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Biomedical subjects

V K Ghanta

Publications and source records attributed to V K Ghanta.

At least 19 recordsLinked to original sources

The central effect of methionine-enkephalin on NK cell activity.

The central effect of opioid peptide on natural killer (NK) cell activity in BALB/c mice was investigated. Injection of methionine-enkephalin (Met-Enk), 0.02 microgram/mouse or 1 microgram/kg, directly into the cisterna magna (CM) of the brain, resulted in a significant enhancement of NK cell activity. This enhancement was blocked by opiate antagonists, naltrexone and quaternary naltrexone. The same dose of Met-Enk had no effect on NK cell activity when given to the mouse intraperitoneally or intravenously. Moreover, des-tyrosine-methionine-enkephalin injected into the CM at 1 microgram/kg, had no effect on NK cell activity. The results indicate that activation of an opioid-mediated pathway in the central nervous system is capable of activating the pathways that stimulate the NK cell response in the periphery.

Animals

Acquisition of enhanced natural killer cell activity under anesthesia.

An increase in natural killer (NK) cell activity can be conditioned with a one trial learning paradigm to demonstrate the interaction between the central nervous system (CNS) and the immune system. In order to demonstrate learning possibilities during 'non-conscious' state, mice were anesthetized with a ketamin/rompun mixture and underwent one trial learning with odor cue as the conditioned stimulus (CS) preceding the unconditioned stimulus (US). The results indicated that mice that were exposed to camphor odor cue under the influence of anesthesia can associate the signal with the poly I:C unconditioned stimulus and were able to recall the conditioned response upon reexposure to the CS. Secondly, the conditioned association made in a conscious state can be recalled by exposure to the same olfactory odor cue in a 'non-conscious' state. The increase in the conditioned change in NK cell activity of both situations was significantly higher than the control group. The results demonstrate that learning can take place and the learned response can be recalled under the reduced awareness caused by anesthesia. The findings we report are unusual and novel in that they demonstrate that the CNS can learn new associations under conditions where the host is apparently unaware of the signals being linked. Anesthesia combined with the long interstimulus interval indicates that certain neuronal pathways in the CNS are receptive to second signals (elicited by the US) even when the second signal is separated by one day. This means the conditioned learning of a physiological response can take place unconsciously at a separate level and under situations where the host is totally unaware of the events which the brain is processing and linking as incoming information.

Anesthesia

A simple, single, trial-learning paradigm for conditioned increase in natural killer cell activity.

A change in natural killer (NK) cell activity can be conditioned with one trial learning when conditioned stimulus (CS) precedes the unconditioned stimulus (US). To avoid the problems associated with two reexposures in our earlier studies, we have developed a reliable and simple conditioning protocol utilizing the one trial learning and one reexposure to the odor CS. The conditioned change in NK cell activity was significantly different (P less than 0.05) from the control groups of mice. The paradigm is short and simple in that the conditioned change could be demonstrated within 3 days. We have also compared the effects of temporal association of CS and US on conditioned increase in NK cell activity. Forward conditioning (CS preceded the US) demonstrated a conditioned change, but the backward conditioning protocol did not. The paradigm provides a reliable approach to the study of mechanisms of the phenomenon of odor-NK conditioning.

Administration, Inhalation

Conditioning the elevation of body temperature, a host defensive reflex response.

We hypothesize that a number of host defense responses such as natural killer (NK) cell activity, cytotoxic lymphocyte (CTL) activity, antibody production, and elevated body temperature (TR) might be conditionable. We have designated such specifically learned response to be a defensive reflex response. Here we describe a simple single trial association paradigm for conditioning the TR response in BALB/c mice. Animals are conditioned on day 0 by exposing them to the odor of camphor for 1 hr, followed by injection of the pyrogen poly I:C 20 microgram ip. Control groups are injected with either poly I:C or saline and not exposed to the camphor odor. Reexposure of all groups to the conditioned stimulus (CS) on day 2 or 3 cause elevation of body temperature in the conditioned group mice but not in the nonconditioned or saline control groups. Since we have conditioned the natural killer cell response with the same paradigm, these results suggest that multiple defensive responses might be conditionable simultaneously and they might have important survival value for the species.

Animals

Effect of thymic hormone treatment on several immune functions of nude mice.

Studies of the effect of short-term, intense treatment with thymic hormone on mitogen response, cytotoxicity to EL-4 lymphoma and natural killer cell (NK) activity was investigated Balb/c nude mice (about 12-16-week-old) were treated 5 times per week for 3 weeks with: Facteur Thymic Serique (FTS) and Thymopentin (TP5, Thymopoietin 32-36) at 1 microgram and 10 ng; TM4 1 ng (an enzyme resistant variant of FTS); Thymosin Fraction V (TF5), 10 and 1 microgram; and 0.1 ml saline, and killed 2 days after the last treatment. The animals were monitored for changes in weight, hematocrit, peripheral blood lymphocyte (PBL) and spleen mitogen response. Additional groups of nude mice were immunized with 1 x 10(7) 5000 R irradiated EL-4 cells 10 days before sacrifice and tested for the presence of cytotoxic T-lymphocytes (CTL). The results show that weight and hematocrit were similar among the groups. Treatment with FTS significantly elevated the number of PBL. Spleen stimulation in mice treated with 1 microgram TP5 was depressed to mitogen concanavalin A (ConA) and lipopolysaccharide (LPS) stimulation. The phytohemagglutinin (PHA) response was not different among the treatment groups. The PBL mitogen response to ConA and LPS was generally increased over saline control in the hormone treated groups but was not statistically significant. The PHA response was only slightly elevated. No CTL was generated in nude mice in any of the groups. However, there was a statistically significant general depression of NK activity in all of the hormone treated animals compared with saline. The results indicate that the basic differentiation defect of the T-cells of nude mice cannot be restored to full functional activity by short-term treatment.

Aging

Survey of thymic hormone effects on physical and immunological parameters in C57BL/6NNia mice of different ages.

Immunosenescence occurs with aging, which is seen in decline in response to mitogens PHA, ConA, decline in cell-mediated immunity, increase in anemia, and increase in autoimmune antibodies to erythrocytes and DNA. These studies compared FTS, TP5, TM4, and TF5 in C57BL/6NNia mice. Mice aged 4, 26, 52, 78 and 104 wk were treated with various hormones 5x/wk for 3 wk and monitored for hormonal effects on weight; hematocrit; peripheral blood, spleen, and thymic cell numbers; spleen and peripheral blood cell mitogen responses to PHA, ConA, LPS; IgM hemolysin autoantibody; and cell-mediated cytotoxicity to P815 allogenic cells. Hormone treatments altered mitogen responses, enhanced IgM hemolysin autoantibody production, and modulated cell-mediated immune responses. The effects were not consistent for every hormone. There was a tendency for enhancement in younger mice and suppression in older animals. Treatment with FTS showed the greatest changes in either enhancing or suppressing the different parameters measured. The hormonal effects appeared to be age specific in that certain activities were altered for certain age groups but not in others. Hormone treatment did not restore any immune parameters in old mice to the level of young animals. In general, the different hormones did not consistently produce the same effects in C57BL/6NNia mice of different age groups. Even though all animals received from National Institutes on Aging (NIA) animal models program were held under strictly controlled conditions, intrinsic variations between cohorts of different ages are difficult to control. Cohorts of aging animals tested at different times might be intrinsically different. This inherent variability in the cohorts could affect the range of activity, specificity and reproducibility of hormone effects in vivo. Most importantly, it should be emphasized that cross-sectional data identifies age differences rather than age changes. There is no assurance that age changes in any individual or in all subpopulations follow this pattern. In our studies only healthy animals were used. Old, sick, or tumor-bearing animals were culled out prior to being sent to us. Therefore, the 78- and 104-wk-old mice represent selected healthy cohorts. The age changes that take place can be answered only from repeated measurements made in the same individual over time.

Aging

Role of immune cells in the Pavlovian conditioning of specific resistance to cancer.

It has been demonstrated that significant protection against YC8 lymphoma can be induced in mice preimmunized with normal DBA/2 spleen cells. The DBA/2 spleen cells used as alloantigens share minor histocompatibility determinants with the YC8 tumor. We have used this model to investigate the nature of the immunity conferred by treatment with the alloantigen and infer that the conditioned resistance observed was maintained by the same effector mechanism. The results demonstrated that repeated immunization of tumor bearing mice with the alloantigen had some beneficial effect as shown by the slower rate of growth of the tumor, and an increase in median survival time over controls. The observations showed however that once tumor was present in vivo, the use of potent tumor specific vaccine can help in increasing survival but can no longer produce high incidence of regressions and cures. Conditioning can potentiate the effects of this treatment by increasing survival and cure.

Animals

In vivo enhancement of NK cell activity with met-enkephalin and glycyl-glutamine: their possible role in the conditioned response.

These studies investigated the effect of met-enkephalin, glycyl-glutamine, and naltrexone on NK cell activity in vivo and in vitro. It was found that both met-enkephalin (which shares the amino-terminal end of beta-endorphin) and glycyl-glutamine (which reflects the carboxyl-terminal end of beta-endorphin) can enhance the NK cell activity of mice prestimulated with a low dose (1 microgram/mouse) of poly I:C. Naltrexone had no effect. In vivo prestimulation of the mice with 1 microgram poly I:C was necessary as mice which were not pretreated with poly I:C did not show enhanced NK cell activity when treated with either met-enkephalin or glycyl-glutamine. In vitro studies however indicate that the drugs when cultured together with the NK cells from mice preactivated with poly I:C did not have a direct stimulatory effect on the NK cells. These studies imply that while beta-endorphin released from the pituitary could be involved in enhancement of activated NK cells in vivo other indirect peripheral pathways might be involved. The results suggest beta-endorphin probably reacts with other accessory type cells which in turn release the mediators which are required for the stimulation of NK cells in vivo.

Animals

A behavioral augmentation of natural immunity: odor specificity supports a Pavlovian conditioning model.

BALB/c mice were conditioned by pairing an odor to an injection of poly-inosinic:poly-cytidylic acid (poly I:C), a strong inducer of natural killer (NK) cell activity as the unconditioned stimulus (US). When later reexposed to the odor conditioning stimulus (CS), these mice showed a conditioned augmentation of the NK cell response to a suboptimal dose of 1 microgram poly I:C. The two stimuli used in these studies were camphor (Ca) and citronella oil (Cr) odors, two chemically-related but distinct odor stimuli. The conditioned mice demonstrated the ability to discriminate between Ca and Cr, such that the conditioned response (CR) was only elicited by the odor CS used in the formation of the conditioned association. Exposure of conditioned mice to the non-associated odor stimulus on the test day did not elicit a change in the NK cell response to the suboptimal dose of poly I:C when compared to mice in the US group that had been given the US on day 0 without pairing to either odor stimulus. This specificity of the CR for the odor CS and not the unassociated odor stimulus supports the interpretation that the elevation of NK cell activity in this paradigm is due to Pavlovian conditioning and therefore dependent on central nervous system (CNS) associative processes.

Animals

Conditioning: a new approach to immunotherapy.

It has been demonstrated by Parmiani et al. (Int. J. Cancer, 29: 323-332, 1982) that a significant protective effect can be obtained against the transplanted syngeneic YC8 lymphoma by prior immunization of BALB/c mice with normal allogeneic DBA/2 spleen cells. Using this well established tumor model, we investigated a novel approach, conditioning of specific immunotherapeutic activity. For this purpose, we used the odor of camphor as the conditioning stimulus and allogeneic DBA/2 spleen cells as unconditioning stimulus. We associated the conditioning and unconditioning stimuli two, three, and four times. Following this the conditioned animals were reexposed to the odor of camphor only. In each case, we observed a delay in tumor growth and in some instances the conditioned group performed better than the immunotherapy control group. These results indicate that a limited number of treatments with the antigen is better than the continuous treatment in maintaining the immunity and the homeostasis of the system.

Animals

Host response to myeloma: effect of syngeneic spleen cells on the growth and function of MOPC 104E myeloma in vitro.

The effect of coculturing nonadherent and plastic adherent cells from the spleen with MOPC 104E KI81 for short (24 h) and long term (7 days) was investigated. In both culture systems, the effect of the spleen cells on the secretion of IgM by plaque-forming cells assay and growth of the plasmacytoma by cell counts and flow cytometry was measured. In these studies, a low effector:target (E:T) ratio which did not produce cytotoxicity to MOPC 104E cells was used. We observed that while nonadherent spleen cells from normal or MOPC 104E-primed mice inhibited secretion of IgM by the MOPC 104E cells, they stimulated the proliferation of MOPC 104E cells two times faster than MOPC 104E cells cultured alone. Plastic adherent cells from the spleens of normal mice or MOPC 104E-primed mice also inhibited secretion of IgM by the tumor cells as measured by plaque formation, and stimulated proliferation of MOPC 104E in 24 h coculture. Plastic adherent cells from normal nonprimed mice initially stimulated the myeloma to grow, but by 24 h, a large fraction of the population was in the G1 or possibly resting state. The effect of nonadherent and plastic adherent cells on the stem cell activity of MOPC 104E was also tested in 7-day colony-forming assays. Nonadherent cells had no effect on colony-forming units or plaque formation. Plastic adherent cells from normal spleen cells inhibited plaque formation by 68% but had no effect on colony formation. However, plastic adherent cells from spleens of mice primed in vivo with MOPC 104E tumor cells suppressed plaque formation by 98% and also reduced colony formation. The results showed that inhibition by macrophages of IgM production by MOPC 104E cells is independent of cell proliferation. The adherent macrophages from both normal and in vivo-primed spleen cells were Mac.1 positive after 7 days of coculture with MOPC 104E cells. However, the density of Mac.1 was greater on primed macrophages.

Animals

Characterization of 5B12.1, a monoclonal antibody specific for IL-6.

A monoclonal antibody (MAb) specific for interleukin-6 (IL-6) was generated by fusing SP2/0 cells with spleen cells from a mouse immunized with rat spleen cell derived plasmacytoma growth factor (rat PCT-GF). This MAb inhibited the growth of an IL-6-sensitive murine plasmacytoma clone, MD90, in the presence of the immunogen, rat PCT-GF. More interesting, however, this MAb demonstrated species cross-reactivity by neutralizing murine (recombinant and P388D1 cell line-derived) and human (recombinant) IL-6. IL-6 neutralization activity was also established in other IL-6 bioassays, such as the proliferation of spleen cells, plasmacytoma T1165, and a B-cell hybridoma 7TD1. IL-6 neutralization was overcome partially by increasing the concentration of PCT-GF. The MAb had no effect on PCT-GF-independent plasmacytoma KI81 proliferation. Plastic petri dish-bound MAb removed rmIL-6 activity. These results suggest that this MAb specifically binds IL-6 and neutralizes bioactivity of various PCT-GF, rmIL-6, and rhIL-6.

Animals

Naltrexone blocks the expression of the conditioned elevation of natural killer cell activity in BALB/c mice.

An elevation of natural killer (NK) cell activity was conditioned by the association of a camphor odor conditioning stimulus (CS) with an injection of 20 micrograms polyinosinic:poly-cytidylic acid (poly I:C), the unconditioned stimulus (US). Poly I:C elicits the production and secretion of interferon (IFN), which induces an increase in NK cell activity. Reexposure to the CS occurred on Days 3 and 5 after the association trial on Day 0. Immediately following the CS exposure on Day 5, 1 microgram poly I:C was administered to all animals. This procedure resulted in an increased NK cell activity in the conditioned (CND), but not the nonconditioned (NC), mice. In this study we have shown that the expression of the conditioned response was blocked by an injection of naltrexone (NTX) at 10 mg/kg ip when given immediately prior to the two test CS odor exposures. Peripheral treatment (ip) with a quaternary form of naltrexone (QNTX), which is a less potent opiate antagonist, at the same dose and at the same time relative to the CS odor reexposure did not block the conditioned response. The formation of the conditioned association did not appear to be disrupted by NTX at the 10 mg/kg dose when given immediately prior to the trial odor exposure on Day 0. No modulation of NK cell activity was observed in any of the control groups treated with naltrexone or the quaternary analog. Because of the inability of the QNTX to block the conditioned response, we hypothesize that the opiate receptors involved in the conditioned response and blocked by NTX were within the central nervous system (CNS). Whether this response is peripherally or centrally mediated, we have shown that opiate receptors represent part of the mechanism which mediates the conditioned augmentation of NK cell activity.

Animals

Immunoregulation of murine plasmacytoma. I. Generation of anomalous killer cells in vitro by cocultivation with MOPC 104E.

Murine plasmacytoma MOPC 104E-K181 is a tissue culture cell line of MOPC 104E derived from BALB/c mice. MOPC 104E-K181 implanted subcutaneously in syngeneic normal mice regresses spontaneously after an initial growth of about 10 mm. Mice that regressed tumors or mice immunized intraperitoneally with mitomycin C-treated MOPC 104E-K181 myeloma could reject subsequent challenge of viable K181 myeloma cells. In contrast to euthymic mice, T-cell-deficient athymic nude mice developed subcutaneous tumors after challenge and died from progressive tumor growth, suggesting the critical role of T cells in tumor regression. In vitro induction of cytotoxic cells was used to define the immunologic mechanism by which the host can suppress tumor growth. Spleen cells from immune mice did not show cytolytic activity in 51Cr release cytotoxicity assay, but showed inhibitory action of tumor proliferation in vitro at an effector cell to target cell ratio of 500:1 in a [3H]thymidine incorporation assay. To determine if cytotoxicity could be induced against MOPC 104E-K181 cells, in vitro sensitizing cultures were studied. We have demonstrated that normal BALB/c spleen cells became cytotoxic against MOPC 104E-K181 cells after 5 days cultivation with mitomycin C-treated stimulator cells at an optimal responder to stimulator cell ratio of 5:1. Treatment of anti-Thy-1.2 serum plus complement abolished cytotoxic activity of effector cells. Cytotoxic cells lysed not only MOPC 104E-K181 cells used for stimulation but also H-2k osteosarcoma cells. It was concluded that Thy-1.2-positive cytotoxic cells with nonspecific anomalous reactivity could be induced in murine plasmacytoma-stimulating cultures.

Animals

In vitro and in vivo growth control of transformed lymphoid cells expressing plasma membrane galactosyltransferase.

The level of beta 1-4 galactosyltransferase activity was examined in a number of spontaneously, chemically, or virally transformed murine tumor cell lines. Increased levels of enzyme activity were observed for the murine myeloma cell line K181 and in vivo MOPC 104E. The Maloney Sarcoma Virus (MSV) transformed T-cell lymphoma, YC-8, also demonstrated elevated levels of enzyme activity when compared to a second independently MSV transformed T stem-cell lymphoma, LSTRA. Cell surface immunofluorescence was also detected in YC-8 with a monoclonal antibody for galactosyltransferase. The introduction of galactosyltransferase specific substrates, both in vivo and in vitro, led to the retardation of growth in the cell lines K181, MOPC 104E, and YC-8, but not in the cell line LSTRA; this suggests the selective growth control of transformed cells demonstrating elevated levels of galactosyltransferase.

Animals

Regression of MOPC 104E plasmacytoma with monoclonal anti-idiotype antibodies.

We investigated the therapeutic effectiveness of monoclonal anti-idiotype (anti-M104E5) antibodies. Our in vitro studies show monoclonal anti-idiotype-specific antibody SJL18-1 showed a selective inhibitory property for MOPC 104E cells over two cross-reactive idiotype antibodies N-20-2 (IgM, IdX-M104E, and J558) and CD3-2 (IgG1, IdX-M104E, and J558). Based on these observations, we further examined their biological activities in vivo. Mice given 2 x 10(4) MOPC cells s.c. were treated with various doses of the antibodies i.v. on days 0, 7, 14, 21, and 28 after tumor transplantation. In the group treated with 100 micrograms of N-20-2 antibody, the antibody treatment prevented the growth of MOPC 104E in some of the mice. Treatment of tumor-bearing mice with SJL18-1 antibody (10 to 1,000 micrograms/mouse) did not provide any survival benefit. On the other hand, in mice treated with 50 micrograms of CD3-2 antibody, four of ten mice had regression of their palpable tumors. It is important to note that the least effective antibody (CD3-2) in vitro was the most effective in vivo, and the most effective antibody (SJL18-1) in vitro did not show any survival benefit. Preliminary data indicate that the most likely mechanism of in vivo regulation of MOPC 104E myeloma is by cytostatic lymphocytes.

Animals

Age related changes in auto-erythrocyte rosettes in the C57BL/6J and NZB/BINJ mice.

The changes in the auto-erythrocyte rosetting thymic and splenic lymphocytes and the induction of autoimmunity was followed with age in C57BL/6J and NZB/BINJ mice. The auto-erythrocyte rosetting cells (auto-RFC) showed shifts in their pattern in both thymus and spleen in C57BL/6J and NZB/BINJ mice. Both strains had approximately the same percentage (approximately 3%) of thymic auto-RFC at 1 month of age. In C57BL/6J mice the rosette population increased to 6.6% by 2 months, declined after 3 months and subsequently increased gradually with age. In contrast, the NZB/BINJ thymic auto-rosettes peaked at 4 months and gradually declined thereafter. Both the NZB/BINJ and C57BL/6J strains were tested for the presence of anti-erythrocyte antibodies by the direct Coombs' agglutination test. The results showed that at 6 and 10 months 50% and 90% of the NZB/BINJ mice were positive for antibodies, respectively, and the thymic and splenic auto-RFC dramatically decreased in numbers. In the C57BL/6J mice during this same period, very low incidence of auto-antibodies was detected by the Coombs' test and auto-RFC increased in numbers.

Aging