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C Cabezón

Publications and source records attributed to C Cabezón.

10 recordsLinked to original sources

Cellular organization and appearance of differentiated structures in developing stages of the parasitic platyhelminth Echinococcus granulosus.

Echinococcus granulosus is the causative agent of hydatidosis, a major zoonoses that affects humans and herbivorous domestic animals. The disease is caused by the pressure exerted on viscera by hydatid cysts that are formed upon ingestion of E. granulosus eggs excreted by canine. Protoscoleces, larval forms infective to canine, develop asynchronously and clonally from the germinal layer (GL) of hydatid cysts. In this report, we describe the cellular organization and the appearance of differentiated structures both in nascent buds and developed protoscoleces attached to the GL. Early protoscolex morphogenesis is a highly complex and dynamic process starting from the constitution of a foramen in the early bud, around which nuclei are distributed mainly at the lateral and apical regions. Similarly, distribution of nuclei in mature protoscoleces is not homogenous but underlies three cellular territories: the suckers, the rostellar pad, and the body, that surrounds the foramen. Several nuclei are associated to calcareous corpuscles (Cc), differentiated structures that are absent in the earlier bud stages. The number of nuclei is similar from the grown, elongated bud stage to the mature protoscolex attached to the GL, strongly suggesting that there is no significant cellular proliferation during final protoscolex development. The amount of DNA per nucleus is in the same range to the one described for most other platyhelminthes. Our results point to a sequential series of events involving cell proliferation, spatial cell organization, and differentiation, starting in early buds at the GL of fertile hydatid cysts leading to mature protoscoleces infective to canine.

Animals↗

Histometry of the placental structures involved in the respiratory interchange.

Employing a stereometric technique, we determined the following parameters in six normal term placentae: respiratory area (total surface area of vasculo-syncytial membranes); total villous surface area; proportion of respiratory area (percentage fraction of villous surface that corresponds to the respiratory area). The value of each of these parameters was studied in each placental sample, as well as their distribution in the different placental zones, considered according to their distance from the placental rim. All parameters were distributed heterogeneously throughout the peripheral, intermediate and central zones of the placentae studied. The same parameters were also measured along the full thickness of the placenta, considering subchorial, middle and basal levels. All parameters were homogeneously distributed along the thickness of the placenta. We discuss the functional implications of our findings. Villous surface area values ranged from 8.6 to 13.3 m2 (mean = 10.9 m2). Respiratory areas ranged from 0.97 to 2.43 m2 (mean = 1.57 m2). Between 1:10 and 1:5 of the villous surface area corresponded to the respiratory area.

Adult↗