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Biomedical subjects

R Kishore

Publications and source records attributed to R Kishore.

57 records · Page 4Linked to original sources

Radiolabeled microorganisms: comparison of different radioisotopic labels.

Radioactively labeled microorganisms are very useful in assessing the in vitro phagocytic capability of human granulocytes and macrophages. Since microorganisms contain amino acids and nucleic acids, they can be radiolabeled by addition of radioactive amino acid and/or nucleic acid components to the culture medium. The isotopes 3H, 14C, 32P, 35S, and 75Se-have been used for bacterial radiolabeling. All of these commonly used isotopes with the exception of 75Se are beta emitters; 75Se is a gamma emitter. The half-lives of these isotopes vary from 14 days for 32P to 5,730 years for 14C. Because of the differences in their physical properties, they pose very different handling problems and require different kinds of safety precautions. In the event of either external or internal contamination, beta emitters deliver a larger localized radiation dose than do gamma emitters. In the case of internal contamination, the radiation dose increases with increases in the half-life of the radioactive isotope. Gamma radiation, on the other hand, is more penetrating than are beta particles and thus a gamma emitter requires appropriate shielding. Both the cost and the special problem of manipulation associated with these radioactive chemicals should be carefully considered before deciding which radioisotope is preferable for the labeling of microorganisms in the laboratory. In spite of the limitations of 75Se as a nonphysiologic element, it offers the simplest methods of handling among the isotopes considered in this review.

Bacteria↗

An optical tweezers-based immunosensor for detection of femtomoles-per-liter concentrations of antigens.

We used optical tweezers--optical trapping with focused laser beams--to pull microspheres coated with antigens off of an antibody-coated surface. Using this technique, we could quantify the force required to separate antigen to antibody bonds. At very low surface density of antigen, we were able to detect the single antigen to antibody binding. The force required to break the antigen-antibody bonds and pull the microsphere off the surface was shown to increase monotonically with increasing surface density of antigens. Using the force determination as a transducer, we were able to detect concentrations of free antigens in solution as small as 10(-15) mol/L in a competitive binding assay.

Antigen-Antibody Reactions↗

Paternal leucocyte immunotherapy for recurrent pregnancy loss.

The defective recognition of foetal alloantigens by the maternal immune system is associated with recurrent pregnancy failure and may be prevented by boosting the maternal immune response with paternal or third party leucocyte immunization. The mechanism by which this process achieves success is not known. Clinical trials on recurrent spontaneous abortion have shown an up to 70% successful pregnancy rate after immunotherapy but the importance of this is unclear because there have been success rates of between 29% and 76% even in the control population. These variations could be due to small sample sizes and heterogeneity in the populations studied as well as co-intervention by the placebo. This article reviews the state-of-the-art for immunotherapy and discusses its mechanism of action in the prevention of recurrent foetal loss.

Abortion, Habitual↗