 29,000, respectively. The apparent mol. wt of the toxins after reductive carboxamidomethylation increased to 38,000, 41,000 and 43,000, respectively. The amino acid composition of TxP-I indicates a high content of Cys (8 mole%). Therefore, several disulfide bonds may impart a very compact tertiary structure to this protein which, upon denaturation, unfolds and increases its Stoke's radius resulting in retarded mobility on a polyacrylamide gel. The N-terminal sequence of TxP-I is not homologous with any other protein for which the sequence is known. The paralysis dose50 of TxP-I (PD50) in wax moth larvae is ca. 500 micrograms/kg and it is not toxic to mice at a dose of 50 mg/kg. A polyclonal antibody, raised against TxP-I, reacted with both TxP-I and TxP-II. The antibody neutralized the rapid, muscle-contracting paralysis of these toxins. Using this antibody and immunocytochemistry, we found the toxins localized in posterior glands which appear to be connected with the stylet through a series of ducts. We conclude that TxP-I and TxP-II are part of a complex mixture of neurotoxins which P. tritici utilizes to capture prey.

Amino Acid Sequence↗

Preliminary characterization of toxins from the straw itch mite, Pyemotes tritici, which induce paralysis in the larvae of a moth.

Homogenates of whole mites (Pyemotes tritici) paralyze larvae of the greater wax moth Galleria mellonella. Injection of these homogenates into larvae produces symptoms identical to those obtained by bites from female mites. Since the paralytic activity is destroyed by heat and proteolytic enzymes and retained during dialysis, the toxic compounds appear to be proteins. Two protein fractions which differ both in molecular weight and toxicity were found following gel filtration of whole mite extracts. Larvae that are injected with proteins from the high molecular weight (c. 250,000) fraction (designated TxP-HMW) develop flaccid-muscle paralysis after 4-12 hr, while proteins in the low molecular weight fraction (c. 21,000) (designated TxP-LMW) induce a rapid, muscle-contracting paralysis.

Animals↗

Oxygenated compounds in beeswax: identification and possible significance.

1. Beeswax synthesized by non-foraging honeybee workers contains six oxygenated volatiles in addition to a series of normal alkanes. 2. Decanal constitutes nearly 50% of the oxygenated volatiles and is accompanied by octanal, nonanal, furfural, benzaldehyde and 1-decanol. 3. The possible significance of the aldehydes as stimulators of hoarding behaviour and attractants for wax moths is discussed.

Aldehydes↗

Comparative enzymology of venoms from stinging Hymenoptera.

Venoms from 20 species of stinging Hymenoptera, including nine species of ants and nine species of social wasps, were quantitatively analyzed for the following enzymic activities: phospholipase A, hyaluronidase, lipase, esterase, protease, acid phosphatase, alkaline phosphatase and phosphodiesterase. Phospholipase and hyaluronidase were present in all the venoms, with activity levels generally higher among the wasps than the ants (P less than 0.05). Lipase was present in high activity in several social wasp venoms and one ant venom, in low levels in two other ant venoms and absent from four tested snake venoms. Two-carbon esterase activity was present in the venoms of five social wasps and one ant. Non-specific protease was present at very high activity levels in the venoms of an army ant species and was also present in the venoms of a social wasp and another ant. Acid phosphatase activity was present in eight of the nine ant venoms, but was essentially absent from all the social wasp venoms. Alkaline phosphatase activity was clearly detectable in the venoms of only two species of ants. Phosphodiesterase, an enzyme not previously detected in insect venoms, was present in the venoms of three closely related ant species. Venoms with generally high enzymic activities included those of Polistes infuscatus, Vespula (V.) squamosa and Pogonomyrmex badius; those with low activities included Dolichovespula maculata, Apoica pallens and Dasymutilla lepeletierii. The 20 venoms were ranked according to overall activity levels using the eight enzyme activities plus lethal, hemolytic and pain-inducing activities. They were also compared phylogenetically using these 11 activities.

Animals↗

Is sequestration structure-specific in the milkweed bug, Oncopeltus fasciatus?

Extracts of Oncopeltus fasciatus adults, fed from the first instar on sunflower seed diets impregnated with bufadienolides-cardenolide analogs, contained no detectable bufadienolides or polar steroid metabolites on TLC. O. fasciatus did sequester cardenolides from host and non-host sources, and bufadienolides were recovered from extracts of impregnated seeds. Possible reasons for the absence of detectable bufadienolides in these insects are suggested.

Animals↗

Antiphosphaturic action of 25 (OH) vitamin D3 in experimental Fanconi syndrome.

Renal handling of phosphorus was studied in the following groups of parathyroidectomized rats with maleate-induced Fanconi syndrome: 1) 6 rats receiving intravenous parathyroid hormone, 2) 6 rats receiving intravenous dibutyryl cyclic AMP (DBcAMP), 3) 6 rats undergoing volume expansion with saline, 4) 12 rats receiving intravenous 25 (OH)vitamin D3, 5) 12 rats with acute hypercalcemia induced by intravenous CaCl2, 6) 6 rats with phosphate deprivation, and 7) 6 rats receiving intravenous calcitonin. Parathyroid hormone and calcitonin failed to increase the urinary excretion of both cAMP and phosphorus. Likewise, DBcAMP failed to increase the urinary excretion of phosphorus. Extracellular volume expansion and hypercalcemia (serum calcium 12.9 +/- 0.7 mg/100 ml) did not alter the tubular reabsorption of phosphorus. In phosphate-deprived animals, the fractional excretion 0.16 +/- 0.05 (mean +/- SE) was lower than that in the control animals (maleate-treated without phosphate depletion), 0.46 +/- 0.04 (P less than 0.001). 25 (OH)vitamin D3 decreased the fractional excretion of phosphorus from 0.39 +/- 0.03 in the control (maleate-treated not receiving 25 (OH)vitamin D3) to 0.23 +/- 0.02 (P less than 0.001) in the experimental animals. The present study demonstrated an antiphosphaturic effect of 25(OH)vitamin D3 in experimental Fanconi syndrome; the mechanism of this action is not well understood.

Animals↗