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V Habazin-Novak

Publications and source records attributed to V Habazin-Novak.

6 recordsLinked to original sources

The rate of DNA synthesis in HeLa cells during combined long-term and acute exposures to lead.

Asynchronous populations of HeLa cells growing as monolayers were incubated in a nutritive medium supplemented with a low concentration of 10(-5) M lead chloride for several months. At various time intervals the [3H]thymidine uptake was measured in the DNA of the cells by a scintillation counting technique. During the first 2 weeks of incubation, the rate of DNA synthesis was slightly reduced. After 3 weeks the synthesis returned to normal and later it was a little enhanced. The pretreated cells tolerated acute intoxication by a high lead concentration of 2.5 x 10(-4) M without a change in the rate of DNA synthesis. The cells also proliferated 1 year in a culture medium supplemented with a progressively increasing lead concentration. However, the survival of cells at the highest lead concentration lasted only a few days. After return to a metal-free medium the cells again became very sensitive to lead as shown by the reduced rate of DNA synthesis. The transitory character of adaptation indicates that there was no direct genetic involvement.

Cell Division↗

[Lead and cadmium toxicity in established mammalian cell lines].

Lead and cadmium toxicity was evaluated in three mammalian cell lines (tumour : HeLa, transformed : XC and normal : NRK) by means of the modifications of the 3H-TdR incorporation rate in the nucleus of the treated cells. The three cell lines showed different degrees of sensitivity. Sensitivity depended on the line, metal, its concentration and duration of incubation. Cadmium was found to be at least five times more toxic than lead except at low concentration. The normal cell line was more sensitive to cadmium and less sensitive to lead than other lines.

Cadmium↗

Reversible inhibition of DNA, RNA and protein synthesis in human cells by lead chloride.

An acute intoxication by lead chloride (conc. 2.5 - 10(-4)M) produces a temporary reduction of macromolecular syntheses in HeLa cells growing asynchronously. The reduction is similar for DNA, RNA and proteins and differs only in the intensity. After a one-day intoxication, if the cells are put back in a fresh medium, the syntheses return to normal within 10 h. The histochemical sulphide-silver method shows that lead is present in the cells during the inhibition.

Cell Division↗

Human exposure to ochratoxin A in areas of Yugoslavia with endemic nephropathy.

Ochratoxin A is a mycotoxin with pronounced nephrotoxic potency in all species of single-stomach animals studied; it is a major disease determinant of porcine nephropathy and a disease occurring endemically in several countries. This disease is comparable with Balkan (endemic) nephropathy, suggesting a common causal relationship. Ochratoxin A has been found in foodstuffs in many countries, but the highest frequency of ochratoxin A contamination in foods (10.3% of 1,553 samples of foodstuffs) was encountered in an area of Yugoslavia, where Balkan (endemic) nephropathy is prevalent. Detection of ochratoxin A in human blood samples confirmed the prevalent exposure to this food contaminant. Relative risk calculations indicated a tendency to an association between this mycotoxin and Balkan (endemic) nephropathy, supporting the hypothesis of a causal role of ochratoxin A in this disease.

Balkan Nephropathy↗