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Biomedical subjects

M Momo

Publications and source records attributed to M Momo.

8 recordsLinked to original sources

High-affinity antigen binding by chelating recombinant antibodies (CRAbs).

We have developed a strategy for making antibody fragments with high binding affinities by harnessing the chelate effect. We create a bispecific antibody fragment (Chelating Recombinant Antibody or CRAb) that recognizes adjacent and non-overlapping epitopes of the target antigen, and is flexible enough to bind to both epitopes simultaneously. Here the strategy is illustrated with two antibodies that form complexes of known three-dimensional structure against different epitopes of lysozyme. Computer graphic modelling indicated that two single-chain antibody fragments (scFv) derived from antibodies D1.3 (Ka = 10(8) M-1) and mutant HyHEL-10 (Ka = 10(6) M-1) could be linked together on the surface of lysozyme by a flexible and hydrophilic polypeptide between the C terminus of one fragment and the N terminus of the other. The CRAb gene was assembled and the CRAb expressed by secretion from bacteria. The purified CRAb was shown to have a much higher affinity than either of the scFv fragments, as shown by competition ELISA (Kd > 10(9) M-1), bandshift on gels (Ka > 2 x 10(9) M-1) and fluorescence quench (Ka > 1.3 x 10(10) M-1).

Amino Acid Sequence↗

Stimulation of T cells via CD44 requires leukocyte-function-associated antigen interactions and interleukin-2 production.

This article reports the results of the analysis of the activation signals delivered to T and B cells by means of the CD44 molecule and an agonistic mAb, i.e., CB05 mAb, which is able to induce cell activation and aggregation upon binding. The functional effects culminate in T-cell proliferation in the presence of autologous accessory cells. Such effects are barely detectable in thymocytes, while B cells prove refractory to the action of the agonistic mAb. All of these events have been followed by the expression of surface activation markers, by the transcription of selected cytokine genes (IFN-gamma, IL-4, and GM-CSF), and by the secretion of IL-2. Cell activation via CD44 has been evaluated as to its relationship with CD3 and CD2 activation pathways, proving synergistic with the latter. The CD44 signaling is protein kinase dependent. Furthermore, the role of surface molecules as cosignals in the CD44 pathway has been analyzed, showing that CD11a (and its ligand CD54), HLA class I, and CD25 are instrumental in the implementation of (a) efficient activation/proliferation signals and (b) a potent cytotoxic potential.

Carrier Proteins↗

CD38: a multi-lineage cell activation molecule with a split personality.

This review reports the characteristics of the human surface molecule CD38, a structure not linked to a definite line and predominantly expressed in early and activated phenotypes. The CD38 molecule consists of a single chain of 46 kDa, spanning the membrane and with the carboxyl terminus located in the extracellular compartment. The CD38 molecule is also involved in the transduction of activation and proliferation signals, which are line unrestricted. The gene coding for the CD38 antigen has been cloned and used for the construction of simian and mouse transfectants expressing the human molecule. These cell models are used for the analysis of several unanswered issues, mainly concerning the in vivo function of CD38, the existence of a natural ligand and of polymorphism in the population.

ADP-ribosyl Cyclase↗

Retrovirus-derived shuttle vectors in the generation of murine bispecific MoAbs to be used in ex vivo and in vivo immunotherapy.

Mouse monoclonal antibodies specific for CD3, FcR and a melanoma associated antigen have been produced. Drug resistence of such hibrydomas has been obtained tranfecting them with plasmids containing genes conferring specific resistence. Retrovirus derived shuttle vectors with high transfection efficiency have been used for transfection. Hybrydomas were than fused and bispecific antibody producing cells selected. Purification was performed by HPLC. Such bispecific antibodies can be used in ex vivo and in vivo immunotherapy.

Animals↗

Gene transfer by retrovirus-derived shuttle vectors in the generation of murine bispecific monoclonal antibodies.

The present study reports on the use of gene transfer by retrovirus-derived shuttle vectors in the generation of hybrid hybridomas secreting bispecific monoclonal antibodies. neo- and dhfr- genes were infected into distinct murine hybridomas, thus conferring a dominant resistance trait to geneticin (G418) and to methotrexate. The vectors employed were replication-deficient and dependent on complementation by a helper virus provided by the irradiated packaging lines. After cocultivation with the relevant packaging cell lines, stable hybridoma lines expressing the selectable markers were easily obtained and were then suitable for conventional somatic fusion. This high-efficiency method was used to generate two bispecific monoclonal antibodies simultaneously targeting molecules expressed on cytotoxic cells (i.e., T lymphocytes and natural killer cells) against a human melanoma-associated antigen.

Animals↗

Characterization by monoclonal antibody of a highly conserved antigenic determinant expressed on human platelet membranes and intermediate filament type III.

The murine monoclonal antibody (MoAb) CB21, raised after immunization with sonicated extracts of human platelets, has been shown to react with a line-restricted surface molecule and also a cytoplasmic structure displaying no restriction in terms of lineage and species. The surface structure recognized by the CB21 MoAb is exclusively expressed on the surface membrane of human platelets, being undetectable on other cells or lines so far tested. After permeabilization, the majority of the cells and lines tested with the CB21 MoAb displayed strong cytoplasmic reactivity with a constant typical filamentous distribution. Biochemical and morphological analyses showed that the cytoplasmic counterpart recognized by the CB21 MoAb is the intermediate filament type III.

Animals↗

Gene transfer by retrovirus-derived shuttle vectors in the generation of murine bispecific MAbs.

This report deals with the use of gene transfer by retrovirus-derived shuttle vectors in a novel model aimed at the generation of hybrid hybridomas secreting bispecific monoclonal antibodies (biMAbs). Following this approach, two genes conferring dominant resistance trait to the neomycine analogue geneticin (G418) and to methotrexate (MTX) respectively, were infected in two established hybridoma lines, each producing a well characterized MAb. The vectors used here were replication-deficient, being dependent on the complementation of helper virus provided by packaging lines. The infection procedure involved co-cultivation of the hybridomas with irradiated packaging cell lines, previously transfected with the vectors and producing the recombinant retroviruses, not inclusive of helper virus in their genome. The packaging lines used were psi2 ecotropic cells made able to produce high titers of virus. Further, the vector pMV7 was carrying G418 resistance while the pSDHT render the cells able to survive MTX. Easy and fast transfer of the dominant selection markers yielded lines of hybridomas to be fused according to the conventional somatic fusions. The resulting double hybridomas were tested for the production of hybrid molecules retaining parental specificity and successively underwent extensive cloning. The purification system featuring the most efficiently between the true biMAbs and the parental immunoglobulins (or other combination products) proved to be HPLC on hydroxylapatite column. The method described above was successful in producing two biMAbs targeting simultaneously molecules expressed on cytotoxic cells (such as CD3 on T-lymphocytes and CD16 on NK cells) and the melanoma-associated antigen Ep2.

Animals↗