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M Strand

Publications and source records attributed to M Strand.

At least 73 records · Page 4Linked to original sources

Identification, using synthetic peptides, of the minimum amino acid sequence from the retroviral transmembrane protein p15E required for inhibition of lymphoproliferation and its similarity to gp21 of human T-lymphotropic virus types I and II.

Synthetic peptides containing portions of a highly conserved region of retroviral transmembrane proteins of human and animal retroviruses were tested for their ability to inhibit lymphoproliferation to determine the minimum amino acid sequence required. The previously reported immunosuppression mediated by the peptide CKS-17 was confirmed and further localized to a sequence of eight residues essentially identical to the sequence present in the transmembrane protein gp21 of human T-lymphotropic virus types I and II (HTLV-I and -II). To substantiate the physiological relevance of the inhibition of lymphoproliferation observed with the synthetic peptides and to relate this activity to the intact protein, we purified the Rauscher murine leukemia virus transmembrane protein p15E by immunoaffinity chromatography and report that this purified component presented in the form of protein micelles inhibited the interleukin-2-dependent proliferation of the murine T-cell line CTLL-2 in a dose-dependent manner, with a half-maximal inhibitory dose (ID50) of approximately 16 nM. In comparison, the ID50 concentration of a recombinant form of p15E required to inhibit lymphoproliferation was approximately 2.2 microM. The results reported here support the hypothesis that the transmembrane protein gp21 of HTLV-I and -II participates in the mechanism of immunosuppression previously reported for the transmembrane proteins of feline leukemia virus and other animal retroviruses. Thus, the transmembrane protein of HTLV-I, the etiological agent of adult T-cell leukemia-lymphoma, may be partially responsible for the immunocompromised clinical course of this disease that results in fatal opportunistic infections in a majority of cases.

Amino Acid Sequence↗

Inhibition of lymphoproliferation by a synthetic peptide with sequence identity to gp41 of human immunodeficiency virus type 1.

Peptides were synthesized that contained sequences from two regions (env amino acids [aa] 581 to 597 and 655 to 671) of the transmembrane protein gp41 and one region of the external envelope glycoprotein gp120 (aa 457 to 464) of human immunodeficiency virus type 1. Selection of these sequences was based on their homology to the highly conserved and immunosuppressive sequence contained within the transmembrane proteins p15E and gp21 of animal and human retroviruses, respectively. Peptide aa581-597 was found to specifically inhibit human and murine lymphoproliferation, whereas peptides aa655-671 and aa457-464 had no activity. These results suggest a mechanism by which human immunodeficiency virus type 1 gp41 exerts a direct immunosuppressive effect in vivo, analogous to that postulated for p15E and gp21, which could contribute to the immune dysfunction observed in patients suffering from acquired immunodeficiency syndrome. It is of particular interest that the sequence aa 584 to 609, shown to contain B- and T-helper-cell epitopes, overlaps with the sequence aa 581 to 597 that is shown here to inhibit lymphoproliferation. The potential implications of this overlap of immunologic activities are discussed.

Cell Line↗

Schistosoma mansoni polypeptides immunogenic in mice vaccinated with radiation-attenuated cercariae.

We compared the humoral immune response of mice protected against Schistosoma mansoni by vaccination with radiation-attenuated cercariae to that of patently infected mice, and we identified antigens that elicit a greater, or unique, immune response in the vaccinated mice. These comparisons were based upon radioimmunoprecipitations and immunodepletion of [35S]methionine-labeled schistosomular and adult worm polypeptides, followed by one- and two-dimensional polyacrylamide gel analyses. The humoral responses of patently infected mice and of mice vaccinated once were remarkably similar and were directed against schistosome glycoproteins ranging in molecular size from greater than 300 to less than 10 kDa. Exposing mice to a second vaccination resulted in a marked change in the immune response, to one predominantly directed toward high molecular size glycoproteins. Sequential immunodepletion techniques identified five schistosomular and seven adult worm antigens that showed a greater or unique immunogenicity in vaccinated mice as compared with patently infected mice. These adult worm antigens were purified by preparative sequential immunoaffinity chromatography and used to prepare a polyclonal antiserum, anti-irradiated vaccine. This antiserum bound to the surface of live newly transformed and lung-stage schistosomula, as assessed by immunofluorescence assays, and was reactive with a number of 125I-labeled schistosomular surface polypeptides, including a doublet of 150 kDa that was also recognized by sera of vaccinated mice but not by sera of patently infected mice.

Animals↗

Specific radioimmunotherapy using 90Y-labeled monoclonal antibody in erythroleukemic mice.

Radioimmunotherapy using 90Y-labeled diethylenetriamine pentaacetic acid-antibody conjugates was studied in Rauscher erythroleukemia virus-infected mice. Preliminary experiments showed that biodistribution profiles for nonrelevant mouse monoclonal antibody and polyclonal bovine immunoglobulin were identical in both normal and leukemic mice. Therefore, bovine immunoglobulin G was selected as the control immunoglobulin in order to permit comparison to current clinical trials of radioimmunotherapy regimens. Specific monoclonal antibody was two- to three-fold more potent than bovine immunoglobulin G in therapy, as assessed by reduction of splenomegaly (dose required for half-maximal effect, 9 microCi versus 16 to 27 microCi). Mice treated with 50 microCi 90Y-labeled control immunoglobulin had spleens which were twice the normal size and showed extensive areas of erythropoiesis indicative of the presence of tumor foci; in contrast, doses as low as 27 microCi 90Y-labeled specific antibody resulted in complete remission with no microscopic evidence of tumor foci in either spleen or liver. Although reversible marrow toxicity was observed it was not dose limiting. These results demonstrate that tumor-specific therapy is possible using 90Y-labeled antibody.

Acetates↗

Schistosoma mansoni: stimulation of artificial granuloma formation in vivo by carbohydrate determinants.

A subset of Schistosoma mansoni egg glycoproteins that share a common carbohydrate epitope recognized by monoclonal antibody 128C3 was shown to induced formation of hepatic granulomata when conjugated to Sepharose beads and injected into the portal circulation of naive mice. Concanavalin-binding egg glycoproteins exhibited more granuloma-inducing activity than did total egg extract, although deglycosylated egg proteins also induced granulomata; thus, both amino acid and carbohydrate epitopes appeared to be involved. Glycoproteins derived from adult male worms also were active, indicating that immunological processes responsible for granuloma formation may not be absolutely stage specific.

Animals↗

Schistosoma mansoni: immunogenic glycoproteins of the cercarial glycocalyx.

Immunochemical studies at the level of the light and electron microscope showed that a monoclonal antibody, 128C3/3, was directed to an epitope in the glycocalyx of Schistosoma mansoni cercariae. Immunoprecipitation of surface labeled cercarial extracts with this monoclonal antibody demonstrated that the glycocalyx is composed of at least five components, including a very large molecular size polypeptide and polypeptides of 220, 180, 170, and 15 kDa. After transformation of cercariae to schistosomula, these polypeptides were shed from the surface and were therefore no longer accessible to surface labeling. Monoclonal antibody 128C3/3 was also reactive with a 38 kDa polypeptide from schistosomula; this polypeptide was weakly expressed on the surface of cercariae. Analysis of immunoprecipitates of radioiodinated protein extracts of cercariae, newly transformed schistosomula, and 36 hr in vitro cultured schistosomula showed that the 180 and 170 kDa polypeptides continued to be expressed within the organism following transformation, but were not accessible to surface labeling. Lectin binding studies revealed differences in the oligosaccharide composition of the six polypeptides. With the exception of the 15 kDa antigen, all the polypeptides reactive with 128C3/3 were highly immunogenic in infected mice and humans.

Animals↗

Cloning of a cDNA encoding a surface antigen of Schistosoma mansoni schistosomula recognized by sera of vaccinated mice.

Spleen cells of mice vaccinated with radiation-attenuated Schistosoma mansoni cercariae were used to produce monoclonal antibodies directed against newly transformed schistosomular surface antigens. One of these monoclonal antibodies recognized a polypeptide of 18 kDa. This glycoprotein was purified by monoclonal antibody immunoaffinity chromatography and a polyclonal antiserum was prepared against it. Immunofluorescence assays showed that the polyclonal antiserum bound to the surface of newly transformed schistosomula and lung-stage organisms but not to the surface of liver-stage and adult worms. Using this polyclonal antiserum we isolated recombinant clones from an adult worm cDNA expression library constructed in lambda gt11. Clone 654.2 contained an insert of 0.52 kilobase and hybridized to a 1.2-kilobase mRNA species from adult worms. Most importantly, clone 654.2 produced a fusion protein of 125 kDa that was reactive with sera of vaccinated mice that are capable of transferring resistance. This result encourages future vaccination trials with the fusion protein.

Animals↗

Characterization and cloning of Schistosoma mansoni immunogens recognized by protective antibodies.

In this report we have shown that mice vaccinated twice with radiation-attenuated cercariae elicit a much enhanced or unique response against six adult worm glycoproteins with molecular sizes of 200, 160, 140, 94, 58-56, and 43 kDa. In the case of the schistosomulum, vaccinated mice showed an enhanced or unique response to antigens of 200, 58, 46, 43, 25, and several glycoproteins in the range 65 to 50 kDa. That some or all of these antigens may be important for immunoprophylaxis against schistosomiasis is supported by the observations that 1. polyclonal antiserum (anti-IrV) prepared against these antigens also reacts with the major schistosomular surface antigens, and 2. this antiserum reacts with epitopes exposed on the surface of both newly transformed schistosomula and lung-stage schistosomula. In this study we also observed that the majority of the surface-iodinated antigens recognized by the anti-IrV serum were also recognized by sera from both vaccinated and patently infected mice. Simpson et al. (1985) have also shown that sera from vaccinated and infected mice recognized the same schistosomular surface antigens. It is possible, however, that the immune response of vaccinated mice is directed against different carbohydrate or peptide epitopes on these molecules, and that recognition of such epitopes is important for immune protection. Towards this goal we have cloned several schistosoma proteins reactive with the anti-IrV serum to identify peptide epitopes relevant for immunoprotection.

Animals↗

Radiolabeled antibody: iodine versus radiometal chelates.

The use of monoclonal antibodies in radioimmunoimaging and radioimmunotherapy was investigated in the Rauscher murine erythroleukemia system. Immunoglobulins labeled with isotopes of iodine or with chelated radiometals were compared with respect to efficiency of radiolabeling, in vitro and in vivo chemical stability of incorporated isotope, catabolism, kinetics of tumor targeting, and therapeutic efficacy. Labeling was found to be efficient for all isotopes studied, including those of iodine, scandium, yttrium, indium, gadolinium, and bismuth. The use of isotopes of iodine was limited due to rapid catabolism from the tumor target within a few hours; in contrast, antibody labeled with indium or gadolinium reached maximal tumor levels within 6 to 12 hours of injection and showed a biologic half-life at the tumor of 2 to 3 days. With yttrium, tumor levels were stable up to 5 days after injection. Our findings are discussed with relevance to current and future applications of radiolabeled antibodies.

Animals↗

Immunochemical characterization and purification of Sm-97, a Schistosoma mansoni antigen monospecifically recognized by antibodies from mice protectively immunized with a nonliving vaccine.

Mice protected against Schistosoma mansoni infection by intradermal (i.d.) vaccination with nonliving schistosomula or soluble extracts of larval or adult schistosomes (SCHLAP and SWAP, respectively) produce antibodies that react by Western blot analysis with one antigen of Mr (X 10(-3)) 97 in SWAP prepared in the presence of protease inhibitors and two antigens of Mr (X 10(-3)) 95 and 78 in SWAP prepared in their absence. Vaccine antibodies also immunoprecipitated a single 97k molecule, with a pI of 5.5, from detergent extracts of [35S] methionine-labeled schistosomes. Three hybridomas, produced from spleen cells of i.d. immunized mice, all recognized both the 95k/78k doublet and the 97k antigen, indicating that the two lower Mr components are degradation products of the same 97k molecule. The 97k/95k/78k complex (Sm-97) was purified by affinity chromatography and found to constitute 0.5% of the total protein in SWAP. 125I-concanavalin A bound weakly to purified Sm-97, indicating that this antigen is minimally glycosylated. By indirect immunofluorescence, Sm-97 was localized to regions just below the tegumental and gut syncitia of adult worms. Mice protected by i.d. vaccination produced high titers (1:10,240) of anti-Sm-97 antibodies, whereas chronically infected mice responded at a much lower level (titer 1:640). In contrast, mice protectively immunized with irradiated cercariae and mice nonprophylactically inoculated by the i.v. route failed to produce detectable anti-Sm-97 antibodies. Competitive radioimmunoassays performed with 125I-labeled monoclonal antibodies and purified antigen defined at least two distinct epitopes on Sm-97. Antibodies from i.d. vaccinated mice recognized both monoclonal antibody-defined epitopes, whereas anti-Sm-97 antibodies in chronic infection sera recognized neither. Finally, purified Sm-97 was shown to elicit delayed-type hypersensitivity in i.d. vaccinated mice, suggesting that this molecule is also capable of evoking cell-mediated responses, a finding consistent with its proposed function as a vaccine immunogen.

Animals↗

Identification of Schistosoma mansoni glycoproteins recognized by protective antibodies from mice immunized with irradiated cercariae.

The humoral immune responses of mice patently infected with Schistosoma mansoni and of mice vaccinated with radiation-attenuated cercariae were compared by radioimmunoassays and one- and two-dimensional polyacrylamide gel analyses of radioimmunoprecipitates. The binding observed with antibodies of mice vaccinated twice with radiation-attenuated cercariae over a period of 7 to 11 wk was less than 50% of the binding observed with antibodies of mice patently infected for 20 wk, but three to four times greater than that obtained with antibodies of mice infected for 6 wk, irrespective of whether the test antigen extracts were derived from schistosomula or adult worms. Sera of vaccinated mice precipitated a restricted number of predominantly high m.w. glycoproteins of both schistosomula and adult worms metabolically labeled with [35S] methionine. Each of the glycoproteins of 36 hr in vitro-cultured schistosomula that was precipitated by the sera of vaccinated mice was also precipitated by sera of infected mice. In contrast, sera of vaccinated mice uniquely precipitated a 38,000 m.w. glycoprotein of schistosomula cultured for 5 days and a 94,000 m.w. glycoprotein of adult male worms. Although radiation-attenuated larvae do not reach the adult stage, mice vaccinated with these still elicit a strong immune response against egg glycoproteins. In particular, an egg glycoprotein of 85,000 to 70,000 and isoelectric point of 4.8 showed an enhanced reactivity with sera of vaccinated mice in comparison with infected mice. These results show that the antibody response in mice vaccinated with radiation-attenuated larvae differs qualitatively and quantitatively from that of infected mice.

Acute Disease↗

Identification of Schistosoma mansoni glycolipids that share immunogenic carbohydrate epitopes with glycoproteins.

The immunoreactivity of sera of infected hosts against glycolipids derived from Schistosoma mansoni eggs, adult male worms, and cercariae was analyzed by immunostaining of glycolipids resolved by high-performance thin-layer chromatography. Eggs contained the greatest number of immunogenic glycolipids and bound the largest proportion of serum antibodies. Virtually all of the immunogenic egg glycolipids were neutrally charged and contained oligosaccharide chains larger in size than five sugar residues. The glycolipids of each developmental stage were shown by use of five monoclonal antibodies to share schistosome-specific carbohydrate epitopes that were also present on glycoproteins. Several of the carbohydrate epitopes were expressed throughout the life cycle, yet the overall structures of the glycolipids were not conserved. Quantitative analyses by solid-phase binding assays indicated that the carbohydrate epitopes were differentially expressed between the glycolipids and glycoproteins of developmental stages. Sera from infected humans and mice both contained very high levels of anti-carbohydrate antibodies that were reactive with the glycolipids, irrespective of the stage or intensity of disease. Mice harboring unisexual infections of either male or female worms also recognized the egg glycolipids in a pattern indistinguishable from that of patently infected mice. A greater proportion of the humoral response against egg antigens in infected humans was directed against protein determinants, as compared with infected mice.

Animals↗

Molecular identity of a major antigen of Schistosoma mansoni which cross-reacts with Trichinella spiralis and Fasciola hepatica.

A glycoprotein cross-reactive among Schistosoma mansoni, Trichinella spiralis and Fasciola hepatica was identified and characterized by use of monoclonal antibodies prepared against S. mansoni glycoproteins. Four monoclonal antibodies recognized the same antigen which was one of the major S. mansoni glycoproteins precipitated by sera of hosts infected with either S. mansoni or T. spiralis. This antigen was expressed in S. mansoni cercariae, adult male and female worms, and eggs, and in S. haematobium but not in S. japonicum. Radio-immunoprecipitation and partial proteolytic digest mapping showed that the monoclonal antibodies each recognized a unique epitope. These epitopes were heat labile, sensitive to chaotropic agents, but resistant to reduction and alkylation or digestion with glycosidases, indicating that the recognition sites were amino acids and not carbohydrates. Epitopes recognized by the four monoclonal antibodies were expressed in F. hepatica, whereas only two were expressed in T. spiralis. Analysis by immunofluorescence microscopy showed that the antigen was expressed in S. mansoni in the parenchymal tissue and on the surface of the dorsal tubercles; in mature F. hepatica in the parenchymal tissue, vitelline glands and eggs; in immature F. hepatica only in the parenchymal tissue and in larval T. spiralis in the hypodermis.

Animals↗

Nuclear magnetic resonance and gamma camera tumor imaging using gadolinium-labeled monoclonal antibodies.

Chelate-derivatized monoclonal antibody labeled with paramagnetic gadolinium-3+ ion has been evaluated as a tumor-specific contrast-enhancing agent in nuclear magnetic resonance imaging in the Rauscher murine erythroleukemia system. With 10(-7) M concentrations of Gd3+ delivered to the tumor target, a small but reproducible difference in proton relaxation times (T1S) was observed in excised tumors. Nuclear magnetic resonance imaging of animals, however, failed to show significant contrast enhancement of the tumor; by comparison, gamma camera images with 153Gd-labeled specific antibody did permit clear tumor visualization without subtraction. The potential use of monoclonal antibodies in tumor imaging appears to be far greater in gamma camera and positron imaging than in nuclear magnetic resonance imaging.

Animals↗

A single institution, randomized, prospective trial of cyclosporin versus azathioprine-antilymphocyte globulin for immunosuppression in renal allograft recipients.

Between September 26, 1980 and December 31, 1983, 230 splenectomized, transfused renal allograft recipients were randomized to treatment with either cyclosporin-prednisone (N = 121, 68 diabetic and 53 nondiabetic recipients; 73 cadaver and 48 related donor grafts) or azathioprine-prednisone-antilymphocyte globulin (N = 109, 61 diabetic and 48 nondiabetic recipients; 69 cadaver and 40 related donor grafts). The results were analyzed on March 31, 1984. Actuarial patient survival rates at 2 years were 88% in the cyclosporin and 91% in the azathioprine groups (p = 0.649). Graft survival rates at 2 years were 82% in all cyclosporin and 77% in all azathioprine-treated recipients (p = 0.150); the corresponding figures in the recipients of related donor grafts were 87% vs. 83% (p = 0.656), and in the recipients of cadaver donor grafts were 78% vs. 73% (p = 0.178). The 2-year graft survival rates were 81% in cyclosporin and 74% in azathioprine-treated diabetic recipients (p = 0.150) and 83% in cyclosporin and 81% in azathioprine-treated nondiabetic recipients (p = 0.604). Within the cyclosporin and azathioprine treatment groups, the differences in graft survival rates between diabetic and nondiabetic recipients were not significant (p = 0.822 and 0.423, respectively). Although there were no significant differences in graft survival rates, the cumulative incidence of rejection episodes within the first post-transplant year was significantly lower in the cyclosporin (34%) than in the azathioprine (60%) treated recipients (p = 0.001). In recipients of technically successful cadaver kidney grafts, the incidence of acute tubular necrosis (ATN) was 31% in cyclosporin and 30% in azathioprine-treated recipients (p = 0.822). Graft survival rates in azathioprine- and cyclosporin-treated recipients who did or did not undergo ATN were 72% vs. 89% (p = 0.011). The mean (+/- S.D.) serum creatinine levels (mg/dl) at 1 year were higher in cyclosporin (2.0 +/- 0.6) than in azathioprine (1.5 +/- 0.5) treated recipients (p = less than 0.001). A reduction in cyclosporin dose because of nephrotoxicity was required in 96 of the cyclosporin-treated patients (70%), and 25 were switched to treatment with azathioprine (21%). The incidence of all infections in cyclosporin-treated patients was approximately half of that in azathioprine-treated patients, and only nine per cent of the cyclosporin-treated patients were diagnosed to have cytomegalovirus infections during the first post-transplant year vs. 28% in azathioprine-treated patients (p = 0.002).(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent↗

Fasciola hepatica: comparison of immature and mature immunoreactive glycoproteins.

A comparison of the 35S-methionine metabolically labelled immunoreactive glycoproteins of immature and mature F. hepatica was carried out by one-and two-dimensional sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Sera of rabbits infected for 3 weeks reacted much more strongly with glycoproteins of immature flukes than with glycoproteins of mature flukes as compared to sera of rabbits infected for 9 weeks. Several of the immunoreactive glycoproteins were also released by immature F. hepatica into the culture medium. At least one was a component of the T1 type granules. Analysis of the in vitro translation products of mature F. hepatica indicated that the initial humoral immune response of rabbit hosts may be directed against carbohydrate moieties.

Animals↗

Role of osmosis in biliary NaCl secretion and bile formation.

To challenge the osmotic hypothesis of biliary NaCl secretion and bile formation, experiments were performed in anaesthetized pigs. An increase in plasma osmolality of 7 +/- 1 mosm/kg H2O induced by intravenous sucrose infusion decreased NaCl secretion, NaHCO3 secretion, and bile flow by 36 +/- 3%, 34 +/- 2%, and 34 +/- 3%, respectively. There was no change in the biliary concentration of NaCl and NaHCO3. When bile acids were infused intravenously, the secretion of 1 mmol bile acids caused an osmotic flow of 12.0 ml bile containing 0.92 mmol NaCl and 0.30 mmol NaHCO3 in an isotonic solution. Bile acids are therefore much stronger choleretic substances than NaHCO3. When the plasma sodium concentration was increased to 200 mM, bile flow increased by 31 +/- 5% and the secretion of bile acids, NaHCO3, and NaCl was increased by 63 +/- 3%, 96 +/- 4%, and 93 +/- 4%, respectively. These data are consistent with osmotic transport as the main mode of bile formation, but diffusion could be responsible for a small fraction. A raised plasma sodium concentration stimulates osmotic formation of bile by increasing both the bile acid-dependent and -independent secretion through stimulation of biliary bile acid and NaHCO3 secretion.

Animals↗

Identification of antigenic Schistosoma mansoni glycoproteins during the course of infection in mice and humans.

The progression of humoral immune responses exhibited by mice during the year following exposure to Schistosoma mansoni cercariae was established by studying radioimmunoprecipitations of adult male and cercarial glycoproteins. 35S-methionine metabolically-labeled adult S. mansoni male worm glycoproteins precipitated by sera of 14 mice were identified by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The initial specific antibody response (week 5) was directed against 3 worm glycoproteins of 55,000, 52,000 and 35,000 molecular weight (Mr). As infection progressed, all major worm glycoproteins (ranging from 400,000 to 12,000 Mr) were precipitated by sera from each mouse and only minor individual variations in titer were noted in the antibody responses of the mice against these glycoproteins. Maximal immunoreactivity toward the radiolabeled glycoproteins occurred at week 20 and remained at this level through week 50. Analogous experiments with sera from acutely- and chronically-infected humans resulted in immunoprecipitation patterns almost identical to those obtained with sera from the corresponding experimentally-infected mice. The kinetics of the antibody response against 125Iodine-labeled cercarial glycoproteins was the same as that observed with worm glycoproteins.

Animals↗