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Biomedical subjects

A F De Goeij

Publications and source records attributed to A F De Goeij.

17 recordsLinked to original sources

APC mutations in human colorectal adenomas: analysis of the mutation cluster region with temperature gradient gel electrophoresis and clinicopathological features.

To date, the earliest mutations in colorectal adenomas have been found in the adenomatous polyposis coli (APC) gene, considered the 'gatekeeper' in tumourigenesis. To study the types of APC gene mutations and their relation to clinicopathological features which are associated with malignant potential, the mutation cluster region of the APC gene was analysed in a series of 32 human sporadic colorectal adenomas from 22 patients. DNA was extracted from frozen sections and two overlapping fragments which cover the mutation cluster region were amplified using the polymerase chain reaction (PCR). Mutations were screened with temperature gradient gel electrophoresis and identified by DNA sequencing. Mutations were found in 14 samples (44 per cent) from 11 patients. The changes could be characterized as point mutations (n = 7), deletions of one or more nucleotides (n = 6), and insertions (n = 1). From five patients, multiple adenoma samples were obtained and the adenomas from two of these patients showed a heterogeneous mutation pattern in the APC gene. All detected mutations are predicted to result in a truncated APC protein. Genetic alterations in the mutation cluster region of the APC gene occurred significantly more frequently in large adenomas and showed a trend towards an increase in villous adenomas and adenomas with moderate and severe dysplasia. It is concluded that an increased proportion of APC gene mutations were found in the adenomas showing clinicopathological features associated with increased proliferation but not with characteristics of malignant potential. The results suggest that in a significant proportion of adenomas, other (genetic) alterations are involved in early tumourigenesis.

Adenoma↗

Development of oxygen insensitivity of the quantitative histochemical assay of G6PDH activity during colorectal carcinogenesis.

The effects of oxygen on the quantitative histochemical assay to detect glucose-6-phosphate dehydrogenase (G6PDH) activity based on neotetrazolium reduction were studied in the different stages of carcinogenesis in the colon. Normal and hyperplastic epithelium, mucosae of patients with active Crohn's disease, and adenomas and adenocarcinomas of the colon were used. Epithelium of normal and inflamed mucosa, and hyperplastic epithelium, showed a residual G6PDH activity (RA) in oxygen that was always less than 20 per cent of the activity in the absence of oxygen. In adenomas and in dysplastic epithelia adjacent to carcinomas, the RA was significantly higher than that in normal epithelium, but significantly lower than that in adenocarcinomas. The RA of adenomas never exceeded 35 per cent. The RA of adenocarcinomas was on average 53 per cent and always higher than 20 per cent. When 35 per cent was used as a cut-off level, the sensitivity of RA to diagnose malignancy was 96.5 per cent. In a parallel study, a mouse model was used in which colon carcinomas and their precursors were induced chemically. Development of oxygen insensitivity during chemically induced carcinogenesis showed a pattern similar to that observed in the human. In conclusion, the test to determine RA is a useful tool for the detection of malignant mucosa in the colon. The test is particularly helpful in addition to histopathology for the detection of small lesions and the early stages of cancer.

Adenocarcinoma↗

A detailed analysis of K-ras point mutations in relation to tumor progression and survival in colorectal cancer patients.

Point mutations in codon 12, 13, and 61 of the K-ras gene are an early event in tumorigenesis of colorectal cancer, but the impact of number, type, and position of such mutations on the progression of adenomas as well as the clinical behaviour of colorectal carcinomas is not clearly established. A series of 35 adenomas and 117 carcinomas at various stages was subjected to single-strand conformation polymorphism (SSCP) to analyse type, position and number of exon-I K-ras point mutations and to relate the results with patients survival. From our data we conclude that the number of K-ras point mutated tumors shows a trend to increase with tumor progression. The number of multiple K-ras point mutations, however, significantly increases with stage. Most mutations occur in the 1st or 2nd base of codon 12, whereas point mutations in the 3rd base are rare. In adenomas mutations, particularly G-T transversions, in the K-ras gene could indicate a propensity to malignant transformation. G-A transitions and G-C transversions of the second base are associated with metastasized tumors. Regarding survival, patients with K-ras point mutated tumors did worse than their non-mutated counterparts. G-A transitions in the 1st and 2nd base and G-C transversions in the 2nd base were associated with a poor prognosis as compared with G-T transversions in both the 1st and 2nd base. Patient survival therefore is related to the occurrence and type, but not the location, of K-ras point mutations.

Adenoma↗

Is immunohistochemical analysis of oestrogen and progesterone receptors in endometrial carcinoma superior to the radioligand binding assay?

The aim of this study was to evaluate tissue and steroid receptor heterogeneity in endometrial carcinoma specimens as a possible source of discordance between biochemically assayed receptor status and response to endocrine treatment. For this purpose the oestrogen receptor (OR) and progesterone receptor (PR) levels in specimens from 16 endometrial carcinoma patients were analysed on adjacent tissue sections using both a radiochemical and an immunohistochemical assay. With immunohistochemical receptor analysis extensive tissue and tumour cell receptor heterogeneity was observed. Many tumour samples revealed up to 75 per cent contamination with benign tissue. In the majority of cases, evaluation of immunoreactivity in normal tissue elements of the specimen could explain the apparent discordance between semiquantitative immunohistochemical receptor scoring of tumour cells and radiochemical receptor assay. Immunohistochemical analysis of OR and PR in endometrial carcinoma specimens allows a more specific determination of tumour cell receptor content and hence may yield a more accurate prediction of response to endocrine therapy than the biochemical assay.

Adult↗

Progesterone receptor quantification with radiolabeled promegestone (R 5020) in frozen sections of endometrium and breast cancer tissue.

A technique for the determination of the progesterone receptor content at sections was developed. Series of coverglass-mounted unfixed frozen sections were incubated with [3H]R5020 only, to determine total binding, or with excess unlabeled R5020, to determine non-specific binding. Ligand binding in the tissue sections was measured by liquid scintillation counting after repeated washing of the coverslips. Elution of ligand binding proteins into the incubation buffer was quantitated with the dextran-coated charcoal method. Specific ligand binding was related to the total tissue protein content which was determined on parallel, unmounted sections. Scatchard analysis showed specific saturable and high affinity (Kd = 0.01-2 nM) section-bound and soluble binding sites in cryostat sections of calf uterus, human endometrium and breast cancer samples. Ligand specificity was studied by competition of [3H]R5020 with a 100-fold excess of various steroid receptor ligands. The competition was excellent for R5020 and progesterone, negligible for estrogens and slight for androgens and corticosteroids. These binding characteristics provide evidence that with this assay progesterone receptors are determined. Exchange experiments showed that with this method total, free as well as occupied, progesterone receptors can be measured. A highly significant linear correlation, and agreement in PR status classification between assay on cytosol and sections was obtained for a series of 21 breast cancer samples. Finally, progesterone receptor analysis using cryostat sections results in the recovery of 2-3 times more PR from the same amount of tissue as compared to the use of cytosol. These results indicate that progesterone receptors can be reliably assayed with Scatchard analysis using cryostat sections, which requires less tissue than the cytosol assay. This method, which is simple and easy to perform could be of practical importance, particularly when only small tissue samples (which also have to be analyzed morphologically or histochemically) are available and when quantitative radiochemical progesterone receptor data are required for direct comparison with (immuno-) histochemical information.

Animals↗

Quantification of oestrogen receptors in breast cancer: radiochemical assay on cytosols and cryostat sections compared with semiquantitative immunocytochemical analysis.

A radiochemical oestrogen receptor assay on cytosol was correlated with a radiochemical and an immunohistochemical oestrogen receptor assay using cryostat sections from 50 breast cancer specimens. Oestrogen receptors were reliably quantitated in 6 micron cryostat sections with Scatchard analysis using radiolabelled oestradiol, and a good quantitative and qualitative relation with cytosol oestrogen receptor assay was found. Parallel sections were used for routine histological tissue verification and for direct comparison with immunohistochemistry for oestrogen receptor. Specific immunoperoxidase staining with a rat monoclonal antibody was scored by semiquantitative evaluation of the staining intensity of cancer cell nuclei. Oestrogen receptor scoring was highly reproducible when performed by the same observer. The semiquantitative immunohistochemical oestrogen receptor score correlated significantly better with the radiochemical assay on sections than with cytosol assay. Oestrogen receptor in breast cancer can be reliably assayed by semiquantitative evaluation of cryostat sections immunostained for oestrogen receptor, but only if the procedure is adequately standardised. The results underline the importance of cellular heterogeneity as a cause of variation in oestrogen receptor assay evaluation in breast cancer.

Breast Neoplasms↗

Human specific anti-type IV collagen monoclonal antibodies, characterization and immunohistochemical application.

This paper describes two new monoclonal antibodies reactive with human specific type IV collagen epitopes in frozen as well as routinely fixed and processed tissue sections. The antibodies (1042 and 1043) were raised against human placental type IV collagen and were shown by immunoblotting and ELISA tests to react exclusively with type IV collagen determinants. Extensive immunohistochemical survey studies on panels of tissues from various species, using unfixed cryostat sections, demonstrated that antibody 1042 reacted only with human type IV collagen whereas antibody 1043 in addition reacted with rabbit type IV collagen. All tissues showed homogeneous staining of the basement membrane, indicating that the detected epitopes did not show organ-specific distribution. Tissue processing protocols for using these monoclonal antibodies on routinely processed paraffin embedded tissues were developed. It was found that whereas polyclonal anti-type IV collage antisera required pepsin digestion, our monoclonal antibodies required pronase or papain digestion to restore type IV collagen immunoreactivity in paraffin sections. It is concluded that these monoclonal anti-type IV collagen antibodies detect species specific epitopes which can be detected in routinely processed paraffin embedded tissues after appropriate enzyme pretreatment.

Animals↗

Steroid-bovine serum albumin conjugates: molecular characterization and their interaction with androgen and estrogen receptors.

Conjugates of testosterone-3-carboxymethyloxime (T-3-CMO), testosterone-17-hemisuccinate (T-17-HS), 17 beta-estradiol-6-carboxymethyloxime (E-6-CMO), or 17 beta-estradiol-17-hemisuccinate (E-17-HS) and bovine serum albumin (BSA) with varying steroid:protein ratios were prepared using the mixed anhydride method. Dialysis followed by molecular filtration yielded monomer steroid-BSA conjugates with a molecular weight of 70,000 dalton, and polymer conjugates with molecular weights of 140,000 dalton and higher. When conjugates were prepared with increasing initial steroid:BSA molar ratios the ratio of the obtained conjugates increased, in parallel with a decrease in the relative amount of monomers and an increase in the mean molecular size of polymers. The molecular properties of these conjugates were studied further by polyacrylamide gel electrophoresis (PAGE) in native and denaturing conditions. In native PAGE the monomer fractions showed one main band with a mobility slightly lower than BSA and a faint band corresponding with BSA-dimers. The polymer fractions consisted of a heterogeneous population of protein oligomers with molecular weights varying from 140,000 to over a million dalton. In the presence of sodium dodecylsulphate part of the polymers dissociated into monomers. In buffered aqueous solutions the bulk of the conjugate preparation retained its molecular size and composition, although the generated covalent bonds were found to be liable to spontaneous hydrolysis. Steroid-protein conjugates were shown to contain appreciable amounts of non protein-bound steroids. Binding of T-BSA to androgen receptors in rat ventral prostate cytosol was assayed using LH-20 chromatography and sucrose gradient centrifugation analysis. Binding of E-BSA to estrogen receptors was analysed with rat uterus cytosol using the dextran coated charcoal assay and the sucrose gradient centrifugation technique. Relative binding affinities (RBA) were analyzed in competition experiments using radiolabeled ligands. It was found that the molecular size of the conjugate does not influence its interaction with steroid receptors. Steroid coupled via the 17-position show a higher RBA to receptors than the T-3 or E-6 derivatives. The RBA of T-3-BSA, T-3-CMO, T-17-BSA and T-17-HS appeared to be very low, i.e. between 0.1 and 1.7% of the RBA of dihydrotestosterone. Consequently, high concentrations of conjugate are required to saturate androgen receptor binding sites. Under these conditions involvement of type II and eventually type III binding sites, which show less ligand specificity and lower affinity, may be anticipated preventing exclusive detection of androgen receptors.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Radiochemical determination of estrogen receptors in cryostat sections of target tissues.

A radioreceptor assay on unfixed cryostat sections has been developed. Mounted and dried sections were incubated with radiolabeled estradiol in the absence and presence of an excess of diethylstilbestrol and washed with buffer. Binding of radiolabel to sections was measured by direct liquid scintillation counting. Also protein-bound radioactivity which eluted from the sections was determined with a dextran-coated charcoal assay. Parallel sections were used for histological staining and protein determination. Scatchard analysis showed the presence of specific saturable binding sites for estradiol with dissociation constants in the 0.1-1.5 nM range. It is concluded that these high affinity and limited capacity (type I) binding sites represent estrogen receptors. The ligand-binding activity of section-bound estrogen receptors did not decrease upon dry storage up to 20 h at 4 or 23 degrees C prior to assay. During aqueous incubation a significant amount of receptor, representing about 40-60% of the total tissue content, elutes from the sections. Steroid specificity was proven by incubation with excess androgen, progestogen or corticoid instead of diethylstilbestrol or estradiol. With these ligands no significant competition was found. Tissue specificity was demonstrated by a very low level of specific estradiol binding to cryostat sections of rat skeletal muscle, spleen and intestine and by a moderate level in rat liver.

Animals↗

Protoporphyrin-induced photodynamic effects on band 3 protein of human erythrocyte membranes.

In previous studies it has been shown that protoporphyrin-induced photodynamic effects on red blood cells are caused by photooxidation of amino acid residues in membrane proteins and by the subsequent covalent cross-linking of these proteins. Band 3, the anion transport protein of the red blood cell membrane, has a relatively low sensitivity to photodynamic cross-linking. This cannot be attributed to sterical factors inherent in the specific localization of band 3 in the membrane structure. Solubilized band 3, for instance, showed a similar low sensitivity to cross-linking. By extracellular chymotrypsin cleavage of band 3 into fragments of 60,000 and 35,000 daltons it could be shown that both fragments were about equally sensitive to photodynamic cross-linking. The 17,000 dalton transmembrane segment, on the other hand, was completely insensitive. Inhibition of band 3-mediated sulfate transport proceeded much faster than band 3 interpeptide cross-linking, presumably indicating that the inhibition of transport is caused by photooxidation of essential amino acid residues or intrapeptide cross-linking. A close parallel was observed between photodynamic inhibition of anion transport and decreased binding of 4,4'-diisothiocyanodihydrostilbene-2,2'-disulfonate (H2DIDS), suggesting that a photooxidation in the immediate vicinity of the H2DIDS binding site may be responsible for transport inhibition.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Protoporphyrin-induced photodynamic effects on transport processes across the membrane of human erythrocytes.

Previous studies have shown that illumination of erythrocytes with visible light in the presence of protoporphyrin results in cross-linking of membrane proteins and deterioration of several membrane functions, e.g. active transport of K+ and Na+. In the present study it is shown that carrier-mediated transport of glucose, L-leucine, sulphate and glycerol is also inhibited by the photodynamic process, whereas non-specific permeability of glycerol and thiourea is increased. It is shown that these effects are not caused by lipid peroxidation, but by photooxidation of membrane proteins. The inhibition of carrier-mediated transport is caused either by photodynamic oxidation of susceptible essential amino acid residues of the carrier molecules, or by an aspectific perturbation of the membrane structure, leading to inhibition of carrier functions.

Biological Transport, Active↗

Porphyrin synthesis in blood cells of patients with erythropoietic protoporphyria.

The protoporphyrin accumulation observed in the red blood cells of patients with erythropoietic protoporphyria can be explained by decreased activity of the enzyme heme synthetase or by increased production of porphyrins in the affected cells. In literature experimental evidence both for a partial heme synthetase deficiency and for increased porphyrin biosynthesis has been presented. In a group of ten patients with erythropoietic protoporphyria the biosynthesis of porphyrins from delta-aminolevulinic acid and from glycine-succinic acid appeared to be normal in peripheral blood cells. These results are consistent with the partial heme synthetase deficiency previously found to be the basic defect of this disease.

Aminolevulinic Acid↗

Photodynamic modification of proteins in human red blood cell membranes, induced by protoporphyrin.

Illumination of erythrocytes or erythrocyte membranes with visible light in the presence of protoporphyrin causes photodynamic damage of the cell membrane. This process is reflected a.o. by a mutilated ultrastructure and changes of the physical properties of the membrane proteins. Illumination in the presence of protoporphyrin causes association of membrane proteins, leading to blurring of the protein bands in electropheretograms, disappearance of bands and the appearance of protein aggregates on top of the gels. The formation of large protein aggregates is also indicated by Sephadex gel filtration of the solubilized membrane proteins. In kinetic studies it appeared that spectrin and the bands 2.1, 2.2, 2.3 and 6 are most susceptible and that band 3 is least susceptible to this cross-linking reaction. Experimental results indicate that this cross-linking is caused by direct photooxidation of membrane proteins. Peroxidation of unsaturated fatty acids is not involved in the process. The significance of this process for studies on membrane structure and on photodynamic membrane damage is discussed.

Blood Protein Electrophoresis↗

Photodynamic effects of protoporphyrin on cholesterol and unsaturated fatty acids in erythrocyte membranes in protoporphyria and in normal red blood cells.

The protoporphyrin-induced photodynamic damage of erythrocytes is caused by photooxidation of a cellular target, localized in the red cell membrane. In model experiments it appeared that some amino acid residues of membrane proteins, unsaturated fatty acid side chains of phospholipids and cholesterol are sensitive to photooxidation, induced by protoporphyrin. In previous studies it has been shown that the membrane damage cannot be attributed to photooxidation of unsaturated fatty acid side chains. Photosensitized peroxidation of cholesterol was studied in model systems, in red cell ghosts and in intact cells. Although cholesterol appeared to be sensitive to protoporphyrin-induced photooxidation in model systems and in red cell ghosts, it could be shown that photohemolysis of red blood cells of patients with erythropoietic protoporphyria cannot be rationalized on the basis of a cholesterol peroxidation.

Binding Sites↗

Characterization of protoporphyrin in red blood cells of patients with erythropoietic protoporphyria.

It was investigated whether the protoporphyrin that can be extracted from red blood cells of erythropoietic protoporphyria (E.P.P.) patients is present in the cells as free molecules or protein-bound. With isoelectric focusing and with starch gel electrophoresis it could be shown that virtually all protoporphyrin in the erythrocytes is protein-bound. It is very likely that the protoporphyrin is bound to hemoglobin at heme-binding sites. This was indicated by several observations: 1. With isoelectric focusing the protoporphyrin-protein complex is focused at a pH only slightly higher than the isoelectric point of hemoglobin. 2. With chromatography on Sephadex columns it appeared that hemoglobin and the protopotphyrin-protein complex have the same molecular weight. 3. A Heme-protoporphyrin exchange occurred when the heme-globin bond was labialized by conversion to hemiglobin. The resulting protoporphyrin-hemoglobin complex had the same electrophoretic mobility with starch gel electrophoresis as the protoporphyrin-protein complex, extracted from red blood cells of E.P.P. patients.

Cell Membrane↗

Photodynamic effects of protoporphyrin on the architecture of erythrocyte membranes in protoporphyria and in normal red blood cells.

Protoporphyrin causes a photodynamic damage of the red blood cell membrane. After illumination of red blood cells in the presence of protoporphyrin three effects can be observed: 1. Red blood cell membranes show particle aggregation on the outer and inner fracture face, as seen in freeze-etch electron microscopy. 2. Electrophorograms of membrane proteins show an increasing protein association, not disrupted by sodium dodecyl sulfate. 3. The immunological response of A+ red cells to anti A serum is progressively retarded. It seems likely that these effects are interrelated consquences of the protoporphyrin-induced photodynamic membrane damage.

Cell Aggregation↗