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Biomedical subjects

L M Watts

Publications and source records attributed to L M Watts.

23 records · Page 2Linked to original sources

Sublethal fractionated total-body irradiation and donor bone marrow infusion for induction of allograft tolerance.

Tolerance to skin allografts across the strong histocompatibility barrier H-2b to H-2d was achieved with sublethal fractionated total-body irradiation, FTBI, delivered to H-2d mice in 3 doses of 250 rads within 24 hr, followed by transfusion of 3 X 10(7) H-2b donor bone marrow (BM) cells. H-2b skin allografts were applied within 48 hr after the initial radiation. 70% of the mice became long-term (greater than 180-day) survivors with fur-bearing grafts. Marked interexperiment variability in survival rates suggested that infection was the major cause of death in this model and lower weight gain and survival rates for allogenic BM vs. media-treated controls suggested that graft-versus-host disease (GVHD) was also a factor. The observation, however, that long-term survivors (70% of all mice) gained weight and appeared healthy suggested that the GVHD might be self-limiting. Chimeric analysis revealed that approximately 25% of spleen cells were of donor origin, both at short-term (6 weeks) and long-term (greater than 1 year) intervals after tolerance induction. In spite of hematopoietic chimerism, a low incidence of spontaneous tumors, less than 1%, occurred in the long-term survivors.

Actuarial Analysis↗

The role of donor lymphoid cells in the transfer of allograft tolerance.

Tolerance to murine skin allografts across a MHC disparity was induced by conditioning primary hosts with sublethal fractionated total-body irradiation (FTBI) and transfusion of allogeneic bone marrow (BM). Tolerance could be adoptively transferred to secondary hosts conditioned by FTBI with infusion of spleen cells from hosts bearing intact skin allografts greater than 60 days. Tolerance could not be transferred by tolerant host spleen (THS) preparations from which cells of the donor genotype had been deleted by cytotoxic alloantisera. Deletion of host genotype cells, however, did not diminish the capability of THS to transfer tolerance. All of the tolerizing activity of THS appeared to reside within cells of the donor genotype. Small numbers of normal donor spleen cells could induce tolerance in FTBI hosts but only at the expense of very high mortality, in contrast to the low mortality observed with tolerizing injections of allogeneic donor cells from THS or injections of normal semiallogeneic F1 hybrid spleen cells. If an active immune response is responsible for tolerance induction/transfer in this model, allogeneic donor lymphoid cells derived from BM, in contrast to donor spleen cells, must be capable of mounting this response without concomitant severe GVHD. In future experiments, cells of donor genotype can be isolated from THS and purified in sufficient numbers to compare their tolerizing efficiency vs. that of normal donor cells, detect possible suppression of normal host cell alloreactivity in vitro and identify the donor cell phenotypes involved.

Animals↗

An analysis of phytohemagglutinin lymphoblastogenesis in whole blood.

A population of 80 defined normal people ranging in age from 20 to 62 years were used to define a dose response curve in whole blood phytohemagglutinin blastogenesis of lymphocytes. Maximum stimulation occurred at four days of incubation and 18 hours of pulse labeling with tritiated thymidine using 50 micrograms per milliliter of phytohemagglutinin and 1 microcurie of tritiated thymidine. An analysis of variants indicates a statistically significant trend of reduction of disintegrations per minute per milliliter with advancing age. Likewise, there was an extremely significant difference between measurements performed in the morning and late in the afternoon. Measurements referred to sex and sequential testing were not shown to be significant. Therefore, whole blood phytohemagglutinin blastogenesis may be meaningfully performed and interpreted using nonparametric statistics and the raw blastogenesis of a standard amount of peripheral whole blood, provided that the remainder of the test conditions are rigidly controlled.

Adult↗