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Biomedical subjects

M Vegni-Talluri

Publications and source records attributed to M Vegni-Talluri.

6 recordsLinked to original sources

The in vitro adherence of murine eosinophils, neutrophils and non-induced and induced macrophages to infective larvae of Toxocara canis (Nematoda, Ascarididae).

Infective larvae of the parasite nematode Toxocara canis were incubated in vitro with murine eosinophils, neutrophils and non-induced and induced macrophages. The interactions between the different types of cells and the worms were observed in the presence or absence of immune mouse serum and/or complement. Cells showed considerable differences in the manner, duration and outcome of this interaction. Despite the adhesion of cells to the larvae of T. canis, there was no evidence of damage to the worms. Scanning and transmission electron microscopic observations suggest that the cells adhere to the cuticular surface via an electron-dense material. This material might play a protective role against the helmintotoxic capacity of the inflammatory cells.

Animals↗

Testicular microliths: their origin and structure.

Light and electron microscopic studies were done on microliths in unilateral undescended testes to determine the origin and structure. The microliths seem to originate from degenerating intratubular cells and consist of a central calcified core surrounded by concentric layers of connective fibers.

Calculi↗

A possible haploid effect in acrosome malformations of human spermatozoa.

Acrosome malformations of spermatids and spermatozoa in the testes of two infertile patients were investigated with the light and electron microscope. The first visible abnormalities appear at early spermatid stages. The detailed morphological analysis of the malformed spermatids shows that in most cases only the differentiation of the acrosome granule is interfered with. This may be the origin of the malformations of the mature spermatozoa. The fact that almost half the early spermatids lack the acrosome granule suggests that the original cause is genetic and that the genes are expressed in the haploid phase.

Acrosome↗

Electron microscopic study of interstitial cells in cryptorchid human testes. I: Interstitial cells in prepubertal age.

In order to establish the ultrastructural features of Leydig cells 50 biopsies or prepubertal human cryptorchid testes have been examined. Light and electron microscopic observations reveal the presence of two types of interstitial cells distinguishable on the basis of the peculiar ultrastructural characteristic of the nucleus and cytoplasm. In our opinion these two types of interstitial cells seem to represent different stages of cell differentiation. There are fibroblast-like cells and cells corresponding to Leydig cells. From our observations it may be inferred that the fibroblast-like cells are the precursor cells of the Leydig cells.

Aging↗