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Biomedical subjects

P Arnstein

Publications and source records attributed to P Arnstein.

At least 55 records · Page 3Linked to original sources

Human bladder carcinoma: characterization of two new tumor cell lines and search for tumor viruses.

Two newly established human bladder carcinoma cell lines, designated HT-1197 and HT-1376, were characterized. Cells of both cultures exhibited fine structural microvilli and tonofibrils indicative of their epithelial origin. In addition, desmosomes were also present in HT-1197. Marker chromosomes present in HT-1197 and HT-1376 distinguished these from each other and from other known human tumor cell lines. Both cultures grew in soft agar, induced fibrinolytic activity, and were tumorigenic in mice and hamsters. No type C or other virus expression was detected in these cell lines nor in other human urothelial tumors tested.

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Characterization of a spontaneous undifferentiated carcinoma from an African green monkey (Cercopithecus aethiops).

An adult male African green monkey (Cercopithecus aethiops) with an undifferentiated carcinoma, probably originating from the nasal mucosa, was received from the Akron, Ohio zoo. Cultivation of this tumor in vitro resulted in a mixture of fibroblastic and epithelial cells which was subsequently separated using differential trypsinization. The neoplastic nature of the cultured epithelial cells was verified by their ability to transplant into athymic nude, or antithymocyte serum-treated mice, where poorly differentiated carcinomas were produced, and cultures of the tumors that arose in nude mice were morphologically similar to pretransplantation cultures. Early cultures showed a normal male karyotype characteristic of the species; however, in long-term cultures, a clearly defined, small submetacentric Y chromosome was not observed. Electron microscopic examination of tumor tissue and cultured tumor cells revealed desmosomes and the presence of cytoplasmic (keratin-type) fibrils, which tended to be organized around the nucleus. In addition to the keratin-type fibrils, the cultured tumor cells also contained a large amount of cytoplasmic inclusion material that may represent keratohyalin granules. There was no evidence of a viral association with tumor material or cultured cells. The cultures were susceptible to infection by vesicular stomatitis virus, Herpesvirus hominis type 1, and H. saimiri, but were resistant to the Epstein-Barr virus.

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Source, alterations, characteristics and use of a new dog cell line (Cf2Th).

A cell line derived from normal fetal canine thymus (Cf2Th) has been in culture since 1967. During cultivation the cells have changed morphologically from a fibroblast-like to flat, fusiform appearance and karyologically from diploid (2n=78) with 76 telocentric autosomes to hypodiploid with newly formed atelocentric chromosomes. The cells retain canine characteristic enzyme activity (G6PD and LDH) as well as cell membrane fluorescence and are free of mycoplasma. High passage cells produce tumors in ATST mice. No endogenous viruses have been detected in these cells. No original publication exists, to date, on the origin of this line, but seed stocks thereof have been distributed to many laboratories and the cells have served as experimental substrates in a number of published works on oncology albeit under different designations. The present information is offered in order to establish the provenance of this valuable cell line and to list characteristics which may serve to monitor for its purity and to distinguish it from other existing cell lines of dog origin also in common use.

Animals↗

Induction of lymphoma and associated xenotropic type C virus in C57L mice by whole-body irradiation.

Adult C57L mice received sublethal whole-body X-irradiation. Between 3 and 11 months later, 5 of the 7 exposed mice developed histopathologically confirmed malignant lymphomas (lymphocytic type) that primarily involved the thymus. The lymphomas were readily transplantable to other C57L mice of any age, which developed fetal lymphomatous involvement; the tumor cells could also be propagated in tissue culture. A xenotropic murine type C virus (MuX) was isolated from the cultured lymphoma cells after cocultivation with a permissive dog line. MuX activity was demonstrated by electron microscopy, complement fixation, indirect fluorescent antibody, infectivity, and genome rescue.

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Characterization of non-producer human cells induced by Kirsten sarcoma virus.

Non-producer (NP) human cells induced by the Kirsten sarcoma virus were characterized. These morphologically altered NP cells produced neither infectious virus nor complement-fixing antigens of the murine sarcoma-leukemia virus complex. The NP cells did not release RNA-dependent DNA polymerase and type-C virus particles with a density of approximately 1.15 g/ml in sucrose gradients by 3H-uridine labelling. The NP cells produced tumors when transplanted subcutaneously into athymic nude mice. The tumor cells re-established in culture resembled the orginal NP cells, were confirmed as human cells by karyological analysis and were also found to be "non-producer". The sarcoma virus genome in NP cells could be rescued not only by co-cultivation with "helper virus"-releasing cells but also by superinfection with helper type-C viruses. Murine (Rauscher, Ki-MuLV, AT-124 and two other xenotropic viruses), feline, RD-114 and Simian (woolly monkey and baboon) type-C viruses possessed the ability to rescue the sarcoma genome from NP cells but not AKR leukemia virus. In addition, the feline leukemia virus titer obtained by the rescuing technique in NP cells was the same as those obtained in feline embryo and NP cells by CF induction assay.

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Fatal aspergillosis in imported parrots.

Spontaneous fatal aspergillosis occurred in several species of parrots imported from Latin America, Australia, Malaya and Ghana for studies on the control of psittacosis. Over a period of 4 years, 655 parrots were imported for use in these studies. All birds that died during these investigations were necropsied, and the internal organs of 45 were found to have macroscopic lesions suggestive of aspergillosis. Of these 45 suspected cases, 32 were confirmed as aspergillosis by both histopathology and culture, and three others by histopathology alone. There was no evidence that the remaining 10 had this disease. Of the 32 culturally confirmed cases, 13 were found to be caused by Aspergillus fumigatus, 16 by A. oryzae, and three by both fungi. In this series, three sets of circumstances appear to have been associated with the development of fatal aspergillosis. Their capture and transport to the United States, the administration of chlortetracycline used in the control of psittacosis, and the administration of cortisone acetate in an attempt to activate existent latent psittacosis infections. The possible causal relationship of these factors are discussed.

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Type-C RNA viruses of the NIH nude mouse.

Several types of tumors from various species were propagated in NIH athymic nude mice. Subsequently, cell lines were established from the tumors and examined for evidence of type-C virus activity. Hybrid mice (NIH Swiss and BALB/c) harbored murine type-C viruses of three categories: N-tropic, B-tropic and X-tropic.

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Transformation of human osteosarcoma cells by a chemical carcinogen.

A human osteosarcoma clonal cell line (TE-85, clone F-5) was treated in vitro with various levels of 7,12-dimethylbenz[a]anthracene or dimethyl sulfoxide (control). Cells treated only with the carcinogen underwent morphologic alteration in vitro, and one of these altered cell lines produced tumors subcutaneously and intracerebrally when injected into NIH nude mice.

9,10-Dimethyl-1,2-benzanthracene↗

A type-C virus in human rhabdomyosarcoma cells after inoculation into NIH Swiss mice treated with antithymocyte serum.

A type-C RNA virus has been isolated that replicates readily in human and other primate cells. It was obtained from a human rhabdomyosarcoma cell (RD) that had been serially transplanted in immunosuppressed NIH Swiss mice, a strain of mouse from which infectious type-C virus has not been isolated. Various other human tumor cells, similarly transplanted, remained free of overt type-C virus expression. The virus growing in the RD cells, AT-124, has a group-specific antigen and an RNA-dependent DNA polymerase immunologically related to murine type-C viruses, but a host range similar to that of the RD-114 virus. The new isolate is either a previously undescribed, endogenous type-C virus from NIH Swiss mice or a recombinant with both mouse and human type-C genetic information.

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