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Biomedical subjects

N González-Cadavid

Publications and source records attributed to N González-Cadavid.

7 recordsLinked to original sources

Cavernosal nerve stimulation in the rat reverses castration-induced decrease in penile NOS activity.

Castration in the rat reduces both the erectile response and penile nitric oxide synthase (NOS) activity, and these effects are prevented by androgen administration. In this study we determined that the decrease of penile NOS in the castrated rat is due to NOS enzyme inhibition rather than to a reduction of its content and that this inhibition may be reversed. Adult rats were either castrated or left intact, and, after 1 wk, electrical field stimulation (EFS) was applied to the cavernosal nerve and the penises were excised either at the peak of erection or after detumescence. Penile NOS activity in the non-EFS castrates decreased by 70% as compared with the intact non-EFS-treated controls, but neuronal NOS content remained unaffected despite changes in regional distribution. NOS activity in the castrated penis was restored to normal values by EFS at the peak of stimulation, and then decreased on detumescence. This was in contrast to the intact controls in which EFS did not stimulate penile NOS activity. These data indicate that androgen depletion in the rat reduces penile NOS activity rather than NOS content and that this enzyme inhibition is reversed by cavernosal nerve stimulation.

Animals↗

Effect of aging on nitric oxide-mediated penile erection in rats.

Aging is an important risk factor for impotence in men. Because nitric oxide (NO) appears to be the mediator of corpora cavernosal smooth muscle relaxation, we have examined in 5-, 20-, and 30-mo-old rats, designated "adult," "old," and "senescent," respectively, whether aging causes a decrease of erectile response that may correlate with lower NO synthase (NOS) in the penis. Electric field stimulation (EFS) of the cavernosal nerve showed that the maximum intracavernosal pressure (MIP) declined in the old and senescent rats to 80 and 51% of the adult value, respectively. A low systemic dose of the NOS inhibitor, N omega-nitro-L-arginine methyl ester (L-NAME; 2 mg/kg), reduced the MIP by only 38% in the adult rats but decreased it in the old and senescent rats by 72 and 80%, respectively. In the absence of EFS, intracavernosal papaverine (phosphodiesterase inhibitor), or nitroglycerin (NO donor), caused a lower erectile response in the old and senescent rats compared with the adult animals (MIP: 41 and 14%, respectively; duration of the erection 46 and 21%, respectively). Tissue sections from old and senescent penises showed increasing degrees of sclerotic degeneration. In comparison with the adult rats, the penile soluble NOS activity per gram of tissue that is sensitive to L-NAME decreased significantly by 63% in the senescent rats but was elevated in the old rats. These results indicate that aging causes an erectile failure due to factors initially independent from an impairment of penile NO synthesis but which are compounded in the very old rats by the decrease of penile NOS activity.

Aging↗

Up-regulation of the levels of androgen receptor and its mRNA by androgens in smooth-muscle cells from rat penis.

Smooth-muscle cells cultured from the penis of sexually immature (I-PSMC) and adult (A-PSMC) rats express similar high levels of the androgen receptor (AR) mRNA. This contrasts with the marked in vivo decline of both AR mRNA and androgen binding in the penile smooth muscle of adult rats, which appears to be responsible for the cessation of androgen-dependent penile growth upon sexual maturation. PSMC is therefore a good model to study putative down-regulators of AR expression as a function of cell proliferation in the smooth muscle of androgen-responsive vascular tissue. In order to determine whether AR protein levels in PSMC correlate with AR mRNA levels, the immunocytochemical detection of ARs and their androgen binding capacity were compared between I- and A-PSMC. The number of ARs and their protein half-lives suggested similar levels of translation of the AR mRNA in both cell lines. The effect of the synthetic analog methyltrienolone (R-1881) on androgen binding was studied in contact-inhibited androgen-deprived PSMC. In contrast to the postulated role of androgens as down-regulators of AR expression in rat penis, ARs were up-regulated in A-PSMC by R-1881. Contact inhibition of A-PSMC combined with serum depletion and androgen deprivation down-regulated AR mRNA levels, and dihydrotestosterone (DHT) counteracted this effect. These results suggest that the loss in A-PSMC of the age-dependent down-regulation of ARs observed in vivo in adult corpora cavernosa smooth muscle is related to the in vitro resumption of cell proliferation and that DHT acts directly on the penile smooth muscle as a positive modulator of AR levels.

Actin Cytoskeleton↗

Inhibitors of cytoplasmic protein synthesis purified from rat liver mitochondria.

Purified mitochondria from rat liver were found to contain protein synthesis inhibitors, that could be extracted by disruption of mitochondrial membranes and fractionated by gel filtration into two fractions of low and high molecular weight. Small size inhibitors were also released from the latter peak by high ionic strength followed by gel filtration. Both types of factors inhibit incorporation of radioactive amino acids into protein by liver cytoplasmic polysomes programmed with endogenous mRNA or poly U, and by rabbit reticulocyte lysates programmed with added globin mRNA and by incubations of Walker carcinoma cells. They decrease to the same level the cytoplasmic synthesis of proteins for the mitochondrial and extra-mitochondrial compartments in intact cells, but do not appear to inhibit substantially endogenous mitochondrial protein synthesis. Inhibitors were purified by paper chromatography and reverse phase high performance liquid chromatography into fractions which block with the same kinetics the incorporation of [14]leucine and [35]methionine into protein in systems able to initiate protein synthesis, such as reticulocyte lysates or intact cells, but differ in this respect in incubations of liver ribosomes where re-binding of mRNA is a limiting step. Some of these factors behave as oligopeptides that are assumed to inhibit in vitro primarily the initiation stage but whose function in vivo is still undetermined.

Animals↗

Establishment and characterization of cell lines from the Walker carcinoma 256 able to grow in suspension culture and deficient in thymidine kinase.

A cell line from the Walker carcinosarcoma 256 of the rat has been established in suspension culture in medium with 5% bovine calf serum for over 350 generations, with an average population doubling time of 17 h, a plating efficiency of 56%, a colony forming efficiency of 32%, and a good capacity to form colonies in soft agar. The cells are morphologically indistinguishable from those in the solid tumor and ascites as checked by transmission and scanning electron microscopy. The karyotype is characterized by a modal number of 65 chromosomes and by the presence of a marker metacentric chromosome. The cells express thymidine kinase, gamma-glutamyl transpeptidase, and alkaline phosphatase; are agglutinable by concanavalin A; and can be synchronized by the triple thymidine block. They induce primary tumors, both subcutaneously (solid) and intraperitoneally (ascitic), in the rat; are able to metastasize upon injection by the tail vein; and invade the chorioallantoic membrane of the chick embryo. Cells in suspension can be transferred to monolayers, considerably decreasing their tumorigenicity without affecting the other parameters studied, and can be switched back to suspension culture. DNA-mediated transfection showed that DNA from these cells can transform the NIH-3T3 line. Upon growth of the monolayers in a BrdUr-containing medium, a sub-line was established that was cloned into a thymidine kinase-deficient line unable to grow in HAT medium and with properties otherwise similar to those of the parental wild type cells.

Animals↗

The significance of the incorporation of [14C] leucine into different protein fractions by isolated ox heart mitochondria.

The problem of whether isolated mitochondria are able to synthesize specific proteins was investigated, particular consideration being paid to the possible contribution of micro-organisms to this activity. With ox heart mitochondria it was shown that: (1) The medium used for the incubations inhibits the exponential phase of bacterial growth for at least 8h either in the absence or the presence of fresh mitochondria, but the inhibition disappears after 4h when mitochondria damaged by freezing and thawing are used. (2) The incorporation of [(14)C]leucine into total proteins is linear up to at least 8h, although part of the radioactivity at the later periods might be due to some incorporation by resting-phase bacteria. (3) A contamination by as little as 800 cells/mg of mitochondrial protein is enough to contribute substantially to the total radioactivity incorporated by the mitochondrial preparations. (4) Purified cytochrome b and cytochrome oxidase are labelled even under conditions of minimal contamination by micro-organisms (less than 60 cells/mg of mitochondrial protein) and the contribution of bacterial proteins to the radioactivity found in cytochromes is negligible, as shown by double-labelling experiments. (5) At 4h the specific radioactivities of cytochrome b and cytochrome oxidase are seven- and 16-fold lower respectively than that of a structural protein-rich fraction, suggesting that the labelling of cytochromes is due to a residual contamination by these proteins.

Animals↗