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J Fabricant

Publications and source records attributed to J Fabricant.

At least 19 recordsLinked to original sources

Atherosclerosis induced by infection with Marek's disease herpesvirus in chickens.

BACKGROUND: This research was suggested after crystals that we observed in herpesvirus-infected cell cultures were identified as cholesterol. Other reports and the development of defined reagents led us to select the use of Marek's disease herpesvirus (MDV) infection of chickens to demonstrate a potential role of herpesviruses in the pathogenesis of atherosclerosis. Available for our use were a clone-purified strain of MDV of known virulence, genetically selected, specific pathogen-free chickens, and appropriate isolation facilities to design controlled experiments to fulfill Koch's postulates. METHODS AND RESULTS: Experiments were performed to test the roles of both MDV and dietary cholesterol in atherosclerosis. The birds were examined 7 months after MDV infection with and without cholesterol feeding for gross and microscopic arterial lesions. Atherosclerotic lesions were found only in infected normocholesterolemic or hypercholesterolemic birds. The character and distribution of these lesions closely resembled those found in the chronic human arterial disease. Atherosclerotic lesions were not found in uninfected birds even if the birds were hypercholesterolemic. CONCLUSIONS: Evidence was obtained from other experiments that after MDV infection, cholesterol and cholesteryl esters accumulated in cell cultures and in atherosclerotic lesions. These changes were associated with altered enzymatic activity of the cholesterol synthesis cycle. Immunization with turkey herpesvirus vaccine or SB-1 vaccine prevented atherosclerotic lesions.

Animals↗

Stereotactic heavy-particle irradiation of intracranial arteriovenous malformations.

Stereotactic irradiation appears to be effective in causing partial or complete thrombosis of AVM that are not surgically resectable. Use of heavy particles generated in a cyclotron allows better spatial definition and dose distribution than do other methods, allowing larger AVM to be treated. From these preliminary results, it is evident that heavy-particle irradiation therapy, like proton beam therapy, does not offer protection from recurrent hemorrhage for at least 12 months, nor is it devoid of major complications; it does offer a noninvasive mode of therapy for AVM that are difficult to treat surgically, however.

Adolescent↗

Virus-induced atherosclerosis. Herpesvirus infection alters aortic cholesterol metabolism and accumulation.

Infection of normocholesterolemic, specific-pathogen-free chickens with Marek's disease herpesvirus (MDV) has been shown histologically to lead to chronic atherosclerosis like that in humans. The development of herpesvirus-induced atherosclerosis in vivo and the presence of specific Marek's antigen within aortic cells suggested that MDV infection may modify lipid metabolism and lead to significant lipid accumulation. Experiments reported herein were designed to determine the types and quantity of lipid present in aortas from MDV-infected and uninfected chickens between 2 and 8 months of age following infection and assess one possible mechanism of lipid accumulation by evaluating the effect of MDV infection on aortic cholesterol and cholesteryl ester (CE) metabolism. Chromatographic-fluorometric analyses indicated that at 4 and 8 months of age after MDV inoculation, MDV-infected animals had a significant (P less than 0.05) two-fold to threefold increase in total aortic lipid accumulation characterized by significant increases in cholesterol, CE, triacylglycerol, and phospholipid as compared with aortas from uninfected animals. At 8 months of age, similar increases in aortic lipid accumulation were observed in MDV-infected animals as compared with those animals vaccinated with turkey herpesvirus and later challenged with MDV. CE synthetic activity was increased significantly by 50% at 4 months of age in the MDV-infected group as compared with the uninfected group, which could explain the initial increase in CE accumulation. By 8 months of age, the authors also observed a twofold increase in CE synthetic activity and a 30% and 80% reduction in lysosomal and cytoplasmic CE hydrolytic activities, respectively, in aortas of MDV-infected chickens as compared to controls. Moreover, infection with MDV blocked the activation of cytoplasmic CE hydrolytic activity by dibutyryl cyclic AMP or exogenous cyclic AMP-dependent protein kinase. Taken together, these results suggest that lipid accretion in aortas of MDV-infected chickens results, in part, from alterations in cholesterol/CE metabolism during early stages of the disease. These findings support the hypothesis that human atherosclerosis may result from specific herpesvirus infection which can alter lipid metabolism and lead to lipid accretion.

Animals↗

Altered cholesteryl ester cycle is associated with lipid accumulation in herpesvirus-infected arterial smooth muscle cells.

We describe herein the effects of Marek's disease herpesvirus (MDV) on cholesterol and cholesteryl ester metabolism in cultured chicken arterial smooth muscle cells. Infection of arterial smooth muscle cells from specific pathogen-free chickens with MDV, but not a virus control, herpesvirus of turkeys led to a 7-10-fold increase in the accumulation of free and esterified cholesterol and a 2-fold increase in phospholipids. The cellular lipid changes observed in the MDV-infected arterial smooth muscle cells resulted, in part, from the following: decreased low-density lipoprotein-cholesteryl ester hydrolysis due to decreased lysosomal (acid) cholesteryl ester hydrolytic activity; increased de novo synthesis of cholesterol; decreased excretion of free cholesterol; and, both increased cholesteryl ester synthetic activity and decreased cytoplasmic (neutral) cholesteryl ester hydrolytic activity which resulted in increased incorporation of oleic acid into cholesteryl ester. Other changes noted in the MDV-infected cells as compared to uninfected cells included a 2-fold increase in both total protein synthesis and lysosomal and microsomal marker enzyme activities. These alterations in lipid and protein metabolism in MDV-infected arterial smooth muscle cells may explain in part our in vivo findings that herpesvirus (MDV) infection of specific pathogen-free chickens fed a normocholesterolemic diet will induce arterial thickening and lipid accumulation resembling human atherosclerosis.

Animals↗

Current status of bioassays in genetic toxicology--the dominant lethal assay. A report of the U.S. Environmental Protection Agency Gene-Tox Program.

The term dominant lethal may be defined as death of the heterozygote arising through multiple chromosomal breaks. The assay is generally conducted by treating male animals, usually mice or rats, acutely (1 dose), subacutely (5 doses), or over the entire period of spermatogenesis. Animals treated acutely or subacutely are mated at weekly intervals to females for a sufficient number of weeks to cover the period of spermatogenesis. Those treated for the entire spermatogenic cycle are mated for 1 or 2 successive weeks at the termination of treatment. Females usually are killed at 14 days of pregnancy and examined for the number of total implantations in the uterus, the number of implantations classified as early deaths, and, in some cases, the number of corpora lutea. The category of early death is the most significant index of dominant lethality. A total of 249 papers were reviewed and 140 chemicals were evaluated. Of the 140 chemicals, 65 were positive by the criteria used by the Work Group in evaluating each publication. The category of "positive" includes those responses of a borderline nature. 99 chemicals were declared negative. There is considerable overlap of chemicals in both categories, which accounts for the incongruity in the total number of chemicals tested and the number considered positive and negative. A total of 44 animal carcinogens have been tested in the dominant lethal assay, 26 of which were positive and 18 negative for a correlation of 59%. The role of the assay should be that of confirming positive results from lower tier chromosomal aberration-detecting systems (confirming in the sense of indicating the ability of the chemical to penetrate gonadal tissue and to produce cytogenetic damage). The dominant lethal assay should not be used as a risk assessment method.

Animals↗

Avian diseases.

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Animals↗

Herpesvirus-induced atherosclerosis in chickens.

Repeated experiments have established that infection with Marek's disease herpesvirus (MDV) leads to atherosclerosis in specific pathogen free (SPF) normocholesterolemic chickens. Neither normocholesterolemic nor hypercholesterolemic uninfected SPF chickens develop this disease. The MDV-induced arterial disease is remarkably similar to chronic human atherosclerosis. Cholesterol and saturated cholesteryl esters accumulated in cultured arterial smooth muscle cells (SMC) infected with MDV. Similar preliminary observations were made in vivo. These findings suggest that MDV-induced alteration of SMC lipid metabolism is of major importance in the pathogenesis of MDV-induced atherosclerosis. In addition, immunization with turkey herpesvirus, used commercially to prevent MDV-induced tumors in chickens, also protected against MDV-induced atherosclerosis. This animal model has introduced important new dimensions and tools in atherosclerosis research: a defined etiologic agent (MDV) that causes atherosclerosis in a defined animal of known genetic susceptibility to the etiologic agent. With these tools, important mechanisms in the pathogenesis of atherosclerosis may be established in a relatively short period of time. Further, this animal model should be considered important in other models of atherosclerosis research because herpesvirus infections are ubiquitous in these animals. Finally, because humans are widely and persistently infected with up to five herpesviruses, these studies may lead to the understanding and eventual control of human atherosclerosis.

Animals↗

Influence of the bursa of Fabricius on the pathogenesis of Marek's disease.

A series of experiments was conducted to study the influence of embryonal bursectomy (EBX) on the early and late pathogenesis of Marek's disease (MD). The early lytic infection in the lymphoid organs normally associated with oncogenic MD virus infection in intact chickens was not seen in EBX chickens. Therefore, the damage to the immune system was minimal. EBX chickens also had lower viremia levels, higher lymphocyte responses to mitogens, and a lower or delayed MD mortality when compared with intact chickens. Furthermore, it was shown that although vaccination with SB-1 by itself did not protect against a highly virulent MD transplantable tumor, the combination of EBX and vaccination gave significant protection. All these effects could be explained by an enhanced immune response in EBX birds. In contrast, the pathogenesis of nononcogenic MD virus was not influenced by EBX. The possible mechanism(s) involved in these observed effects of EBX on MD pathogenesis are discussed.

Animals↗

Influence of oncogenicity of Marek' disease virus on evaluation of genetic resistance.

Resistance to Marek's disease ( MD) is, in part, genetically determined and linked to the major histocompatability complex. The genetic resistance of 9 previously characterized lines of chickens and also of the inbred UCD-003 and 4 congenic lines was evaluated by challenge with JM-10. Five lines were highly resistant. These included the N-line and two derivatives from N-line (N-2 and N-5), PDRC strain, and one of the congenic UCD lines. The PDRC genotype is unknown, but the 3 related lines carry the B21 allele and the UCD line carries the BQ allele, which appears to be similar to B21. The UCD-003 and the other 3 congenic lines were moderately resistant while S-strain, P-2 and P-5 lines were highly susceptible to JM-10. The total MD incidence varied from 0 to 100% among the lines. Challenge with highly oncogenic virus isolates like GA-5, and especially the recently isolated RB-1B, caused high incidences of MD in all lines and, thus, did not permit differentiation of genetic resistance levels as was possible with the less oncogenic JM-10.

Animals↗

Herpesvirus infection enhances cholesterol and cholesteryl ester accumulation in cultured arterial smooth muscle cells.

In our previous experiments, atherosclerosis similar to that in humans was reproducibly induced in both normocholesterolemic and hypercholesterolemic specific-pathogen-free (SPF) chickens by infection with Marek's disease herpesvirus (MDV). In contrast, uninfected chickens fed either relatively cholesterol-poor or cholesterol-supplemented diets did not develop this arterial disease. In experiments reported here, the hypothesis that infection of arterial smooth muscle cells (SMCs) with MDV would enhance lipid accumulation in these cells was tested. The number of MDV-infected SMCs with lipid stained with oil red O was assessed, and the lipid content of these cells was quantitated chemically by chromatographic and fluorometric analyses. These data were compared to those of uninfected control cells and, in the case of chemical analyses, were also compared to SMCs infected with a second avian herpesvirus, turkey herpesvirus (HVT). Results indicate the following: 1) The percentage of MDV-infected SMCs containing stainable lipid was significantly greater than the percentage of uninfected SMCs; 2) Increased total lipid accumulation was observed in MDV-infected SMC, particularly cholesterol (CH) and cholesteryl esters (CEs), as compared with uninfected or HVT-infected cells; 3) The types of CEs and nonesterified fatty acids (NEFA) accumulating in MDV-infected cells (particularly saturated types of CEs and NEFAs) were significantly different than those in uninfected or HVT-infected SMCs. These qualitative and quantitative differences in lipid content between infected and uninfected SMCs suggest that infection with MDV results in altered intracellular lipid metabolism. Results support the hypothesis that lipid accumulation in arteries of normocholesterolemic chickens may result from MDV infection acting at the cellular level to induce lipid accumulation that resembles that in human atheroarteriosclerosis.

Animals↗

Comparative pathogenesis studies with oncogenic and nononcogenic Marek's disease viruses and turkey herpesvirus.

An apparently nononcogenic Marek's disease virus (SB-1) and turkey herpesvirus could be readily isolated from spleen, bursa of Fabricius, thymus, and peripheral blood lymphocytes of chickens beginning 4 to 6 days after inoculation, but unlike infections with two isolates of oncogenic Marek's disease virus (JM-10 and CU-2), virus replication in these cells was rare, and necrosis in the organs was essentially absent. Splenic enlargement was observed regularly during the first 4 to 11 days after inoculation, and Marek's disease tumor-associated surface antigen was observed on splenic and other lymphocytes in the four viral inoculation groups. Cellular cytotoxicity of splenic lymphocytes was demonstrated in vitro with cultured Marek's disease tumor cells (MSB-1 lymphoblastoid cell line) as the target in a chromium-release assay. The four viral infections induced sensitized lymphocytes.

Animals↗

Atheroarteriosclerosis induced by infection with a herpesvirus.

Atheroarteriosclerosis closely resembling that in humans was induced in normocholesterolemic and hypercholesterolemic chickens by infection with Marek's disease herpesvirus (MDV). Four comparably sized groups of chickens were used. Each group was initially fed a diet relatively poor in cholesterol. Group I and II were inoculated intratracheally at 2 days of age with MDV. At 15 weeks, one group of virus-infected chickens (Group II) and one group of uninfected controls (Group IV) were fed a 2% cholesterol supplement for an additional 15 weeks. Group I, infected, and III, uninfected, were continued on a cholesterol-poor diet. All groups were killed at 30 weeks. Striking grossly visible atherosclerotic lesions were seen in large coronary arteries, aortas, and major aortic branches of both Groups I and II but not in those of Groups III and IV. Microscopically, arterial changes in infected animals were characterized by occlusive fibromuscular intimal thickening, which formed fibrous caps overlying areas of atheromatous change. This change closely resembled chronic atherosclerosis in humans. These results may be important to our understanding of human arteriosclerosis, since there is widespread and persistent infection of human populations with as many as five herpesviruses.

Animals↗

Virus-induced atherosclerosis.

Of four groups of chickens, two (groups I and II) were infected with MDV and two were not (groups III and IV). Groups I and III were fed diets low in lipid, and groups II and IV were fed cholesterol-supplemented diets. Striking grossly visible atherosclerotic lesions were seen in large coronary arteries, aortas, and major aortic branches of infected normocholesterolemic and hypercholesterolemic chickens (groups I and II). In contrast, grossly visible atherosclerotic lesions were not seen in uninfected normocholesterolemic chickens (group III), nor in uninfected hypercholesterolemic chickens (group IV). Microscopically, arterial changes in the infected animals were characterized by occlusive fibromuscular intimal thickening which formed fibrous caps overlying areas of atheromatous change. This change closely resembled chronic atherosclerosis in man. These results may have important bearing on our understanding of the etiology and pathogenesis of human arteriosclerosis since there is widespread and persistent infection of human populations with up to five different herpes-viruses.

Animals↗

Comparative effects of host and viral factors on early pathogenesis of Marek's disease.

A series of experiments on the early pathogenesis of Marek's disease was conducted according to a uniform scheme. In each experiment, there was a single variable-age, genetic strain, or virus strain. Virus assays from spleen, buffy coat, and bone marrow, and fluorescent antibody tests on spleen, bursa of Fabricius, and thymus were conducted on five birds per group daily from the 3rd through the 10th day postinoculation. From these data, it was apparent that the response could be divided into two periods: 4 to 6 days = early; 8 to 10 days = late. Serological tests showed all groups except the 1-day-old group to have neutralizing antibody by the end of the 10-day period. With few exceptions, none of the variables tested exerted any appreciable influence on the level of virus growth in spleen, bursa, or thymus during the early period. High levels of infection occurred in all birds during that period. Changes in infection pattern which occurred during the late period were significant and could be correlated with occurrence of Marek's disease in test samples of birds held until 7 weeks after infection. Infectivity levels dropped appreciably in the case of resistant N-line birds given JM virus, and, during the late period, infection levels were significantly higher in GA-infected birds than in those given viruses of lower virulence. Whereas the virus titers during the 8- to 10-day period usually reflected the eventual clinical pattern of Marek's disease, the levels of viral antigen (fluorescent antibody tests) were much less consistent. One further experiment conducted by the same uniform scheme demonstrated no significant effects on early pathogenesis or course of Marek's disease in birds given continuous oral medication with amino-ureido-sulfone.

Aging↗

A rheumatoid-like arthritis in calves.

Arthritis characterized by lameness. Joint swelling and purulent synovial fluid was seen in a group of dairy replacement heifers. Mycoplasma was cultured from one joint aspirate, but all bacterial cultures were negative. Antiglobulins were demonstrated by double diffusion precipitin tests in the serum and synovial fluid. Due to the clinical and clinical pathological similarities to rheumatoid arthritis in man, the disease was called rheumatoid-like arthritis. The presence of antiglobulin may indicate antibody in the synovial fluid explaining the difficulty in culturing a causative agent.

Animals↗