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S C Miller

Publications and source records attributed to S C Miller.

At least 91 records · Page 5Linked to original sources

Natural killer cell levels in older adult mice are gender-dependent: thyroxin is a gender-independent natural killer cell stimulant.

The present study aimed to quantitatively analyze the effects of thyroxin on natural killer (NK) cells in the bone marrow and spleen of older adult (6 months) mice of both sexes. Five intraperitoneal injections of thyroxin were administered over 10 days in an attempt to stimulate the virtually negligible levels of NK cells in these older mice. Immunoperoxidase labeling of an NK cell surface marker, together with a tetrachrome hematologic counterstain, permitted morphological microscopic identification of mature NK cells, distinct from all other hemopoietic and immune (lymphoid) cells in the spleen and bone marrow. The results revealed that in spite of similar total cell content in both the spleen and bone marrow in both sexes at this age, there were significant, gender-based differences in NK cells and various other hemopoietic and immune cells. NK cells in the 6-month-old female mice are significantly more abundant than those of males at this age. Granulocytes in females were also significantly more numerous in both the spleen and bone marrow than in males. By contrast, monocytes and nucleated erythroid cells were significantly more numerous in males of this age. In both sexes, at this postbreeding age, the immunostimulant, thyroxin, had the common effect of significantly elevating the levels of NK cells. Our results underline the need for considering the two basic parameters of age and gender, as potentially confounding variables, prior to therapeutic administration of thyroxin, and possibly a host of hormones, cytokines and other regulators of hemopoietic and immune phenomena.

Aging↗

Effect of in vivo administration of all trans-retinoic acid on the hemopoietic cell populations of the spleen and bone marrow: profound strain differences between A/J and C57BL/6J mice.

All trans-retinoic acid (ATRA) is currently the subject of much interest as a possible anti-tumor therapeutic agent, especially for leukemias. One postulated mechanism for its ameliorative action on tumor growth is via stimulating cells of the immune system and its accessory cells. Mice of the A/J strain have an unusually high frequency of leukemia, whereas C57BL/6J mice rarely develop leukemia, and moreover, unlike A/J mice, have strong resistance to a variety of pathogens. The purpose of the study reported here was twofold: to investigate whether A/J mice have quantitative deficiencies in their specific and nonspecific disease defense mechanisms (lymphoid, granuloid, and monocytoid cells) relative to those of C57BL/6J mice, and if so, whether in vivo administration of an ATRA could quantitatively augment these cells in the major organs housing them: the spleen and the bone marrow. Furthermore, for the lymphoid and granuloid lineages, absolute numbers of precursors and of differentiated (mature) cells also were enumerated. The results indicate that A/J mice have significantly lower numbers of lymphoid, granuloid, and monocytoid--but not erythroid--cells in the spleen and/or bone marrow than do C57BL/6J mice. Also, sensitivity to ATRA was generally more profound in A/J mice than in C57BL/6 mice with respect to several hemopoietic cell lineages. These observations collectively suggest a need for considerable prudence in selection of inbred strains of mice, not only because of the possibility of wide interstrain variations in hemopoietic and immune cell-mediated functions, but also because of potential differences in the responses of various strains of common laboratory mice to pharmacologic agents.

Animals↗

Metazoan nuclear genes for mitoribosomal protein S12.

We have characterized nuclear genes for mitoribosomal protein S12 (mt-rps12) a major component of the ribosomal accuracy centre, in human, mouse and Drosophila melanogaster. In human and Drosophila, and probably also in mouse, there is a single intron within the coding region, located in the mitochondrial targeting pre-sequence. In humans, the mRNA structure is highly suggestive of translational regulation. In all three species, there is an amino-acid substitution with respect to eubacterial homologues in a residue implicated in aminoglycoside resistance. The only viable mutant allele of the Drosophila gene, associated with a bang-sensitive phenotype (paralysis upon mechanical vibration, arising from a mechanoreceptor cell defect) also has a novel substitution in a conserved region implicated in translational fidelity. Given the involvement of the mitoribosomal accuracy centre in human sensorineural deafness by virtue of rRNA mutations, our results indicate that this fly mutant may be a useful animal model of this disorder, and earmark the gene for mt-rps12 as a candidate in human hearing impairment.

3T3 Cells↗

Antirhino/enteroviral vinylacetylene benzimidazoles: a study of their activity and oral plasma levels in mice.

In an effort to find an orally bioavailable antiviral for the treatment of rhino/enteroviral infections, a series of vinylacetylene benzimidazoles (11a-o, 12, and 18a) was made. Initial studies of this class of antivirals showed that fluorine substitution on the left-hand phenyl ring in combination with the vinylacetylene moiety gave the requisite mix of physical properties to achieve good in vitro antiviral activity as well as respectable oral bioavailability in rhesus monkeys. To ascertain the generality of this finding and to broaden the scope of the structure-activity relationship (SAR), the present study concentrated on fluoro substitution of this class of molecules. The initial antiviral activity for each analogue was measured using human rhinovirus 14 (HRV-14). This served as an indicator of general antiviral activity for SAR purposes. Subsequently, the spectrum of antirhino/enteroviral activity of the more interesting analogues was evaluated through testing against a panel of seven additional rhino/enteroviruses. Broad-spectrum activity was present and consistent for all analogues tested, and it tracked closely with the antiviral activity observed against HRV-14. A simple screening protocol for oral bioavailability was established whereby compounds were administered orally to mice and plasma levels were measured. This procedure facilitated the evaluation of numerous analogues in a rapid manner. The Cmax was used as a measure of oral bioavailability to allow relative ranking of compounds. In general, fluorine substitution directly on the left-hand aromatic ring does give good oral blood levels. However, fluorine incorporation at other positions in the molecule was not as effective at maintaining either the activity or the oral plasma levels. The constructive combination of activity and oral plasma levels was maximized in three derivatives: 11a,e,g.

Administration, Oral↗

Regulation of NF-kappaB and HIV-1 LTR activity in mouse L cells by ultraviolet radiation: LTR trans-activation in a nonirradiated genome in heterokaryons.

A mouse model system for studying the effect of ultraviolet (uv) radiation on reporter gene expression directed by the human immunodeficiency virus type 1 long-terminal repeat (HIV-LTR) has been developed to address the signals required for LTR trans-activation in cells with the reporter gene stably integrated into the genome. In a stable mouse L cell clone, L-15, NF-kappaB DNA binding activity induced by uv-C (254 nm) but not by tumor necrosis factor-alpha (TNF-alpha) or 12-O-tetra-decanoylphorbol-13-acetate (TPA) correlated with the stimulation of HIV-LTR-directed chloramphenicol acetyltransferase (CAT) activity; uv-C was more effective than uv-B (312 nm), while uv-A (365 nm) had little effect on CAT activity. Inducers of oxidative stress, such as H2O2 treatment up to 200 microM or ionizing radiation up to 20 Gy, also had little effect on CAT expression. Pyrrolidine dithiocarbamate (PDTC) inhibited NF-kappaB DNA binding and stimulation of CAT activity by uv-C in a dose-dependent manner. Unexpectedly, PDTC induced NF-kappaB DNA binding that was additive with the response with TNF. In an effort to separate uv irradiation and uv-induced DNA damage from transactivation of the HIV-LTR we devised a heterokaryon system. The fusion of uv-irradiated human fibroblasts with a mouse L cell clone containing the HIV-LTR-directed lacZ gene resulted in the activation of lacZ activity that was detected in heterokaryons at the single-cell level. These data suggest that uv-induced DNA damage in the chromosomal DNA containing the reporter gene cannot explain activation of the HIV-LTR. This finding demonstrates LTR trans-activation in a nonirradiated genome.

Animals↗

Endochondral bone growth during early pregnancy compared with pseudopregnancy in rats.

There are physiological and skeletal changes that occur during pregnancy to accommodate the increased calcium needs of late pregnancy and lactation in the rat. Endochondral bone growth is accelerated during early to midpregnancy, but the endocrine basis of this is not clear. The purpose of this study was to define the role, if any, of placental factors in changes in endochondral growth by comparing changes that occur during pregnancy with pseudopregnancy in the rat. Many hormones change during pseudopregnancy, except placental hormones (e.g., placental lactogens) because a placenta is lacking. Rates of endochondral growth were increased during pregnancy and pseudopregnancy compared to age-matched, unmated controls. There were also increases in body weight in both pregnant and pseudopregnant animals. Since the observed changes occur in both pregnant and pseudopregnant animals, this indicates that endocrine factors other than those secreted by placenta are involved in increased growth during early pregnancy.

Animals↗

Effect of estrogen deficiency on cancellous and cortical bone structure and strength of the femoral neck in rats.

Eighty mature Sprague-Dawley rats were weight matched before ovariectomy (Ovx) or Sham surgery (Sham). Sham rats had free access to food and water throughout the experiment, whereas Ovx rats were kept on the pair-fed diet. Rats were euthanized at 4, 8, and 12 weeks after surgery, and had received fluorochrome bone markers at 9 and 2 days prior to euthanasia. In addition 10 rats were euthanized at the time of surgery serving as baseline controls. All rats were also scanned for body composition and bone mineral parameters by DEXA before surgery and euthanasia. Left proximal femurs (femoral necks) were used for bone histomorphometry, whereas right femurs were used for in vitro DEXA measurements and mechanical testing. Despite pair-feeding, ovariectomized rats had increased body weights and fat body mass, whereas the percent lean body mass steadily declined throughout the experiment. Mineral density of the whole femur and femoral neck was significantly higher in the Sham rats relative to Ovx animals. Ovariectomy reduced trabecular number and thickness, and increased trabecular separation and bone marrow space at the femoral midneck location. The structure of the remaining trabeculae was dramatically changed toward simpler struts as revealed by nodal analyses. Cortical thickness in Ovx rats was reduced because of the high endocortical resorption, which, in addition to cancellous bone resorption, resulted in fewer endocortico-trabecular connections. Femoral necks obtained from ovariectomized rats had reduced strength and were less stiff relative to controls. Because of the enormous clinical significance of the proximal femur for osteoporosis in humans, and the opportunity for studying bone BMD, mass, structure, and strength at the same skeletal location, the femoral neck appears superior to other skeletal sites routinely used for bone histomorphometry or mechanical testing in the Ovx rat model.

Absorptiometry, Photon↗

Plasma levels of parathyroid hormone that induce anabolic effects in bone of ovariectomized rats can be achieved by stimulation of endogenous hormone secretion.

Parathyroid hormone (PTH) administration increases bone mass in normal and osteopenic animals. However, this treatment currently requires the daily injection of large amounts of PTH, and the relationship of these doses to plasma levels of PTH that are achievable physiologically is unknown. We determined in ovariectomized (ovx) rats: 1) the plasma PTH levels that occur after the subcutaneous injection of graded doses of rat PTH, 2) whether similar PTH levels can be achieved by stimulation of endogenous PTH secretion, and 3) whether a plasma PTH profile that is achievable physiologically is anabolic on bone. Injection of 1, 5, or 25 micrograms/kg rat PTH-(1-34) increased plasma PTH by 46, 164, or 520 pg/mL, respectively, above basal levels within 60 min. Infusion of ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid for 2 h reduced plasma Ca2+ by 0.36 mmol/L and produced a total plasma PTH response (area under the plasma PTH curve) similar to that with the 5 micrograms/kg rat PTH injection. Then, 1, 5, or 25 micrograms/kg doses of rat PTH-(1-34) were injected subcutaneously daily for 28 days in 19-week-old rats that were ovx 7 weeks earlier. The 5 and 25 micrograms/kg doses significantly increased bone mineral density in the distal femur and trabecular bone area and average trabecular thickness in the proximal tibia. All doses of PTH significantly increased indices of trabecular connectivity and cancellous bone formation, including double-labeled surface, mineralizing surface, and surface-referent bone formation rate. In conclusion, anabolic effects on bone can be achieved with a plasma PTH profile similar to that attained following stimulation of the parathyroid gland by induced hypocalcemia. These data suggest that agents that transiently increase endogenous PTH secretion may represent a novel means to promote anabolic effects in skeletal tissues.

Absorptiometry, Photon↗

Comparison of internal emitter radiobiology in animals and humans.

Investigations of radionuclide metabolism and effects in various mammalian species revealed important similarities between animals and humans and between some animal species. These include skeletal deposition of radium and radiostrontium in bone volume; deposition on bone surfaces of plutonium and other actinides; liver deposition of actinides; induction of skeletal or liver malignancies by these radionuclides; induction of tooth and jaw abnormalities; mammary cancer induction by radium in humans and in the beagle; depression of circulating cells in blood; and induction of bone fractures. There are also inter-species differences that may not have been noted if multiple species (including humans) had not been studied. Some of these are more rapid excretion of radium in humans compared with most other mammals; induction by radium of eye melanomas in animals but not humans; rapid loss of deposited plutonium from liver in many species of mice and rats but not in humans and dog; substantial sex-related differences in skeletal plutonium retention and bone sarcoma induction in mice but not in humans or dog; and induction of head sinus carcinomas by 226Ra in humans but not the beagle. Leukemia and other related neoplasms were not induced in radionuclide-injected lifespan dogs in excess of the occurrence in control animals. Much of our current understanding of skeletal biology and radionuclide behavior in mammals was derived from this and related projects. The primary goal of the Utah experiment of estimating toxicities of bone-seeking radionuclides relative to radium has been accomplished. For 226Ra = 1.0, comparative toxicities (ratios) of a single injection for bone tumor induction in beagles were about 16 +/- 5 for monomeric 239Pu (32 +/- 10 for chronic exposure), 6 +/- 0.8 for 241Am, 8.5 +/- 2.3 for 228Th, 6 +/- 3 for 249Cf, 4 +/- 2 for 252Cf, 6 +/- 2 for 224Ra (16 +/- 5 for 50 weekly injections), 2 +/- 0.5 for 228Ra, and between 0.01 +/- 0.01 and 1.0 +/- 0.5 for 90Sr, depending on the dose-rate, with the lowest dose-rates approaching a ratio of zero. Corresponding ratios in mice for 226Ra = 1.0 were 16 +/- 4 for monomeric 239Pu, 5.4 +/- 2.0 for 224Ra (16 for 50 weekly injections), 4.9 +/- 1.4 for 241Am, 5.0 +/- 1.4 for 249Cf, 2.6 +/- 0.8 for 252Cf, 4.4 +/- 1.8 for 243,244Cm and about 1.0 for 90Sr at high doses, decreasing to near zero for low doses.

Animals↗

Relationship of natural incidence and radiosensitivity for bone cancer in dogs.

A comparison of the risk coefficients for 239Pu- or 226Ra-induced bone cancer in two canine breeds, one with a relatively low (beagle) and the other with a very high (St. Bernard) natural incidence, indicated only slightly higher risk in the giant breed. The differences in risk for skeletal malignancy in 239Pu and 226Ra dogs were nonsignificant (p > 0.05). Likewise, the values of the 239Pu:226Ra "toxicity ratios" for these respective breeds, using bone cancer as the endpoint, were not significantly different at the 0.05 level. The anatomical distribution of the radiation-induced bone tumors tended to be a function of both the bone mass and the skeletal distribution of the radionuclide, not the site of predilection for naturally occurring bone neoplasia. Although the etiology of the higher natural incidence of bone cancer in the St. Bernard was not determined, several possible factors, including a higher osteoblastic activity level in the St. Bernards, are presented. These data suggest that making extrapolations of radiation-induced bone cancer risk from animals to humans is valid.

Animals↗

Bone tumor location in dogs given skeletal irradiation by 239Pu or 226Ra.

Statistical analyses have indicated that there was a significant difference between dogs injected with bone volume-seeking 226Ra as compared to those given bone surface-seeking 239Pu with respect to location within the skeleton of 334 radiation-induced primary bone malignancies. Corresponding differences also were evident when dogs given bone volume-seeking 90Sr or bone surface-seeking 241Am, 228Th, (249,252)Cf, or 224Ra (which decays mostly on bone surfaces because of its short, 3.6 d half time) were included along with the 226Ra or 239Pu, respectively (562 total tumors). Further analysis suggested that higher values of percent red marrow (M) and bone turnover rate (R) are correlated with increased probability of tumor appearance at a particular location within the skeleton for the surface seekers. Proportionately higher values of M and R are associated with skeletal sites containing mostly trabecular bone as compared to those with mostly compact (cortical) bone. Coefficients of determination (r2) for the relationship between percent of total tumors vs the combination of percent red marrow and turnover rate (= MR) was about 0.7 for the surface seekers but only about 0.1 for the volume seekers. This indicates that the neoplastic effects of surface seekers, but not volume seekers, are associated with the presence of trabecular bone at the various sites of radionuclide deposition within the skeleton.

Aging↗

Intermittent parathyroid hormone administration stimulates bone formation in the mandibles of aged ovariectomized rats.

Intermittent administration of parathyroid hormone (PTH) is known to stimulate bone formation in many skeletal sites and is being investigated as a possible therapeutic agent for the treatment of osteopenic conditions, including post-menopausal osteoporosis. The purpose of this study was to determine the ability of PTH to stimulate bone formation in the mandibles of aged ovariectomized (Ovx) rats, and the results are compared with a site in the appendicular skeleton (humerus). The Ovx rat is a useful model of estrogen deficiency, replicating many aspects of post-menopausal osteoporosis. Female rats were ovariectomized or sham-operated, and one year later a group of the ovariectomized rats was treated with the 1-34 fragment of human PTH daily, five days a week for 10 weeks. During the experiment, the animals were given fluorochrome bone markers for histomorphometry. More than one year after ovariectomy or sham surgery, there were few differences in the histomorphometric indices of bone formation in the humerus or mandible. PTH treatment had no effect on dentin formation, measured in the mandibular incisor; however, most indices of bone formation-including the double-labeled surface, mineralizing surface, mineral appositional rate, new bone area, and surface-referent bone formation rates-were substantially greater in the PTH-treated group compared with both the Ovx and the Sham controls measured at the periosteal and endocortical surfaces of the humerus and the periosteal and cancellous bone surfaces of the mandible. In addition, bone formation at the alveolar crest, particularly on the buccal side, was greater in the PTH-treated group. The results from this study demonstrate that systemic intermittent PTH treatment stimulates bone formation in the mandibles in aged, estrogen-deficient animals.

Aging↗

Hazardous chemical exposure: guidelines for the optometric office.

BACKGROUND: The Occupational Safety and Health Administration (OSHA) Hazard Communication Standard (HCS) applies to all types of employers, including optometrists. The purpose of the standard is to ensure that employees are aware of chemical hazards in the workplace and know how to protect themselves. Any optometric office that uses chemicals such as acetone, alcohol, lens-tinting dyes, or disinfection chemicals must comply with HCS. METHODS: Optometrists must develop, implement, and maintain a written Hazard Communication Program for their practices. The program must describe how they plan to meet the requirements of HCS. It should include the development of a listing of all hazardous chemicals used in the office, the collection of appropriate Material Safety Data Sheets (MSDS) for each chemical, the labeling of hazardous chemical containers, and the provision of an effective employee-training program. RESULTS: The implementation of an effective Hazard Communication Program will help ensure employee safety. A sample outline for a Hazard Communication Program for an optometric office is provided. CONCLUSIONS: Optometrists with one or more employees have an obligation to ensure these employees are provided with a healthy and safe workplace. OSHA has established specific requirements relating to employees' potential exposure to chemicals. Failure to comply with OSHA regulations may result in significant fines.

Hazardous Substances↗

Influence of sex steroids on development of cultured fetal rat metatarsal bones.

The effects of 17 beta-estradiol (E), dihydrotestosterone (D, a non aromatisable androgen), and progesterone (P) on osteogenesis were studied on fetal rat cartilaginous anlagues cultivated in vitro. The three medial metatarsal rudiments were harvested at day 19 of gestation and grown in 1% BSA MEM medium (MO 643, Sigma) without serum nor antibiotics. After a 18h preincubation period, hormones were added for 8 days. Paired controls were incubated in the same volume of medium. The length, the metacarpal thickness and the size of the mineralized zone were measured every day, using a calibrated eyepiece (magnification X 40). DNA and protein synthesis, cartilage metabolism and mineralization were evaluated by monitoring the incorporation of 3H-Thymidine, 3H-Proline, 35S and 45Ca into anlagues for the last three hours of incubation, respectively. The dose/response effect of each steroid was studied at the concentrations of 10(-4) M, 10(-6) M, 10(-7) M and 10(-9) M. No difference was observed between male and female fetuses. A significant positive effect on total length (% of length measured at harvesting day) was observed with the 10(-7) M dose of E (163% +/- 2 vs 148% +/- 4 in controls) or D (158% +/- 3). Endochondral growth was not modified by P treatment. The effect of the three steroids (given at a dose of 10(-7) M) alone or as combinations (E, D, P, EP, ED, PD, EPD) confirmed the positive effect of E on endochondral growth and, to a lesser extend, of D and the association ED. Nevertheless, D had a better effect than E on endomembranous growth. On the contrary, P did not affect growth neither administrated alone nor in combination with E or D, while a positive effect of P on mineralization was demonstrated. The treatment associating the three steroids slowed down all the parameters concerning growth but strongly stimulated calcification.

Androgens↗

Histo-anatomy of the proximal femur in rats: impact of ovariectomy on bone mass, structure, and stiffness.

BACKGROUND: Hip fractures are the most devastating consequence of osteoporosis in humans. Since the ovariectomized (ovx) rat is a useful model of estrogen-deficient osteoporosis, the purposes of this study were to describe the histo-anatomical features of the rat hip and to determine changes in the proximal femur induced by ovariectomy to evaluate the use of this skeletal site for future bone studies. METHODS: Changes in body mass and composition and in bone mineral content and density were determined by DEXA at 12 weeks after ovariectomy. Gross and histo-anatomy of the rat hip was studied by light microscopy and histomorphometry. Cancellous and cortical bone changes induced by ovx at the femoral midneck were determine using dynamic, static, and structural histomorphometric techniques. The stiffness of the femoral neck was determined by biomechanical testing, and the results were correlated with histological observations and the histomorphometric data. RESULTS: The bony structures of the rat hip, articular cartilage, and muscular and capsular attachments are very similar to the human. Rats, however, have an active growth plate and a well-vascularized periosteum covering the intracapsular portion of the femoral neck, which is different from the adult humans. Rats in the sham and ovx groups exhibited similar biological variations in the thickness of the femoral neck and epiphyseal bone and cartilaginous composition. Ovariectomy promoted periosteal modeling and induced endocortical and cancellous bone remodeling, with a net loss of bone mass due to excess bone resorption. The ovx-induced increase in resorption resulted in reduced trabecular number, thickness, and endocortico-trabecular connectivity, which likely contributed to less bone stiffness in ovx rats relative to the sham controls. CONCLUSIONS: There are numerous similarities in the structure and histology of the rodent and human hip. Skeletal changes induced by ovariectomy in rats, particularly those at the endocortical surface and in the cancellous bone, are very similar to changes observed in the proximal femur in osteoporotic women. In addition, ovx in the rat had compromised the biomechanical properties at the femoral neck, similar to what occurs in the postmenopausal women. Data presented here confirmed responsiveness of the proximal femur in rat to ovarian hormone deficiency, which appears to be a useful and relevant site to investigate mechanisms and interventions relative to human disease.

Absorptiometry, Photon↗