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Biomedical subjects

C A Reinhardt

Publications and source records attributed to C A Reinhardt.

16 recordsLinked to original sources

Neurodevelopmental toxicity in vitro: primary cell culture models for screening and risk assessment.

Robust models for the evaluation of developmental toxicity are briefly reviewed with emphasis on embryonic brain and retina cells in vitro. Organ slice and aggregate cultures under constant gyratory movement as well as high cell density monolayer ("micromass") cultures are considered as robust models. An in vitro model using high cell density monolayer and re-aggregated cells isolated from embryonic chick brain (ED 6) is presented. Cell development and differentiation of the astrocytes and nerve cells are monitored by marker proteins and cytotoxicity was quantified by neutral red uptake and protein content. Four human teratogens, six possible human teratogens and six unlikely human teratogens were tested in brain and retina cells for their cytotoxic and morphologic effect. All 16 substances were classified correctly except the neurotoxicants MPTP and MPP+, both of which are strong dopaminergic toxicants in vitro as well as in humans and are therefore proposed to be classified as human neuroteratogens. Preliminary data on the lowest effect levels of four potential neurotoxicants (cadmium chloride, Ara-C, Phenytoin, MPTP) in chick brain aggregate cultures correlate surprisingly well with known toxic human plasma levels. Further validation has to be undertaken to confirm these promising results. A battery of such robust in vitro models is proposed that could cover neurodevelopmental toxicity of drugs and chemicals for screening and risk assessment purposes.

Abnormalities, Drug-Induced↗

A rapid cell membrane permeability test using fluorescent dyes and flow cytometry.

A reliable and rapid test to detect cytotoxic chemicals which affect cell membranes is described. Fluorescein diacetate freely penetrates intact cells where it is hydrolyzed to its fluorochrome, fluorescein, which is retained in the cell due to its polarity. On the other hand, ethidium bromide is known to be excluded from the intact cell, staining only nucleic acids of membrane-damaged cells. The combination of both fluorochromes results in counter-staining: intact cells fluoresce green (cytoplasm) and membrane-damaged cells fluoresce red (nucleus and RNA). Rat thymocytes freshly isolated without enzyme treatment were incubated simultaneously with test substance and dye solution fluorescein diacetate and ethidium bromide. A two-parameter analysis was performed on a flow cytometer with an on-line computer. Concentration-dependent effects of various detergents and solvents were quantified by measuring the amount of dye retention, i.e., the decrease or increase in fluorescein--fluorescence (peak shift), and the decrease in dye exclusion (increase in ethidium bromide-staining) relative to the untreated control. The assay can be used for rapid monitoring of chemical insults to cell membranes which precede the decrease of the viability measured by pure dye exclusion techniques.

Animals↗

Collagen synthesis in growing human skin fibroblasts.

Collagen and noncollagen protein synthesis in cultured human skin fibroblasts was studied in relation to different growth phases. In order to quantify collagen synthesis, we determined the release of incorporated radioactivity using purified bacterial collagenase. Collagen as well as noncollagen protein synthesis markedly decreased during fibroblast growth. On the other hand, we found a 3-fold increase in relative collagen synthesis (i.e. collagen synthesis compared to total protein synthesis) comparing cells in the log growth phase with cells in the stationary growth phase.

Adult↗

Cell detachment and growth of fibroblasts as parameters for cytotoxicity of inorganic metal salts in vitro.

Eight inorganic metal compounds (AlCl3, Al(OH)3 gel, Al(OH)3 salt, SnCl2, ZnSO4, K2Cr2O7, CdCl2, HgCl2) were tested for their cytotoxic effect on an established hamster fibroblast line (BHK-21/C13) in vitro using a cell detachment assay and two different growth assays, the cloning efficiency and the cell number after 2 days subconfluent culture as parameters. The test conditions for these assays were optimized, including incubation period, application of test substance, growth conditions and data analysis. Aluminum, zinc and tin compounds showed low cytotoxic effects when compared to potassium, cadmium and mercuric compounds. Potassium dichromate was highly toxic in both growth assays (0.0001-0.01 mM, with a clear dependency on the incubation time), whereas it proved to be only slightly toxic in the detachment assay (0.1-5 mM). Cadmium and mercuric chlorides were the most toxic compounds in the growth (0.00001-0.001 mM) and the cell detachment assays (0.01-0.1 mM). Variable incubation periods barely affected the cytotoxicity of mercuric chloride. Ranking of these cytotoxicity data was found to be identical to the ranking of LD50 values (oral, rat) as well as to the ranking according to threshold limit values for human workroom environment, and of human eye irritation data.

Aluminum↗

Acute irritation tests in risk assessment.

The two most important elements in assessing the risk of topical injury from a chemical are its biological properties, in the context of skin and mucous membrane damage, and the likelihood and likely nature of topical contact with the chemical. Appropriate biological tests in model systems should be based on the probable circumstances of exposure. Topical contact takes place under two distinct sets of circumstances--intentional and accidental. Chemicals that are intended to come into contact with skin and mucous membranes include cosmetics and dermatological preparations. For such compounds the frequency and extent of skin contact is predictable and any irritant effects are unacceptable. The absence of irritant effects is established by testing in human volunteers or experimental animals. Since animal skin and mucous membranes are more susceptible to irritants than those of man, the amounts or concentrations tested need not be greater than those intended for human use. It is hoped that validated alternatives to animal models will soon be available. For household or industrial chemicals where skin and/or mucous-membrane contact occurs accidentally, topical contact should generally be avoided. In such cases the objective of irritancy testing should be to establish which compounds are particularly irritant and therefore need extra care in handling. We are convinced that this latter objective can be achieved by simpler and less cruel tests than the Draize eye-irritation test.

Accidents↗

Interpretation of cell toxicity data for the estimation of potential irritation.

Three cytotoxicity assays were evaluated using 57 chemicals of various classes (inorganic and organic metal salts, solvents, detergents, reagents, drugs) which have widely different mechanisms of cytotoxicity. Baby hamster kidney fibroblasts (BHK-21/C13) and early (Keller) and late (MRC-5) passage human fibroblasts were used to measure cell detachment, cloning efficiency, and growth inhibition under subconfluent culture conditions. For the majority of chemicals, for which comparisons were made, the ranking order was roughly the same in all three tests and with all three cell types. However, for some chemicals specific growth effects could either be detected or excluded because the relationship between the data from the detachment assay and that from one of the growth assays was characteristically altered. The ranking order resulting from our in vitro data correlated better with threshold limit values for human workroom air (TLV/TWA) than with LD50 values (rat, oral). Correlations with data from Draize skin and eye irritation tests were not determined since the available in vivo values were derived using various different scoring systems. However, when our in vitro data were used to divide the chemicals into three crude classes, (i) non-irritant, (ii) mild to moderate irritant, or (iii) strong irritant or corrosive, and the results were compared with the known irritation potential for skin and mucous membranes derived from human exposure data, the in vitro data were more than 80% predictive of the in vivo classifications.

Animals↗

Actin III and myofilaments in different muscles of wildtype and the mutant raised of Drosophila melanogaster.

The mutation raised (rsd, 3-95.4) of Drosophila melanogaster causes flightlessness as a consequence of abnormalities in the fibrillar flight muscles (FFMs). In this muscle type actin III is neither synthesized nor accumulated while adult tubular muscles of rsd flies are indistinguishable from wildtype. This paper demonstrates ultrastructural defects in rds FFMs and extends the biochemical comparison of adult wildtype and rsd muscles to larval muscles and to embryo cells differentiating in culture. The FFMs of mature rsd flies contain thick filaments in irregular bundles, but no thin filaments. Normal Z-discs are virtually absent. Instead, a large number of Z-disc residues are present in stacks attached to short filaments on either side. In newly emerged rsd flies the disorganization is less pronounced. The adult tubular muscles and the supercontracting muscles of third-instar larvae of rsd can ultrastructurally not be distinguished from wildtype. The present biochemical results indicate that not only FFMs of mature and newly emerged adults are affected by the rsd genotype. Synthesis of actin III is not detectable in rsd FFMs which corresponds to the heavy structural defects. In addition to the lack of actin III synthesis in rsd FFMs, three unidentified proteins (52 kDa, 80 kDa, 90 kDa) which are specific for wildtype FFMs are also not synthesized in rsd flies. Among all other muscle types studied, all of which are morphologically unaffected, only adult tubular muscle of rsd genotype showed no biochemical effect. Larval supercontracting muscle as well as embryo cells differentiating in culture failed to synthesize actin III in the case of rsd cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Actins↗

Cell detachment and cloning efficiency as parameters for cytotoxicity.

Cell detachment and cloning efficiency of Baby Hamster Kidney cells (BHK-21 C13) were used as parameters to quantify cytotoxicity in vitro of 3 endogenous chemicals (glutathione, L-methionine, L-cysteine HCl) and 4 organotin compounds (tributyltinoxide, tributyltinchloride, tetrabutyltin, tetraphenyltin). IC50 values (inhibitory concentration at which the cloning efficiency was reduced to 50%) were estimated to be larger than 10(-3) M for all 3 endogenous substances, which served as a calibration of the cell culture system for non-toxic chemicals. For the 2 tributyltin salts the IC50 values were estimated to be near 10(-6) M and for the 2 tetraalkyltin compounds near 10(-5) M. The estimated CD50 values (concentration at which 50% of the cells detach) were at least twice as large as the corresponding IC50 values for all 7 chemicals tested. For the toxic tributyltin salts the cell detachment assay was 30-60 times less sensitive than the cloning efficiency assay. However, both assays rank all compounds tested in the same sequence of toxicity as that known from in vivo studies.

Animals↗

Mutations affecting the indirect flight muscles of Drosophila melanogaster.

The development of the indirect flight muscles of Drosophila melanogaster was studied by analysing mutations that cause flightlessness. Twenty-five mutations on the X-chromosome and two on the third chromosome were examined. The X-chromosomal mutations form ten complementation units. The ten loci were assigned preliminary map positions by meiotic recombination and deficiencies and duplications. The two autosomal mutations represent two genes. Gynandromorph analyses suggest that many of these mutations have their primary effect in the presumptive thoracic muscle region of the embryo. The mutations cause a variety of characteristic defects, such as absence of the bulk of the thoracic muscle mass, or absence of only one of the two fibrillar muscle groups. Electronmicroscopic studies of sixteen mutants representing all twelve loci reveal abnormal myofibrillar organization in some of these mutants, e.g. aberrant or missing Z-bands, or absence of the thin filaments. Mutant protein patterns, obtained by SDS-polyacrylamide gel electrophoresis, show the following differences from wild type: ten mutants are characterized by absence of reduction of the 54 K protein, and most mutants exhibit a reduction and modification of the 80 and 90 K proteins. The absence of reduction of the 54 K protein was strongly correlated with aberrant Z-bands.

Animals↗

Regulative interactions between cells from different imaginal disks of Drosophila melanogaster.

The regulative behavior of cells from the imaginal wing disk of Drosophila melanogaster can be modified by interaction with cells from different disk types. Both thoracic and nonthoracic disks are able to interact, but there are major differences in the effectiveness of interaction. The finding lends experimental support to the idea that cells in different fields within the same organism use the same mechanism for specifying positional information. A similar conclusion has been reached by Wilcox and Smith based on studies of the mutation wingless.

Animals↗

Ultrastructural comparison of the midgut epithelia of fleas with different feeding behavior patterns (Xenopsylla cheopis, Echidnophaga gallinacea, Tunga penetrans, Siphonaptera, Pulicidae).

This morphological study describes the ultrastructure of the midgut of three flea species, including temporary parasitic fleas (both sexes of Xenopsylla cheopis, males and immature females of Echidnophaga gallinacea and Tunga penetrans) and stationary parasitic fleas (mature females of E. gallinacea and T. penetrans). (1) Three cell types (a,b,c) constitute the midgut epithelium, each appearing in a characteristic and constant frequency along the whole midgut, a) The functional digestive cells form the main part of the epithelium as one layer of cylindric cells. Nuclear volume and nucleus/cytoplasm ratio have been estimated (with morphometric methods) to be the same in both sexes of E. gallinacea and T. penetrans. b) Some single regenerative cells or nests, containing 5-10 cells per section plane, lay at the base of the epithelium (2-3 cells or nests per cross section of a midgut). c) Secretory cells are characterized by their opaque cytoplasm which contains electron-dense vesicles. They have few microvilli and no basal labyrinth and are placed between digestive cells only as single cells (1-2 per cross section of a midgut). (2) After the first bloodmeal some ultrastructural changes occur in the midgut of all fleas. These changes are interpreted as a structural reflection of metabolic processes such as secretion of digestive enzymes, resorption, storage and transport of digested nutrients, and synthesis of digestive enzymes. (3) More conspicious changes occur in the midgut of the stationary parasitic and maturing females of E. gallinacea and T. penetrans. The nuclear volumes of the digestive cells reach the two-fold and eight-fold value, respectively. The nucleus/cytoplasm ratio decreases by half. The corresponding cytoplasmic growth of each cell is reflected in an enlargement of the whole midgut. The digestive cells form long apical cell extensions. The nucleus, basal labyrinth, rer, and golgi complex all change their morphology, and this can be interpreted as the result of a higher level of metabolic activity than during the first bloodmeal. (4) The midgut of the oviparous female of T. penetrans undergoes a process of compensatory hypertrophy which consists in the cellular hypertrophy of each digestive cell and in an extensive proliferation of the regenerative cells. A unique structure, called 'nuclear halo' appears within the process of cellular hypertrophy. This structure consists of a layer of 70-100 A thick filaments along the periphery of the nucleus. The nuclear halo contains few ribosomes and is screened from the cytoplasm by an rer cisterna. The filaments may contain RNA molecules which are on their way to the cytoplasm. It has been demonstrated that the structure of the midgut epithelium is influenced by the nutritive and parasitic behavior of the flea. The stationary and oviparous E. gallinacea and T. penetrans reveal an extensive and irreversible change of their midgut epithelium.

Animals↗

Do we find relevant parameters for in vitro cytotoxicity testing?

The current strategy for the design of cytotoxicity tests is briefly reviewed in light of goals that need to be reached, and in the capacity of in vitro tests to fulfill the high public expectations for alternative methods to animal testing. Various cytotoxicity tests and parameters used for the assessment of topical toxicity and of neurotoxicity are chosen as examples and their relevance is discussed. Past experience with in vitro and short-term tests for mutagenicity shows not to look for one single supertest. A proposition for reasonable safety testing implies that a combined approach must be developed that integrates the results from a battery of cell tests and from structure-activity analyses as well as from kinetic and metabolic studies. The relevance of such an integrated approach must be aimed directly at the organisms that may be exposed.

Animals↗

Comparison of in vitro cell toxicity with in vivo eye irritation.

The effects of 26 different cosmetic ingredients (e.g., permanent wave and hair dye compounds, emulsifiers, resins, and detergents such as quats) were assessed by four end points indicative for qualitatively and quantitatively different cytotoxicity: (1) neutral red uptake reduction after 24 h of treatment (NR-90 and NR-50); (2) cell detachment from culture dish after 4 h of treatment (CD-25); (3) growth inhibition after 48 h of treatment (GI-50); and (4) membrane permeability measured by fluorescent dye retention (fluorescence shift FS-25) and dye exclusion (viability ratio VR-25). The cytotoxicity potentials of the test agents were ranked for each in vitro test and compared with the in vivo eye irritation in guinea pigs (Draize test) after application of 5 or 2.5% (w/v) solutions of the same test batches. Strong irritants could be easily detected by most of the in vitro tests, but the neutral red uptake assay (especially NR-50) was the only one that was able to distinguish the minimally irritating test agents from strong irritants as well as from nonirritants. (I) All three extremely irritating quaternary ammonia compounds were identified as the strongest cytotoxic agents. (II) Nine out of 12 minimally irritating substances (mainly emulsifiers and resins) were ranked in the intermediate group. (III) Eight out of 11 non-or practically nonirritating chemicals (mainly permanent wave compounds) showed cytotoxic effects at very high concentrations only. The distinction of these three groups was better by means of NR-50 than by NR-90 data. At least two of the other cell tests (CD-25, GI-50, FS-25, and VR-25) had to be considered to allow an adequate interpretation of in vitro cytotoxicity.

Animals↗

Fast and sensitive screening method for detection of trichothecenes in maize by using protein synthesis inhibition in cultured fibroblasts.

A fast and sensitive bioassay with hamster (BHK-21 C13) fibroblasts for the detection of toxic trichothecenes in maize is described. Cells are exposed to pure toxins or crude maize extracts for 30 min. The mixture is then incubated with [1-14C]-leucine for an additional 60 min and the radioactivity incorporated into the protein of the washed cells is determined. The sensitivity of the assay was in the range 1-10 ng/mL (or 50 ppb in maize) for T-2, HT-2, and diacetoxyscirpenol. At least 1000-fold higher concentrations of non-trichothecene mycotoxins and plant toxins were necessary to cause an inhibition of protein synthesis in the cells. Of 24 maize samples tested, 14 gave a positive response in this assay and the presence of trichothecenes could be confirmed chemically in 11 samples. Therefore, the described bioassay is proposed as a useful screening method for cytotoxic trichothecenes in maize.

Animals↗