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Biomedical subjects

A M Powell

Publications and source records attributed to A M Powell.

At least 37 records · Page 2Linked to original sources

Culture of blastomeres from in vitro-matured, fertilized, and cultured bovine embryos.

A culture system was devised to study the differentiation of bovine blastomeres. Blastomeres (2-13 per well) from embryos produced by in vitro maturation, fertilization, and culture of oocytes obtained from slaughterhouse ovaries were cultured for 10 days in 24-well culture plates on feeder layers in blastomere culture medium (BCM: equal parts tissue culture medium 199 and low-glucose Dulbecco's modified Eagle's medium with 10% fetal bovine serum). Ovine embryonic fibroblasts and STO cells were superior to bovine and mouse embryonic fibroblasts as mitotically inactivated feeder cells. Over five studies in which four blastomeres from an embryo were added to each culture well, an average of one colony per well formed from the blastomeres. The colonies continued to grow throughout the culture period, and most colonies resembled trophectoderm in their cellular characteristics, although some cultures contained a mixture of trophectoderm and endoderm. When the number of blastomeres cultured in each well was varied from 2-8, the number of colonies formed was proportional to the number of blastomeres added. Blastomeres from day 5 and day 6 embryos produced fewer colonies than did those from day 4 embryos, perhaps as a result of differentiation and tighter blastomere adhesion resulting in damage during their separation. The absence of serum did not alter the number of colonies formed. A number of growth factors, including LIF, OM, PGDF alpha, and FGF4, had no effect on the number of colonies, the size of colonies, or their alkaline phosphatase staining score beyond that provided by the feeder layer on serum when present. Blastomeres did not form colonies in the absence of feeder layers.

Animals↗

In vitro pluripotency of epiblasts derived from bovine blastocysts.

Two experiments were conducted to compare the utility of in vitro- and in vivo-derived bovine blastocysts for the isolation of pluripotent epiblasts. In experiment 1, the inner cell masses (ICMs) of in vivo-collected blastocysts yielded a higher proportion of epiblasts after culture on STO feeder cells than ICMs from in vitro-produced blastocysts (P = .0157). In experiment 2, ICMs of in vivo-collected blastocysts that hatched on day 8 yielded a greater proportion of epiblasts after culture on STO feeder cells than ICMs from in vitro-produced blastocysts that hatched on day 8. The difference was reversed but smaller for blastocysts that hatched on day 9 (Interaction, P = .0125). Epiblasts from blastocysts that hatched on day 8 regardless of their source generated more differentiated cell lines in extended culture than did blastocysts that hatched on day 9. Extended epiblast culture yielded cells identifiable as products of the three embryonic germ layers that included epithelial cells, fibroblasts, neuronal cells, hepatocyte-like cells, and macrophage-like cells. Alkaline phosphatase activity combined with cell morphology identified the bovine epiblast cells and distinguished them from trophectoderm and endoderm that frequently contaminated epiblast cell cultures. In vivo-derived blastocysts, especially from early-hatching blastocysts, were a superior source of pluripotent epiblasts. Epiblast cells in this study all differentiated or senesced indicating that standard conditions for mouse embryonic stem cell culture do not maintain bovine epiblast cells in an undifferentiated state.

Alkaline Phosphatase↗

A continuous culture of pluripotent fetal hepatocytes derived from the 8-day epiblast of the pig.

Continuous cultures of pluripotent parenchymal hepatocytes were derived from the epiblasts of 8-day-old pig blastocysts. The cells were polygonal and had phase-contrast dark, granular cytoplasm with prominent nuclei and nucleoli. These feeder-dependent cell cultures differentiated into large, multicellular, secretory, duct-like structures or formed small canaliculi between individual cells. Alternatively, the cells accumulated droplets that stained intensely with Oil Red O, a lipid-specific stain. Alpha-fetoprotein (AFP), albumin, and beta-fibrinogen mRNAs were expressed as the cells differentiated in culture. Serum-free medium that was conditioned by the cells contained transferrin, AFP, and albumin. The growth and viability of the cells were inhibited by transforming growth factor beta 1 (TGF beta 1) at concentrations > or = 1 ng/ml. The cell cultures grew slowly with doubling times of 2 to 3 d. One of the cultures, pig inner cell mass-19 (PICM-19), was passaged continuously for over 2 yr [> 100 population doublings (PD)] and appears to be an infinitely self-renewing cell population. The stem cell characteristics of the epiblast-derived fetal hepatocytes indicate that the cells may be unique for investigations of liver differentiation and organogenesis.

Animals↗

Colony isolation and secondary culture of fetal porcine hepatocytes on STO feeder cells.

The secondary culture of non-transformed parenchymal hepatocytes has not been possible. STO feeder cell-dependent secondary cultures of fetal pig hepatocytes were established by colony isolation from primary cultures of 26-d fetal livers. The liver cells had the typical polygonal morphology of parenchymal hepatocytes. They also spontaneously differentiated to form small biliary canaliculi between individual cells or progressed further to large multicellular duct-like structures or cells undergoing gross lipid accumulation and secretion. The secondary hepatocyte cultures expressed alpha-fetoprotein (AFP), albumin, and beta-fibrinogen mRNA, and conditioned medium from the cells contained elevated levels of transferrin and albumin. STO feeder cell co-culture may be useful for the sustainable culture of hepatocytes from other species.

Animals↗

Alkaline phosphatase staining of pig and sheep epiblast cells in culture.

To define better the characteristics of pig and sheep epiblast cells in culture, the cells were tested for the presence of alkaline phosphatase (AP), a biochemical marker characteristic of mouse embryonic stem cells. Pig and sheep epiblast cells were positive for AP staining both at isolation from the blastocyst and after primary in vitro culture. The innermost portion of the attendant endoderm surrounding the epiblast was also positive for AP staining during primary culture. AP staining was lost upon differentiation or senescence of the epiblast cells. Also, all differentiated epiblast-derived cell cultures were negative for AP staining, with the exception of neuron-like cultures. Epiblast-like cells were cultured from day 10 (pig) and day 13 (sheep) embryonic discs, and these cells were also AP positive until they differentiated. Trophectoderm-endoderm-like cells from embryonic discs were AP negative or weakly positive. AP is a convenient marker for undifferentiated pig and sheep epiblast cells in culture when used in conjunction with cell morphology analysis.

Alkaline Phosphatase↗

Culturing the epiblast cells of the pig blastocyst.

Pig epiblast cells that had been separated from other early embryonic cells were cultured in vitro. A three-step dissection protocol was used to isolate the epiblast from trophectoderm and primitive endoderm before culturing. Blastocysts collected at 7 to 8 days postestrus were immunodissected to obtain the inner cell mass (ICM) and destroy trophectodermal cells. The ICM was cultured for 2 to 3 days on STO feeder cells. The epiblast was then physically dissected free of associated primitive endoderm. Epiblast-derived cells, grown on STO feeders, produced colonies of small cells resembling mouse embryonic stem cells. This primary cell morphology changed as the colonies grew and evolved into three distinct colony types (endodermlike, neural rosette, or complex). Cell cultures derived from these three colony types spontaneously differentiated into numerous specialized cell types in STO co-culture. These included fibroblasts, endodermlike cells, neuronlike cells, pigmented cells, adipogenic cells, contracting muscle cells, dome-forming epithelium, ciliated epithelium, tubule-forming epithelium, and a round amoeboid cell type resembling a plasmacyte after Wright staining. The neuronlike cells, contracting muscle cells, and tubule-forming epithelium had normal karyotypes and displayed finite or undefined life spans upon long-term STO co-culture. The dome-forming epithelium had an indefinite life span in STO co-culture and also retained a normal karyotype. These results demonstrate the in vitro pluripotency of pig epiblast cells and indicate the epiblast can be a source for deriving various specialized cell cultures or cell lines.

Animals↗

Development of ovine embryos co-cultured on oviductal cells, embryonic fibroblasts, or STO cell monolayers.

One- and two-cell ovine embryos were co-cultured on primary monolayer cultures of ovine oviductal cells (OM) and ovine embryonic fibroblasts (EF) or on monolayers of STO cells (STO), a permanent cell line, to determine whether a co-culture system could be developed for ovine embryos utilizing a well-characterized cell line. More than 65% (n = 64) of embryos co-cultured on OM and STO for 5 days cleaved beyond the "in vitro" block whereas only 26% (n = 35) of embryos co-cultured on EF cleaved to the same degree (p < 0.05). Mitotic inactivation of the monolayer did not alter the response to each cell type. In a second experiment, development of embryos was similar after co-culture on OM or STO cells for both 3 and 6 days. Co-culture of zygotes on OM and STO cells produced 38 and 33% blastocysts after 6 days of co-culture. After embryo transfer, only recipients receiving at least one blastocyst became pregnant. About 33% of the transferred blastocysts produced fetuses. STO cell co-culture may provide the same stimulus to development as OM cell co-culture and may be advantageous for study of the requirements for early ovine embryonic development. In addition, STO cells displayed contact inhibition and formed monolayers that did not overgrow embryos as did primary cultures of ovine oviductal cells.

Animals↗

Impaired hormonal responses to hypoglycemia in spontaneously diabetic and recurrently hypoglycemic rats. Reversibility and stimulus specificity of the deficits.

To evaluate the roles of iatrogenic hypoglycemia and diabetes per se in the pathogenesis of defective hormonal counterregulation against hypoglycemia in insulin-dependent diabetes mellitus (IDDM), nondiabetic, and spontaneously diabetic BB/Wor rats were studied using a euglycemic/hypoglycemic clamp. In nondiabetic rats, recurrent (4 wk) insulin-induced hypoglycemia (mean daily glucose, MDG, 59 mg/dl) dramatically reduced glucagon and epinephrine responses by 84 and 94%, respectively, to a standardized glucose fall from 110 to 50 mg/dl. These deficits persisted for > 4 d after restoring normoglycemia, and were specific for hypoglycemia, with normal glucagon and epinephrine responses to arginine and hypovolemia, respectively. After 4 wk of normoglycemia, hormonal counterregulation increased, with the epinephrine, but not the glucagon response reaching control values. In diabetic BB rats (MDG 245 mg/dl with intermittent hypoglycemia), glucagon and epinephrine counterregulation were reduced by 86 and 90%, respectively. Chronic iatrogenic hypoglycemia (MDG 52 mg/dl) further suppressed counterregulation. Prospective elimination of hypoglycemia (MDG 432 mg/dl) improved, but did not normalize hormonal counterregulation. In diabetic rats, the glucagon defect appeared to be specific for hypoglycemia, whereas deficient epinephrine secretion also occurred during hypovolemia. We concluded that both recurrent hypoglycemia and the diabetic state independently lead to defective hormonal counterregulation. These data suggest that in IDDM iatrogenic hypoglycemia magnifies preexisting counterregulatory defects, thereby increasing the risk of severe hypoglycemia.

Animals↗

Heart transplantation after cardioverter-defibrillator implantation. A case control study.

A case control study was performed to determine whether previous implantable cardioverter-defibrillator (ICD) insertion adversely affects outcome after heart transplantation. Six male heart transplant recipients who had undergone ICD insertion 12 +/- 5 months before heart transplantation were compared to a cohort of six heart transplant recipients who were matched according to age, preoperative status and hemodynamics, date of transplantation, graft ischemic time, history of a previous cardiac operation, and duration of follow-up. There were no significant differences in operating room time, chest tube drainage, time to extubation, and the duration of intensive care unit or hospital stay between the two groups. Furthermore, there were no significant differences in the number of units of packed cells, fresh frozen plasma, platelets and cryoprecipitate transfused. The number of treated rejection episodes and the number of patients requiring intravenous antibiotics for infection in the first 90 days was identical between groups. It was concluded that heart transplantation after ICD implantation did not appear to carry more risk than heart transplantation after a previous cardiac operation. Our limited experience supports the potential use of the ICD in patients with life-threatening ventricular dysrhythmias who are awaiting transplantation.

Blood Loss, Surgical↗

Benzodiazepine use in general practice--is it a problem?

AIMS: The aim of this study was to describe benzodiazepine use in a general practice. METHODS: A prevalence study in an Auckland general practice was undertaken to describe the benzodiazepines prescribed, patterns of use and compliance. An associated case control study compared benzodiazepine users and nonusers. RESULTS: The age standardised prevalence rate of benzodiazepine use in this Auckland general practice was 3.4% for patients over 20 years of age. The benzodiazepine users described were predominantly elderly (70% over 60 years of age) and female (62.5%). They had significantly more medical and psychiatric complaints than matched controls. Triazolam and diazepam accounted for 60.9% of the benzodiazepines prescribed. Over one-third of the patients using benzodiazepines were concurrently prescribed other psychotropic medications, primarily tricyclic antidepressants. CONCLUSION: This rate suggests an overall decline in benzodiazepine use since previous studies. Benzodiazepines continue to be prescribed predominantly in the elderly, a group at considerable risk from side effects. Doctors should continue to inform their patients about the side effects of benzodiazepines, the risks of dependence and difficulties of withdrawal.

Adult↗

FSH injections and intrauterine insemination in protocols for superovulation of ewes.

In Exp. 1, five injections of crude FSH (20 mg total), starting 36 h before removal of progestin pessaries or injection of prostaglandin F2 alpha (PGF2 alpha), were found to be as effective for superovulation of ewes as seven injections starting 72 h before removal of pessaries. Seven injections caused superovulation (more than three ovulations) in 13 of 15 ewes with an average (all ewes) of 12 +/- 2.3 ovulations. Five injections caused superovulation in 17 of 19 ewes with an average of 11.5 +/- 1.6 ovulations after pessary-regulated estrus in 12 of 16 ewes with an average of 12.4 +/- 2.2 ovulations after PGF2 alpha injection. In Exp. 2, intrauterine artificial insemination (IUAI) of naturally mated ewes provided ovum fertilization rates of 75.3% with an embryo recovery rate of 39.4%, whereas mating alone (MATED) provided fertilization rates of 64.2% with an embryo recovery rate of 72.1%. However, subsequent replications of the MATED protocol (MATED2) resulted in a low fertilization rate (34.2%). In Exp. 3, surgical IUAI at 22 h after removal of pessaries resulted in a low rate of superovulation (5 of 12 ewes), presumably as the result of pentobarbital anesthesia. Conducting IUAI at 46 h after removal of pessaries resulted in a high rate of superovulation (14 of 16 ewes) but a low embryo recovery rate (30.7%). In two subsequent trials, IUAI at 40 h after removal of pessaries resulted in most ewes superovulating (33 of 35 in April/May and 16 of 17 in September) with acceptable embryo recovery (65.2% and 71.3%) and high fertilization rates (82.8% and 96.4%).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of serum-free co-culture and synchrony of recipients on development of cultured sheep embryos to fetuses.

The percentage of sheep embryos that continued to develop after collection and immediate transfer on d 2 after estrus was similar when phosphate-buffered saline with 10% fetal calf serum (PBSFCS, 45%), physiological saline (50%), or tissue culture medium 199 supplemented with 10% fetal calf serum (M199FCS, 47%) was used to flush embryos from oviducts. Co-culture of sheep embryos for 3 d with oviductal cells tended (P = .1) to reduce the percentage of embryos that developed to fetuses after transfer compared with those embryos transferred immediately. Tissue culture medium 199 supplemented with .3% BSA (M199BSA) was an adequate substitute for M199FCS for culture of sheep oviductal cells if tissue culture wells were pretreated with fibronectin. Estradiol in concentrations from 10 to 1,000 pg/ml and progesterone at concentrations of 1 or 10 ng/ml in M199BSA failed to stimulate embryo development during 3 d of co-culture beyond that seen in co-culture with M199FCS or M199BSA without added steroid. Transfer of sheep embyros co-cultured for 3 d in M199BSA or M199FCS to recipients synchronized with donors resulted in about 19% of the embryos developing to fetuses, whereas transfer to recipients that were in estrus 24 h after donors resulted in 33% of embryos developing to fetuses. The significant (P less than .05) improvement for delayed recipients may reflect the relatively lesser developmental rate of co-cultured embryos compared with that of embryos in vivo. Embryo development into fetuses was similar after co-culture in M199FCS or M199BSA co-cultures; therefore, serum is not required for the co-culture of sheep embryos.

Animals↗

Evaluation and therapy of breakthrough bleeding in women using a triphasic oral contraceptive.

This study was designed to investigate the incidence and pattern of breakthrough bleeding (BTB) in 1,259 women who were prescribed for the first time a triphasic oral contraceptive (OC, 7-7-7) and to evaluate a hypothesis of management for BTB persisting after three cycles. The new users were compared with a control group of 696 women who had used various OCs for at least 6 months. The incidence of BTB in the control group was 16.8% and in the new users was 24.9%, 17.5%, and 15.3% in the first 3 months, respectively. Breakthrough bleeding occurred late in the 7-7-7 package in 58% and early or midway through the package in 17% and 25%, respectively. We hypothesized that late-package BTB would improve if the patient was switched to a monophasic pill similar to the relatively estrogenic formulation of the beginning of the package and vice versa for early or midpackage BTB. Seventy women with BTB at 3 months were randomly given 0.5/35 or 1/35 for a further 3 months. Breakthrough bleeding was more likely (P less than 0.05) to improve in women switched to 1/35 compared with 0.5/35 regardless of where in the package BTB occurred.

Adolescent↗

Neuropeptide content in pancreas and pituitary of obese and diabetes mutant mice: strain and sex differences.

The nature of the primary genetic defects in ob/ob and db/db mice are unknown. Both the obese (ob) and diabetes (db) mutations produce similar, multicomponent obese-hyperinsulinemic syndromes when maintained in the same strain of mouse. In an attempt to find differences between these mutations in neuroendocrine function affecting the islets of Langerhans or the pituitary, tissue content of four neuropeptides that are known to be capable of influencing the rate of insulin secretion was examined in obese (ob/ob) and diabetes (db/db) mice. In the first study, C57BL/6Job/ob and control males were studied at 3, 4, and 11 weeks of age. In the second study, db/db mice of both sexes and two inbred strains (C57BL/6J and C57BL/KsJ), which differ markedly in the severity of expression of the diabetes phenotype, were studied at 3 weeks of age, before the development of hyperglycemia and secondary consequences thereof. Immunoreactive peptides were measured in acetic acid extracts of pancreas and pituitary. No differences between male ob/ob and db/db mice of the C57BL/6J strain were found. Marked sex differences in lean control mice were found at 3 weeks of age in pancreatic Met-enkephalin-LI and galanin-LI (with two- to threefold higher content in males). Low pancreatic content (50% to 70% lower than in control mice) of galanin-LI, Met-enkephalin-LI and Leu-enkephalin-LI was associated with hyperinsulinemia in male B6 ob/ob and db/db mice at 3 weeks of age, though not in B6 db/db females and not in BKs db/db mice of either sex.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Multiple alterations in insulin responses to glucose in islets from 48-h glucose-infused nondiabetic rats.

To examine the biochemical mechanisms by which hyperglycemia produces insulin secretory abnormalities, we studied isolated islets from control rats and rats infused for 48 h with a 50% glucose solution. To preserve the effects of in vivo hyperglycemia during in vitro handling for islet isolation, our standard isolation procedure utilized buffers containing 16.8 mM glucose. Islets from infused rats released similar amounts of insulin in low or high glucose during first incubations at 37 degrees C (92.4 +/- 7.0 ng.10 islets-1.45 min-1 at 2.8 mM, 84.4 +/- 4.1 ng.10 islets-1.45 min-1 at 16.8 mM) in contrast with control (uninfused) islets (18.6 +/- 2.8 ng.10 islets-1.45 min-1 at 2.8 mM and 109.8 +/- 8.0 ng.10 islets-1.45 min-1 at 16.8 mM glucose) (P less than 0.01). Secretion by islets of glucose-infused rats was lower during 60-min second incubations at 28 mM glucose than in first incubations of the same islets in low glucose (P less than 0.01). This phenomenon is comparable to the paradoxical hypersecretion observed during the first 10-15 min of exposure of glucose-infused pancreas to low-glucose perfusions. Paradoxical secretion in low glucose waned rapidly, so that during second incubations at 37 degrees C, little immunoreactive insulin release occurred at 2.8 mM glucose, despite the persistence of two additional lesions. The glucose-insulin dose-response curves in second incubations showed a leftward shift for glucose-infused islets, with two- to threefold higher secretion at 5.6-8.4 mM glucose than control islets. This is termed sensitization to glucose.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Developmental patterns for pancreatic opioids in the rat.

Developmental patterns for rat pancreatic opioid peptides and islet hormones were studied from gestational day 20 through adulthood. Fetal tissue was obtained as well as pancreas at birth (day 0), and postnatal days 3, 7, 14, and 21, and 7 weeks. The hormones measured included insulin, glucagon, and somatostatin. The opioids measured were beta-endorphin, Met- and Leu-enkephalins, and the high molecular weight enkephalin precursors. Pancreata were pooled as necessary and extracted (acid alcohol, or hot acetic acid), and opioids were further purified on reversed-phase C-18 (Sep-pak) cartridges. In all instances measurements were made by radioimmunoassays. Precursor peptides were first digested (with trypsin and carboxypeptidase B) prior to immunoassay. All opioids and hormones except the precursors for enkephalins showed a well-defined surge in pancreatic concentration during the first postnatal week. In contrast, the precursors had the highest concentration in the fetus, and by the seventh day of life had decreased by greater than 50%. This progressive decrease may represent maturation of the enkephalin convertase and trypsin-like enzymes in the islets. The opioid and hormonal surges that we have described are similar to the surge in islet concentration of thyroid-releasing hormone (TRH) previously described in neonatal rat islets. It is suggested that these postnatal alterations in opioid and hormone concentration relate to a specific function in the development of the endocrine pancreas.

Animals↗

Thyrotropin and prolactin responses to thyrotropin-releasing hormone in premenstrual syndrome.

Recent reports of altered TSH responsiveness to its releasing hormone (TRH) in women with premenstrual syndrome (PMS) suggested that subclinical hypothyroidism may be responsible for the mood changes, such as depression, that occur in these women. In this study we measured basal and TRH-stimulated serum TSH and PRL levels in 15 women with PMS and in 19 age-matched normal women. The mean baseline serum TSH concentrations were similar in the 2 groups in both the follicular [normal, 1.3 +/- 0.2 (+/- SE); PMS, 0.9 +/- 0.2 mU/L] and luteal (normal, 1.1 +/- 0.2; PMS, 1.1 +/- 0.2 mU/L) phases of the cycle. The mean baseline serum PRL levels also were similar in the 2 groups in the follicular (normal, 16 +/- 2; PMS, 13 +/- 2 micrograms/L) and luteal (normal, 13 +/- 2; PMS, 14 +/- 2 micrograms/L) phases of the cycle. After TRH administration, peak serum PRL and TSH levels were reached at 15 and 30 min, respectively, and the response curves were virtually identical in the 2 groups in both phases of the cycle. One normal woman had elevated basal and TRH-stimulated TSH concentrations compatible with subclinical hypothyroidism, but had normal noncyclic scores on her prospective rating scales. Our findings suggest that PMS is not associated with thyroid dysfunction or abnormal PRL secretion and that thyroid hormone replacement therapy is not indicated in this condition.

Adult↗