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Biomedical subjects

M Riebe

Publications and source records attributed to M Riebe.

18 recordsLinked to original sources

Quantum information processing with trapped Ca(+) ions.

Quantum information processing is performed with single trapped Ca(+) ions, stored in a linear Paul trap and laser-cooled to the ground state of their harmonic quantum motion. Composite laser-pulse sequences were used to implement SWAP gate, phase gate and controlled-NOT gate operations. Stark shifts on the quantum-bit transitions were precisely measured and compensated. For a demonstration of quantum information processing, a Deutsch-Jozsa algorithm has been implemented using two quantum bits encoded on a single ion.

Journal Article↗

Precision measurement and compensation of optical stark shifts for an ion-trap quantum processor.

Using optical Ramsey interferometry, we precisely measure the laser-induced ac-Stark shift on the S(1/2)-D(5/2) "quantum bit" transition near 729 nm in a single trapped 40Ca+ ion. We cancel this shift using an additional laser field. This technique is of particular importance for the implementation of quantum information processing with cold trapped ions. As a simple application we measure the atomic phase evolution during a n x 2 pi rotation of the quantum bit.

Journal Article↗

Pharmaceutical transition to non-CFC pressurized metered dose inhalers.

The production of ozone-depleting chlorofluorocarbons (CFCs) was discontinued on 1 January 1996 for all uses deemed non-essential under the Montreal Protocol. However, the use of CFCs as propellants in pressurized metered dose inhalers (pMDIs) was classed as essential, providing an exemption from the agreement. Following extensive research, the hydrofluoroalkanes (HFA) 134a and 227 were identified as the only suitable replacements for CFC propellants in pMDIs. The drug delivery of pMDIs formulated with HFA 134a as a propellant and containing either salbutamol (100 microg per actuation) or fluticasone propionate (125 and 250 microg per actuation) have been assessed for dose uniformity and particle size distribution. All of the HFA 134a pMDIs delivered doses throughout the life of the canisters that were reproducible and within specified regulatory requirements. Each of the products provided an emitted dose which was within +/- 25% of the mean value indicating accurate and consistent dosing (93, 112 and 221 microg per metered dose for the salbutamol 100 microg and fluticasone propionate 125 and 250 microg HFA 134a pMDIs, respectively). These findings were unaffected by changing the storage orientation of the pMDI or by using the device in a manner designed to simulate typical patient use. The particle size distributions of HFA 134a pMDI doses did not differ significantly from those of the corresponding CFC pMDIs. As a result of the similar pharmaceutical performance, it is unnecessary to change the label claim dose of active drug when making the transition from a CFC to an HFA 134a pMDI for salbutamol (Ventolin) and fluticasone propionate (Flixotide). A seamless transition to non-CFC pMDIs will help to maintain the confidence of patients and healthcare professionals in asthma therapy.

Aerosol Propellants↗

Unscheduled DNA synthesis and HPRT mutation in fetal Syrian hamster and human respiratory epithelial cells exposed to ethylnitrosourea.

We previously reported that the chromosomes of fetal Syrian hamster respiratory epithelial cells were less stable toward ethylnitrosourea (ENU) than those of comparable human cells. Following this, we compared the sensitivity of genetic materials of the same cell systems to the same mutagen in terms of unscheduled DNA synthesis (UDS) and mutation at HPRT locus (HPRT-). UDS occurred 5 (with 0.1 mg ENU/ml) to 7 (with 0.4 mg ENU/ml) times more frequently in the hamster cells than in the human cells. This much lower UDS frequency in human cells cannot be solely explained by the fact that the human cells possess only a moderately larger (1.6 to 2.9 times) size of intracellular deoxythymidine triphosphate (dTTP) pool than the hamster cells. This finding would thus indicate that the hamster cells actually carry out DNA repair, whether correct or aberrant, more often than the human cells. Moreover, HPRT- was also 5 (at 0.4 mg/ml) to 26 (at 0.8 mg/ml) times more frequent in the hamster cells than in the human cells. Therefore, the current results suggest that the DNA repair mechanisms of the hamster cells are less accurate and more unstable than those of the human cells. Our previous findings with regard to the chromosomal stability give support to this hypothesis.

Animals↗

New functional cell-culture approach to pulmonary carcinogenesis and toxicology.

Modern pulmonary toxicology (including lung carcinogenesis) has, to assist its rapid development, constantly incorporated the knowledge obtained through cell and tissue-culture studies. While this has been carried out in rather a passive manner until quite recently, the currently necessary multi-disciplinary approach increasingly requires more active involvement of cell/tissue-culture techniques in this area. Our understanding in this regard is that one of such requirements is to establish a cell-culture system consisting of a single population of possible target cells for certain classes of hazardous inhalants. In addition, such target cells in culture should be able to function in a manner as closely resembling the situation in vivo as possible. In view of the culture techniques presently available, this requirement is probably too ideal to be met immediately. Nevertheless, efforts have been made in the last decade to achieve functioning cultures of Clara cells, type II pneumocytes or small mucus granule cells (SMGC), using undifferentiated cells obtained from animal and human fetuses. This attempt forms a sharp contrast to the usual approach, in that while the latter tries to keep the functions of adult cells in an already differentiated state, the former aims at inducing functional differentiation in undifferentiated cells by manipulating culture conditions. In carrying out these efforts, we have shown clear evidence that the type II pneumocytes and Clara cells induced in vitro are closely cognate and share a common precursor cell in culture, and that SMGC are at a pre-stage of differentiation to Clara cells. We have also shown an induced capacity for xenobiotic activation and conjugation in SMGC in culture. Our next plan is to prove similar activity (of mixed-function oxidase) in Clara cells and type II pneumocytes induced to differentiate in culture.

Animals↗

Secretory differentiation of human fetal bronchial epithelial cells in culture. A study by histochemistry and electron microscopy.

Human fetal bronchial epithelial (HFBE) cells at 6-8 passages were cultivated on a collagen gel for 10 days. A basal differentiative medium (BDM), consisting of RPMI 1640 supplemented with hormones and growth factors, was employed. Histochemistry, scanning electron microscopy and transmission electron microscopy revealed that HFBE cells developed secretory granules when cultivated on collagen gel in BDM. They were electron-dense and stained positive for PAS but negative for alcian blue. On additional treatment with 8 micrograms/ml vitamin A (VA), the number of secretory granules was increased. Moreover, the HFBE cells lost their surface microvilli, and dilation of rough endoplasmic reticulum was more marked than in culture without VA.

Bronchi↗

Quantification of proliferative lesions in hamster lungs after chronic exposure to cadmium aerosols.

The development of proliferative areas in the lungs of Syrian golden hamsters was studied after chronic inhalation of cadmium oxide, cadmium sulfide, cadmium chloride or cadmium sulfate. Lung tissue from randomly selected animals in each group was evaluated by morphometric histopathologic techniques. Estimation of the volumetric ratio of proliferative areas within the lungs of exposed animals showed significantly different extents of these lesions in dependence on the respective cadmium compound administered. The most severe changes were observed after inhalation of cadmium oxide and cadmium sulfide. Lesions were mainly found in the peribronchial region of the lung. Electron microscopic analysis of these proliferative areas revealed that they were composed of ciliated and Clara cells. From its histophatologic appearance this of lesion was qualitatively comparable in all hamsters which had been treated with the different cadmium compounds.

Administration, Inhalation↗

Possible role of genetic predisposition in multigeneration carcinogenesis.

A peculiar phenomenon in experimental transplacental carcinogenesis is that in certain animal species or strains, and with certain types of carcinogens, a tumorigenic risk is observed not only in the F1 generation but also in subsequent F2 and even F3 generations when only the P generation has been exposed to a carcinogen. Additionally, in many cases, specific types of organs tend to be involved. For example, lung tumours are most common in P, F1 and F2 generations of Swiss, ICR, MA and CD-1 mice after exposure of the pregnant P generation to 7,12-dimethylbenz[a]anthracene (DMBA), urethane, DMBA and diethylstilboestrol, respectively. In such mice, the mammary glands, lymphatic tissues and ovaries are also frequently involved. Recently, two-stage tumorigenesis in skin with a phorbol acetate as promoter was transmitted to F2 descendants born of F1 SHR mice exposed transplacentally to DMBA. In WKA, BD IV and BD VI rats, nervous tissues seem to be prone to tumour development in F2 and/or F3 descendants born of F1 exposed transplacentally to N-methyl-N-nitrosourethane, N-methyl-N-nitrosourea, N-ethyl-N-nitrosourea (ENU), respectively. In F344 strain rats, however, two-stage genesis of preneoplastic foci in the liver with 2-acetylaminofluorene (2-AAF) as the promoter failed to be transmitted to F2 and F3 generations from the F1 generation, which developed the preneoplastic hepatocellular foci after prenatal exposure to ENU followed by postnatal promotion by 2-AAF. Our own recent experiments with Syrian hamsters, in which multigeneration transmission of organ-specific (tracheal epithelium) tumorigenicity of N-nitrosodiethylamine was investigated, have also failed to show this phenomenon in F2 and F3 descendants. However, various field studies on pedigrees with frequently affected siblings indicate the existence of a heritable predisposition to tumour development over more than two generations. The organs involved include ovaries, mammary glands, stomach, lympho- and myelogenic systems, skin and nervous system. Interestingly, little or no such evidence has been found in the liver, respiratory tract (except for the nasopharyngeal region) or urinary tract. In the light of these experimental and human observations, the authors are currently inclined to hypothesize a heritable predisposition to tumour development in organs specific to animal species and strains, or certain families in human cases, for explaining the mechanisms underlying multigeneration transmission of chemical carcinogenicity.

Animals↗

Regulation of growth and differentiation by vitamin A in a cloned fetal lung epithelial cell line cultured on collagen gel in hormone-supplemented medium.

Proliferative and differentiative responses to various doses of vitamin A (VA) were studied in the predifferentiated cells of a fetal Syrian hamster pulmonary epithelial line (M3E3/C3), which were cultured on a collagen gel in a hormone-supplemented medium. These predifferentiated cells possessed well-developed endoplasmic reticulum (ER) and Golgi apparatus. At VA doses higher than 8 micrograms/ml, periodic acid Schiff and slightly alcian blue positive mucuslike granules were produced, which were also detectable electron microscopically. These mucuslike products were rich in sialic acid and resembled quite well those from primary cultures of tracheal epithelial cells of Syrian hamster sucklings when analyzed by column chromatography on various types of gel. At all VA doses studied (2.4, 8, 24 micrograms/ml), cells grew exponentially with an average population doubling time of around 74 h, whereas in the absence of VA they had a linear growth rate and a population doubling time of 158 h between Days 4 and 11. The uptake of [3H]glucosamine into the whole cell homogenates showed a peak at Day 8, irrespective of VA doses (0 to 24 micrograms/ml), and at the highest VA dose (24 micrograms/ml) it exceeded by twofold the control (0 microgram/ml) level. At the same time, [14C]thymidine demonstrated a high peak of uptake on Day 8 at 8 and 24 micrograms/ml VA. There was virtually no difference between 0 and 2.4 micrograms/ml VA, with both doses yielding much lower peaks. Based on the results currently presented and previously reported, three successive stages were hypothesized for the mucous differentiation processes in M3E3/C3. The process from the first undifferentiated stage to the second predifferentiated stage with well-developed ER and Golgi apparatus requires both collagen gels and hormones. Differentiation from the second stage to the third secretory stage with mucous granules is stimulated by VA. These observations indicate that the cell line M3E3/C3 could provide a new system for investigating the mechanisms of mucus differentiation by VA.

Animals↗

Toxicity and chromosomal damage in fetal Syrian hamster and human pulmonary epithelial cells.

In order to test the hypothesis that human chromosomes are more stable than those of rodents, we compared the fetal human and Syrian hamster pulmonary epithelial cell lines for their sensitivity to the induction of cytotoxicity (CT), chromosomal aberrations (CAs) and sister-chromatid exchanges (SCEs). One day after plating, the cells were exposed for 2 h to various doses of ENU dissolved in an exposure medium consisting of McIlvaine buffer, RPMI 1640, and bovine serum albumin. CAs and SCEs were examined in 24-64 post-exposure hours by the standard methods, while CT was determined by cell counts. The frequency of CAs (particularly chromatid exchanges) and that of SCEs showed clear dose dependency and was remarkably higher in the hamster than in the human cells. CT determined in 1 week of post-exposure incubation showed a similar dose response for both cell lines with sharply declining regressions. These results suggest that human chromosomes are indeed more resistant to ENU-inducible aberrations than hamster chromosomes and that CT may not always be directly associated with chromosomal damage.

Animals↗

Predisposition of cloned fetal hamster lung epithelial cells to transformation by a precarcinogen, benzo(a)pyrene, using growth hormone supplementation and collagen gel substratum.

A cloned fetal Syrian hamster lung epithelial cell line (M3E3/C3) was used to compare the influence of two different culture conditions on the degree of cellular differentiation and susceptibility of the cells to undergo malignant transformation by a precarcinogen, benzo(a)pyrene. Conventional conditions consisted of growth medium containing Roswell Park Memorial Institute Medium 1640, pyruvate, and fetal bovine serum and a substratum of plastic. Complex conditions comprised the growth medium supplemented with insulin, hydrocortisone, estradiol, epidermal growth factor, transferrin, and cholera toxin and a substratum of collagen gel. Under the complex culture conditions, there was extensive development of endoplasmic reticulum and Golgi vesicles, whereas under conventional conditions these organelles were only minimally developed. This was correlated with 1.5-1.8 times enhancement of ethoxycoumarin deethylase and reduced nicotinamide adenine dinucleotide phosphate-dependent cytochrome c reductase activities. Decomposition of added benz(a)anthracene into water-soluble compounds increased with the period of incubation and reached about 40% of initial benz(a)anthracene (50 micrograms/10 ml/flask) at 48 h under the complex conditions, whereas under the conventional conditions only less than 4% decomposition occurred. Benzo(a)pyrene in the dose range 2-8 micrograms/ml was strongly cytotoxic and caused significant anchorage independent transformation only under complex culture conditions. Transformed cells produced tumors in two of four hamsters during 8 months following s.c. injection within 48 h of birth. These results suggest that the complex culture conditions predisposed the cloned fetal epithelial cells to malignant transformation by benzo(a)pyrene through stimulation of cellular differentiation and development of enzyme systems capable of activating it metabolically.

Animals↗

Comparison of chrysene metabolism in epithelial human bronchial and Syrian hamster lung cells.

Chrysene is metabolized to 1-, 2-, 3-, and 4-hydroxychrysene and trans-1,2- as well as trans-3,4-dihydroxydihydrochrysene in human and Syrian hamster epithelial lung cells as indicated by GC/MS analysis, whereas K-region oxidation is at most a very minor pathway. Cells of a permanent clonal line of fetal hamster lung metabolized 97% of the chrysene whereas fetal human bronchial epithelial cells converted 24% of the substrate within 8 days incubation. In human cells oxidation at the 3,4-position predominates, whereas oxidation at the 1,2-position is the major pathway in hamster cells. Indication for a bay-region oxidation of chrysene in hamster cells has been obtained.

Animals↗

Undifferentiated sarcomas induced in Syrian hamsters by subcutaneous injection of diethylstilbestrol.

The carcinogenic effects of weekly subcutaneous injections of dimethylnitrosamine (NDMA: 0.05 of the LD50) and diethylstilbestrol (DES: 1.5 mg/kg body wt) or a combination of both carcinogens were studied in 64 Syrian hamsters. There was no additional tumorigenic effect on NDMA-induced liver tumours in hamsters which received DES treatment prior to NDMA treatment. In contrast to the previously reported DES effects, 72% of the DES-treated hamsters unexpectedly developed undifferentiated sarcomas around the interscapular injection site. This finding suggests a local carcinogenicity of DES, which might not be related to its hormonal effects.

Animals↗

A fetal Syrian hamster lung epithelial cell line as an in vitro model for respiratory carcinogenesis.

A clonal continuous cell line consisting of pre-differentiated lung epithelial cells was established from a Syrian golden hamster fetus on day 15 of gestation. Immunocytological techniques revealed cytoplasmic filaments positive to antikeratin antibody and positive to antivimentin antibody in these cells. Supplementation of the medium with epidermal growth factor, insulin, other types of hormones and vitamin A markedly enhanced cell growth and DNA synthesis. Simultaneously, the cell differentiation characterized by mucus-like glycoprotein production was greatly stimulated. Removal of vitamin A diminished cell growth and this differentiation. The cell system was found to be useful for studying the relationship between in vitro cell transformation and differentiation. Additionally, studies to define general chemical toxicities in this cell system by evaluating several parameters such as cell survival, sialic acid content and enzyme leakage into the medium are in progress.

Animals↗

Test-condition-dependent influence of harman and nonharman on benzo[a]pyrene mutagenesis in Salmonella.

The enhancing or decreasing effect of harman or norharman on benzo[a]pyrene mutagenesis depends mainly on the metabolizing system (S9) used. When mammalian activation was performed by using liver homogenates from mice induced by 3-methylcholanthrene, phenobarbital or Aroclor 1254, then the mutagenicity of benzo[a]pyrene in Salmonella typhimurium TA98 decreased upon addition of harman or norharman. In the presence of rat-liver homogenate induced by Aroclor 1154, however, harman enhanced the number of benzo[a]pyrene revertants, whereas norharman did not show any significant alteration of the benzo[a]pyrene mutagenicity. Further tests carried out with phenobarbital-induced mouse-liver homogenate showed that, within certain limits, neither variations of the amount of S9 extract nor the amount of the cofactors nor the relative proportions of the test substances had any influence on the antagonistic effect of harman or norharman on the benzo[a]pyrene mutagenesis.

Alkaloids↗