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A Sarin

Publications and source records attributed to A Sarin.

6 recordsLinked to original sources

Necessity for interaction between adherent and non-adherent rat spleen cells for the generation of a suppressor factor of NK activation.

Whole rat spleen cell populations in culture release constitutively a factor which suppresses the NK activation in response to interleukin-2. Culture supernatants derived from adherent (AD) and non-adherent (NAD) cell preparations obtained from rat spleen cells, did not have a suppressor activity comparable to that present in the culture supernatants of whole spleen cells. When reconstituted mixtures of the AD and NAD cells were cultured, high levels of suppressor activity could again be demonstrated in the culture supernatants, indicating that some kind of co-operation between AD and NAD cells was needed for efficient generation of the suppressor. Non-suppressive culture supernatants derived from NAD cells became suppressive when AD cells were cultured in them. On the other hand, relatively little suppressor activity was generated when NAD cells were cultured in non-suppressive culture supernatants from AD cells. Our results seem to indicate that NAD cells may release some agent which is not itself a suppressor but either (a) induces the generation of suppressor activity from AD cells, or (b) is "processed" into a suppressor agent by AD cells.

Animals

Quantitative estimation of major histocompatibility complex antigens on live tumour cells.

Quantitation of major histocompatibility complex (MHC) antigens on cells can accurately be done by using a flowcytometer. Since flowcytometer is not freely accessable an alternate, simple method for relative quantitation of MHC antigens has been devised. In this procedure, YAC lymphoma cells were first treated with a monoclonal anticlass I MHC antibody and then with a rabbit anti mouse Ig-antibody coupled to peroxidase, followed by colour development using a substrate of peroxidase enzyme. Various assay parameters have been optimized. The validity of the procedure was examined by assessing the enhanced MHC expression on YAC cells treated with a soluble rat spleen derived factor, by the new procedure as well as by the flowcytometer. Comparable results were obtained by using both techniques.

Animals

Lack of optimal activation of natural killer levels by interleukin-2 in rat spleen cells: evidence for suppression.

The effect of human recombinant IL-2 on the levels of natural killer (NK) activity in spleen cells derived from BALB/c mice and different strains of rats was studied. Enhancement of murine NK activity in response to IL-2 was readily demonstrable. Levels of NK activity in control as well as IL-2-treated spleen cells from Wistar, Sprague-Dawley, Fischer, and Long-Evans rats increased initially and peaked on Day 1 or 2 of culture. No significant differences between the control and the IL-2-treated cultures was found in this duration. The subsequent fall in NK activity was slower in IL-2-treated cultures of Fischer and Long-Evans rat spleen cells resulting in a significant difference between the NK levels in control and IL-2-treated cells on Day 5 and Day 7 of the culture. In the case of Wistar and Sprague-Dawley rats, the boosting effect of IL-2 on NK levels was either poor or nonexistent. Even though NK activation was poor, spleen cells of all strains of rats did proliferate in response to IL-2, indicating that the IL-2 preparation used was biologically active on rat spleen cells. Rat spleen cells cultured alone or with IL-2 released a factor(s) in the culture supernatant which could suppress the IL-2-induced NK activation in mouse spleen cells. Indomethacin could block the release of suppressor factor by cultured rat spleen cells. Moreover the NK levels in rat spleen cells could be augmented by IL-2 in the presence of indomethacin. These results indicate that the subdued IL-2-induced NK activation in bulk cultures of rat spleen cells could be due to spontaneous release of prostaglandins by the cultured cells.

Animals

Interleukin-2-induced decrease in the buoyant density of cytotoxic cells and its relationship with proliferation.

Interleukin 2 (IL-2) is known to induce an augmentation of natural killer activity. In the present study we have used discontinuous Percoll density gradients to investigate the changes in the buoyant density of killer effector cells generated in response to IL-2. In all systems examined (mouse and rat spleen cells and human peripheral blood mononuclear cells), the cytolytic effectors generated in response to IL-2 have markedly lower buoyant densities compared to fresh natural killer cells. Our results also suggest that if a single layer of 44.2% (v/v) Percoll is used, almost all IL-2-induced cytolytic activity can be enriched in the cells which float on this layer whereas the heavier cells from the pellet are devoid of cytotoxic activity. The contribution of proliferative activity to (a) the generation of cytotoxicity and (b) the decrease in the buoyant density of the IL-2-induced killer cells was also studied in the mouse system. Natural killer levels in mouse spleen cells treated with mitomycin C could be significantly augmented by IL-2. Moreover, the effector cells generated in control as well as mitomycin-C-treated spleen cells in response to IL-2 had the same low buoyant densities. These results indicate that proliferation is not a prerequisite for the activation of killer activity and a reduction in buoyant density in response to IL-2.

Animals

Interleukin-2 induced activation of natural killer cells in rats and mice: a comparative study.

Effects of interleukin-2 (IL-2) on the natural killer (NK) activities of BALB/c mouse and Wistar rat spleen cells were compared. While mouse spleen cells cultured alone rapidly lost NK activity, co-culture with IL-2 resulted in a marked enhancement of NK activity. In contrast, the levels of NK activity of rat spleen cells cultured alone increased and remained high for 3 days and declined thereafter. Addition of human recombinant IL-2 or purified rat IL-2 did not influence the NK levels in rat spleen cell bulk cultures. Both IL-2 preparations were however biologically active as shown by their capacities to induced proliferation in rat spleen cells. Rat spleen cells suppressed the IL-2 activation of mouse spleen cells in a dose dependent manner, indicating a suppressor influence generated by rat spleen cells. Culture supernatants of rat spleen cells cultured with or without IL-2 for 3 or 5 days could also suppress the mouse spleen NK activation in response to IL-2. The suppressor activity could be concentrated on a 5K MW cut-off Amicon filter indicating that the molecular weight of the factor is more than 5000. These results indicate that a suppressor of IL-2 induced NK activation of mouse spleen cells is released by cultured rat spleen cells.

Animals