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Biomedical subjects

Fadil Kara

Publications and source records attributed to Fadil Kara.

2 recordsLinked to original sources

Biology of stem cells in human umbilical cord stroma: in situ and in vitro surveys.

Cells in the umbilical cord stroma have gained attention in recent years; however, differentiation to certain lineages in humans has been demonstrated in few studies. Unlike bone marrow MSCs, human umbilical cord stroma cells (HUCSCs) are far from being well characterized. This study attempts to describe proliferation, structural, and differentiation properties of these cells to account for their exceptional nature in many aspects. Cellular dynamics, cellular structure, and the degree of transformations during expansion and differentiation into mesenchymal and neuronal lineages were examined in vitro over a 10-month period. Comparisons with human bone marrow MSCs regarding differentiation were performed. HUCSCs in culture revealed two distinct cell populations, type 1 and type 2 cells, that possessed differential vimentin and cytokeratin filaments. Corresponding cells were encountered in cord sections displaying region-specific localization. alpha-Smooth muscle actin and desmin filaments, which were evident in cord sections, diminished through passages. No difference was noted regarding type 1 and type 2 cells in differentiation to chondrogenic, adipogenic, and osteogenic lineages, whereas a preferential differentiation was noted in neuronal lineage. Relative success was achieved by production of chondrocytic spheres and osteogenic monolayers, whereas adipocytes were immature compared with bone marrow MSCs. The presence of neuronal markers suggests that they transform into a certain state of maturity under neurogenic induction. Conclusively, HUCSCs retain their original phenotype in culture without spontaneous differentiation, have a limited lifespan, and bear multipotent stem cell characteristics. Given these characteristics, they may be generally considered progenitor cells if manipulated under appropriate conditions and deserve further study to be potentially used in cell-based therapies.

Cell Differentiation↗

Maternal height as a risk factor for Caesarean section.

BACKGROUND: Maternal height has been reported as an obstetric risk factor, since short maternal stature may be associated with an increased incidence of obstructed labour due to cephalopelvic disproportion. MATERIALS AND METHODS: There were 373 nulliparous women who were 150 cm or less in height (total n=5,650) and 367 women who were below 19 years old in the study group and 48 of these women were 150 cm or less in height. There were 37 patients who were 150 cm or less in height and over 39 years old. RESULTS: There was no statistically significant difference between the rates of Caesarean section in patients who were 150 cm or less in height and patients who were taller than 150 cm (P>0.05). However, the rate of Caesarean section was higher in patients who were 150 cm or less in height and below 19 years old (P<0.05) and over 39 years old (P<0.05). CONCLUSION: Short maternal height (<150 cm) was not associated with a greater likelihood of Caesarean section for cephalopelvic disproportion. However, patients who were below 19 years old and over 39 years old with a height of 150 cm or smaller had a greater likelihood of undergoing Caesarean section.

Adolescent↗