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Biomedical subjects

M Tavassoli

Publications and source records attributed to M Tavassoli.

At least 145 records · Page 8Linked to original sources

A mammalian cell variant in which 3-aminobenzamide does not potentiate the cytotoxicity of dimethyl sulphate.

Variants of mouse leukaemia L1210 cells have been isolated in which cytotoxicity to dimethyl sulphate is not fully potentiated by ADP-ribosyl transferase inhibitor 3-aminobenzamide, as occurs in normal L1210 cells. These variants were selected after mutagenesis by growing the cells in dimethyl sulphate and 3-aminobenzamide. The characterisation of one of these variants is described. Variant 3 cells repair low doses of DNA damage in the presence of ADP-ribosyl transferase inhibitors. The Vmax of the ADP-ribosyl transferase enzyme in these cells is only increased 35% compared to normal wild-type L1210 cells. The basal DNA ligase I activity is increased 66% above wild-type whereas DNA ligase II activity appears to be unchanged. The most striking observation, however, is that the DNA ligase II activity is not increased after dimethyl sulphate treatment as occurs in wild-type L1210 cells. It seems that by increasing DNA ligase I levels these cells can survive DNA damage in the presence of 3-aminobenzamide. This variant (mutant) provides genetic evidence for our previously published hypothesis that (ADP-ribose)n biosynthesis is required for efficient DNA repair after DNA damage by monofunctional alkylating agents, because ADP-ribosyl transferase activity regulates DNA ligase activity. This variant is the first mammalian cell reported in which DNA ligase activity is altered, as far as we are aware. In yeast, a DNA ligase mutant has a cell division cycle (cdc) phenotype. Presumably, DNA ligase is essential for DNA synthesis, repair and recombination. The present variant provides further evidence that in mammalian cells, DNA ligase II activity is related to ADP-ribosyl transferase activity.

Animals↗

Bone marrow in boneless fish: lessons of evolution.

The existence of marrow tissue in cartilaginous ganoid fish, before the evolutionary development of bone, implies that the marrow and bone are two independent organs, developed separately and merged together by evolutionary pressure. Their relation is, therefore, matrimonial and not patrimonial. This should form a frame of reference for studying the interrelationship of bone and marrow. Some of the possible physiologic consequences of this merger are discussed. Evolutionary aspects of hemopoiesis have a potential for yielding information that may not otherwise be possible.

Animals↗

Liver endothelium mediates the hepatocyte's uptake of ceruloplasmin.

The mode of transport of ceruloplasmin (CP) into the liver was investigated in fractionated liver cell suspensions. Incubation of 125I-CP at 4 degrees C with these different fractions led to its binding only to endothelial cells but not Kupffer cells and hepatocytes. Incubation at 37 degrees C led to rapid uptake of 125I-CP by endothelium, but cell-associated radioactivity declined after 15 min, which suggests the release of the labeled substance. Internalization was confirmed by fractionation of surface-bound and internalized ligand. The released label now acquired binding potential for fresh target hepatocytes, and the binding was inhibitable with asialoceruloplasmin but not native CP. This suggested that the released molecule was modified in the endothelium by desialation. Desialation was confirmed by incubation of endothelium with double-labeled CP (3H label on sialic acid and 125I on the protein part). We conclude that in the liver, CP is first recognized and taken up by endothelial cells that are endowed with appropriate surface receptors for the protein. Endothelium then modifies the molecule by desialation to expose the penultimate galactosyl residues. The modified molecule is then released, recognized, and taken up by hepatocytes through their membrane galactosyl-recognition system. These findings are consistent with the role of endothelium as an active mediator of molecular transport between blood and tissue, and further assign a biological role for the galactosyl-recognition system in hepatocytes.

Animals↗

A study of anti-poly (ADP-ribose) antibodies and an anti-DNA antibody idiotype and other immunological abnormalities in lupus family members.

The genetic background of systemic lupus erythematosus (SLE) has been reexamined in a study of the serum of 31 lupus patients and 80 asymptomatic first degree relatives by measuring a common, cross reacting anti-DNA antibody idiotype designated 134, antibodies to poly(ADP-ribose), serum C3, circulating immune complexes, and antinuclear antibodies (ANA). Over 30% of the relatives had raised 134 and anti-poly(ADP-ribose) levels, and 9% had ANA titres greater than 1/20. In contrast, only one relative had a low serum C3 level. These results confirm that immunogenetic abnormalities associated with the production of autoantibodies and particular idiotypes must exist amongst lupus relatives as well as the patients. The production of autoantibodies, however, is not necessarily matched to the clinical expression of SLE.

Adolescent↗

Purification and characterization of rat bone marrow endothelial cells.

A method is described to obtain endothelial cells from rat bone marrow with high purity and viability. Marrow cell suspensions were prepared by collagenase and subjected to discontinuous gradient centrifugation on Percoll (densities 1.04 and 1.06). Endothelial cells were concentrated in the middle layer as demonstrated by electron microscopy and flow cytometry as well as fluorescent microscopy after staining for factor VIII antigen. Cells of this layer were then subjected to centrifugal elutriation and highly purified endothelial cell preparations were obtained with flow rates of 15-20 ml/min. By fluorescent microscopy, 49%-51% of these cells were factor VIII positive. Identification by means of electron microscopy indicated a much higher purity of endothelium ranging from 63% to 90% with a yield in the range of 10(6) cells and a viability exceeding 90%. Some technical considerations in the development of this method are discussed. This method permits in vitro experiments on relatively high purity, high viability preparations of marrow endothelium.

Animals↗

The developmental features of marrow stroma in ectopic bone marrow implants.

Implantation of bits of marrow in ectopic sites is followed by reorganization of tissue and the formation of a hemopoietic nodule surrounded by a shell of bone. This regenerative process is reminiscent of marrow ontogeny and the model can serve to study marrow ontogeny in a relatively short period of time. Early events during this regeneration were studied by scanning (SEM) and transmission electron microscopy (TEM). Within 24 hours the implant elicited an angiogenic reaction and new vessels penetrated the implant. Intense circulation, thus established, divested the implant from hemopoietic cells, leaving the stroma behind. Stromal cells proliferated and the impetus for this proliferation appeared to result from an impulse caused by the presence of bony fragments outside and within the stromal cells. Previous studies of this model have not appreciated the presence of non-viable bone in the implant, although the fact that non-viable bone can trigger osteogenesis and new bone marrow formation is well-known. This experimental model lends itself to the study of the interrelationship of hemopoietic cells and their supporting stroma as well as the interrelationship of bone and hemopoiesis.

Animals↗

Desialation of transferrin by liver endothelium: evidence for two cellular pathways for transferrin metabolism.

Transferrin was double-labeled, with its sialic acid residues being labeled with 3H and its protein part with either 125I or 59Fe. Incubation of this double-labeled molecule with fractionated liver endothelium led to the dissociation of the two labels, with 3H being retained and 59Fe and 125I being released from the cell, demonstrating similar patterns. Similar incubation of the double-labeled molecule with K562 cells did not lead to the dissociation of the two labels. The findings provide evidence that liver endothelium desialates Fe-TF complexes and releases the desialated TF still in association with Fe. The findings also provide evidence for a difference in the metabolic pathway of TF in different cell types.

Animals↗

Homing of a cloned multipotential stem cell line in spleen and intraperitoneal membrane.

B6SUT is a murine cell line cloned from nonadherent cells of viral-infected long-term marrow cultures. In soft agar it can form colonies of three different hemopoietic lineages and is considered to be a hemopoietic stem cell line. We studied its ability to "home" in the spleen of lethally irradiated mice. These cells formed large surface colonies on days 8 and 12, the colonies on day 12 being greater than 3 mm in diameter. Microscopically, these colonies consisted of undifferentiated cells, suggesting that B6SUT cells are capable of homing and proliferation in hemopoietic tissues, but not differentiation. To confirm this, cells were labeled with 51Cr and infused into the peritoneum of mice bearing cellulose ester membranes (CEM). We noted significant uptake of radioactivity that could be inhibited in the presence of excess unlabeled B6SUT cells. Electron-microscopic studies showed binding and migration of these cells into the CEM coat. The membrane of B6SUT cells was mapped for lectin and sugar-recognizing receptors and found to possess receptors for PHA, Con A, WGA, and RCA, but not UEA, fucosyl, galactosyl, or mannosyl residues. We conclude that cell line B6SUT is capable of homing into hemopoietic tissues, and that surface glycoproteins may be responsible for this phenomenon. This cell line permits the study of the "homing" phenomenon apart from proliferation and differentiation.

Animals↗

Modulation of megakaryocyte emperipolesis by phlebotomy: megakaryocytes as a component of marrow-blood barrier.

The presence of marrow cells within the cytoplasm of megakaryocytes has been documented and is attributed to the phenomenon of emperipolesis. In a previous study most patients demonstrating this phenomenon had or were suspected of having blood loss. To find out if these are causally related, we induced acute and chronic blood loss in rats and quantitatively measured the emperipolesis index (EI). EI dropped after acute blood loss but rose after chronic blood letting, indicating that blood loss can modulate this phenomenon. In the marrow, megakaryocytes are located preferentially on the abluminal side of sinus endothelium and it is postulated that in the state of heightened demand for cell delivery from marrow into the circulation, some cells take a transmegakaryocytic route to enter the circulation. This concept incorporates megakaryocytes as a component of the marrow-blood barrier.

Animals↗

Structural features of isolated, fractionated bone marrow endothelium compared to sinus endothelium in situ.

Structural features of isolated, fractionated rat bone marrow endothelium were compared to those of marrow sinus endothelium in situ. Marrow endothelium was purified, first by density gradient sedimentation on Percoll and then subjected to centrifugal elutriation. Using antifactor VIII antibody staining (indirect immunofluorescent method), preparations of greater than 50% purified endothelium were obtained. By SEM, these cells were about 10 microns in size and showed smooth surface and numerous invaginations. These features were also observed in the in situ endothelium obtained by perfusion-fixation and freeze-cracking. In addition, in situ endothelium displayed numerous hemopoietic cells in migration through the endothelium. By TEM, isolated endothelium showed numerous vesiculations, giving the cell sponge-like appearance. This corresponded to numerous intracellular vesicles in sinus endothelium in situ, reflecting high magnitude of fluid and molecular transport across the endothelium. Weibel-Palade bodies were not seen in either form of the endothelium, despite the positive reaction for factor VIII-related antigen. This finding suggested that the cell, while possessing factor VIII-related antigen, does not store this protein.

Animals↗

Endothelial binding of transferrin in fractionated liver cell suspensions.

Several studies using crude liver cell suspensions incubated with labeled transferrin have led to a conclusion that hepatocytes have transferrin receptors. When a visual probe, which permits evaluation of transferrin binding to individual cells, was used, the binding was unexpectedly found to be limited to endothelial cells in liver cell suspensions. Neither hepatocytes nor Kupffer cells contained transferrin receptors. In the present study, we fractionated liver cell suspensions using metrizamide gradients and centrifugal elutriation to obtain hepatocytes, Kupffer cell and endothelial cell fractions of high purity. Incubation of these fractions with 125I- or 59Fe-labeled transferrin led to exclusive binding to endothelial cells but not hepatocytes nor Kupffer cells. Kinetic analysis demonstrated Kd of 1.9 X 10(-7) M, Bmax of 3.1 pmol/10(6) cells per min, corresponding to 2.1 X 10(5) molecules/cell per min. At 4 degrees C, the binding reached a steady-state plateau within 5 min. Comparison of our data with those of previous investigators demonstrates a consistency if we consider that crude liver cell suspensions are contaminated with 2-3% endothelial cells. Thus, the previously reported findings may be entirely due to the contamination of crude liver cell suspensions with a small number of endothelial cells.

Animals↗

Effect of DNA intercalators on poly(ADP-ribose) glycohydrolase activity.

Proflavine, ethacridine (2-ethoxy-6,9-acridine diamine), ellipticine, daunomycin and Tilorone R10,556 DA (2,7-bis(piperidinobutyryl)-9H-fluoren-9-one) inhibit poly(ADP-ribose) glycohydrolase activity. The Ki values for proflavine and Tilorone R10,556 DA are 36 microM and 7.3 microM, respectively. The inhibition by intercalators is relieved by DNA but not by DNA-histone complexes. On the contrary, DNA-histone complexes increase the inhibition of some intercalators. Ethidium bromide is not inhibitory by itself. However, in the presence of DNA-histone complexes it strongly inhibits the enzyme activity. m-AMSA (4'-(9-acridinylamino)methanesulphon-m-anisidide) and chloroquine have no effect on the enzyme activity, even in the presence of DNA-histone complexes.

Aminoacridines↗

A microtiter method for long-term in vitro maintenance of human monocyte.

A microtiter method is described for long-term maintenance of human monocytes in culture with intact functional and morphological characteristics. This micromethod is the adaptation of our previously reported method which required large volume of blood. The micromethod relies on the use of microexudate plate (pregrown with BHK cells) and the two phases of adherence and maintenance culture. The purity of cultured cells approaches 100% and the yield is 50-70%. As many as 24 experiments and controls can be done on 20 ml of blood drawn.

Animals↗

Insulin uptake by rat liver endothelium studied in fractionated liver cell suspensions.

Cellular distribution of insulin receptors was studied in fractionated rat liver cell suspensions using 125I-insulin and a visual probe consisting of latex beads covalently linked to insulin (minibeads). Fractionation was done on metrizamide gradients which yielded two cellular fractions. The large cell fraction consisted mostly of hepatocytes and the small cell fraction consisted of 37% endothelial cells as well as Kupffer cells. The magnitude of insulin uptake by the endothelium-rich small cell fraction was at least double that of the uptake by the hepatocyte-rich fraction. The minibead technique demonstrated that in the small cell fraction only endothelial cells, and not Kupffer cells, were responsible for the insulin uptake. Our findings suggest that liver endothelium may be responsible for the uptake of circulating insulin and its transport to hepatocyte. This emphasizes the presence of a tissue-blood barrier in the liver.

Animals↗

The role of liver endothelium in the binding and uptake of ceruloplasmin: studies with colloidal gold probe.

To determine the mode of uptake of ceruloplasmin (CP) by liver, the protein was labeled with colloidal gold and infused into the portal vein. In cold almost all probes bound to the sinusoidal endothelium, and at 37 degrees C internalization via a system of coated pits and vesicles occurred. Only rarely did the probe appear to bypass the endothelium, moving to the abluminal side through the gaps between endothelial cells. In the endothelial cytoplasm, the probe was seen in coated vesicles, endosomes, tubules, and large vesicles which may have formed by fusion of endosomes and tubules. Moreover, externalization of the probe to the abluminal side was noted, and this also occurred via a system of coated vesicles. The findings suggest that the uptake of CP in the liver may be primarily a transendothelial phenomenon (transcytosis).

Animals↗

Identification of desmosomes in the granular cell tumor. Implications in histologic diagnosis and histogenesis.

Electron-microscopic examination of a malignant granular cell tumor revealed cells with abundant granular and glycogen-containing cytoplasm and eccentric nuclei. Numerous junctional structures including desmosomes were identified between tumor cells which, moreover, displayed a pattern of gland formation with the presence of short microvilli in one pole of the cell. The presence of junctional structures may provide a feature for positive identification of this tumor by electron microscopy. The findings may also have implications to further our understanding of the histogenesis of this tumor. This case further raises the question of familiar occurrence of this tumor.

Adult↗

Receptor distribution and the endothelial uptake of transcobalamin II in liver cell suspensions.

To determine the nature of binding of transcobalamin II (TC-II) to liver cells, we covalently coupled purified holo-TC-II to submicron latex minibeads using glutaraldehyde. Incubation of the probe with liver cell suspensions at 4 degrees C led to its binding by endothelial cells but not by hepatocytes or Kupffer cells, as visualized by scanning electron microscopy. At 37 degrees C, the probe was internalized by the endothelium through a system of coated pits and vesicles as shown by transmission electron microscopy. Inhibition studies by pre-incubation with excess native TC-II demonstrated the specificity of binding. Fractionation of these cell suspensions on metrizamide gradients yielded large cell (hepatocyte-rich) and small cell (endothelium-rich) fractions. The binding of the minibead probe occurred again exclusively on endothelial cells in the small cell fraction. 125I-labeled holo-TC-II also bound to the small cell but not to the large cell fraction. Binding was saturable (Ka, 0.225 X 10(9) mol/L-1) and receptor number was calculated to be 1.33 X 10(3) per cell. Time-dependent incubation of 125I-labeled TC-II with the endothelium-rich fraction led to its uptake, reaching a steady-state plateau at 4 degrees C. At 37 degrees C, however, the initial uptake was followed by gradual release of the label into the medium. We conclude that in the liver, holo-TC-II binds initially to endothelium, where it is internalized and is subsequently released probably to the interstitial space. Thus, the endothelium may play a fundamental role in the regulation of the uptake of TC-II by the liver.

Animals↗

Identification of ceruloplasmin receptors on the surface of human blood monocytes, granulocytes, and lymphocytes.

Membrane receptors for ceruloplasmin (CP) were identified on all human blood leukocytes (granulocytes, monocytes, and lymphocytes) by a visual probe and 125I-CP binding. To synthesize the visual probe, amide-modified submicron-sized polystyrene latex minibeads, activated with glutaraldehyde, were covalently bound to CP. Incubation of this probe with human leukocytes, either fractionated or unfractionated, led to its binding, which was visualized on individual cells by using electron microscopy. At 4 degrees C, only surface binding occurred, but internalization also occurred at 37 degrees C. The binding was completely inhibited in the presence of excess nonderived CP, indicating the specificity of the binding. Incubation of fractionated leukocytes with 125I-CP also led to its specific binding to all three fractions. Scatchard analysis indicated the highest number of receptors for granulocytes and the lowest for lymphocytes. The binding affinity was lowest, however, for granulocytes, with monocytes showing the highest affinity. These data, indicating active uptake of CP by blood leukocytes, may reflect the requirement of leukocytes for copper that can be derived from CP. CP may also serve other functions within the cells.

Cell Membrane↗