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Biomedical subjects

R Parmar

Publications and source records attributed to R Parmar.

5 recordsLinked to original sources

Mechanisms of cytotoxicity caused by antitumour drugs.

Although the nature of the interaction between a drug or toxin and its target is of critical importance in determining the fate of a cell, we have argued here that the biological outcome of that interaction will also be determined by the nature of cellular events "downstream" of the initial interactions. We suggest that some type of coupling must take place between the formation of a drug-target interaction (the stimulus?) and the response of the cell. That response will depend upon the phenotypically determined repertoire of response open to the cell as well as upon the quantitative and qualitative measures of the events that the drug induces (DNA or protein damage, inhibition of growth etc.). For example we have described how the HL-60 cell appears to respond to low levels of toxins by engaging a programme of terminal differentiation whilst at greater concentrations apoptosis becomes engaged. Consideration of the cellular response to a toxic insult may provide valuable insights into the selective toxicity of agents as well as providing avenues for the discovery of toxins which might be useful in the treatment of cancer.

Animals

Nervous and immune systems as targets for developmental effects of benzodiazepines. A review of recent studies.

Prenatal exposure to benzodiazepines (BDZ) can cause behavioral dysfunctions both in humans and in experimental animals. In addition, prolonged impairment of cellular immune functions is found in rats after low dose BDZ exposure (e.g., diazepam 1.25 mg/kg/day) during part of fetal life [gestational days (GD) 14-20]. Analysis of diazepam and its metabolites in maternal and fetal tissues revealed that in this rat model the drug is no longer present at birth, which excludes direct effects of diazepam during the postnatal period. The main target of BDZ in brain, the GABAA receptor complex, is structurally and functionally heterogeneous. Besides alpha- and beta-subunits, gamma 2- or gamma 3-subunit should be coexpressed for a fully functional BDZ response. Signals of mRNAs encoding for alpha 1, beta 2 and gamma 2 are detected in fetal rat spinal cord and lower brainstem by GD 14 and reach telencephalic regions in later fetal life, reminiscent of BDZ receptor ontogeny. Regional subunit distribution differs from the adult brain, one interesting feature being a preponderance of gamma 2 mRNA throughout fetal life. Since subunit composition influences the sensitivity to BDZ, these data suggest that prenatal effects of BDZ depend upon regional subunit compositions present at different developmental stages. The delayed depression of cellular immune responses in prenatally BDZ-exposed rat offspring during the first 2 postnatal months is accompanied by various changes in immune cell biology. Binding characteristics of the peripheral (omega 3) type BDZ receptor are altered until adulthood (8 weeks). Membranes of spleen cell preparations containing mainly lymphocytes exhibit a decrease of affinity for the peripheral ligand [3H]PK11195, splenic macrophage preparations a decrease of maximal binding capacity. Various defects in cytokine production by macrophages and T lymphocytes were observed: Mitogen-stimulated release of macrophage-derived tumor necrosis factor-alpha (TNF-alpha) and of the T cell-derived interleukin-2 (IL-2) was drastically reduced at 2 and 4 weeks of life and recovered in young adulthood, exhibiting the same time course of depression as lymphocyte proliferation in response to immune stimuli. Interleukin-6 (IL-6) release remained diminished until adulthood. In female offspring, additional alterations were found in splenic noradrenaline turnover after immune stimulation. The mechanisms underlying the breakdown of the cytokine network in prenatally diazepam-exposed offspring, and the long-term consequences are as yet unknown.

Animals

Autoreactivity in women with endometriosis.

Serum samples from 71 patients with laparoscopically staged endometriosis and from 109 age-matched non-pregnant control women were tested for antibodies to nuclear, phospholipid, smooth muscle and sperm antigens. Immunoglobulin G, M and A and complement components C3 and C4 were measured. Prevalence of the following autoantibodies was statistically significantly greater in women with endometriosis than in the control group: antinuclear antibodies, antibodies to ribonucleoproteins, smooth muscle antibodies, lupus anticoagulant and anticardiolipin antibody. Forty-one women with endometriosis (58%) had some type of autoantibody compared with 13 controls (12%). More women in the endometriosis group had IgG and IgM levels above the normal range. This was statistically significant for IgG in women with grade 3 and for IgM in those with grade 4 endometriosis, IgG levels were significantly higher in antibody-positive women with endometriosis than in the control group. Immunoglobulin and complement component levels tended to have a positive correlation with stage of disease.

Adolescent

Prenatal benzodiazepine immunosuppression: possible involvement of peripheral benzodiazepine site.

Treatment of pregnant Long Evans rats with a low dose of diazepam (1.25 mg/kg from gestational day 14-20) produced offspring suffering from suppression of cellular immune responses. Analogous effects were produced by clonazepam, a benzodiazepine (BDZ) with high affinity for the central-type, and Ro 5-4864, a BDZ with selective affinity for the peripheral-type BDZ receptor. Peripheral-type BDZ receptors are found to develop early in fetal life in peripheral organs including primary (thymus) and secondary (spleen) lymphoid organs, in the central nervous system and on immune cells (lymphocytes). In prenatally diazepam-exposed offspring the affinity constant is significantly changed. BDZ and PK 11195 also inhibit mitogen and alloantigen-induced T and B cell proliferation in vitro in adult murine lymphocytes. Diazepam, Ro 5-4864 and PK 11195 were found to be the most active compounds.

Animals