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Biomedical subjects

G Stoica

Publications and source records attributed to G Stoica.

At least 19 recordsLinked to original sources

Temporal lymphoreticular changes caused by ts1, a paralytogenic mutant of Moloney murine leukemia virus TB.

Inoculation of newborn FVB/N mice with ts1, a mutant of Moloney murine leukemia virus TB, induced severe thymic atrophy, spongiform polioencephalomyelopathy, and fatal posterior paralysis of the affected mice 35-40 days after inoculation. During the early course of infection viral replication was found in the spleen and, more importantly, within the thymus. Of these organs, the thymus was affected most severely by ts1-infection. Thymic weights of infected mice decreased markedly during disease progression, culminating in severe atrophy at the time of paralysis. During the first 10 days after inoculation, the virus replicated within the endothelial lining of splenic and thymic capillaries and was released albuminally into the basement membrane before spreading outwardly into perithelial, epithelial, and reticuloendothelial cells. Within these cells there was productive viral replication and subsequent dissemination of the virus to the thymic T cell population. Early infection (up to 10 days after inoculation) of the thymus induced an increase in thymocytic mitosis, followed by a progressive increase in thymocytic death between 15 and 35 days after inoculation. Thymuses from paralyzed mice killed 30-39 days after inoculation, demonstrated pronounced involution, characterized by loss of lobular architecture, effacement of the cortex and medulla, severe depletion of thymocytes, and partial or complete loss of Hassall's corpuscles. Immunohistochemistry for viral antigens showed positive labeling of splenic megakaryocytes, reticuloendothelial cells, and thymocytes in mitosis, and reticulo-epithelial-endothelial cells of the thymus. The thymic phase of viral replication appeared to be crucial for development of neurological lesions and posterior paralysis.

Animals

Murine leukemia virus induced central nervous system diseases.

The ts1 mutant of Moloney murine leukemia virus TB (MoMuLV-TB) causes a degenerative neurologic and immunologic disease in mice characterized by development of spongiform encephalomyelopathy that results in hind-limb paralysis, marked thymic atrophy associated with immunodeficiency, and generalized body wasting. T cells, particularly CD4+ helper T cells, play a key role in the pathogenesis of the disease induced by ts1. Therefore, ts1 is unique among the described murine retroviruses in its ability to afflict both the central nervous system (CNS) and the T-cell compartment of the immune system in the same host. This particular ability to cause degenerative diseases involving both the CNS and immune system is shared by the lentiviruses responsible for development of the acquired immunodeficiency syndromes of humans and macaques. Our goal has been to elucidate the specific cellular and molecular mechanisms that underlie this neuro- and immunopathogenicity of ts1. We have previously reported that the primary neuropathogenic determinant of ts1 maps to a single amino acid substitution, Val-25-Ile, in the precursor envelope protein gPr80env. Further, at the restrictive temperature, the Val-25-Ile substitution did not prevent oligomerization of the gPr80env proteins; however, the structure of the oligomer was incompetent for transport from the ER to the Golgi. These findings suggest that the cytopathic effect of ts1 in neural cells might be due to accumulation of the gPr80env oligomers in the ER. Since glial cells are targets of ts1 infection in vivo, primary astrocytic cultures were established and the cytopathic effect of ts1 and MoMuLV-TB on these cells assessed. Both viruses replicate well in astrocytes and their replication is cytopathic, albeit to different degrees. The ts1 mutant appears to produce greater cell killing than the wild-type virus. Furthermore, it was found that the rate of processing of gPr80env of ts1 in astrocytes is slower than that of MoMuLV-TB. Therefore, the inefficient transport and processing of gPr80env of ts1 appears to correlate with its cytopathic effect in these cells. Electron microscopic studies of the ts1-infected astrocytes revealed large numbers of aberrant particles in the ER. The in vitro cytopathic effect of ts1 on astrocytes may reflect what happens in vivo. An indirect mechanism of neuronal-cell killing by ts1 is proposed.

Animals

Rat ovarian granulosa cell culture: a model system for the study of cell-cell communication during multistep transformation.

A spontaneously immortalized clonal granulosa cell line (SIGC) derived from primary rat ovarian granulosa cell cultures was developed as a model system to explore the process of transformation using an epithelial cell type. SIGC has an epithelial morphology and grows in culture without undergoing luteinization. The cell line is thought to represent an intermediate step in carcinogenesis because it seems to grow indefinitely in culture but does not form clones in soft agar or tumors in nude mice. Indirect immunofluorescence and Western blot analysis verified the constitutive expression of the recessive oncogene product p53 in the cell line, thereby suggesting a possible mechanism of immortalization. Ultrastructural studies indicated that SIGC cells are characterized by an undifferentiated phenotype with prominent intermediate filaments, desmosomes, and gap junctions. The identification of cytokeratin by indirect immunofluorescence and Western blot analysis suggests that SIGC functions as an epithelial cell type. Functional studies of cell-cell communication by a dye transfer technique (fluorescence recovery after photobleaching) showed reduced communication compared to normal primary granulosa cells in culture. SIGC cells were transfected with early region genes of SV40 virus in an attempt to generate fully transformed cell lines. The resulting cell line SV-SIGC expressed T-antigen, was anchorage independent, formed tumors in nude mice, and had reduced intercellular communication as compared to SIGC cells. Explants from the tumors in nude mice were used to generate another cell line (T-SV-SIGC), which exhibited further reduction in both the incidence and the rate of communication. These results clearly demonstrated a progressive loss of functional communication during multistep transformation of an ovarian cell type. These data demonstrate that this assay system based on an epithelioid cell type can be used to study the relationship between intercellular communication and the multistep process of carcinogenesis.

Animals

A new class of potential carcinogenesis inhibitors: hindered p-benzoquinones.

The investigation of the mechanisms of action by which phenolic antioxidants (i.e. BHA, BHT, etc.) protect DNA against interaction with activated BaP, led us to the finding that oxidated aminophenols are much more potent in this respect, being also powerful inhibitors of cytochrome P-450 dependent monooxygenases. However, the quinoneimine structures probably involved in this effect are chemically unstable reactive species and therefore difficult to handle. Based on these observations, we extended this study on several types of benzoquinones. We demonstrated that 2,6-di-t-butylbenzoquinone exerted a very good protective effect at DNA level (in standard conditions) as compared to the "classical" BHA (i. e. 91.3% and 34.4%, respectively). This hindered quinone is nontoxic (DL50 = 3085 mg/kg b. w.) and also did not exhibit inhibitory activity against GST. In contrast, the nonsubstituted p-benzoquinone is a powerful inhibitor of this last enzyme. Recently, 2,6-di-t-butylbenzoquinone was isolated from mutagenic depressing food and was considered one of the factors responsible for this effect.

Animals

Moloney murine sarcoma virus 349 induces Kaposi's sarcomalike lesions in Balb/c mice.

Moloney murine sarcoma virus (MoMuSV349) is produced by MuSV349 cells in at least eight-fold excess over the replication-competent helper virus. Less than 48-hours-old Balb/c mice inoculated intraperitoneally with supernatant from MuSV349 cells containing approximately 10(4) MuSV349 infectious units developed clinical symptoms, including severe generalized wasting, 15 to 20 days after inoculation. These infected mice became moribund 35 to 45 days after inoculation. Gross examination of the bodies revealed the presence of cutaneous and subcutaneous 0.2-cm to 1.5-cm macules, plaques, or nodules located predominantly on the ventral abdomen and legs. Nodules also were found in the spleen, liver, ovaries, testes, meninges, nerves, and skin. The nodules were semisoft, cystic, or solid and some expressed variable amounts of blood. Histologic examination of the macules, plaques, and nodules showed spindlelike cells intermingled with tortous, jagged vascular channels lined by plump and normal endothelial cells and unlined slitlike spaces filled with erythrocytes. These angiomatous lesions were infiltrated extensively with neutrophils, lymphocytes, macrophages, and some plasma cells. In some cases the lesions also included foci of densely packed eosinophils. These angiomatous lesions are clearly distinguishable from the fibrosarcomas induced by the myeloproliferative sarcoma virus (MPSV), and resemble the sarcomas induced in mice by Gz-MSV and Balb MSV, the sarcomas induced in rats by MPSV and Ha-MSV, and the acute generalized form of Kaposi's sarcoma (KS) associated with acquired immune deficiency syndrome (AIDS) in humans. Electron microscopy also revealed the presence of numerous extracellular type C virions and virions budding from the plasma membrane of endothelial and spindlelike cells. Erythrophagocytosis by the endothelial and spindlelike cells was demonstrated by light and electron microscopy. The widely disseminated lesions appear to have developed simultaneously as a consequence of viremia rather than metastasis.

Animals

The role of the thymus in the pathogenesis of hind-limb paralysis induced by ts1, a mutant of Moloney murine leukemia virus-TB.

Newborn homozygous BALB/c nude (nu/nu) mice, their heterozygous (+/nu) littermates, and normal BALB/c (+/+) mice were infected with ts1, a paralytogenic mutant of Moloney murine leukemia virus-TB (MoMuLV-TB). Our results indicate that while infection of +/nu and +/+ mice with ts1 results in severe pathological changes in the central nervous system (CNS) and paralysis, infection of nu/nu mice results in only mild to moderate pathology within the CNS and no paralysis. On the other hand, 50% of nude mice reconstituted with T cells when infected with ts1 developed paralysis and showed more pronounced degeneration of nervous tissue than nude mice infected with ts1 alone. These observations strongly suggest that the thymus, the functional T lymphocytes, or both play an important role in the ts1-induced neurologic disorders in infected mice.

Animals

In vitro malignant transformation of in vivo ENU-induced rat ovarian Sertoli cell tumor (adenoma).

An N-ethyl-N-nitrosourea-induced rat ovarian Sertoli cell tumor was grown in tissue culture in Dulbecco's modified Eagle's medium (DMEM) supplemented with 25% horse serum (HS) and a hormone combination of 20 ng/ml each of hydrocortisone, insulin, and prolactin. This tissue culture derived from a nonsteroid hormone-producing tumor. Cytofluorometry and karyotyping of the nonhormone-producing tumor cell line (SCTL-1) revealed a diploid pattern for the early passage (P1), which became hyperdiploid (P10), and then aneuploid (P20). These cells had an epitheloid pattern, grew in a monolayer at early passages. After P10 the cells were transplanted into newborn rats and nude mice and resulted in high incidences of tumors (up to 100%). The cell line (SCTL-1) continued to grow in DMEM, 10% HS, and no hormone supplementation after P10. This study revealed that a benign rat ovarian Sertoli cell tumor after multiple passages in vitro underwent sequential genotypic and phenotypic changes and became highly malignant.

Adenoma

Mechanisms of cancerogenesis inhibition. II. The aminophenols and their oxidation products.

The protective effect exerted by a series of aminophenols (12 compounds) against in vitro DNA interaction with (3H)benzo(a)pyrene activated by methylcholanthrene-stimulated microsomes was determined. In agreement with theoretical calculations the inhibitory effectiveness of aminophenols was of the same order of magnitude (between 15-50% protection) as for the phenolic antioxidants. According to our previous findings, this protection is due to the inhibition of cytochrome P-450-dependent microsomal monooxygenases. However, most unexpectedly, it was also found that oxidation products of 4-aminophenol and 4-N-methylaminophenol are significantly more effective than their reduced precursors (protection greater than 95%). The structure of the inhibitory oxidation products of the aminophenols is unknown. However, indirect arguments suggest that some quinoneimines formed as reactive intermediates during the oxidation process could be responsible for this effect. A similar phenomenon was previously found for this effect. A similar phenomenon was previously found for the quinones--diphenols corresponding pairs.

Aminophenols

In vitro screening of carcinogenesis inhibitors acting by inhibition of microsomal polycyclic aromatic hydrocarbon activation.

A procedure for in vitro prescreening of carcinogenesis inhibitors acting by the inhibition of the microsomal activation systems is described. It consists of measuring the protection conferred by the investigated chemicals against DNA binding of ultimate carcinogens resulted during G(3H)B[a]P activation. This rapid and reproducible procedure is able to select only carcinogenesis inhibitors which interact with the cytochrome P-450 dependent microsomal enzymes being specific in this respect. The effectiveness of 23 compounds (mainly antioxidants) was tested and the results compared with literary data concerning their activity. The concordance was satisfactory.

Animals

Testicular (Sertoli's cell)-like tumors of the ovary induced by N-ethyl-N-nitrosourea (ENU) in rats.

N-ethyl-N-nitrosourea (ENU) administered intraperitoneally or transplacentally to Sprague-Dawley (CD) and BD-IV (Berlin Druckrey IV) rats increased the incidence (26.6%) of an uncommon ovarian tumor with testicular characteristics compared either to controls (3.0%) or rats administered diethylnitrosamine (3.3%). The induced tumors were composed of tubular structures that resembled seminiferous tubules lined by Sertoli's-like cells. The abundant electron-lucent cytoplasm of the tumor cells contained polyribosomes, lipid bodies, and mitochondria but few additional organelles. Sertoli's cell-like tumors appeared to develop from the ovarian stroma in the hilar region of the ovary. They usually were benign and resulted in unilateral enlargement of the ovary. The mean serum concentrations of testosterone, estrone, and estradiol in selected rats with ovarian tumors were elevated above mean serum values in controls. There was not a consistent direct correlation between tumor diameter and circulating hormone level. Ethyl nitrosourea-induced ovarian tumors composed of testicular (Sertoli's-like) cells will provide a reproducible animal model to investigate the histogenesis and hormone secreting properties of this unique gonadal neoplasm.

Animals

Diverse spectrum of tumors in male Sprague-Dawley rats following single high doses of N-ethyl-N-nitrosourea (ENU).

In this study, 30-day-old male Sprague-Dawley rats, were inoculated intraperitoneally with a single dose of 45, 90, and 180 mg/kg of N-ethyl-N-Nitrosourea (ENU). A wide spectrum of neoplasms occurred. The most common tumors were those of the mammary gland and of the nervous system. Although the incidence of mammary tumors was highest in the two high-dose groups (90 and 180 mg/kg ENU), the incidence of neurogenic tumors was highest in the 45 mg/kg dose group. Mammary tumor development led to early death and precluded development of tumors of the nervous system, which require a longer latency period. A variety of neoplasms of other organs have been associated particularly with high doses of ENU, including ameloblastic tumors, carcinomas of the thyroid, prostate, kidney, pancreas, intestine, and lung, hemilymphatic tumors, and sarcomas. It is concluded that large doses of ENU are capable of expanding the tumor spectrum in young male rats beyond the target organs generally affected with lower doses, as described in earlier reports.

Animals