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Biomedical subjects

L L Houston

Publications and source records attributed to L L Houston.

At least 55 records · Page 3Linked to original sources

Whole ricin and recombinant ricin A chain idiotype-specific immunotoxins for therapy of the guinea pig L2C B cell leukemia.

The therapeutic efficacy of whole ricin, or recombinant ricin A chain, coupled to a monoclonal antibody that reacts with the idiotype of the surface IgM expressed on guinea pig L2C lymphoblasts, was assessed. In vitro studies were done to characterize the immunotoxins (IT) and to demonstrate their specificity before use in vivo. The concentration of whole ricin IT (M6-Ricin) that inhibited protein synthesis by 50% (IC50) in L2C cells was 1.4 X 10(-9) M, in a 5-hr assay, in the presence of lactose to block non-antibody-directed toxicity. M6-Ricin did not inhibit protein synthesis in two control guinea pig cell lines that did not express the idiotype, nor did a whole ricin IT prepared with an isotype-matched monoclonal antibody of irrelevant specificity inhibit protein synthesis in L2C cells. Two recombinant ricin A chain IT, which differed from one another by a factor of 2 to 3 in the number of A chains conjugated per antibody molecule, were less effective in vitro than M6-Ricin (IC50 of greater than 5 X 10(-8) M). For in vivo experiments, the IT were given by the i.p. route 24 hr after the i.p. inoculation of 1 X 10(5) L2C cells. The highest doses of M6-Ricin and M6-Ricin A chain IT tested, 30 micrograms/kg and 3000 micrograms/kg, respectively, were within fourfold to fivefold of their maximum tolerated doses; no deaths or ill effects due to ricin toxicity were noted. These doses increased the median survival time of L2C-bearing guinea pigs to 31 to 34 days, compared with 15 days for untreated animals. This magnitude of increase in survival indicates that 99.999% (5 logs) of injected tumor cells were eliminated, thus accounting for the 12% long-term survival rate obtained. Median survival times for guinea pigs treated with 30 micrograms/kg of the A chain IT were 18 and 21 days for the two conjugates tested, and the median survival for guinea pigs treated with 3000 micrograms/kg of unconjugated antibody was 18 days. Our data demonstrate that recombinant A chain IT are active in vivo and that the B chain of ricin can potentiate IT activity in vivo. Although the potency differs by 100-fold, the therapeutic index of the intact ricin IT is similar to that of the ricin A chain IT.

Animals↗

Crystallization of ricin A chain obtained from a cloned gene expressed in Escherichia coli.

Ricin is a heterodimeric toxin of the form AB, where B is a lectin which binds cell surfaces, triggering endocytosis. The B chain then aids the A chain in escaping from the endosome. The A chain enzymatically attacks and inactivates ribosomes, thereby killing the intoxicated cell. We have recently solved the three-dimensional structure of whole ricin. Here we report that the A chain, expressed from a gene cloned into Escherichia coli has been crystallized in a suitable form for high resolution x-ray analysis. The crystals are monoclinic space group P2(1) with a = 42.6, b = 68.1, c = 50.2 A and beta = 112.9 degrees. There is evidence that the A chain undergoes a conformational change, resulting in activation, when it is released from the B chain. Comparison of the two structures should facilitate an analysis of this process.

Crystallization↗

Enhancement of the specific cytotoxicity of a breast cancer-associated antigen immunotoxin by the carboxylic ionophore monensin.

Monensin is a carboxylic ionophore which dissipates proton gradients across cell membranes. Monensin is known to potentiate the cytotoxic activity of immunotoxins (antibody-toxin conjugates) directed against several human tumor-associated antigens. We have investigated the effect of monensin on an immunotoxin cytotoxic to the human breast cancer cell line MCF-7. This immunotoxin is composed of an antibody directed against a human breast cancer membrane antigen, and ricin A chain, which has been produced by recombinant DNA techniques. In a 16-hour cytotoxicity assay, monensin reduced 34-fold the median inhibitory dose, from 1.4 X 10(-8)M (without monensin) to 4.1 X 10(-10)M (with monensin). In timed cytotoxicity assays, 50% of control protein synthesis was reached in immunotoxin treated cells 8-fold faster in the presence of monensin (0.5 hours) than in its absence (4 hours). Monensin produced no enhancement of immunotoxin effect on a control cell line, nor on a control immunotoxin on MCF-7 cells, demonstrating specificity of monensin effect. In addition, specific immunotoxin alone or with monensin produced no toxicity on MCF-7 cells maintained at 23 degrees C. These results suggest that both binding and internalization of immunotoxin are necessary for the monensin effect. Monensin was a potent enhancer of immunotoxin effect on human breast cancer cells. This effect occurs without the presence of ricin B chain in the conjugate.

Antigens, Neoplasm↗

Use of a novel colony assay to evaluate the cytotoxicity of an immunotoxin containing pokeweed antiviral protein against blast progenitor cells freshly obtained from patients with common B-lineage acute lymphoblastic leukemia.

We report a novel colony assay for B-lineage progenitor cells in acute lymphoblastic leukemia (ALL). The primary plating efficiency of blast progenitors freshly obtained from common B-lineage ALL patients varied between 0.09 and 2.63%. Morphological, cytochemical, and immunological analyses of cells from day 7 colonies provided the evidence that they are B-lineage lymphoblasts. Immunological marker analyses of cultured blasts using BA-2 (anti-CD9), BA-3 (anti-CD10), BA-1 (anti-CD24), and B43 mAb have allowed us to define two distinct immunological groups. The first group had BA-2+, BA-3+, BA-1+, B43+ marker profiles, consistent with the phenotype of uncultured bone marrow blasts. The second group differed in that the cells in the blast colonies were BA-3 (anti-CD10)-negative, although many of the cells in the bulk population were BA-3+ before culture. Blasts from both groups were able to proliferate and form secondary colonies when recultured. A pan-B immunotoxin was synthesized by linking B43, a human B cell-specific mAb, to pokeweed antiviral protein (PAP). This study showed that B43-PAP can effectively eradicate leukemic progenitor cells freshly obtained from patients with common B-lineage ALL. B43-PAP eliminated greater than 99.96% of blast progenitors under conditions in which only minimal inhibition of normal bone marrow progenitor cells (CFU-GM, CFU-E, CFU-MK, CFU-GEMM) was observed. Our results establish that the surface determinant recognized by B43 is expressed on B-lineage progenitor cells in ALL, and that these cells are sensitive to PAP at the ribosomal level. To our knowledge, B43-PAP is the first IT to prove effective against common B-lineage ALL cells.

Adolescent↗

Prospects for immunotoxin therapy in cancer.

Immunotoxins are formed by chemically linking antibodies to "toxic" polypeptides that inactivate protein synthesis. These hybrid protein molecules are guided to tumor cells by the antibody moiety, and once bound to the tumor cells, the toxic polypeptide moiety penetrates the cell membrane and enzymatically inactivates protein synthesis. A stepwise approach to identifying the potential clinical uses of immunotoxins in cancer therapy is examined in this chapter.

Animals↗

Genomic cloning and characterization of a ricin gene from Ricinus communis.

A genomic clone that specifies a single polypeptide precursor for ricin, a toxic lectin of Ricinus communis (castor bean), was isolated, sequenced and Sl mapped. The gene encodes a 64 kDa precursor which contains, in the following order: a 24 or 35 amino acid signal peptide, the A chain, a 12 amino acid linker peptide, and the B chain. The 5'-end of the ricin mRNA maps approximately 35 bases upstream from the first methionine codon. Two putative TATA boxes and a possible CAAT box lie in the 5'-flanking region. Two possible polyadenylation signals were found in the 3' flanking region. No introns were found, which is typical of other lectin genes that have been sequenced. Southern blot analysis suggests that the castor bean genome contains approximately six ricin-like genes.

Amino Acid Sequence↗

Ex vivo elimination of neoplastic T-cells from human marrow using an anti-Mr 41,000 protein immunotoxin: potentiation by ASTA Z 7557.

ASTA Z 7557 potentiated the ex vivo efficiency of a T-cell directed immunotoxin containing pokeweed antiviral protein (PAP). We used an immunotoxin of pan-T monoclonal antibody 3-A1 directed against p41 antigen expressed both on normal and leukemic T-cells. Treatment with 3A1-PAP in combination with ASTA Z 7557 produced 7-8 logs elimination of target lymphoblastic leukemia cells. Our data suggest that this new strategy shows potential for more effective ex vivo marrow purging in autologous marrow transplantation for acute lymphoblastic leukemia.

Antibodies, Monoclonal↗

Ex vivo elimination of lymphoblastic leukemia cells from human marrow by mafosfamid.

Studies were performed to evaluate the anti-tumor activity of mafosfamid, a new synthetic derivative of cyclophosphamide. We tested its ability to eliminate lymphoblastic leukemia cells from autologous bone marrow grafts following a 30 min preincubation in a highly sensitive clonogenic assay. Treatment with 50-100 micrograms mafosfamid/ml eliminated more than 4 logs of contaminating clonogenic tumor cells from a 200-fold excess of normal bone marrow. Flow cytometric studies showed differences in cell cycle kinetics between mafosfamid-resistant and mafosfamid-susceptible tumor cell clones. Compared to drug susceptible clonogenic tumor cells, clones that resisted treatment with 100 micrograms mafosfamid/ml exhibited a smaller percentage of cells in S-phase, indicating that mafosfamid is mostly cytotoxic to rapidly cycling tumor cells. The combination of mafosfamid and a target cell selective immunotoxin containing pokeweed anti-viral protein was superior to mafosfamid alone or immunotoxin alone for purging mafosfamid-resistant leukemic cells from human marrow.

Bone Marrow↗

Immunotoxin-mediated elimination of clonogenic tumor cells in the presence of human bone marrow.

An immunotoxin was synthesized with pokeweed antiviral protein and an IgG1 monoclonal antibody directed against human B and pre-B cells. The B43 murine monoclonal antibody does not react with normal human bone marrow precursor cells. The immunotoxin bound to all Burkitt's lymphoma cell lines that were tested but not to human peripheral blood T cells. The ability of antibody-toxin conjugate to inhibit human lymphoblast cell lines was checked in a clonogenic assay system. The immunotoxin in the presence of chloroquine elicited 5.8 logs of killing of Burkitt's lymphoma cells (B-ALL). The efficient inhibition of clonogenic growth of B-ALL cells was not affected by the presence of normal bone marrow cells. The immunotoxin was not very toxic to pluripotent stem cells; less than 50% of the stem cells were lost under conditions where 5.6 logs of clonogenic lymphoma cells were eliminated from a 100-fold excess of normal marrow cells. Further, when assayed by long-term human bone marrow cultures, immunotoxin treatment did not result in a significant loss of pluripotent precursor cells.

Adjuvants, Immunologic↗

Increased efficiency in selective elimination of leukemia cells by a combination of a stable derivative of cyclophosphamide and a human B-cell-specific immunotoxin containing pokeweed antiviral protein.

Leukemia cells were mixed with normal human bone marrow cells to simulate bone marrow from leukemia patients; the mixture was then treated with a combination of stabilized derivative of cyclophosphamide [Mafosfamide (ASTA Z 7557)] and pokeweed antiviral protein-containing immunotoxin. The ability of this protocol for selective elimination of B-ALL cells was evaluated by clonogenic assay. The monoclonal antibody (B43) portion of the immunotoxin was directed against human B-cells and was linked to pokeweed antiviral protein by a disulfide bond. The combination of ASTA Z 7557 and immunotoxin was superior to either ASTA Z 7557 or the immunotoxin alone and produced nearly 7 logs of elimination of leukemia cells from the cell mixtures. About 5 logs of contaminating tumor cells were eliminated from a 200-fold excess of normal marrow under conditions where fewer than 50% of pluripotent stem cells were lost. Moreover, this manipulation did not inhibit subsequent production of pluripotent stem cells in long-term bone marrow cultures, indicating that the more primitive progenitors were not harmed.

Antibodies, Monoclonal↗

Anti-T cell immunotoxins containing pokeweed anti-viral protein: potential purging agents for human autologous bone marrow transplantation.

The ex vivo anti-leukemic efficacy and stem cell toxicity of two different T cell directed immunotoxins containing pokeweed antiviral protein (PAP) were studied by clonal assays. 5E9-11-PAP, an immunotoxin directed against human transferrin receptors, elicited a maximum leukemic cell kill of 3.9 logs. However, it was also toxic against normal pluripotent stem cells, and therefore is not a clinically useful purgative reagent. PAP conjugated to 3-A1, a monoclonal antibody directed against CD7 (T, p41), was more effective against leukemic T cells than 5E9-11-PAP and eliminated a maximum of 4.8 log of cells. 3A1-PAP was only slightly toxic to pluripotent stem cells: 13% of CFU-GEMM were lost after treatment with 3000 ng of 3A1-PAP/ml, a concentration that eliminated 99.96% of contaminating leukemic T cells from a 200-fold excess of normal bone marrow. Cryopreservation of treated cells by conventional methods did not affect the extreme selectivity and potency of 3A1-PAP. Incubation of 3A1-PAP with peripheral blood mononuclear cells resulted in the complete inhibition of phytohemagglutinin-induced mitogenic response, illustrating the possibility of using this immunotoxin as a potent anti-T cell reagent for prophylaxis against graft vs host disease in allogeneic BMT as well.

Antibodies, Monoclonal↗

Immunological and biological stability of immunotoxins in vivo as studied by the clearance of disulfide-linked pokeweed antiviral protein-antibody conjugates from blood.

Monoclonal antibodies against human T-cell antigen 3A1, human transferrin receptor, and mouse Thy 1.1 antigen were linked to pokeweed antiviral protein (PAP) by a disulfide bond. Because the ability of the immunotoxin to home on target cells in vivo and the eventual internalization of the hemitoxin polypeptide depends in part on the stability of the conjugate in circulation, the clearance of antibody-PAP conjugates from blood was investigated. Blood samples collected from rabbits at different times after the injection of immunotoxin were analyzed for: (a) total mouse IgG; and (b) intact antibody-PAP conjugate in enzyme-linked immunosorbent assay. Further, antibody-PAP conjugate was separated from PAP by differential precipitation using polyethyleneglycol, and the PAP content of the fractions were analyzed by radioimmunoassay. Free PAP is removed very rapidly from blood, and 95% is cleared within 2 h. Our results showed that the immunotoxin did not dissociate in circulation immediately, and about 90% of the initial concentration of the conjugate was still present for more than 4 h. Analysis by enzyme-linked immunosorbent assay showed a 4- to 8-h lag period in which immunotoxin concentrations were relatively unchanged. This was followed by a steady decline, and the half-life of the conjugate in circulation then ranged between 17 and 24 h. Not only did the immunotoxins remain intact immunologically, but they also retained their biological activity as measured by the ability of blood-borne immunotoxins to efficiently block protein synthesis of target cells in vitro. These data show that the disulfide linkage of toxin to antibody is reasonably stable and that the immunotoxin retains the biological properties of both the antibody and the hemitoxin polypeptide in circulation.

Animals↗

Inhibition of human acute lymphoblastic leukemia cells by immunotoxins: potentiation by chloroquine.

Immunotoxins containing pokeweed antiviral protein and monoclonal antibodies against human T cells or human transferrin receptor efficiently killed acute lymphoblastic leukemia cells. Chloroquine specifically enhanced the rate of protein synthesis inhibition by immunotoxin. Depending on its concentration, chloroquine (10 to 100 micromolar) reduced by up to 65-fold the amount of immunotoxin required to inhibit protein synthesis in the target cells 50 percent.

Antibodies, Monoclonal↗

Comparison of the selective cytotoxic effects of immunotoxins containing ricin A chain or pokeweed antiviral protein and anti-Thy 1.1 monoclonal antibodies.

Ricin A chain and pokeweed antiviral protein (PAP), two enzymes that inhibit the action of eukaryotic ribosomes, were coupled by cleavable, N-succinimidyl-3-(2-pyridyldithio)propionate, and noncleavable m-maleimidobenzoyl-N-hydroxysuccinimide ester, cross-linking reagents to monoclonal antibodies directed against Thy 1.1 antigen. Leukemia cells that contained Thy 1.1 antigen were selectively killed compared to Thy 1.2-containing cells. The composition of the conjugates was determined by radioimmunoassay, and most of the immunotoxins contained about equal molar quantities of antibody and ribosomal inhibitor. Ricin A chain linked to antibody by a noncleavable m-maleimidobenzoyl-N-hydroxysuccinimide ester cross-link was not cytotoxic, but PAP coupled to the same antibody was. Both immunotoxins linked by a cleavable disulfide bond were cytotoxic. Disulfide-linked F(ab')2-PAP was cytotoxic, but it was about 45 times less efficient than disulfide-linked IgG-PAP. There was only a 3.2-fold difference in their ability to inhibit ribosomes in vitro. The relative difference between in vitro action and cytotoxicity could be accounted for by differences in the affinity of the immunotoxins to the cell surface. Neither PAP or ricin A chain disulfide linked to a monoclonal antibody against Mr 15,000 envelope protein, a murine leukemia virus coat protein, were not cytotoxic, although both conjugates bound to the cell surface. Because of its stability, ease of purification, and lack of an analogue of ricin B chain, PAP may be more useful than ricin A for immunotoxin synthesis.

Animals↗

Prevention of growth of leukemia cells in mice by monoclonal antibodies directed against Thy 1.1 antigen disulfide linked to two ribosomal inhibitors:pokeweed antiviral protein or ricin A chain.

Pokeweed antiviral protein (PAP) and ricin A chain are potent inhibitors of protein synthesis that inactivate eukaryotic 60S ribosomal subunits. Immunotoxins were prepared by linking monoclonal anti-Thy 1.1 antibodies to PAP and ricin A chain through a disulfide bond. Both the conjugates were shown earlier to specifically inhibit protein synthesis of Thy 1.1-positive target leukemic cells (AKR SL3). In the present study, the efficacy of the immunotoxins to prevent the growth of AKR SL3 cell-induced tumor was checked in vivo in a model system. Injection of AKR SL3 cells s.c. into AKR/Cum (Thy 1.2-positive) mice developed into a solid tumor which was fatal. Administration of 31-E6:PAP and 31-E6:ricin A chain suppressed tumor growth. Suppression was specific, as similar treatment could not prevent the growth of a nontarget Thy 1.2-positive leukemia cell line (AKR SL1) derived from a congenic mouse. Unconjugated anti-Thy 1.1 immunoglobulin antibodies also showed significant tumor protection; however, administration of F(ab')2 fragment could not prevent the tumor growth. Injection of F(ab')2:PAP efficiently protected mice from AKR SL3-induced tumor. All the conjugate-treated mice showed antibody response against the toxin polypeptide. Anti-toxin antibody response was found as early as 26 days after the initiation of therapy and lasted as long as 179 days of observation. Further studies indicate that the presence of anti-toxin antibodies blocked completely the inhibitory ability of the respective immunotoxin in vitro. Anti-ricin antibodies neutralized the activity of 31-E6:ricin A chain conjugate but not OX-7:PAP immunotoxin, and similarly, anti-PAP antibodies inhibited the activity of the latter and not the activity of 31-E6:ricin A chain conjugate. These observations indicate that the use of alternate immunotoxins having an immunologically distinct toxin polypeptide may be necessary for tumor therapy during relapse, as exposure to the conjugates results in the formation of specific neutralizing anti-toxin antibodies. The anti-toxin antibodies did not prevent the binding of immunotoxin to target cells. Nevertheless, preincubation of conjugate with anti-toxin antibodies specifically blocked the respective conjugate-induced inhibition of polyuridylic acid translation in a cell-free assay system.

Animals↗

Seasonal variations in different forms of pokeweed antiviral protein, a potent inactivator of ribosomes.

Pokeweed antiviral proteins enzymatically inactivate the 60 S subunit of eucaryotic ribosomes in cell-free preparations. Three different species of the enzyme can be isolated from spring leaves, summer leaves, and seeds of pokeweed. Sequence analyses of the NH2-terminal residues show that pokeweed antiviral protein, isolated from spring leaves and seeds, are homologous and differ in 11 of the 28 residues compared. Ricin contains a polypeptide (ricin A chain) that has functional similarities to pokeweed antiviral protein, yet the sequences of the pokeweed proteins show little similarity with ricin A chain. Ricin B chain is responsible for helping ricin A chain across the plasma membrane; since pokeweed antiviral has no counterpart to ricin B chain, it is not nearly as cytotoxic as ricin. However, when pokeweed antiviral protein was covalently coupled to ricin B chain, a cytotoxic species was formed. Pokeweed antiviral protein fails to interact noncovalently with the ricin B chain to produce a cytotoxic species equivalent in function to ricin.

Amino Acid Sequence↗

Inactivation of Ricin using 4-azidophenyl-beta-D-galactopyranoside and 4-diazophenyl-beta-D-galactopyranoside.

4-Azidophenyl-beta-D-galactopyranoside and 4-diazophenyl-beta-D-galactopyranoside were used to inactivate ricin. Galactose, but not glucose, protected against inactivation as measured by the retention of the ability of ricin to bind to Bio-Gel A, a galactose-containing gel. Nearly complete inhibition of binding to Bio-Gel A, to monosaccharides, or to cell surface receptors could be achieved by reaction of ricin with either label, but neither label impaired the ability of the A chain to inhibit translation in vitro. The diazonium salt-modified ricin still inhibited cellular protein synthesis, but ricin modified by the photoactivated label was 280 times less efficient than ricin in inhibition of cellular protein synthesis.

Animals↗

Arming alpha 2-macroglobulin with ricin A chain forms a cytotoxic conjugate that inhibits protein synthesis and kills human fibroblasts.

A conjugate containing alpha 2-macroglobulin and highly purified ricin A chain was made using N-succinimidyl-3-(2-pyridyldithio)propionate. Radioimmunoassay indicated that it contained 1.2 mol A chain per mol alpha 2-macroglobulin. The conjugate inhibited polyuridylic-acid directed translation by rat liver ribosomes and protein synthesis in human fibroblasts. There was a 90 min lag period before the beginning of inhibition in fibroblasts, but complete inhibition could be achieved. By measuring protein synthesis as a function of protein concentration, it was demonstrated that 8.25 X 10(-9) M conjugate was required to inhibit 50% of protein synthesis in 6 h. To achieve the same level of inhibition, 165-times more (1.3 X 10(-6) M) unconjugated A chain was required, and 180-times less ricin (4.6 X 10(-11) M). Ricin was more than 28 000 times more inhibitory than A chain alone. The presence of alpha 2-macroglobulin did not increase the cytotoxicity of unconjugated A chain, and it even protected the cells to a slight extent. The inhibitory action of the conjugate was blocked by antibodies specific for alpha 2-macroglobulin or ricin, and it was not prevented by galactose or antibodies specific for ricin B chain. Electron microscopy of the conjugate indirectly labelled with ferritin demonstrated that it was internalized by receptor mediated endocytosis through coated pits. These data indicate that the A chain portion of the conjugate survives the conditions in the lysosomes to the extent that it retains its ability to inactivate cytoplasmic ribosomes.

Animals↗