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Biomedical subjects

R M Brenner

Publications and source records attributed to R M Brenner.

At least 73 records · Page 4Linked to original sources

Chlamydial infection of subcutaneous fimbrial transplants in cynomolgus and rhesus monkeys.

Acute infection with Chlamydia trachomatis serotype E was established in monkey fallopian tube fimbriae by subcutaneous implantation. Depending upon monkey species, from eight to 20 implants could be established in each animal. Animals were given estrogen before percutaneous inoculation of the autografts with Chlamydia. Acute inflammatory changes were found in homografts examined in the first week after infection, with chronic inflammatory changes noted thereafter. Chlamydial inclusions were detected within fimbrial epithelial cells up to seven days postinoculation by fluorescent-antibody staining and immunoperoxidase staining with C. trachomatis-specific monoclonal antibody. Organisms were recovered from autografts up to five days after infection. Analysis of serum antibody by microimmunofluorescence revealed that serotype E-specific antibody of both IgM and IgG classes was produced after infection. We conclude that subcutaneously implanted fallopian tube autografts may provide a useful primate model for kinetic studies of chlamydial infection and immunity.

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Histological techniques for the study of granular cells during wound healing.

We have used GMA-embedded tissues sectioned 2-3 mu for the identification of granulated cells in wounded and normal macaque tissues. Mast cell granules stain brilliantly with Giemsa or with PAS counterstained with alcian blue, neutrophils stand out clearly when treated with the PAS method and macrophage granules stain with PAS as well as with basic dyes. These techniques are helpful for the identification of these cells during wound healing and during inflammatory processes.

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Immunocytochemistry versus binding assays of the estrogen receptor in the reproductive tract of spayed and hormone-treated macaques.

We used immunocytochemistry (ICC) with monoclonal antibodies to the estrogen receptor (ER) to localize ER in the oviducts, uteri, and cervix of untreated, estrogen-treated, and estrogen-progestin-treated spayed macaques. We also used binding assays with labeled estrogens to quantify nuclear and cytosolic ER levels in parallel samples of the same tissues. In untreated spayed animals, cytosolic ER levels were much higher than nuclear ER levels, but all specific staining was nuclear. After treatment for 14 days with estradiol (E2), the degree of staining for ER in cell nuclei in the oviduct, cervix, and endometrium had increased, and there were significant increases in both nuclear and cytosolic ER levels. In the myometrium, ER levels and ICC staining of nuclei increased minimally with E2 treatment. In animals treated for 2 weeks with E2 followed by 2 weeks with E2 and progesterone (P; sequential P treatment) the degree of nuclear ER staining in the oviduct, endometrium, and cervix greatly decreased, and cytosolic and nuclear levels of ER declined significantly. In the myometrium of such animals there was a minimal decrease in the degree of staining and a nonsignificant decline in cytosolic and nuclear ER levels. Sequential P treatment reduced the degree of nuclear staining in the oviduct and endometrium below that found in spayed animals; however, such treatment only lowered the amount of cytosolic, not nuclear, ER significantly below spayed levels in those same tissues. Some animals were treated sequentially with P and sampled 1, 3, 12, and 24 h after the onset of P treatment. By 1 h, nuclear ER levels in the endometrium were significantly suppressed, but cytosolic levels were not lowered until 3 h of treatment; ICC staining was also not substantially reduced until 3 h of P treatment. In the oviduct, nuclear ER levels were significantly reduced by 1 h of P treatment, but cytosolic levels were not lowered until after 12-24 h of P treatment; the degree of nuclear staining in the oviduct was also not substantially reduced until 12-24 h of P treatment. In myometrium, there was no significant decline in ER in nuclear or cytosolic fractions or any substantial decrease in the degree of nuclear staining at any time during this treatment. These observations suggest that the ER detected by ICC in the nuclei of target cells in frozen sections represents the total ER detectable by binding assays in cytosolic and nuclear fractions.(ABSTRACT TRUNCATED AT 400 WORDS)

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Differential suppression of progesterone receptors by progesterone in the reproductive tract of female macaques.

Ovariectomized cynomolgus macaques were treated with implants of estradiol (E2) for 14 days. Some animals then received an additional implant of progesterone (P) for 7-14 more days. After treatment with either E2 alone or with E2 plus P we removed the reproductive tracts and measured nuclear and cytosolic P receptors by exchange assay. In addition we used steroid radioimmunoassays(RIA) to measure levels of E2 and P in parallel aliquots of the nuclear and cytosolic fractions. P treatment reduced the concentrations of E2 in nuclear and cytosolic fractions in the cervix, endometrium, myometrium and oviduct compared to the amounts present after 14 days of E2; these data are consistent with many reports that P treatment significantly lowers the amount of nuclear and cytosolic estrogen receptors in all of these tissues. In the oviduct, myometrium and cervix both cytosolic and nuclear P receptor levels were lowered during P action. In the endometrium, however, P treatment reduced the amount of P receptor only in the cytosolic but not the nuclear fraction. RIA determinations of the amount of P retained in nuclear fractions of the P-treated animals indicate that P levels were significantly elevated only in the nuclei obtained from endometrium. This specific increase in the retention of P by endometrial nuclei during P action is consistent with the specific retention of P receptor by endometrial nuclei. These results lead to the unexpected conclusion that the stimulatory effects of P as expressed in the maintenance of the progestational state in the primate endometrium may require higher levels of occupied nuclear P receptor than do the suppressive effects of P as expressed in oviductal atrophy, diminished cervical secretion and myometrial quieting.

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Analysis of monomeric-dimeric states of the estrogen receptor with monoclonal antiestrophilins.

We studied the antibody-combining properties of 3 forms of the estrogen receptor found in buffers of high ionic strength. Shifts to a faster sedimenting peak on sucrose gradients or a faster eluting peak on a gel filtration column with antibody addition allowed us to determine whether a given form contained one, two or more antibody-binding sites. The monomeric cytosolic estrogen receptor, ERC, contained one antibody binding site for each of 2 monoclonal antiestrophilins (H222 and H165, provided by Abbott Laboratories). Both the heat-transformed cytosolic estrogen receptor, ERC*, and a major fraction of the estrogen receptor extracted from nuclei, ERN, contained two sites for H165, but only one for H222. A minor fraction of ERN had only one site for each antibody. The kinetics of transformation of ERC to a species with two H165 binding sites were appropriate to a dimerization of ERC*. Addition of H222, but not H165, before the onset of the heat-induced transformation blocked the formation of ERC to ERC. These data suggest that ERC* and a major form of ERN are comprised of two immunologically similar subunits identical to ERC. Also, the antigenic determinant for H222, but not H165, appears to be located close to the dimerization domain. The minor form of ERN appears to contain an altered or dissimilar subunit.

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Increased hyaluronate and collagen biosynthesis and fibroblast estrogen receptors in macaque sex skin.

Sequential steroid administration of estradiol (E2) and progesterone (P) in spayed pigtailed macaques was used to precisely control the time course of sex skin swelling. After removal of the P implant, the sex skin swelled considerably and the water content of the sex skin increased manyfold over that of back skin. During the swelling phase, hyaluronate biosynthesis in sex skin increased dramatically compared with back skin of the same animals. Collagen synthesis also increased but to a lesser extent. Estrogen receptor levels were undetectable in back skin and very low in spayed animals that had been treated with both E2 and P. After removal of the P implant, both the level of estrogen receptor and the rate of hyaluronate biosynthesis increased. Immunocytochemistry with monoclonal antibodies against the estrogen receptor showed that the dermal fibroblast was the only cell type to stain positively for estrogen receptor. We conclude that the sex skin swelling that follows P withdrawal in pigtailed macaques bearing E2 implants is mediated by estrogen receptors in dermal fibroblasts and is a result of increased hyaluronic acid synthesis by these cells.

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Immunocytochemical localization of estrogen receptors in the macaque endometrium during the luteal-follicular transition.

We examined changes in estrogen receptors (ERs) in endometrial stromal and epithelial cells in cynomolgus macaques during artificially induced menstruation and repair. We used Silastic implants filled with either estradiol (E2) or progesterone (P) to treat spayed animals for 14 days with E2 followed by 14 days of E2 plus P. We then withdrew the P (but not the E2) implants and removed uteri 0, 0.5, 1, 2, 3, 4, 5, 7, and 14 days later. Uterine tissues were assayed biochemically for ER content, fixed for histology and frozen for immunocytochemistry of ER with monoclonal antiestrophilins. On day 0, ER levels in endometrium were low [1330 +/- 201 (n = 9) fmol/mg DNA]. An increase in total receptor was evident by 3-4 days of P withdrawal 2762 +/- 190 (n = 6) fmol/mg DNA; P less than 0.001]. Total receptor concentrations increased linearly with time from 0.5-7 days of P withdrawal (r = 0.88). On day 0, staining for nuclear ER in the glandular epithelium and stroma of zones I, II, and III of the endometrium was negative. Beginning at 12-24 h and continuing through 4 days of P withdrawal, nuclear staining became detectable and increased in intensity only in endometrial stromal fibroblasts and myometrial smooth muscle cells. The glandular epithelium of the endometrium did not develop nuclear staining until 5-7 days of P withdrawal, coincident with a 10-fold increase in the mitotic index of the epithelium of the upper zones. Thus, the increase in endometrial ER levels that occurred during the first 5 days of an induced luteal-follicular transition took place almost exclusively in stromal fibroblasts.

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Progesterone-mediated suppression of estradiol receptors in cynomolgus macaque cervix, endometrium and oviduct during sequential estradiol-progesterone treatment.

We used sequential treatment with implants of estradiol (E2) and progesterone (P) to create varied hormonal states in a group of spayed cynomolgus macaques. The reproductive tracts were removed, and nuclear and cytosolic estrogen receptors were analyzed in the cervical mucosa, endometrium, and oviducts. Nuclear receptor quantities were greater in tissues of E2-treated monkeys than in tissues of spayed animals. Sequential P treatment, even in the presence of continuous E2, decreased the amounts of nuclear and cytosolic E2 receptors. In the oviduct and endometrium, the P-mediated suppression of receptors occurred within 1 or 2 days. In the cervix, suppression occurred only if the serum P:E2 ratio was elevated to twice the amount (approximately 100:1) usually found during the luteal phase of the menstrual cycle (approximately 50:1) in this species. Of these three reproductive tract tissues, the cervix had the highest threshold for suppression by P of E2 receptors in the presence of E2.

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Immunocytochemical localization of estrogen receptors in the macaque reproductive tract with monoclonal antiestrophilins.

Monoclonal antibodies to the estrogen receptor (anti-ER) were used to develop an immunocytochemical method to detect ERs in frozen sections of the macaque reproductive tract. Specific nuclear, but not cytoplasmic, staining occurred with two different methods: direct, in which an antiestrophilin -horseradish peroxidase conjugate was used as the first antibody, and indirect, in which a mixture of antiestrophilins was used in the first incubation step. Nuclear staining was absent when various control antibodies replaced the anti-ER. In uteri from spayed monkeys treated with estradiol (E2) for 14 days, nuclear staining was always present. In uteri from similar animals treated for an additional 14 days with E2 and progesterone, nuclear staining was almost completely absent. Mean endometrial nuclear ER levels, measured by an exchange assay, were 5-fold greater in the E2-treated than in the E2-plus progesterone-treated group. In addition, when samples of estrogenized uterus and oviduct were incubated for 60 min in vitro with 100 nM E2, the intensity of nuclear staining increased in parallel with an increase in the concentration of nuclear ER. The nuclei of stromal, smooth muscle, and epithelial cells of the estrogenized oviduct, cervix, and vagina as well as smooth muscle cells of the estrogenized myometrium were also receptor positive. Nontarget tissues, such as duodenum, colon, esophagus, and skeletal muscle, contained no cells that showed specific nuclear staining. Some staining of cytoplasmic and extracellular components occurred in all preparations. These latter reactions were nonspecific, because they were present in many nontarget tissues or when control antibodies replaced the anti-ER. With current methods, only nuclear ERs can be reliably localized in frozen sections of monkey tissues with monoclonal antiestrophilins .

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Estradiol synthesis by fetal monkey ovaries correlates with antral follicle formation.

We compared the morphology of ovaries from fetal rhesus monkeys at two different stages of gestation with the ability of ovarian tissue to synthesize androgens and estrogens in vitro. Ovaries collected between 80 and 104 days of gestation contained single-layered primordial follicles but no multilayered or antral follicles. Within these ovaries we found theca-like interstitial cells which contained abundant smooth endoplasmic reticulum and lipid droplets. These ovaries produced androstenedione and dehydropiandrosterone (but not estradiol) in vitro in the absence of exogenous substrates. Ovaries collected between Days 124 and 153 of gestation, however, contained numerous, well-developed multilayered and antral follicles. The ultrastructural characteristics of the thecal and granulosa cell layers were similar to those of adult ovarian follicles. These ovaries synthesized large amounts of androstenedione, dehydroepiandrosterone, and estradiol in vitro. Identity of the estradiol was confirmed by incubating homogenates of late gestation ovaries with [14C]progesterone, by isolation of estradiol and formation of its derivative, and by recrystallization to constant specific activity. In vitro cyclic AMP synthesis was stimulated by Pergonal (luteinizing hormone [LH] + follicle stimulating hormone [FSH] ) only in ovaries which contained multilayered and antral follicles, an indication that fetal ovaries contain gonadotropin receptors during late stages of development. These data indicate that fetal ovaries of rhesus monkeys attain the capacity for de novo estrogen biosynthesis and to respond to gonadotropins during late gestation, when multilayered and antral follicles have developed.

Androstenedione↗

Morphology of the oviducts and endometria of cynomolgus macaques during the menstrual cycle.

We sampled the reproductive tracts of 27 cynomolgus macaques during the menstrual cycle and correlated the cytologic changes in the oviductal epithelium with changes in the serum levels of estradiol (E2) and progesterone (P) and with the histology of the ovaries and the endometria. We identified an orderly sequence of changes in the oviductal epithelium from the early follicular to the late luteal phase, and we classified this sequence into eight stages, named as follows: preciliogenic, ciliogenic, ciliogenic-ciliated, ciliated-ciliogenic, ciliated-secretory, early regression, late regression and full regression. The preciliogenic and ciliogenic phases were coincident with menses and the early follicular phase. The ciliogenic-ciliated, ciliated-ciliogenic and ciliated-secretory phases during which the oviductal epithelium became progressively more differentiated were coincident, respectively, with the midfollicular, late follicular and periovulatory phases of the cycle. The early, late and full regression stages during which the epithelium became progressively more atrophied, deciliated and nonsecretory were coincident, respectively, with the early, mid and late luteal phases of the cycle. The cyclic changes in the endometrium of cynomolgus macaques were similar to those reported for the rhesus macaque.

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Estrogen receptor levels in the oviducts and endometria of cynomolgus macaques during the menstrual cycle.

We sampled oviducts and endometria of 27 cynomolgus macaques during the menstrual cycle and measured the concentration of nuclear and cytoplasmic estrogen receptors in these tissues by exchange assay. We assessed the stage of the cycle by correlating serum estradiol (E2) and progesterone (P), as measured by radioimmunoassay, with the morphological condition of the ovaries, oviducts and endometrium of each animal. We have previously identified a series of oviductal stages that reflected the orderly sequence of cytological changes in the oviduct during the cycle, and we normalized receptor measurements to these stages. The amounts of nuclear and cytoplasmic estrogen receptor in both the oviduct and the endometrium were approximately twofold greater in the follicular phase than in the luteal phase. In the follicular phase, elevated receptor levels were associated with oviductal proliferation and differentiation, as well as with endometrial proliferation. During the luteal phase, lowered levels were correlated with atrophy and dedifferentiation in the oviduct, but with hypertrophy and progestational development in the endometrium. When the luteal phase of one cycle ends and the follicular phase of the next begins, it is a decline in serum P, not a rise in serum E2, that precedes the elevation in estrogen receptor level and the onset of proliferation in the oviduct and endometrium. Proliferation of the reproductive tract and elevations in nuclear estrogen receptor levels during the early follicular phase can therefore be viewed as consequences of the release of the system from antagonism by P.

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