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Biomedical subjects

J Maes

Publications and source records attributed to J Maes.

At least 19 recordsLinked to original sources

Effect of different environmental variables on the synthesis of Hsp70 in Raphidocelis subcapitata.

Heat-shock proteins (Hsp) or stress proteins are strong candidates for biomarkers of environmental pollution since they are activated very early in the cascade of cellular events that follow toxic exposure and at concentrations below the lethal dose. Included in a test battery comprised of different bioassays, Hsp induction could provide a general purpose tier I indicator of pollution. Still, little is known on the induction of Hsp under different environmental conditions. In the present study we have made use of an Enzyme Linked Immunosorbent Assay (ELISA) to detect the synthesis of Hsp70 in Raphidocelis subcapitata in response to changes in pH, temperature, humic acids, nitrates and phosphates. The results show that algae respond to these changes in the environment by a transient increase in Hsp70 levels, the extend of which is dependent on the actual parameter under investigation. Out of these five parameters studied, only temperature and possibly pH were able to induce acquired tolerance, i.e. algae grown at a pH or at a temperature different from control conditions were shown to have acquired resistance to a subsequent challenge with Zn (10(-5) M). Adjustment of the pH and temperature in two physico-chemically different natural surface waters was demonstrated to be sufficient to obtain similar induction patterns of Hsp70 upon exposure to zinc. These results qualify Hsp70 as a good biomonitor for environmental pollution provided essential environmental parameters such as pH and temperature are kept constant.

Environmental Monitoring

Polysulphone inhibits final differentiation steps of osteogenesis in vitro.

Biocompatibility is an important factor in the development of orthopedic implants as well as in the development of new tissue culture devices. Polysulphone has been used for orthopedic implants because of its mechanical properties, ease of sterilization, molding capacity, and biocompatibility. Therefore, polysulphone has been chosen as the prime material for the construction of tissue culture devices to be used for the cultivation of osteogenic cells (preosteoblast-like MN7 cells and primary bone marrow fragments), as well as complete fetal long bone explants under space flight conditions. Whereas polysulphone did not interfere with the proliferation in early stages of bone-forming cells, we show that leachable factors within the polysulphone polymer prevented the final steps of matrix formation as measured by collagen synthesis and matrix mineralization. These data argue against polysulphone as a material for orthopedic implants.

Animals

[Treatment plan for removable partial prostheses].

Nowadays, the approach in occlusal therapy is orientated to functional requirements. The preservation of what remains, is more important than the restoration of the complete dental arches. Preliminary treatments have to be evaluated before starting any prosthetic procedure. Oral rehabilitation of a patient with a complicated mutilation is a teamwork. During the treatment, it is important that the patient can rely on one dentist for the coordination of every single treatment. Case reports are discussed and diagrams show the sequence of sessions dealing with other dental disciplines.

Adult

Transfer of antimony and arsenic to the developing organism.

The transfer of 73As and 125SB to the developing mouse organism was studied in the following ways. a)A diet containing the isotopes was given from the day of the vaginal plug and the radioactivity in uterus, ovaries and different maternal organs was determined 2,4, and 6 days after initiation of feeding. b)The isotopes were injected i.p. during organogenesis at day 12, and the transfer into the fetus as well as activity in maternal organs were followed for a period of 7 days. c)The radioactive diet was supplied during the entire pregnancy and 15 days thereafter. The radioactivity in the females was followed for 150 days, that in the litter for 50 days. Components of turnover of less than a day, less than a week and several months can be discerned in the adult for both isotopes and transfer to the fetus occurs during organogenesis. Less antimony than arsenic is transferred from food during fetal life. After birth, arsenic as well as antimony are taken up by the newborn via the milk.

Animals

The in vitro radiosensitivity of hemopoietic stem cells from control and preirradiated infant mice.

The radiosensitivity of hemopoietic stem cells isolated from infant mice (6 or 9 days of life), of infant preirradiated mice (exposed to 126 rad on day 6 and assayed at day 9 of life) and of adult C57/Bl mice was assayed on the basis of their capacity to form spleen colonies and to incorporate iododeoxyuridine after transplantation into heavily irradiated hosts. Stem cells of infant non-irradiated mice have a DO of 115 rad compared to 72 rad for adult mice whereas the DO of preirradiated infant mice has diminished to 80 rad. No significant difference was seen between spleen and bone marrow cells or between total cells and cells not sensitive to 3H-thymidine. It is postulated that this sensitization of stem cells caused by a preirradiation is responsible for the greater mortality of infant mice after fractionated exposure compared to a single one.

Aging

Stem cell kinetics in spleen and bone marrow after single and fractionated irradiation of infant mice.

The number and type of stem cells in spleen and bone marrow of mice were determined after exposure to a single dose of 150 R on day 6, to a single dose of 500 R on day 6 or day 9 or to a fractionated dose of 150 R + 350 R on day 6 and 9. The stem cells were assayed on the basis of colony forming units (CFU) in spleen and of incorporation of iododeoxyuridine in spleen and bone marrow of lethally irradiated host mice. During the first months of life, the number of stem cells in non-irradiated mice increases markedly in bone marrow and slightly in spleen. Irradiation causes a long-lasting depression in stem cells, particularly in bone marrow and affecting preferentially erythropoietic precursor cells. Following a dose of only 150 R, the number of CFU in bone marrow is still below control levels 24 days later. An exposure to 500 R fractionated between day 6 and 9 has a markedly greater effect on stem cells in the spleen than the same dose given in a single application either at day 6 or 9.

Age Factors

Iron incorporation after single and fractionated irradiation of infant mice.

The erythropoiesis in control and irradiated infant mice was investigated on the basis of incorporation of iron into hemopoietic organs and blood. Iron incorporation in bone marrow increased from the second week of life reflecting the maturation of the marrow whereas that in the spleen showed only minor changes. Irradiation of infant mice on day 6 or 9 caused a bone marrow syndrome characterized by an impaired iron incorporation into hemopoietic tissues and blood, by a reduced utilization of serum iron, and particularly by a delayed maturation of the erythropoietic functions of bone marrow. Fractionated irradiation not only had a greater effect on mortality but also caused a more severe and long lasting depression of erythropoiesis than a single dose.

Animals