Potential role of CD34 stem cells in tolerance induction.
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Publications and source records attributed to H Marcus.
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Previous studies performed in our laboratory have shown that B-CLL cells are involved in the production of anti-red cell auto-antibodies, providing a possible mechanism for the autoimmune hemolytic anemia occurring during the course of B-CLL. In order to confirm this hypothesis, we attempted to transfer human B-CLL with AIHA to immunodeficient mice. Peripheral blood mononuclear cells (PBMC) from 11 B-CLL patients suffering from AIHA were transplanted into the peritoneal cavity of lethally irradiated Balb/c mice reconstituted with SCID bone marrow. Chimeric mice generated from PBMC of these patients (in stage III-IV of the disease) exhibited an engraftment profile with dominance of tumor cells and minuscule levels of T cells. Eighty-five percent of the chimeric mice generated from 10 out of the 11 B-CLL patients with Coombs'-positive AIHA, produced human Ig with anti-human red cell specificity as detected by indirect anti-globulin test. In addition, anti-red cell auto-antibodies were produced in 36% of chimeric mice generated from PBMC of Coombs'-negative B-CLL. In contrast, control experiments in which splenic cells from idiopathic AIHA or PBMC from normal donors were transplanted, failed to produce anti-RBC. This in vivo model further supports the relationship between the B cell expansion and the autoimmune hemolytic process.
Replication of human immunodeficiency virus type 1 (HIV-1) is regulated by virus-encoded regulatory proteins, as well as by a variety of cellular factors. Productive infection of human T lymphocytes by HIV-1 is dependent upon the activation status of the target cells. In general, short-term mitogenic stimulation of CD4 T cells is used to enhance infection of peripheral blood mononuclear cells (PBMC) in vitro. Recently, we demonstrated that adoptive transfer of human PBMC into lethally irradiated BALB/c mice, radioprotected with severe combined immunodeficiency (SCID) mouse bone marrow, leads to marked T-cell activation and proliferation. In the present study, we investigated the effect of such xenoactivation of human T cells on their susceptibility to HIV-1 infection. Human cells that were recovered from human/Balb radiation chimeras supported efficient replication of laboratory strains of HIV-1, as well as of HIV-1 clinical isolates. The multiplicity of infection required to attain effective virus replication in the recovered xenoactivated human cells was 10- to 100-fold lower than that needed for infection of short- or long-term phytohemagglutinin (PHA)-stimulated blasts or of various T-cell lines. Analysis of human cell surface activation markers has indicated that xenoactivation in the mouse, in contrast to in vitro stimulation with PHA, is associated with a marked downregulation of CD25 (interleukin 2 receptor). Our results demonstrate that human cells recovered from human/Balb radiation chimeras, which are hypersensitive to HIV-1 infection, differ from in vitro-stimulated cells in their activation status. Therefore, this system could be used to study host factors that participate in HIV-1 infection and replication in vitro and in vivo.
Severe combined immunodeficient (SCID) mice are increasingly used as hosts for the adoptive transfer of human lymphocytes. Human antibody responses can be obtained in these xenogeneic chimeras, but information about the functionality of the human T cells in SCID mice is limited and controversial. Studies using human peripheral blood lymphocytes (PBL) injected intraperitoneally (IP) into SCID mice (hu-PBL-SCID mice) have shown that human T cells from these chimeras are anergic and have a defective signaling via the T-cell receptor. In addition, their antigenic repertoire is limited to xenoreactive clones. In the present study, we tested the functionality of human T cell in a recently described chimeric model. In this system, BALB/c mice are conditioned by irradiation and then transplanted with SCID bone marrow, followed by IP injection of human PBL. Our experiments demonstrated that human T cells, recovered from these hu-PBL-BALB mice within 1 month posttransplant, proliferated and expressed activation markers upon stimulation with anti-CD3 monoclonal antibody. A vigorous antiallogeneic human cytotoxic T-lymphocyte (CTL) response could be generated in these mice by immunizing them with irradiated allogeneic cells. Moreover, anti-human immunodeficiency virus type 1 (HIV-1) Net-specific human CTLs could be generated in vivo from naive lymphocytes by immunization of mouse-human chimeras with a recombinant vaccinia-nef virus. This model may be used to evaluate potential immunomodulatory drugs or cytokines, and could provide a relevant model for testing HIV vaccines, for production of antiviral T-cell clones for adoptive therapy, and for studying human T-cell responses in vivo.
Comparative cell transfer experiments have revealed that, despite their equal immune deficiency, C3H/SCID mice were markedly inferior compared with C.B-17/SCID mice in their ability to accept allogeneic and xenogeneic grafts. Allogeneic C.B-17/SCID bone marrow cells were engrafted poorly compared with syngeneic C3H/SCID when transplanted into C3H/SCID recipients, whereas cells of both strains were equally well engrafted into C.B-17/SCID mice. C.B-17/SCID mice were much more permissive for outgrowth of human Burkitt lymphoma (Raji), as well as for Epstein-Barr virus lymphoma development after transplantation of human peripheral blood lymphocytes. Human skin grafts were accepted by the C.B-17/SCID mice but were promptly rejected by the C3H/SCID mice. The resistance to human RaJi cells could be adoptively transferred by infusion of C3H/SCID splenocytes into C.B-17/SCID mice. Because the C.B-17/SCID and C3H/SCID mice equally lack both T and B lymphocytes, the latter may provide a relevant model for studies of non-T mechanisms of allograft or xenograft rejection.
It has been shown that engraftment of human peripheral blood lymphocytes (PBL) from Epstein-Barr virus (EBV) seropositive donors in C.B-17/SCID mice is associated with a high incidence of human B cell tumors. More recently, we described a new approach enabling engraftment of human PBL in normal strains of mice or rats receiving lethal split-dose radiation and radioprotected with SCID bone marrow. We now demonstrate that, in contrast to SCID recipients of human PBL, Balb/c and C3H/HeJ recipients of 50-100 x 10(6) human PBL did not develop any EBV lymphoma during a 7-month follow-up period, but were successfully engrafted with human B and T cells. On the other hand, lymphoma developed in 90% of the C.B-17/SCID mice infused with 70 x 10(6) human PBL from the same donor. Likewise, 36% of beige/nude/xid (BNX) mice, exposed to 12 Gy TBI, radioprotected with SCID bone marrow and then transplanted with human PBL developed lymphoma. Similar results were obtained when different strains were infused with PBL of the same donor. Immunohistochemical analysis indicated that the tumor cells were of human B cell origin and expressed the EBV-encoded latent membrane protein-1 and nuclear antigen 2. While further studies are required to understand the mechanisms which suppressed outgrowth of EBV lymphoma in human --> mouse radiation chimera, compared to human --> C.B-17/SCID or human --> BNX chimera, this marked resistance offers new possibilities for transplantation of hematopoietic tissues or cells from EBV-positive donors.
Ketotifen is an anti-allergic agent that was recently shown to prevent experimental gastric and colonic mucosal injury. We studied the effect of ketotifen on indomethacin-induced small intestinal ulceration in the rat. Ulceration was produced by s.c. injection of 30 mg/kg indomethacin, 30 min after refeeding 24 h fasted rats. Total ulcer area (mm2), prostaglandin E2 (PGE2) and leukotriene B4 (LTB4) were measured 24 h after indomethacin administration. Study groups received ketotifen 100 micrograms/ 100 g body weight 30 min before and 5 h after indomethacin administration, either i.p. or orally. There were 7-9 animals in each group. Ulcer area was significantly reduced by oral administration of ketotifen from 229 +/- 26 to 146 +/- 28 mm2. PGE2 level was reduced by ketotifen from 505 +/- 73 to 228 +/- 68 ng/mg protein, and LTB4 was reduced from 289 +/- 68 to 59 +/- 26 ng/mg protein. Intraperitoneal administration of ketotifen had no effect on any of the measured parameters. Ketotifen had a definite protective effect on small intestinal mucosa in the rat, which was accompanied by a reduction of mucosal inflammatory mediators. Ketotifen may have a role in the prevention or treatment of small intestinal damage induced by nonsteroidal anti-inflammatory drugs.
Cholestasis is a frequent problem in patients on total parenteral nutrition (TPN) therapy. Nonsteroidal anti-inflammatory drugs (NSAIDs), especially aspirin, cause choleresis in animals. We studied the effect of aspirin on bile flow and bile salt secretion in TPN-associated cholestasis in rats. Four groups of 6-10 animals each received either 154 mM NaCl (saline) or 2.5% amino acid solution (TRAVASOL, Travenol, Israel) and 10% glucose i.v. (TPN) for 3 h. During the second and third hours, taurocholate, the main bile salt in rats, was infused at a rate of 10 micromol/min per kg to prevent bile salt pool depletion. Aspirin, one of the main NSAIDs, was infused during the last 2 h into animals with or without TPN treatment at a rate of 100 mg/kg. Bile was directly collected from the common bile duct for 3 h. Rats given TPN showed a significant reduction in bile flow and bile salt secretion rate compared to control groups: 20.89 vs. 29.60 microl/min per kg (P <0.02) and 0.37 vs. 0.65 micromol/min per kg (P <0.0001), respectively. Aspirin had a significant choleretic effect and was able to overcome the bile flow and bile salt secretion rate reduction caused by TPN; 33.07 vs. 20.89 microl/min per kg (P <0.002) and 0.66 vs. 0.37 micromol/min per kg (P <0.0001), respectively. These results may have clinical implications for TPN-associated cholestasis.
We have recently shown that lethally irradiated normal strains of mice, radioprotected with SCID bone marrow, can be engrafted with human peripheral blood mononuclear cells (PBMC). We now demonstrate that lethally irradiated Lewis rats can also be radioprotected with a transplant of SCID bone marrow cells, administered 1 day after total body irradiation. Split chimerism was found in PBMC, 30 days after transplantation, with predominance of SCID donor-type cells. The average percentages of CD4 and CD8 T cells, of mouse or rat origin, were < 1%. This chimerism status could be maintained for over 3 months. When human PBMC (300-1000 x 10(6) cells) were transplanted intraperitoneally 1 day after the administration of SCID bone marrow, prompt engraftment of human CD4 and human CD8 T cells, as well as human CD20 B cells, was found in the peritoneum and in internal organ (such as liver, lung, spleen, thymus, and lymph nodes). T cell activation was high: about 50% of the cells expressed HLA-DR and almost all expressed CD45RO. High titers of human Ig (> 1 mg/ml) were initially found after 2 weeks; these levels were similar to those found in the irradiated mouse model and in the SCID model. Likewise, marked human anti-tetanus response, predominantly of the IgG type, was recorded 2 weeks after the immunization, reaching maximal levels at 4 weeks. The triple-chimeric SCID-like rats, which accept as much as 1000 x 10(6) human PBMC, can potentially be used to elicit both antibody responses and T cell responses against specific antigens, with the advantages of a larger animal.
Lubin et al recently described a new approach that enables the generation of human/mouse chimera by adoptive transfer of human peripheral blood mononuclear cells (PBMC) into lethally irradiated normal strains of mice, radioprotected with bone marrow (BM) from donors with severe combined immune deficiency (SCID). In the present study, we demonstrate in such human/mouse chimera a marked humoral response to recall antigen, such as tetanus toxoid (TT) or hepatitis B surface antigen (HBsAg), as well as a significant primary response to keyhole limpet hemocyanin (KLH). Maximal anti-KLH response in human/Balb chimera was attained 2 to 4 weeks after the immunization and declined thereafter. One week after transplantation, the predominant anti-KLH subtype was IgM, while after 2 weeks, the dominance had shifted to IgG. Similar primary antibody response was also demonstrated against the human immunodeficiency virus (HIV) Nef protein. Comparison between human/Balb and human/SCID chimera showed a major difference in their ability to mount a primary response against KLH. In Balb/c recipients, more than half of the mice exhibited marked IgM titers against KLH, while there was hardly any anti-KLH IgM response in the SCID recipients. From the earliest time point onwards, when anti-KLH antibodies were found in the latter chimera, they were predominantly of the IgG type. We have previously shown that in human/Balb chimera, unlike in SCID recipients, dissemination of transplanted PBMC into the spleen and other internal organs occurs within 24 hours. Therefore, it is likely that the early seeding in the appropriate microenvironment of the lymphoid tissues, is crucial for the maintenance of virgin human B cells.
We previously reported that immunity to the p277 peptide of the human 60-kDa heat shock protein (hsp60) was a causal factor in the diabetes of non-obese diabetic (NOD) mice, which are genetically prone to develop spontaneous autoimmune diabetes. The present study was done to test whether immunization with the p277 peptide could cause diabetes in standard strains of mice. We now report that a single administration of the p277 peptide conjugated to carrier molecules such as bovine serum albumin or ovalbumin can induce diabetes in C57BL/6 mice and in other strains not genetically prone to develop diabetes. The diabetes was marked by hyperglycemia, insulitis, insulin autoantibodies, glucose intolerance and low blood levels of insulin. The diabetes could be transferred to naive recipients by anti-p277 T cell lines. Similar to other experimentally induced autoimmune diseases, the autoimmune diabetes remitted spontaneously. After recovery, the mice were found to have acquired resistance to a second induction of diabetes. Susceptibility to induced diabetes in C57BL/6 mice was influenced by sex (males were much more susceptible than were females) and by class II genes in the major histocompatibility complex (B6.H-2bm12 mice with a mutation in the MHC-II molecule were relatively resistant). Other strains of mice susceptible to induced diabetes were C57BL/KSJ, C3HeB/FeJ, and NON/Lt. BALB/c and C3H/HeJ strains were relatively resistant. Immunization to p277-carrier conjugates could also induce transient hyperglycemia in young NOD mice, but upon recovery from the induced diabetes, the NOD mice were found to have acquired resistance to later development of spontaneous diabetes. Thus, T cell immunity to the p277 peptide can suffice to induce diabetes in standard mice, and a short bout of induced diabetes can affect the chronic process that would otherwise lead to spontaneous diabetes in diabetes-prone NOD mice.
Nonsteroidal antiinflammatory drugs (NSAIDs) are widely used and may cause small intestinal inflammation and damage. Reactive oxygen metabolites are involved in various gastrointestinal inflammatory processes, but there is little information about their role in small intestinal mucosal damage induced by NSAIDs. We studied the effect of the oxygen radical scavengers superoxide dismutase (SOD), catalase (CAT), and allopurinol (ALLO) on indomethacin (INDO)-induced intestinal ulceration in the rat. Ulceration was produced by s.c. injection of 30 mg/kg of INDO 30 min after refeeding 24 h-fasted rats. Total ulcer area was measured 24 h after INDO administration. Study groups each consisted of eight animals which received either i.p. CAT, SOD, or both together, at a dosage of 5,000 U/kg each. All drugs were divided into five doses, given once an hour over a 4-h period, starting at the time of INDO injection. Another group received 100 mg/kg ALLO in two doses. Total ulcer area was reduced by SOD from 228 +/- 12 (sq mm, mean +/- SEM) to 153 +/- 12 (p < 0.001), by CAT to 179 +/- 13 (p < 0.01), and by both together to 95 +/- 5 (p < 0.0001). ALLO administration reduced the total ulcer area to 176 +/- 7 (p < 0.003). The protective effect of oxyradical scavengers supports the hypothesis that oxygen radicals are involved in the pathogenesis of INDO-induced small intestinal ulceration in the rat.
Colloid bismuth subcitrate (CBS) has a protective effect on ulcerated gastric and duodenal mucosa. To investigate its effect on large intestinal mucosal injury, we used acetic acid-induced colitis in the rat. Colitis was produced in male Wistar rats by rectal instillation of 1 ml of 10% acetic acid followed immediately by 1.5 ml of NaCl 0.9% (saline) enema. 1.5 ml of saline containing 240 mg of CBS or saline alone were then administered rectally every 24 h for 5 days. Another group of animals received CBS only. On the sixth day the distal colon was examined macroscopically and histologically using a 0 (normal) to 3 (necrosis) score. Prostaglandin E2 (PGE2) was measured by RIA (ng/mg protein). CBS significantly reduced both macroscopic and microscopic scores from 2.09 to 1.25 (p < 0.02) and from 2.4 to 1.08 (p < 0.02) respectively. It also induced a significant reduction in PGE2 from 1.6 to 0.57 (p < 0.004) in the inflamed colonic mucosa. The significant protective effect of topical CBS, which is accompanied by a reduction of PGE2, indicates that CBS may have a role in the treatment of colitis.
Transplantation of bone marrow from SCID mice into lethally irradiated normal mice can potentially endow the normal recipients with characteristics typical of the immune-deficient SCID mouse. In the present study, we investigated whether intraperitoneal grafting of human peripheral blood lymphocytes (PBLs), which has been documented in the SCID mouse, can also be achieved in irradiated BALB/c mice radioprotected with SCID bone marrow. Evaluation of different radiation protocols suggested that, considering the quality of engraftment and rate of survival, optimal results were obtained with split dose total body irradiation (TBI; 4 Gy followed 3 days later by 10 Gy). Monitoring of mouse T cells in peripheral blood indicated an inverse correlation between the presence of such cells and the engraftment of human CD45+ cells in the peritoneum. Also, engraftment of human PBLs in nude BALB/c mice, conditioned with the same radiation protocol, was significantly higher than that achieved in their normal counterparts. Further improvement of human PBL engraftment was found when the mice were thymectomized 2 weeks before conditioning with split TBI. After transplantation of 80 x 10(6) human PBLs in such recipients, a marked engraftment of human T cells and B cells in the peritoneum cavity could be detected for at least 2 months, whereas significant amounts of human Ig could be detected for more than 3 months. Migration of human PBLs into internal organs such as spleen, liver, kidney, and lungs (and into thymus in nonthymectomized mice) was found within a few days of grafting and also persisted for 2 to 3 months. The majority of the engrafted lymphocytes were single-positive CD4+ and CD8+ T lymphocytes, about 50% of which were activated, as judged by their expression of HLA-DR. Staining with anti-CD25 antibody was lower compared with that found with anti-HLA-DR. CD20+ B cells were detected in all of the above-mentioned internal organs, but were mainly concentrated in the spleen. CD14+ monocytes could be detected only during the first week posttransplant of PBLs. Total human Ig in peripheral blood reached an average of 2.8 mg/mL 14 days posttransplant, and continued to be significant for several months. In vitro transformation by Epstein-Barr virus of human B cells from different tissues could be established 30 days after transplantation and led to outgrowth of two IgG+ cell lines, two IgM+ cell lines, and one IgA+ cell line producing 0.6 to 4.2 micrograms/mL human Ig in the supernatant.(ABSTRACT TRUNCATED AT 400 WORDS)
Total parenteral nutrition is known to cause cholestasis, but the hepatic site of this effect has not been determined. The purpose of our study was to observe the effect of TPN on bile flow and bile salt secretion rate in rats after selective damage to acinar zone 3. Bromobenzene, 3.8 mmol/kg, was injected i.p., and the animals were studied 48 hours later. Experimental groups received either parenteral nutrition or saline for 2 hours. Bromobenzene caused selective damage to acinar zone 3 hepatocytes, and reduced baseline bile flow (23.99 +/- 1.09 vs 37.2 +/- 1.66, mean +/- SEM, microliter/min/kg, p < 0.001). Bromobenzene had no effect on bile salt secretion rate. Total parenteral nutrition decreased bile flow in the bromobenzene treated groups, despite the selective hepatic damage to acinar zone 3 (20.54 +/- 1.07 vs 23.28 +/- 1.63, mean +/- SEM, p < 0.001). Total parenteral nutrition reduced bile salt secretion rate in healthy animals, but this reduction was not seen in bromobenzene treated rats. Our results suggest that bile flow reduction in response to total parenteral nutrition is mediated through an effect on acinar zones 1 and 2, as this reduction is still observed after zone 3 destruction by bromobenzene. Zone 3 hepatocytes may be involved in the effect of parenteral nutrition on bile salt secretion, as the reduction in secretion rate seen in healthy animals was not observed in bromobenzene treated rats.
Dopaminergic agents ameliorate experimentally induced gastroduodenal mucosal injury, but there is no information about their effect on small intestinal mucosa. We studied the effect of L-dopa and related substances on indomethacin-induced intestinal ulceration in the rat. Ulceration was produced by s.c. injection of 30 mg/kg indomethacin, 30 min after refeeding fasted rats. Total ulcer area was measured 24 hrs after indomethacin administration. L-dopa, 5 mg/kg given in two divided doses 5 h apart, starting 30 minutes before administration of indomethacin, was found to protect the small bowel mucosa against indomethacin- induced damage (ulcer area 122 +/- 5.5 vs 224.2 +/- 5.4 mm2, mean +/- SEM, p less than 0.006). Administration of 5 mg/kg haloperidol, a dopa antagonist, did not abolish the protective effect of L-dopa. On the other hand, yohimbine, an alpha-2-adrenoreceptor antagonist, almost completely abolished the protective effect (180.4 +/- 5.3 vs 122 +/- 5.5, p less than 0.004). Clonidine 20 micrograms/kg, an alpha-2-adrenoreceptor agonist, closely mimicked the protective effect of L-dopa (141.5 +/- 10.9 vs 224.2 +/- 5.4, p less than 0.006). All drugs were give i.p. in two divided doses, at the same schedule as described for L-dopa. The results demonstrate that L-dopa has a protective effect on indomethacin-induced small bowel injury in the rat. The protective effect is probably mediated through stimulation of alpha-2-adrenoreceptors.
We studied the effect of parenteral morphine and naloxone administration on intestinal mucosal Prostaglandin E2 (PGE2) and 3',5' cyclic adenosine monophosphate (cAMP) levels and on indomethacin-induced intestinal ulceration in the rat. Compared to the control group, morphine significantly decreased whereas naloxone markedly increased both PGE2 and cAMP mucosal levels, respectively. Morphine or naloxone alone did not cause mucosal injury. However, when given with indomethacin, morphine significantly potentiated the ulcerogenic effect of indomethacin while naloxone exerted a protective effect. These results suggest that opioid peptides may play a role in modulation of intestinal mucosal PGE2 and cAMP levels. In addition, enhancement of indomethacin-induced ulcer formation by morphine and amelioration by naloxone might be in part mediated through their effect on mucosal PGE2 and cAMP levels.