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Biomedical subjects

F Stirpe

Publications and source records attributed to F Stirpe.

202 records · Page 12Linked to original sources

CD38 as a target of IB4 mAb carrying saporin-S6: design of an immunotoxin for ex vivo depletion of hematological CD38+ neoplasia.

An anti-CD38 mAb (IB4) coupled to saporin-S6, a type 1 ribosome-inactivating protein (RIP), was designed for ex vivo or loco-regional therapeutical applications in myeloma and lymphoma. The ability of this immunotoxin to eliminate CD38+ cells was studied in vitro on selected CD38+ human cell lines (Raji, HBL6, L540 and CEM) and on CD38+ neoplastic cells from a Non Hodgkin Lymphoma (NHL) patient. HBL6, Raji and L540 cells resulted very sensitive to the IB4/saporin-S6 conjugate, concentrations as low as 100 pM of the immunotoxin completely inhibited protein synthesis. CD38+ neoplastic cells from the NHL patient were completely eliminated after treatment with immunotoxin at 10 nM concentration. CFU-c rescue by bone marrow precursors was maintained after exposure to the immunotoxin. These results indicate that IB4/saporin-S6 is endowed with strong and specific cytotoxic effects on selected CD38+ tumor cells lineages. Consequently, it is reasonable to propose a clinical use of the IB4/saporin-S6 for ex vivo purging of unwanted cells (e.g. depletion of contaminating neoplastic cells in aphereses obtained from G-CSF-treated patients) or for loco-regional therapies of CD38+ tumors.

ADP-ribosyl Cyclase 1↗

Interaction of gelonin with zinc.

Gelonin, a plant protein which inactivates eukaryotic ribosomes, binds to zinc chelate Sepharose from which it is eluted with EDTA or histidine. After purification by metal chelate affinity chromatography, gelonin maintains the associated zinc-dependent proteinase activity previously described. In equilibrium dialysis about 4 moles of zinc bind per mole of gelonin with a dissociation constant of 0.96 mM. Ca2+ behaves as a mixed competitive and non-competitive inhibitor of the binding of zinc with Ki = 29 mM.

Calcium↗

In vitro and in vivo efficacy of heat shock protein specific immunotoxins on human tumor cells.

The presence of heat shock proteins (HSPs) on the surface of tumor cells suggested the possibility of using stress proteins as immunological target for specific immunotoxins (ITs). Flow cytometry analysis showed that U937 cells constitutively express both 28 and 60 kDa HSP in vitro, while the HPC-4 cells only express surface HSPs when grown in vivo, i.e. explanted from SCID mice. Incubation of U937 cells with monoclonal antibodies against 28 or 60 kDa HSP, and then with an immunotoxin consisting of a goat anti-mouse antibody linked to the ribosome inactivating protein Saporin-6 specifically inhibits cell proliferation in vitro. Moreover, an anti-HSP60 immunotoxin prepared by direct linking of the specific monoclonal antibody (MoAb) ML30 to saporin was able to inhibit the proliferation of the U937 line in vitro, and tumor growth in SCID mice bearing the human pancreatic carcinoma line HPC-4 in vivo. Finally, low expression of HSPs on the membrane of peripheral blood mononuclear cells, and their resistance to the toxic effect exerted by anti-HSP immunotoxins, suggest further evaluation of the possible applications of anti-HSP immunotoxins for HSP+tumors.

Animals↗