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Biomedical subjects

R Taga

Publications and source records attributed to R Taga.

At least 19 recordsLinked to original sources

Bone morphogenetic proteins: from structure to clinical use.

Bone morphogenetic proteins (BMPs) are multi-functional growth factors belonging to the transforming growth factor ss superfamily. Family members are expressed during limb development, endochondral ossification, early fracture, and cartilage repair. The activity of BMPs was first identified in the 1960s but the proteins responsible for bone induction were unknown until the purification and cloning of human BMPs in the 1980s. To date, about 15 BMP family members have been identified and characterized. The signal triggered by BMPs is transduced through serine/threonine kinase receptors, type I and II subtypes. Three type I receptors have been shown to bind BMP ligands, namely: type IA and IB BMP receptors and type IA activin receptors. BMPs seem to be involved in the regulation of cell proliferation, survival, differentiation and apoptosis, but their hallmark is their ability to induce bone, cartilage, ligament, and tendon formation at both heterotopic and orthotopic sites. This suggests that, in the future, they may play a major role in the treatment of bone diseases. Several animal studies have illustrated the potential of BMPs to enhance spinal fusion, repair critical-size defects, accelerate union, and heal articular cartilage lesions. Difficulties in producing and purifying BMPs from bone tissue have prompted the attempts made by several laboratories, including ours, to express these proteins in the recombinant form in heterologous systems. This review focuses on BMP structure, molecular mechanisms of action and significance and potential applications in medical, dental and veterinary practice for the treatment of cartilage and bone-related diseases.

Animals↗

Post-natal maturation of acinar cells of the guinea pig pancreas: an ultrastructural morphometric study.

The morphological maturation of the acinar cells of the guinea pig pancreas during post-natal development was characterized morphometrically by determining the intracytoplasmic accumulation of rough endoplasmic reticulum (RER) and zymogen granules. The following results were obtained for the period analysed, i.e., from 2 to 70 days of post-natal life: (a) the acinar cell volume increased by 210% (P < 0.01); (b) the mostly cisternal RER occupied more than 30% of the cytoplasm at any age studied and their total volume and surface in the cell were increased by 300 and 534% (P < 0.01), respectively; (c) maturation in the morphological pattern of the RER was observed; (d) the mean number of zymogen granules per cell increased from 261 at 2 days to 422 at 70 days (P < 0.01), while their mean diameter increased from 0.52 to 0.94 micron (P < 0.01) during the same period; (e) these increases in granule number and size were responsible for a 500% (P < 0.01) increase in total volume from 2 to 70 days and for a 304% increase (P < 0.01) in total surface from 2 to 35 days; (f) the RER and the zymogen granules together occupied 44, 54, 55 and 57% of the cytoplasm at 2, 14, 35 and 70 days of age, respectively. We conclude that although the pancreatic acinar cells of the guinea pig are morphologically well differentiated at 2 days of age, with the cytoplasm already showing a large amount of RER and zymogen granules, they are still immature. Morphological maturation of the acinar cell occurs during the first months of post-natal life and is characterized by a substantial gain in cell volume and intracytoplasmic accumulation of RER and zymogen granules, which significantly increase of both their absolute volume and total surface, with a higher growth rate being observed during the period from 2 to 14 days of post-natal life.

Animals↗

Hyperplasia of myoepithelial cells expressing calponin during atrophy of the rat parotid gland induced by duct ligation.

The number and location of myoepithelial cells in the rat parotid gland submitted to surgical ligation of its main excretory duct were studied through immunohistochemical labelling for calponin. These cells were labelled by the streptavidin-biotin method using anti-calponin primary antibody, and their number was determined during each step of glandular atrophy, i.e., at time zero (control) and 1, 7, 15, 21, 30 and 60 days after ligation. Morphological analysis showed a gradual decrease and fibrosis of the glandular lobules accompanied by disappearance of the acini and the occurrence of duct-like structures. The expression of calponin was observed in all specimens analysed, being restricted to myoepithelial cells. Labelling revealed the distribution of myoepithelial cells around the acini and intercalated ducts in the control group and around duct-like structures later during the course of atrophy. Quantitative analysis demonstrated significant increase in the number of myoepithelial cells up to day 7 post-ligation, followed by gradual increases which, however, were not statistically significant. These results suggest that myoepithelial cells proliferate intensely up to day 7 post-ligation, an event that coincides with a higher rate of disappearance of acinar cells. After this period, the elevatednumber of cells observed at the end of the previous period is maintained.

Animals↗

Allometric analysis of the postnatal development of the Syrian golden hamster pancreas.

The objective of the present study was to analyse allometrically the growth of the Syrian golden hamster pancreas during days 2 to 70 of postnatal development. Body and pancreatic mass were determined, followed by stereological determination of the absolute volume of each morphological compartment of the pancreas. The marked pancreatic growth, by 4360%, was due to an increase in the absolute volume of all morphological compartments, mainly the acini which showed an increase of 10 431%. Bivariate allometric analysis of pancreatic mass and morphological compartmental volume in relation to body mass gain showed: (1) a biphasic pattern for pancreatic mass, acinar volume, excretory duct volume and stromal volume, with the first phase being observed from 2 to 21 days of age and the second from 21 to 70 days of age, with allometry coefficients of 1.537-0.513, 1.770-0.543, 1.651-0.506 and 0.967-0.258, respectively, and (2) a monophasic pattern from 2 to 70 days for intercalated duct volume and islet volume, with allometry coefficients of 0.913 and 1.727, respectively. These results show that during the growth of the pancreas in relation to that of the body some structures - acini and excretory ducts - follow the growth pattern of the organ, while others - intercalated ducts and islets - show a different pattern. This may be related to the genetic growth characteristics of each compartment itself or to some relationship between compartments during some stage of the ontogenetic development of this organ.

Animals↗

Cell population growth in the rat parotid gland during postnatal development.

The growth kinetics of different cell populations in the rat parotid was studied. The evolution of the frequency and absolute number of each cell type was determined morphometrically by a particle-counting method and the evolution of the [(3)H]thymidine labeling indices of the same cell types was determined by autoradiography. The data obtained for the evolution of cell number in each gland compartment, i.e. acini, intercalated ducts, striated ducts and stroma, were adjusted by exponential equations, permitting estimation of the effective cell accumulation rate in the compartment for each population, i.e. the mean population duplication time (T(D)). In addition, the cell production rate in each gland compartment was determined using the mean labeling index for the period studied and a mathematical estimation of the mean cell generation time (T(G)), assuming an exponential growth pattern for the acinar, intercalated duct and striated duct populations during the period from 5 to 20 days of postnatal development. Analysis of the relation between effective cell accumulation (T(D)) and presumed cell production (labeling index and T(G)) for each intralobular parenchymal compartment of the rat parotid during this period suggests that the proliferative activity of the acinar cell population was sufficient to guarantee marked growth of its compartment and provided cells that presumably dedifferentiated into intercalated duct cells, whereas cells produced in the intercalated duct compartment migrated to, and differentiated into, cells of the striated duct compartment.

Analysis of Variance↗

Congenital fistulae of the lower lip in Van der Woude syndrome: a histomorphological study.

OBJECTIVE: To evaluate a significant number of cases of fistulae of the lower lip with the light microscope in order to investigate the histological variation and to attempt to define the histopathological pattern of the lesion. METHODS: Congenital fistulae of the lower lips of 17 patients with Van der Woude syndrome were analyzed by light microscopy. RESULTS AND CONCLUSION: The walls of most of the fistulae consisted of stratified nonkeratinized squamous epithelium and a lamina propria of dense connective tissue with areas of lymphohistiocytic inflammatory infiltrates. Bundles of striated muscle fibers, blood vessels, nerves, adipose tissue, and mixed acinar glands were observed. These glands surrounded the entire wall of the lesion, and their excretory ducts opened into the lumen of the fistula, explaining the clinical observation of elimination of mucous secretion through the opening of the fistula. Two microform cases of fistula were analyzed that presented only a depression in the epithelium at the site corresponding to the opening of the fistula.

Adipose Tissue↗

Morphometric dimensions of Syrian golden hamster pancreas of both sexes.

The morphometric dimensions of the various structures of the pancreas of adult Syrian golden hamsters, of both sexes, were evaluated using stereological methods. The average body mass of the animals used was 133.8 +/- 2.45 g and 140.6 +/- 7.98 g for the males and females, respectively, and the pancreatic mass, 389.9 +/- 14.88 and 409.7 +/- 21.42 mg, respectively. The analysis of variance of the obtained data showed that: a) the acini, intercalated ducts and stroma did not present statistically significant differences in any of the dimensions evaluated, with the exception of the nucleus volume of the acinar cells which was 8.5% larger in the female (P < 0.05); b) the excretory ducts exhibited surface density, total external surface, surface-to-volume ratio, and absolute cell number, 18%, 33%, 14%, and 44%, respectively, larger in the females (P < 0.05); and c) the pancreatic islets of the females exhibited volume density, total volume and absolute cell number, 20%, 27% and 27%, respectively, larger than those of the males (P < 0.05).

Animals↗

Postnatal development of the rat sublingual glands. A morphometric and radioautographic study.

The postnatal development of rat sublingual glands was analyzed by morphometric and radioautographic studies. The absolute number of each cell type was evaluated by the Aherne II morphometric method for cell counting and labeling indices of these cell types were determined in radioautographs from animals injected with 3H-thymidine. The quantitative cell population kinetic studies were accompanied by morphologic analysis of the modifications in each gland structure. The data concerning evolution of number of each cell type were submitted to analysis by least squares fit-exponential curve. The exponential equations duplication times for the acinar, serous demilune, intercalated duct, striated duct and stroma cells from 2 to 30 days of age were 7.5, 9.0, 10.8 and 9.5 days, respectively. On the other hand, the mean labeling indices for the same cell types during the same period were 9.5%, 5.8%, 7.2%, 3.3% and 4.3%, respectively. Thus, the intercalated duct cells exhibited the second highest labeling index and the slowest growth rate, while the striated duct cells showed the lowest labeling index and the third highest duplication time. The fact that the striated duct cell labeling index does not explain the relatively short duplication time of these cells, suggests that cells from other neighboring morphologic compartments, probably from intercalated duct, migrate and differentiate into striated ducts cells.

Aging↗

Morphometric and allometric study of the mouse exocrine pancreas growth during the postnatal life.

Postnatal mouse pancreas growth was submitted to allometric analysis by the Wald nonparametric method, modified by Bartlett. The body and gland mass were obtained and the total cell number and the absolute compartmental volumes of acini, ducts and stroma were evaluated by morphometric methods. The allometric coefficients were calculated for the growths between the following parameters: a) pancreatic mass and body mass; b) acinar compartmental volume and body mass; c) ductal compartmental volume and body mass; d) stroma volume and body mass; e) total cell number and body mass; and f) acinar volume and stroma volume. The results of these analysis showed that the pancreatic mass, total cell number and stroma volume exhibited statistically significant allometric growths with a monophasic pattern and allometric coefficients of 1.56, 1.27 and 1.29, respectively, for the periods of 2 to 70, 2 to 28 and 2 to 70 days of age; while the growth of compartmental acinar volume in relation to body mass and compartmental stroma volume was biphasic. In the first case, the 1st phase occurred between 2 to 14 days (K = 1.09) and the 2nd phase between 14 to 70 days (K = 1.44) and in the second case, the 1st and 2nd phases occurred, respectively, between 2 to 28 days (K = 1.31) and 28 to 70 days (K = 0.79) of age. The growth of ductal volume in relation to body mass was also biphasic with a 1st phase between 2 to 14 days (K = 0.88) and a 2nd phase between 14 to 70 days (K = 1.07). These results permitted us to conclude that the growth of the mouse pancreas is allometrically associated with the growth of body mass.

Animals↗

Stereological study of acinar growth in the rat parotid gland induced by isoproterenol.

The growth of the rat parotid gland induced by daily treatment with isoproterenol (IPR) for 2 weeks was investigated by stereological methods applied to light microscopy. After 7 days of treatment, the glandular mass presented a 286% growth, with the first 3 days being the period of greatest growth. Total acinar volume exhibited a 363% increase during the period from 0 to 7 days, while acinar-cell volume presented a 468% growth from 0 to 5 days of treatment. On the other hand, total acinar-cell number did not increase during the study period. Thus, under the conditions used, IPR-stimulated gland growth was essentially hypertrophic. However, a significant increase in the number of bipolar and multipolar mitoses was also observed, especially on the third and fifth days of treatment. As no increase in acinar-cell number occurred during growth, the presence of these mitoses suggests that cell death occurred during gland growth. On this basis, bipolar mitoses may occur to replace cells that probably degenerated during treatment, whereas multipolar mitoses may lead to the occurrence of polyploidy.

Animals↗

Relationship between lower-lip fistulae and cleft lip and/or palate in Von der Woude syndrome.

OBJECTIVE: This study was conducted to evaluate the relationship between fistulae of the lower lip and cleft lip and/or palate in patients with Van der Woude syndrome. METHODS: The medical records of 11,000 patients with cleft lip and/or palate registered at the Cleft Lip-Palate Research and Rehabilitation Hospital, University of São Paulo, Bauru were reviewed. Of these patients, 133 (1.2%) presented with Van der Woude syndrome. RESULTS: Of the 133 patients, 88 (66.2%) exhibited full clefts, 22 (16.5%) only cleft lip, and 23 (17.3%) only cleft palate. The lower-lip fistulae observed in these 133 patients were bilateral symmetric in 66 (49.7%), bilateral asymmetric in 42 (31.6%), microform in 19 (14.3%), median in 5 (3.8%), and unilateral in 1 (0.7%). CONCLUSION: This population sample appears to exhibit the previously published tendency for bilateral, unilateral, or mixed-type congenital fistulae to be associated with cleft lip with or without cleft palate, while so-called microforms or conic elevations are almost exclusively associated with cleft palate.

Child↗

Stereological study of the sexual dimorphism in mouse submandibular glands.

The sexual dimorphism of the mouse submandibular glands was studied by stereological methods. Albino mice of both sexes aged 140 days were used. Their average weight was 34.7 g por males and 26.0 g for females. The following morphometric dimensions were evaluated for the acini, intercalated ducts, convoluted granular tubules, striated ducts, excretory ducts and stroma: volume density, total volume, surface density, total external surface, surface-to-volume ratio, nuclear and cellular volume, and absolute number of cells. We also determined the mean diameters and estimated the total length of striated ducts and granular tubules in the gland. Analysis of the results showed that sexual dimorphism is present in all the morphological compartments of the mouse submandibular glands.

Animals↗

Allometric study of the postnatal development of the rat sublingual glands.

The authors studied the rat sublingual glands growth in the period of 2 to 40 days of the postnatal life. The allometric coefficients for the gland mass growth and morphometrically evaluated volume of different gland components in relation to body mass growth, and for the parenchymal volume growth in relation to stroma volume growth, were calculated by the Wald non parametric method, modified by Bartlett. The allometric analysis showed that the gland mass, the mucous cells volume, the serous cells volume, the duct volume and the stroma volume exhibited statistically significant allometric growths with monophasic pattern and allometric coefficient of 0.93, 1.11, 0.76, 0.86 and 1.00, respectively. The analysis of the confidence intervals for these various k values, permitted to conclude that the differential growth of the gland mass is isometric, of the mucous cells volume is positive, of the serous cells and duct are negative and of the stroma volume is isometric.

Animals↗

Autoradiographic evaluation of the cell cycle parameters of the various cells categories of the parotid, submandibular and sublingual glands of the suckling rat.

The evolution of the percentage of radioactive mitosis after a single thymidine-H3 injection, was determined for the various cell categories of the parotid, submandibular and sublingual glands of rats at 5th and 15th day of postnatal age. Estimates of the lengths of the S and the G2 + M/2 phases of the cell cycle were thus obtained, and averaged 9.8 and 2.7 hours, respectively, with extreme values of 9.3-11.2 and 1.6-3.2 hours.

Animals↗

[Ultrastructural morphometric study of sex dimorphism in cells of the ductus granulosus of the submandibular glands of mice].

The sexual dimorphism in the secretory cell of the granular convolated tubule of mouse submandibular gland was morphometrically studied in light and electronic microscope level. In semithin sections (0.5 micron) the nuclear volume (Bach, 1963) and the fractions of cellular volume occupied by the nucleus and by cytoplasm were determined (Chalkley, 1943). In twenty electronmicrographs per animal with a final magnification of x 15.000, using the Weibel's et al. (1966) multiproposition test system, were obtained relatives morphometrics data, which multiplied by the cytoplasmatic volume provided us the respective absolute values. The results showed a presence of a sexual dimorphism at subcellular level. The secretory cell of the male is higher and exhibit a greater volume when compared with that cells of the female. In the male that cells are characterized by a higher total volume of the endoplasmic reticulum, Golgi complex and secretory granules. The secretory granules and the condensation vacuoles size are more developed in male cells. The female secretory granular cells exhibit a greater absolute number of the condensation vacuoles and secretory granules, as well as, a higher mitochondria total volume and surface.

Animals↗

Morphometric studies on terminal tubule and acinar cells in developing submandibular gland of the rat.

Morphometric studies were conducted on rat developing submandibular gland. Terminal tubule cells from 5 and 15-day-old, and acinar cells from 15 and 30-day-old animals, were respectively studied. Radii of approximately spherical terminal tubule cell nuclei were measured in 0.5 micron thick sections; the nuclear volumes were estimated using BACH's method. The volume of nuclei from non-spherical acinar cell was obtained indirectly. The fractions of cellular volume occupied by the nucleus and cytoplasm in both secretory cells were also evaluated and the cytoplasmic volumes thus obtained. Volume density, surface density and surface-to-volume ratio of the rough endoplasmic reticulum, Golgi complex, secretory granules and mitochondria, and derived stereological parameters, were determined. The secretory cells of older rats exhibited a greater cytoplasmic volume and higher total volume and surface area of organelles than cells from younger animals. The net daily accumulation of rough endoplasmic reticulum membrane surface area in terminal tubule and acinar cells was 157.7 microns2 and 330.4 microns2, respectively. These values represent a gain of rough endoplasmic reticulum membrane surface of 10.0% and 6.7%, respectively, along the intervals studied.

Animals↗

Ultrastructure of the exocrine pancreas in the snake Waglerophis merremii (Wagler).

Three types of serozymogenic cells were found in the secretory compartment of the snake exocrine pancreas. Type I cell was the most common and presented a well-developed granular endoplasmic reticulum arranged in cisternal and vesicular forms. The cisternal form was located predominantly in the basal regions of the cell and the vesicular form was found in the supranuclear regions of the cell next to a prominent Golgi complex. Mature secretory granules were seen at the cell apex. The cytoplasmic matrix of the Type II cells was electron dense but had only poorly-developed organelles. Secretory granules were rare. The cytoplasmic matrix of the Type III cells was electron lucent and the granular endoplasmic reticulum in the cisternal form was located predominantly in the supranuclear region, whereas the vesicular form was randomly distributed throughout the cytoplasm. The nucleus appeared pale due to the fine dispersion of the chromatin; the nucleolus was prominent. Centroacinar and intermediate cells were also examined.

Animals↗