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Biomedical subjects

C Lamanna

Publications and source records attributed to C Lamanna.

At least 19 recordsLinked to original sources

IgE responses to Dermatophagoides pteronyssinus native major allergens Der p 1 and Der p 2 during long-term specific immunotherapy.

We investigated by ELISA the IgE response to whole extract of the house-dust mite Dermatophagoides pteronyssinus (Dp) and to the native major allergens, Der p 1 and Der p 2, in sera from 18 adult patients (group A) with Dp-allergic asthma before (t0) and 1, 2, 3, and 4 (t1-t4) years after subcutaneous specific immunotherapy (SIT). A qualitative reduction (P = 0.05) of the IgE responses to Dp and Der p 2 was observed from t1 to t4, but a highly statistical significant decrease appeared at t3 (P < 0.01). With regard to Der p 1 IgE values, the immunotherapy induced a significant decrease (P < 0.01) at t3, but not before. In group A, the IgE responses to Der p 1 and Der p 2 were not correlated at t0 (rs = 0.31; P = 0.21) but were correlated at t3 (rs = 0.78; P = 0.001). We also examined sera from 14 adult patients (group B, same SIT schedule as group A) who were without respiratory symptoms at the end of the third year (t3) of Dp SIT. At this time (t3), there were no significant differences in Der p 1 and Der p 2 IgE levels between group A and group B.

Adult

NADPH-diaphorase-, nitric oxide synthase- and VIP-containing nerve structures in the hen oviduct: a histochemical and immunohistochemical study.

The enzyme NADPH-diaphorase (NADPH-d; a marker of NO producing or nitrergic neurons) and the neuropeptide VIP have been detected in the nerve structures of the hen oviduct by histochemical and immunohistochemical techniques performed on cryostatic sections and whole mount preparations. In the upper four segments of the oviduct, i.e. the infundibulum, magnum, isthmus and shell gland, nitrergic and VIP-positive nerve structures were particularly numerous in the intermuscular and mucosal layers, and were represented by fibres and cell bodies showing mainly a perivascular distribution. Functionally, such perivascular structures were related to the blood flow regulation. Different types of nitrergic pyrenophora were recognized in the walls of the shell gland on the basis of their peculiar morphology. In the distal zone of the oviduct, the vagina, nitrergic and VIP-positive nerve fibres were widely diffused in the circular muscle, which was particularly thick in this segment. The source of at least part of such fibres was probably represented by large nerve cell bodies scattered in the layer and containing NO and VIP colocalized. Functionally these cells retained inhibitory motor neurons causing relaxation of the vaginal smooth muscle.

Animals

Characterization of uterine growth response to cholera toxin in hamsters and test of heat-labile enterotoxin from Escherichia coli.

Cholera toxin (CT) and the heat-labile enterotoxin from Escherichia coli, when injected intraperitoneally into cycling hamsters but not rats or mice, induced a massive uterine growth similar to that normally induced by the implanting blastocyst during pregnancy. CT and heat-labile enterotoxin are the only known agents that have this action in any species. Uterine weight reached a maximal sixfold increase 48 h after injection of CT. Concurrent injection of estrogen, progesterone, and CT increased the maximal response to eightfold and eliminated differences in the response to CT injected on different days of the 4-day hamster estrous cycle. The dose response for CT, heat-labile enterotoxin, and CT plus estrogen plus progesterone was most linear (r greater than 0.93) when the logarithm of uterine weight was plotted against the dose of toxin. The hamster uterine weight response can serve as a simple, highly precise, and highly specific bioassay for CT and heat-labile enterotoxin.

Animals

Induction of estrogen and progesterone receptors and decidualization in the hamster uterus by cholera toxin.

Cholera toxin (CT) injected ip on day 1 (day of ovulation) of the 4-day hamster estrous cycle, when circulatory progesterone is high and estrogen low, induced a massive uterine decidual reaction, a progesterone-dependent growth normally triggered by the implanting blastocyst. However, CT injected ip on day 3, when circulatory estrogen is high and progesterone low, did not induce a decidual reaction but, instead, intensified the effects of estrogen (stromal edema and stimulation of the mucosa). These cycle day effects were reproduced in one uterine horn injected intraluminally with CT, but not in the other horn of the same animal given solvent alone as a control. The intrauterine injection of CT had no effect on the concentration of serum estrogen or progesterone. The decidual reaction resulting from intrauterine injection of CT on day 1 was accompanied by increases in estrogen receptor (femtomoles per mg DNA) in both cytoplasm and nucleus. In long term ovariectomized hamsters, an ip or intrauterine injection of CT induced only histological effects of estrogen (stromal edema and mucosal mitosis) without affecting circulatory estrogen. These estrogenic effects were accompanied by increases in receptors for estrogen and progesterone in both cytoplasm and nucleus. CT injected ip into ovariectomized hamsters primed with estrogen intensified the stromal edema and mucosal mitosis and resulted in progesterone and estrogen receptor levels equal to or greater than those after the administration of CT or estrogen alone. When progesterone was included in the priming (estrogen + progesterone + CT), all receptor levels were decreased, and a massive decidual reaction resulted. Thus, the induction of estrogen receptor by CT may have been the primary event that triggered the decidual reaction. Whether CT-induced estrogen receptor is mediated by cAMP, a known mediator of CT, remains to be determined.

Animals