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D Stanisic

Publications and source records attributed to D Stanisic.

6 recordsLinked to original sources

Intranasal immunization with yeast-expressed 19 kD carboxyl-terminal fragment of Plasmodium yoelii merozoite surface protein-1 (yMSP119) induces protective immunity to blood stage malaria infection in mice.

Variable protection against malaria blood-stage infection has been demonstrated in mice following parenteral immunization with the highly conserved 19 kD carboxylterminal fragment of the merozoite surface protein-1 (MSP119) using CFA/IFA and other adjuvants. Here we show that intranasal immunization of BALB/C mice with yeast expressed Plasmodium yoelii MSP119 plus a mixture of native and recombinant cholera toxin B subunit, could induce serum MSP119-specific antibodies at titres ranging from 20 000 to 2 560 000. The Ig subclass responses were predominantly G1 and G2b. Intranasal immunization led to protection following challenge (peak parasitaemia < 1%) in mice with the highest MSP119-specific titre (>/= 640 000). In two of the three protected mice, a peak parasitaemia of 0.1%-1% was followed by a boost of the antibody response whereas one of the three protected mice did not boost its antibody response after a peak parasitaemia of 0.02%. In unprotected mice, antibody levels rose, then fell, following the detection of parasites in the peripheral blood. CD4+ T cell-depletion abrogated the ability of the mice to boost their antibody response following challenge. These data demonstrate the potential for intranasal immunization with MSP119 to protect against malaria.

Adjuvants, Immunologic↗

Similarity of central and peripheral alpha-1 adrenoceptors in rat and rabbit.

In order to examine species and tissue differences in alpha 1 adrenoceptors, binding experiments were performed using 3H-prazosin and membrane homogenates of central nervous and peripheral tissues of rabbit (cortex and spleen), and rat (cortex, spleen, and liver). Saturation studies indicated one binding site for 3H-prazosin, with apparent log molar dissociation constants (pKD) ranging from 9.43 to 10.20. The rank orders of affinities of three competing antagonists (prazosin much greater than idazoxan greater than rauwolscine) and five agonists (cirazoline greater than clonidine approximately equal to (-)-norepinephrine greater than (-)-phenylephrine greater than (+)-norepinephrine) were typical of alpha 1 receptors in all tissues. There were small but significant differences in the mean affinities of rauwolscine, idazoxan and cirazoline among the five tissues. No significant differences in pseudo-Hill coefficients were observed among tissues, although agonist binding curves were shallow (.7 to .85) and prazosin competition curves were significantly steeper (greater than .85). Guanine nucleotide did not affect the position or slope of the (-)-norepinephrine competition profile in rat cortex. These results demonstrate a qualitative similarity among central and peripheral alpha 1 receptors of the rat and rabbit, with small differences observed between central and peripheral sites in both species.

Adrenergic alpha-Agonists↗

Alterations in plasma and tissue prostaglandin levels in rabbits during luteal regression.

To determine if ovarian as well as uterine prostaglandin production was associated with luteal regression, tissue and plasma concentrations of prostaglandin F (PGF), prostaglandin E (PGE), 6-keto-PGF1 alpha (6-keto-PGF), and thromboxane B2 (TxB) were measured by radioimmunoassay in uterus, corpora lutea, nonluteal tissue, uterine venous plasma and ovarian venous plasma on Days 8, 12 and 15 of pseudopregnancy in the rabbit. Total prostaglandin levels (PGF + PGE + 6-keto-PGF + TxB) were 4-fold greater in the uterus compared to nonluteal tissue and 8-fold greater than in corpora lutea. Both PGF and PGE levels were increased in uterine tissue on Day 15 compared to Days 8 or 12 (P less than 0.01). The ratio of PGF:PGE was also elevated on Day 15 compared to Days 8 or 12 (P less than 0.05) which suggests that the luteolytic effect of PGF predominates over the possible luteotropic effect of PGE. There were no significant changes in the concentration of TxB or 6-keto-PGF or the ratio of TxB:6-keto-PGF in uterine tissue on any day studied. In nonluteal tissue, PGE was the only PG to vary significantly; PGE levels were elevated (P less than 0.05) on Day 8 of pseudopregnancy compared to Days 12 or 15. Although corpora lutea contain significant quantities of PGF, PGE, TxB and 6-keto-PGF, no alterations in the levels of any of these substances were observed between Days 8, 12 or 15 of pseudopregnancy.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha↗