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S I Mortimer

Publications and source records attributed to S I Mortimer.

4 recordsLinked to original sources

Growth of Lucilia cuprina larvae following treatment of sheep divergently selected for fleece rot and fly strike with monoclonal antibodies to T lymphocyte subsets and interferon gamma.

Intensive lymphocytic infiltration of the underlying dermis occurs during cutaneous myiasis caused by larvae of the blow fly, Lucilia cuprina. To determine the effect of this infiltrate on larval growth, monoclonal antibodies (mAb) to CD4, CD8 or WC1 lymphocyte subset determinants were injected intravenously before and during experimental infection of sheep with larvae. The effect of intravenous injection of mAb to ovine interferon (IFN) gamma was also examined. The experiments were performed in 18-month-old maiden ewes with genetic resistance or susceptibility to the disease complex, bacterial dermatitis/cutaneous myiasis. mAbs induced profound depletion of CD8+ and WC1+ subpopulations from blood and skin at sites of larval growth. mAb to CD4+ gave only a moderate reduction in lymphocytes from blood or skin. mAb treatments did not modify larval growth or survival at 20 or 50 h after infection. Larval growth rates did not differ between resistant and susceptible genotypes. No evidence was found for a role of T lymphocyte subpopulations or the cytokine IFN, in modifying larval growth during the first 50 h of infection. It seems unlikely that T lymphocyte-dependent immunological effector mechanisms contribute to the lower prevalence of fly strike seen in the resistant genotype in the field.

Animals↗

Cellular inflammatory responses in skin of sheep selected for resistance or susceptibility to fleece rot and fly strike.

Leucocyte populations were examined in normal and inflamed skin of sheep bred for resistance (R) or susceptibility (S) to bacterial fleece rot and the common sequela, body strike caused by the dipteran parasite Lucilia cuprina. No differences between R and S lines were found in numbers of neutrophils accumulating in acute inflammatory lesions induced by activated complement, leukotriene B4, interleukin (IL)-1 beta, tumour necrosis factor-alpha, IL-8 or endotoxin from Pseudomonas aeruginosa. T19+ (alpha gamma delta T cell subset) lymphocytes and eosinophils were more prevalent in skin of sheep from the S line whereas IgE+ cells were more prevalent in skin of sheep from the R line. In an unrelated population of sheep, animals with low fleece rot scores had more intense neutrophil migration into inflammatory lesions induced by all the mediators examined than did animals with high fleece rot scores. IgE+ cells were more prevalent in animals with low fleece rot scores, although in contrast to R and S lines, T19+ cells tended to be elevated in this group of animals. The results suggest that defence mechanisms associated with IgE+ cells in skin may play an important role in resistance to fleece rot and fly strike.

Animals↗

Plasma leakage in skin of sheep selected for resistance or susceptibility to fleece rot and fly strike.

The leakage of plasma into skin following injection of histamine, bradykinin, activated complement, platelet-activating factor and serotonin was measured in sheep bred for resistance or susceptibility to fleece rot and fly strike. Genetically susceptible sheep had significantly greater plasma leakage to activated complement than genetically resistant sheep, and for all mediators there was a trend for plasma leakage to be greater in susceptible sheep. Within each genotype there was also a tendency for plasma leakage to be positively correlated with fleece rot score. In a flock of sheep of different genetic background not selected for resistance or susceptibility to fleece rot and fly strike, positive phenotypic correlations were also noted between fleece rot and plasma leakage. Plasma leakage provides nutrition for the first instar larvae of Lucilia cuprina, the major cause of primary blowfly strike in Australia. Diminished leakage of plasma following release of endogenous permeability mediators may be one component of the mechanism that confers resistance in animals bred for resistance to fleece rot and fly strike.

Animals↗