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A Fuks

Publications and source records attributed to A Fuks.

At least 37 records · Page 2Linked to original sources

Polygenic nature of spontaneous diabetes in the rat. Permissive MHC haplotype and presence of the lymphopenic trait of the BB rat are not sufficient to produce susceptibility.

We describe the phenotypic characteristics of animals in the fifth backcross-intercross generation of a breeding program in which the RT1 u haplotype and the phenotypic trait responsible for the T-lymphopenia of BB rats have been transferred to the ACI background. In this generation of animals, 24% were lymphopenic with decreased numbers of PBL expressing CD5, TCR alpha, and RT6. The PBL of the lymphopenic animals had a decreased mitogenic response to ConA. All of the nonlymphopenic animals were homozygous for RT6.2. Phenotypic analysis of intestinal IEL revealed that this was also the case for the lymphopenic animals. Moreover, IEL of the lymphopenic animals exhibited a pattern of staining (increased numbers of TCR alpha beta+CD4+CD8+ and decreased numbers of TCR alpha beta+CD4-CD8+) similar to that of BB DP animals. The ACI.1U(BB)-lymphopenic animals, although having two of the genetic traits associated with the expression of spontaneous diabetes mellitus, uniformly fail to develop diabetes. Breeding studies in which these animals were crossed with BB and hBB rats suggest that other genes are necessary for development of overt diabetes.

Animals↗

Marginal leakage around V-shaped cavities restored with glass-ionomer cements: an in vitro study.

The object of this investigation was to assess the degree of marginal leakage around V-shaped cervical glass-ionomer cement restorations and compare it to that around composite resin restorations. Three different glass-ionomer cements and one composite resin control were assessed by means of dye penetration. Severe microleakage at the occlusal margins was found in 70% of the glass-ionomer cement restorations, but in only 10% of the composite resin restorations. A considerable amount of dye penetration was observed at the cervical margins of all restorations, including the controls. None of the glass-ionomer cements tested showed superiority in preventing marginal leakage occlusally or gingivally.

Bicuspid↗

A single dose of the MHC-linked susceptibility determinant associated with the RT1u haplotype is permissive for insulin-dependent diabetes mellitus in the BB rat.

Syndromes of insulin-dependent diabetes mellitus (IDDM) have been described in the mouse, in the rat and in man. In all three species, the presence of one or more specific alleles of the major histocompatibility complex is a prerequisite for the appearance of the disease. In the BB rat, diabetes is associated with the RT1u haplotype. We have performed a series of intercrosses of diabetic BB rats with normal Lewis and Buffalo rats and examined the offspring of all litters producing at least one diabetic animal. Forty-five of the 250 rats that developed diabetes were heterozygous for the RT1u haplotype by serotyping. Furthermore, the diabetic rats heterozygous by serotyping at the RT1A class I loci were also heterozygous at the RT1B and RT1D loci of the class II region and did not show evidence of a recombinant haplotype when examined by Southern blot analyses using molecular probes for class I and class II genes. Diabetic rats heterozygous or homozygous for RT1u were phenotypically indistinguishable with respect to age of onset and severity of disease. Therefore, in the rat, as in the human, a single dose of the high-risk allele at the major histocompatibility complex is sufficient for the development of IDDM if other susceptibility factors and the appropriate environmental factors are in place.

Animals↗

Specificity of intercellular adhesion mediated by various members of the immunoglobulin supergene family.

The immunoglobulin supergene family members have been shown to be involved in cell-cell recognition and interaction during cell growth and differentiation. Neural cell adhesion molecule, myelin-associated glycoprotein, and carcinoembryonic antigen (CEA) are immunoglobulin supergene family members which can mediate cell adhesion. We show here that nonspecific cross-reacting antigen (NCA), a closely related CEA family member, is found on the surface of rodent cells transfected with functional NCA complementary DNA in different glycosylated forms, all of which can be deglycosylated to an Mr 35,000 core protein. Furthermore, NCA can mediate Ca2(+)-independent, homotypic aggregation of these NCA-producing transfectant cells. Since CEA has three internal repeated C2-set, immunoglobulin-like domains, whereas NCA has one, only one such domain is required for the intercellular adhesive function. We also demonstrate that NCA- and CEA-producing transfectants can form heterotypic aggregates, whereas mixtures of CEA or NCA transfectants and neural cell adhesion molecule or long form-myelin-associated glycoprotein transfectants sort themselves out into homotypic aggregates. The results suggest that subsets of the immunoglobulin superfamily, such as the CEA family, can be used in both homotypic and heterotypic cellular interactions, whereas less closely related members of the family can be used to separate different cell types by strictly homotypic interactions.

Animals↗

Biliary glycoprotein, a member of the immunoglobulin supergene family, functions in vitro as a Ca2(+)-dependent intercellular adhesion molecule.

Intercellular adhesion molecules can be classified as Ca2+ dependent or Ca2+ independent. This classification has significant functional implications regarding cellular interactions. The best characterized Ca2(+)-dependent adhesion molecules, such as L-CAM or E-cadherin, belong to the family of closely related cell surface molecules called cadherins. On the other hand, those immunoglobulin supergene family members which function as adhesion molecules, such as neural cell adhesion molecule, have been found to be Ca2+ independent. In agreement with this generalization, we have recently shown that carcinoembryonic antigen (CEA) and nonspecific cross-reacting antigen (NCA), two closely related members of the CEA family, a subset of the immunoglobulin supergene family, function in vitro as Ca2(+)-independent adhesion molecules. In contrast, we show here that transfectants of a third member of the CEA family, biliary glycoprotein (BGP), also aggregate homotypically in suspension but require Ca2+ for aggregation. In addition, like the cadherins and unlike CEA or NCA or other adhesion molecules of the immunoglobulin supergene family, BGP transfectant aggregation requires physiological temperatures. Two forms of BGP, with three and two immunoglobulin C2-set domains, show Ca2(+)- and temperature-dependent adhesion, so that these properties do not reside in the third C2-set domain. The significance of this expression in the range of functional properties of the immunoglobulin supergene family and its CEA subset is discussed.

Antigens, CD↗

Monoclonal anti-CEA antibodies in the discrimination between primary pulmonary adenocarcinoma and colon carcinoma metastatic to the lung.

Lung metastases from colon adenocarcinoma are often difficult to differentiate from primary lung adenocarcinoma. We studied the diagnostic value of a polyclonal anti-CEA antiserum and two monoclonal anti-CEA antibodies (B18, D14) which define antigens overexpressed in colon carcinoma. Autopsy material from 20 patients with colon carcinoma and lung metastases and 20 specimens from patients with primary lung adenocarcinoma were retrieved, stained, and interpreted without knowledge of the origin of the lung tumor. Colon carcinomas, lung metastases and lung primaries stained positively with polyclonal anti-CEA in 90-100% of cases. D14 stained 75% of colonic metastases and 70% of primary lung adenocarcinomas, whereas 95% of colon primaries were positive. Sixty-five percent of colon primaries and 50% of their metastases were positive with B18, whereas 45% of lung primaries were positive. The frequency of B18 positivity was significantly greater in those colon primaries that were surgically derived (7/9, 78%) compared with their autopsy-derived lung metastases (2/9, 22%) (P less than 0.05). Similarly, D14 staining in surgically derived colon primaries (9/9, 100%) was significantly greater than their autopsy-derived lung metastases (5/9, 56%) (P less than 0.05). In surgical/biopsy-derived tissues 9/9 colonic primaries were D14-positive, whereas only 1 of 6 lung primaries was positive (P = 0.002). We conclude that D14 and polyclonal anti-CEA both stain the majority of colon adenocarcinomas and that changes associated with prolonged fixation may reduce the positivity rate with both B18 and D14 monoclonal antibodies. All three antibodies stain autopsy-derived tissue from primary lung cancer to a significant degree.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma↗

Carcinoembryonic antigen, a human tumor marker, functions as an intercellular adhesion molecule.

Carcinoembryonic antigen (CEA) is a member of a family of cell surface glycoproteins that are produced in excess in essentially all human colon carcinomas and in a high proportion of carcinomas at many other sites. The function of this widely used tumor marker and its relevance to malignant transformation is therefore of considerable interest. We demonstrate here that CEA mediates Ca2+-independent, homotypic aggregation of cultured human colon adenocarcinoma cells (LS-180) and rodent cells transfected with functional CEA cDNA. Furthermore, CEA can effect the homotypic sorting of cells in heterogeneous populations of aggregating cells. CEA can thus be considered a new addition to the family of intercellular adhesion molecules. We also show that, whereas CEA is localized mainly to epithelial cell membranes facing the lumen in normal adult intestine, it is found on adjacent cell membranes in both embryonic intestine and colonic tumors. A model for the role of CEA in the tissue architecture of adult, embryonic, and aberrant tumor intestinal epithelium is presented.

Biomarkers, Tumor↗

A mouse analogue of the human carcinoembryonic antigen.

Functional human carcinoembryonic antigen (CEA)-like genes have been shown to be present in the mouse. Southern analyses of murine DNA using both human and murine CEA complementary DNA probes have revealed the presence of multiple CEA-like genes, while analyses of RNA from different mouse tissues showed CEA-like transcripts in adult colon and liver. Furthermore, a CEA-like protein, immunoprecipitable with a rabbit polyclonal serum raised against human CEA, has been detected in adult murine colon tissue. Several murine CEA complementary DNA clones have been isolated from a murine colon complementary DNA library, and characterization of one such clone demonstrates that both the N-terminal and the internal domains have been conserved between the two species. The existence of a murine counterpart of CEA strengthens the case for an essential function for this human tumor marker and provides an experimentally amenable system for elucidation of its biological properties.

Animals↗

Studies on the control of gene expression of the carcinoembryonic antigen family in human tissue.

The control of expression of genes of the carcinoembryonic antigen family was investigated in 22 specimens of malignant and nonmalignant human colonic tissues. These surgical specimens included seven colonic adenocarcinomas that were compared with normal adjacent colonic mucosal tissues from the same individual. mRNA preparations from all colonic tissues expressed three bands of 3.5, 3.0, and 2.6 kilobases on Northern blots probed with carcinoembryonic antigen (CEA) complementary DNA probe while normal liver and spleen were negative. The major band of 3.0 kilobases was 6 to 10 times more intense in the colon tumor specimens than in the matched normal mucosa. However, the tumor/normal ratios of immunoreactive CEA in these pairs varied from 2- to greater than 100-fold. Furthermore, there was no direct proportionality between mRNA levels and gene product expression, suggesting that the known variations in CEA expression in human colonic tissues result from both transcriptional and posttranscriptional control mechanisms. Southern blots of DNA from these specimens did not reveal any gene rearrangements or amplifications accompanying expression. Finally, Southern blots of DNA digested with methylation-sensitive endonucleases and probed with a genomic DNA fragment upstream of CEA gene coding regions demonstrated that CEA expression is correlated with a decreased level of methylation in the 5' region of the CEA gene.

Adenocarcinoma↗

Interferon-gamma induces transcription and differential expression of MHC genes in rat insulinoma cell line RINm5F.

We have reported that enhanced levels of class I major histocompatibility complex (MHC) antigen are expressed throughout the islets of prediabetic and newly diabetic BB rats and that the endocrine cells of the islet remained class II negative. In this study we investigated the molecular biology of lymphokine-induced expression of the class I and II MHC genes in subclones of the rat insulinoma cell line RINm5F. Treatment of a particular subclone of RINm5F cells (which are normally class II negative, class I low expressors) with crude lymphokine preparation or various doses of recombinant interferon-gamma resulted in enhancement of MHC class I antigen expression but no detectable induction of class II antigen expression. This enhancement of class I antigen expression was a dose-dependent phenomenon and was preceded by a dose-dependent increase in class I-specific RNA. Both class I and II genes were induced at the transcriptional level, as determined by Northern blotting and in vitro nuclear transcription assays, but exhibited strikingly different induction kinetics. Supernatants from concanavalin A-stimulated splenocytes had a similar class I-restricted inductive effect on MHC gene expression. This subclone of RINm5F cells, which exhibits a class I lymphokine response-positive, class II response-negative phenotype, 1) mimics the behavior of beta-cells in the prediabetic and newly diabetic pancreas and 2) represents a valuable system for probing the similarities and differences in the lymphokine-mediated induction pathways for class I and II MHC genes.

Adenoma, Islet Cell↗

Susceptibility and resistance genes to insulin-dependent diabetes mellitus in the BB rat.

Insulin-dependent diabetes mellitus (IDDM, type I) is an autoimmune disorder exhibiting a strong association with particular haplotypes of the major histocompatibility complex (MHC). We have previously shown that the u haplotype of the rat MHC (RT1) is absolutely required for expression of IDDM in the BB rat model of the disease. To define the precise regions of the RT1 contributing to disease occurrence and to address the mechanism by which the associated haplotype participates in disease pathogenesis, we have transferred recombinant haplotypes bearing the IDDM-associated MHC in defined regions onto the BB rat genetic background. In this report, we present data from two breeding studies utilizing the r8 haplotype (RT1AaBuDuEuCu) that demonstrate that (1) the RT1A locus is not involved in the disease association, (2) the MHC genes determining disease susceptibility are not unique to the BB rat, and (3) IDDM resistance genes are found outside the MHC. We also present evidence that the immunoregulatory defect characteristic of BB rats enhances the incidence of IDDM although it is not absolutely required for disease expression. We were able to track the transmission of the recombinant haplotypes in diabetic progeny using a combination of monospecific alloantisera and restriction fragment length polymorphism analysis using locus-specific MHC gene probes.

Animals↗

A clinical, radiographic, and SEM evaluation of Class 2 composite restorations in primary teeth.

Sixty class 2 composite resin restorations were placed in 22 children and evaluated at baseline, six months, and one year. Radiographs were used for evaluation, in addition to clinical examinations, photographs, and scanning electron micrographs of epoxy resin casts of retrieved teeth. It was concluded that radiographs are necessary to detect a large percentage of failures at the gingival margins of class 2 composites.

Child↗

Immunologic and genetic studies of diabetes in the BB rat.

The spontaneous development of diabetes in the Bio-Breeding (BB) rat is an excellent model of human insulin-dependent diabetes mellitus (IDDM). Disease expression is dependent on several genetically determined abnormalities, including specific major histocompatibility complex (MHC) genes. At least one MHC class II locus of the U haplotype is a necessary, but not sufficient, condition for disease expression. The immune system of BB rats is markedly abnormal. There is a striking reduction in the number and function of mature cytotoxic/suppressor T cells, a poor proliferative response to mitogens and in mixed lymphocyte culture, poor interleukin-2 production, and a reduced ability to reject skin allografts. While these immune system abnormalities are closely related to the development of diabetes, the immune recognition and effector mechanisms resulting in islet cell destruction are still poorly understood. The hypothesis that MHC class II induction on pancreatic beta cells serves to target these lymphokines, natural killer (NK) cells, macrophages, etc.) have been implicated in islet cell killing. The incidence of IDDM is reduced by immunosuppressive therapy in both rats and humans, further supporting the role of immune mechanisms in this disease.

Animals↗

Transcription of genes of the carcinoembryonic antigen family in malignant and nonmalignant human tissues.

Normal and diseased human tissues were analyzed for the transcription of genes of the carcinoembryonic (CEA) family. Epithelial tissues of colonic origin, whether malignant or normal, all express two closely related mRNA species of 3.0- and 3.5-kilobase mRNA which code for CEA. Only tissues of colonic origin were found to express these CEA-specific transcripts. Colon carcinomas consistently express a 2.6-kilobase mRNA species as well which codes for nonspecific cross-reacting antigen. Nonneoplastic colon mucosas, on the other hand, express lower or nondetectable levels of this transcript. Most breast carcinomas produce only the nonspecific cross-reacting antigen mRNA, whereas leukocytes of chronic myelogeneous leukemia express both nonspecific cross-reacting antigen mRNA and a 2.3-kilobase mRNA corresponding to a yet undefined gene of the CEA family. Thus the multiple CEA-like products reported to be produced by these tissues correspond to only four different mRNA species coding for three different peptides. These data suggest a less complex organization of the CEA family than was previously suspected and point to posttranscriptional modifications, such as variable patterns of glycosylation, as the likely reason for much of the observed complexity in CEA-like glycoproteins.

Carcinoembryonic Antigen↗