Immunoregulation of murine myeloma cell growth and differentiation: a monoclonal model of B cell differentiation.
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Biomedical subjects
Publications and source records attributed to R G Lynch.
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Tumor development, MOPC-315 stem cells, and M315-secretory cells were quantitated in carrier-primed BALB/c mice that had been challenged subcutaneously or i.v. with mixtures of TNP-carrier and TNP-binding MOPC-315 cells. We observed that tumor incidence, myeloma stem cells, and secretory myeloma cells were: i) suppressed in mice in whom carrier-specific suppressor T cells had previously been induced and ii) initially ehnahced in mice with carrier-specific helper T cells. The early enhancement in mice with carrier-specific helper T cells was followed by progressively declining myeloma stem cell frequencies and regression of established tumors. These studies demonstrate that T cell-derived immunoregulators of host origin can be focused onto localized and disseminated malignant B cells and specifically regulate the expansion and differentiation of the neoplastic clone.
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A spleen colony-forming assay for the measurement of idiotype-specific transplantation resistance to MOPC-315 is described. The assay is highly quantitative, sensitive, reproducible, less time consuming and distinctly superior to conventional in vivo assays which measure tumor incidence, tumor size, and/or host survival time after tumor challenge. The assay directly measures those clonogenic cells of the MOPC-315 myeloma which have a sufficient proliferative capacity to form macroscopic splenic foci within 14 days after intravenous challenge.
The idiotype-specific myeloma transplantation resistance induced in BALB/c mice by immunization with the DNP-binding IgAlambda2 protein produced by plasmacytoma MOPC-315 is ablated by post-immunization thymectomy. Sham-thymectomy has no effect. The ablative effect of thymectomy is observed is observed in mice challenged subcutaneously with MOPC-315 cells either 3 days after thymectomy, or after a rest period of 44 days after thymectomy. These observations suggest that short-lived, thymic-dependent suppressive factors may play a role in the idiotype-specific myeloma graft resistance.
Previous studies demonstrated that: i) the TNP-binding myeloma MOPC-315 differentiated during in vivo growth in diffusion chambers (DC) implanted i.p. into normal BALB/c mice, and ii) the myeloma cell differentiation was regulatable by carrier-specific presentation of TNP to MOPC-315 cells in carrier-primed mice. In those studies, promotion and suppression of MOPC-315 differentiation occurred in the presence of carrier-specific helper and suppressor activities, respectively. In the present studies, we demonstrate that carrier-specific regulation of MOPC-315 differentiation can be adoptively transferred to normal mice with carrier-primed T lymphocytes. In addition, the induced regulation of MOPC-315 differentiation is abrogated when macrophages are not present with MOPC-315 cells in the DC. These studies establish the immunologic basis of myeloma cell regulation and suggest that soluble, carrier-specific helper and suppressor factors of T cell origin regulate MOPC-315 differentiation directly or in collaboration with macrophages.
Tunicamycin, an antibiotic which blocks the formation of N-acetylglucosamine-lipid intermediates, thereby preventing glycosylation of glycoproteins, inhibits the secretion of IgA and IgE by MOPC 315 mouse plasma cells and IR162 rat plasma cells, respectively. At 0.5 microng of tunicamycin per ml, D-[14C]glucosamine incorporation into newly synthesized immunoglobulin was inhibited greater than 90% while the overall rate of protein synthesized was much less inhibited (40% in the case of MOPC 315 cells and 13% in the case of IR162 cells). This dose of tunicamycin produced an 85% inhibition of IgA secretion by the MOPC 315 cells and a complete inhibition of intact IgE secretion by the IR162 plasma cells. In contrast, tunicamycin had little effect on the secretion of normally nonglycosylated lambda light chains or on cell-free protein synthesis, demonstrating that tunicamycin is not a general inhibitor of protein synthesis or a non-specific inhibitor of protein secretion. No enhancement of intracellular degradation of nonglycosylated immunoglobulin could be demonstrated. Electron microscopy of tunicamycin-treated MOPC 315 cells revealed marked dilatations of the rough endoplasmic reticulum, and direct immunofluorescence indicated that the dilated rought endoplasmic reticulum contained IgA. These data indicate that glycosylation of newly synthesized IgA and IgE may be necessary for normal secretion to occur.
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Localization of antisera to neurofilament antigens derived from rat peripheral nerve was carried out in tissues of rat and human peripheral and central nervous systems by indirect immunofluorescence. Unfixed and chloroform-methanol-fixed frozen sections of tissues were incubated in purified IgG of the experimental rabbit antisera and subsequently exposed to goat anti-rabbit IgG conjugated with fluorescein isothiocyanate. Control studies were conducted on identical tissue preparations incubated in the same concentrations of nonspecific rabbit IgG or in experimental rabbit IgG absorbed with extracts of rat peripheral nerve containing neurofilament antigen. Extensive immunofluorescence was observed in rat and human peripheral and central nervous systems. The distribution and configuration of immunofluorescence corresponded to neurofilament-rich structural components of these tissues. Prominent immunofluorescence was also noted in neuronal cell bodies of spinal sensory ganglia, especially in perikarya of the large neuronal type. Immunofluorescence of the central nervous system was located predominantly in myelinated axons of the white matter in cerebrum, cerebellum, brain stem, and spinal cord. Less intense immunofluorescence was also seen in neuronal perikarya and in short thin linear processes of grey matter.
Myeloma cells of the "wild type" that produce complete immunoglobulin molecules and those of the more usual variant type that display only one kind of chain [either light (L) or heavy (H)] were cocultivated ip and sc in syngeneic BALB/c mice. With each of six deliberately selected variants, a progressive increase in the proportion of wild-type cells was observed; the rate of change suggested that these variants had an approximately 10% slower growth rate than that of the wild-type tumor. In contrast, a variant that arose spontaneously overgrew the wild-type cells. The results may account for a) the stable capacity of most wild-type tumors to produce complete immunoglobulin molecules (L- plus H-chains) over many years, even though they frequently generate variant cells that produce only L- or only H-chains; and b) the occasional spontaneous change of myeloma cell populations from predominantly wild-type to variant cells.
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