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Biomedical subjects

A D Kulkarni

Publications and source records attributed to A D Kulkarni.

At least 37 records · Page 2Linked to original sources

The influence of hepatocellular function on NK and T cell tumoricidal activity.

Recent studies by this group have demonstrated that hepatocellular integrity is important in the preservation of host cellular immune function. This study evaluated the effect of experimental hepatocellular dysfunction (EHD) on host antineoplastic defense mechanisms. In nonspecific immune studies, we examined the effect of EHD on Wistar Furth (WF) natural killer (NK) cell cytotoxicity; in specific immune studies, we assessed WF C3H/HeJ lymphocytic responsiveness to both T cell mitogen and unmodified syngeneic fibrosarcoma. In concurrent studies, we evaluated the effect of EHD on interleukin-2 (IL-2) synthesis, an important NK and T cell trophic factor. WF rats and C3H/HeJ mice were assigned to three groups: EHD induced by bile duct ligation, sham, and normal control (NC). At day 21 serum bilirubin, WF NK cytotoxicity to YAC-1 tumor cells, WF and C3H/HeJ lymphocytic responsiveness to phytohemagglutinin (PHA) and syngeneic MCA-fibrosarcoma (MCA-F), and WF T-helper IL-2 production were determined in respective groups. Serum total bilirubin was elevated in EHD rats and mice with respect to controls (p less than 0.01). Wistar Furth cytotoxicity to the YAC-1 tumor cells was depressed in EHD animals with respect to sham and NC groups at 12.5:1 (p less than 0.01), 25:1 (p less than 0.05), 50:1 (p less than 0.05), and 100:1 (p less than 0.05) effector/target cell ratios. WF T cell responsiveness to PHA was depressed in EHD with respect to controls (p less than 0.01). C3H/HeJ lymphoproliferative response to MCA-F tumor antigen was also depressed in EHD animals when compared with control groups with the addition of 12.5 X 10(3) (p less than 0.05) and 50 X 10(3) (p less than 0.05) MCA-F cells. These impairments in NK and T cell function in EHD could not be attributed to diminished IL-2 production (EHD vs sham and NC: 112,141 +/- 5232 vs 106,691 +/- 1419 and 120,759 +/- 3248 cpm, respectively). These results demonstrate that hepatocellular failure compromises NK and T cell tumoricidal function, an effect not resultant on diminished T helper IL-2 production.

Animals↗

Impaired nonspecific cellular immunity in experimental cholestasis.

The abilities of polymorphonuclear leukocytes (PMN) and pulmonary alveolar macrophages (PAM), to demonstrate chemotaxis, phagocytosis, and superoxide release after bile duct ligation in the rat were investigated to determine the effect of cholestasis on nonspecific cellular immune mechanisms. Chemotactic response to C5a and FMLP, phagocytosis of 14C labeled Staphylococcus aureus, and zymosan-induced superoxide release were evaluated 21 days after bile duct ligation (BDL), sham operation, or in normal controls. Serum total bilirubin level was elevated after BDL (p less than 0.01). Chemotactic ability was similar to each group. PMN phagocytic uptake of 14C labeled Staphylococcus aureus was depressed in BDL (p less than 0.05). BDL rats exhibited impaired PAM phagocytic indices and improved PMN superoxide release (p less than 0.03). PAM superoxide release was similar in each study group. Alterations in phagocytic function with cholestasis are important deficits in nonspecific cellular immunity that may contribute to the high incidence of infective complications associated with obstructive jaundice.

Animals↗

Influence of dietary nucleotide restriction on bacterial sepsis and phagocytic cell function in mice.

Although enzyme defects in purine metabolism have revealed the importance of these substrates to maintenance of a normal immune response, the role of exogenous nucleotides on the cells that mediate the host defense system has remained largely unexplored. Recent investigations have revealed that dietary nucleotides are vital to the maintenance of cell-mediated responses to antigen stimulation. To test the influence of dietary nucleotide deprivation on resistance to infection, Balb/c mice were maintained on chow, a nucleotide-free (NF) diet, or an NF diet repleted with adenine, uracil, or RNA. Mice on the NF diet suffered 100% mortality following intravenous challenge with Staphylococcus aureus, while chow-fed and RNA- or uracil-repleted mice demonstrated significantly greater resistance to this bacterial challenge. Macrophages from mice on the NF diet had decreased phagocytic activity as measured by uptake of radiolabeled bacteria compared with mice maintained on the NF diet supplemented with adenine, uracil, or RNA. No change in S aureus antibody response was noted on the various diets. Although the mechanism of this suppression of nonspecific immunity remains unclear, provision of nucleotides to defined diets appears vital to maintain host resistance to bacterial challenge.

Agglutination Tests↗

Impaired specific cell-mediated immunity in experimental biliary obstruction and its reversibility by internal biliary drainage.

Little is known of the effect of cholestasis on host immunity. This study evaluates lymphocytic responsiveness to PHA and LPS mitogen and to allogeneic F344 antigen in Sprague-Dawley rats 21 days following bile duct ligation and 31 days following relief of jaundice by internal biliary drainage. Serum bilirubin level was significantly elevated in the bile duct ligated animals at Day 21 (P less than 0.001) and thereafter returned to preoperative levels following internal biliary drainage. Results demonstrate depressed responsiveness to PHA (P less than 0.001) and allogeneic F344 antigen in vivo (P less than 0.04) and in vitro (P less than 0.02) in bile duct ligated animals as compared to sham, sham pair-fed, and normal control rats. The observed deficiency in responsiveness to T-cell-dependent mitogen and antigen cannot be explained on the basis of complicating nutritional, renal, or infective factors. Subsequent internal biliary drainage results in some improvement in T-cell responsiveness in the bile duct ligated group although recovery is not complete. B-Lymphocytic response to LPS mitogen is not affected by bile duct ligation. We conclude that cholestasis subsequent to extrahepatic biliary obstruction per se results in impairment of cell-mediated immunity in vivo. This impairment is partly reversible by internal biliary drainage. In vitro B-cell function does not appear to be affected in this model. Further study of impaired cell-mediated immunity in extrahepatic biliary obstruction will improve our understanding of the immunological status of patients with obstructive jaundice and cholestatic liver diseases.

Animals↗

Dietary nucleotides, a requirement for helper/inducer T lymphocytes.

Previous investigations have revealed that dietary nucleotide restriction delays the onset of primary murine cardiac allograft rejection and acute graft-versus-host disease followed H-2-incompatible bone marrow transplantation, suppresses sensitization to intradermally injected antigens and suppresses in vivo and in vitro lymphocyte proliferation to alloantigen or lectin stimulation. To determine the mechanisms responsible for these phenomena, BALB/c mice were placed on chow (F), nucleotide free (NF) diet, or NF diet supplemented with 0.25% RNA (NFR), with 0.6% adenine (NFA), or with 0.06% uracil (NFU). Following four weeks of dietary equilibrium, splenic lymphocytes harvested from naive or immunostimulated mice in the various dietary groups were stained with monoclonal antibodies directed Lyt 1, Lyt 2, 3, or surface mouse immunoglobulin (IgG) surface markers. While naive animals demonstrated no differences in lymphocyte subpopulations between groups, following complete Freund's adjuvant (CFA) stimulation, splenic lymphocytes for NF mice demonstrated 27.3 +/- 1.7% Lyt 1+ cells compared with F (32.6 +/- .04%) and NFR mice (33.2 +/- 1.2%) (P less than 0.02). Restriction of dietary nucleotides affected not only phenotypes of T lymphocytes, but also T cell function. Following conconavalin A stimulation of irradiated splenic lymphocytes, IL-2 production was decreased in NF mice compared with the F control group (P less than 0.01). The RNA-repleted diet maintained normal IL-2 production, while addition of adenine or uracil alone did not. Finally, NF diets adversely affected host resistance to the opportunistic pathogen Candida albicans. Following inoculation with 0.25 X 10(6) organisms NF or NFA-fed hosts succumbed more rapidly than F, NFR, or NFU fed hosts (P less than 0.001). These data suggest that helper/inducer T lymphocytes require exogenous nucleotides to respond normally following immune stimulation. Uracil may be the critical substrate, based upon the studies of Candida resistance. By understanding the metabolic basis of NFD-induced immunosuppression, the role of dietary nucleotides in combatting infection and alloantigen rejection can be more clearly defined.

Adenine↗

Involvement of dietary nucleotides in T lymphocyte function.

The data described above show clearly that absence of a dietary source of preformed purine or pyrimidine bases suppress T lymphocyte function. The heart allograft model assesses the T lymphocyte response to allografts. The SRBC sensitization assay indicates the activity of T effector cells is involved in delayed hypersensitivity. The mitogen assays clearly indicate a dietary effect on in vitro T cell response. The effect of dietary nucleotides on immune function should be of great importance in a number of clinical situations. These include management of organ transplant patients, in recovery from malnutrition, in various chemotherapeutic regimens and in treatment of T cell derived leukemias.

Animals↗

Functional impairment of T-lymphocytes in mouse radiation chimeras by a nucleotide-free diet.

We examined the effect of a nucleotide-free diet on the immune function of mouse syngeneic bone marrow radiation chimeras. The graft-versus-host disease mortality assay revealed that GVH activity of spleen cells from radiation chimeras fed NFD (RCNFD) was reduced at 6-18 weeks after transplantation as compared with the radiation chimeras fed a control diet (RCCD). When tested 11-18 weeks after transplantation, the proliferative response of RCNFD spleen cells to phytohemagglutinin was significantly reduced at 11 and 13 weeks, the response to pokeweed mitogen (PWM) was significantly reduced at 11, 13, and 15 weeks, and the response to bacterial lipopolysaccharide remained virtually unaffected. At both six and eight weeks after transplantation, RCNFD and RCCD showed comparable numbers of CFUc/femur. RCNFD and RCCD did not differ significantly from each other in body weights or in spleen and bone marrow cellularity at 6-18 weeks after transplantation. These results suggest that dietary nucleotides are important for the normal function of mouse T-lymphocytes.

Animals↗

Amelioration of graft-versus-host disease by pretreatment of allogeneic cells with Fab fragments.

We have previously reported the protective effect of pretreatment of semiallogeneic marrow and spleen cells with Fab fragments of horse anti-mouse thymocyte globulin against otherwise 100% fatal acute graft-versus-host disease (GVHD). We have now examined the effect of this pretreatment in three allogeneic strain combinations of mice, namely, A leads to C57, CBA leads to CAF1, and CBA leads to BALB/c. Acute GVHD mortality at 15 days postirradiation and transplantation of untreated marrow and spleen cells was 100% in all the strain combinations. However, pretreatment of cells with Fab reduced acute GVHD mortality to 6, 13, and 33% for the CBA leads to CAF1, CBA leads to BALB/c, and A leads to C57 strain combinations, respectively. The combined mortality from both acute and secondary GVHD and all other causes at 60 and 200 days postirradiation was 6 and 11%, 20 and 39%, 50 and 66% for each of these strain combinations, respectively. These results provide additional evidence for the effectiveness of Fab in ameliorating acute GVHD and establish its applicability to allogeneic strain combinations.

Animals↗

Terminal synthesis of xanthommatin in Drosophila melanogaster. 3. Mutational pleiotropy and pigment granule association of phenoxazinone synthetase.

Phenoxazinone synthetase, which catalyzes the condensation of 3-hydroxykynurenine to xanthommatin, the brown eye pigment of Drosophila, is shown to exist in association with a particle which resembles the cytologically defined Type I pigment granule. Several classical eye color mutants (v, cn, st, ltd, cd, w), including two which effect other enzymes in the xanthommatin pathway (v, cn), have low levels of phenoxazinone synthetase activity and disrupt the normal association of the enzyme with the pigment granule. A model is proposed depicting several structural and enzymatic interrelationships involved in the developmental control of xanthommatin synthesis in Drosophila.

Amino Acids↗

Effect of dietary nucleotides on response to bacterial infections.

A nucleotide-free diet (NFD) suppresses cellular immunity including suppression of both murine allograft rejection and murine graft-vs-host disease in H2 mismatched marrow recipients. To explore the effect of this diet upon response to a bacterial challenge, BALB/c mice were placed upon one of four diets: NFD, NFD supplemented with 0.25% RNA (NFR) and NFD reconstituted with either 0.06% adenine (NFA) or 0.06% uracil (NFU). After 8 weeks on the diets, which supported normal growth in all groups, each dietary group of 10 mice was challenged with an intravenous injection of 1 X 10(7) live Staphylococcus aureus (Strain ATCC 25923). By 120 hr postinoculation all mice in the NFD group had died; mortality was only 56% in the NFR group (p less than 0.05). Addition of uracil resulted in mortality similar to that of the NFR group. Addition of adenine resulted in mortality close to that of the NFD group. Thus, dietary nucleotide restriction increases the mortality from staphylococcal sepsis. Addition of certain dietary nucleotides appears to decrease this susceptibility to bacterial challenge.

Adenine↗

Effect of nucleotide restriction and supplementation on resistance to experimental murine candidiasis.

The influence of dietary nucleotides on susceptibility to candidiasis in mice was studied using two criteria: animal survival and recovery of viable Candida albicans organisms from the kidney and spleen. One-month-old mice were placed on one of five diets with varying nucleotide content. The results show that mice maintained on a nucleotide-free diet (NF) exhibit a significantly decreased mean survival time and a significantly increased viable organism recovery in the spleen following intravenous injection of graded inocula of C. albicans compared to mice fed diets containing RNA or uracil as a nucleotide source.

Animals↗