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Biomedical subjects

S P Domogatsky

Publications and source records attributed to S P Domogatsky.

At least 19 recordsLinked to original sources

Stromal differentiation and architecture of the human umbilical cord.

In order to assess the characteristics of its stromal cells and the distribution of extracellular matrix proteins, we investigated, immunohistochemically and ultrastructurally, term, first and second trimester human umbilical cords. A differential distribution pattern of the various cytoskeletal proteins of stromal cells and extracellular matrix proteins was observed in different zones of the stroma, the subamniotic stroma, Wharton's jelly, and the vessels' adventitia. All three zones showed immunoreactivities for collagen types I, III and VI and for basement membrane molecules such as collagen type IV, laminin and heparan sulphate proteoglycan. Immunoreactivities for these extracellular matrix molecules were observed around cleft-like territories (stromal clefts) in the Wharton's jelly which were occupied by homogeneous ground substance but void of collagen fibrils and basal lamina molecules. Moreover, between the stromal clefts, slender cells were found which immunohistochemically and ultrastructurally corresponded to various stages of myofibroblastic differentiation. In earlier stages of gestation, stromal cells with a less complex expression pattern prevailed. The stromal clefts and the contractile cells together might serve as a system regulating the turgor of the cord.

Cell Differentiation↗

Collagen-targeted antibodies inhibit platelet-dependent thrombosis in vivo.

Subendothelial collagen is one of the main triggers of platelet-dependent thrombus formation in arteries. The antithrombotic effects of rabbit polyclonal inhibitory antibodies to rat collagen type I-III and of murine non-inhibitory monoclonals to human recombinant single-/two-chain urokinase-type plasminogen activator (rscu-/rtcu-PA), cross-reacting with rat scu-/tcu-PA and their chemically synthesized conjugate, were studied both in vitro and in vivo. Anticollagen antibodies and bispecific conjugate inhibited human platelet adhesion, aggregation and formation of thrombus-like structures induced by rat collagen immobilized on the polystyrene surface in a condition mimicing a high shear rates in the large elastic arteries. Monoclonals to human rscu-/rtcu-PA did not block the collagen-induced platelet activation in vitro. The short-term treatment of the collagen-soaked silk thread by the collagen antibodies suppressed the platelet-dependent thrombus formation in the arterio-venous shunt in rats by 56 +/- 4% (P < 0.05). Bispecific conjugate, directed to collagen and endogenous rat scu/tcu-PA inhibited thrombus formation by the same factor as anticollagen antibodies. The treatment of collagen-adsorbed conjugate by human rtcu-PA did not increase the antithrombotic effect. The present results suggest, that the local administration of the anticollagen antibodies to the site of vascular injury can be an efficient tool for prophylaxis of platelet-dependent thrombus formation in arteries at thrombolysis or percutaneous transluminal coronary angioplasty.

Animals↗

Immunohistochemical localization of extracellular matrix in perivillous fibrinoid of normal human term placenta.

The extracellular matrix of perivillous fibrinoid in normal human term placenta was investigated by means of the indirect immunofluorescent technique. Polyclonal antibodies to collagen types I, III, IV, V, fibronectin, fibrinogen, laminin, entactin and heparan sulphate proteoglycan and monoclonal antibodies BC-1, IST-9 and IST-4 to human fibronectin were used. The antigens can be grouped according to their presence in fibrinoid as abundant (fibrinogen, fibronectin, heparan sulphate proteoglycan, basement membrane collagen types IV and V), absent (laminin) and variable between fibrinoids (interstitial collagen types I and III, entactin). Our results also demonstrate that fibronectin in fibrinoid originates from placental cells (presumably cytotrophoblast). Monoclonal antibodies BC-1 and IST-9 specific to tissue fibronectin do not stain neighbouring placental extracellular matrix but do bind to fibrinoids on the same sections. Work by other authors has presented evidence that fibrin actually originates from maternal blood and even makes an attempt to substitute the term "fibrinoid" for "fibrin deposition". Our data on the composition of perivillous fibrinoids and the abundance of extracellular matrix components do not support this view and suggest that fibrinoid is a more relevant term for this interesting phenomenon, which deserves further investigation.

Adult↗

Phenotype related changes of intimal smooth muscle cells from human aorta in primary culture.

To study the functional characteristics of smooth muscle cell (SMC) phenotypes, we have investigated myosin expression, cell proliferation, collagen production and low-density lipoprotein (LDL) receptor activity in intimal SMCs of normal human aorta during their growth in primary culture. By staining with rabbit antibodies to smooth muscle myosin (ASMM) 3 cell types could be distinguished in culture: homogeneously stained cells, cells with discontinuous myosin fibrils and myosin-negative cells. The ratio of cell types greatly changed with culture growth: on days 5, 7 and 14 it was 82:1:17%, 70:5:25% and 10:30:60%, respectively. After 5-6 days of culture intimal SMCs began to proliferate and DNA-synthesizing nuclei were seen 1.5-4.3 times more frequently in myosin-negative cells than in cells with homogeneous myosin distribution. At that time the number of cells reacted with monoclonal antibody (MAb) to an epitope shared collagen types I and III started to increase. By double immunofluorescence staining it was shown that the cultured cells containing both ASMM and MAb markers were found 2.0-4.8 times more rarely than MAb-positive staining in myosin-negative cells. During the first 5 days in culture LDL binding and uptake were diminished in intimal cells with intercellular lipid inclusions independently of their myosin staining pattern, but their activity increased with culture growth. Thus, SMCs from human aortic intima change their phenotype on days 6 and 7 in primary culture as manifested by alteration of myosin expression, increased cell proliferation, collagen production and LDL receptor activity. Changes in myosin expression, however, are not an essential prerequisite for cell proliferation and collagen production.

Adult↗

Penetration of macromolecules into contracted blood clot.

The effectiveness of thrombolytic therapy is determined by accessibility of thrombus compartments to plasminogen activators and, therefore, depends on permeability of thrombus to blood born macromolecules. Accumulation of 125I labeled proteins with molecular massess ranging from 150 to 450 kD into partly contracted blood clot or plasma clot was consistent with diffusion coefficients 3.2 x 10(-11) and 2.7 x 10(-11) m2 s-1, respectively. So far as the model conditions imitated those for venous thrombi, these data indicate that such thrombi are porous enough for immunoconjugates of relatively big size.

Animals↗

Cytotoxicity of glucose oxidase conjugated with antibodies to target cells: killing efficiency depends on the conjugate internalization.

The cytotoxic action of glucose oxidase conjugated with antibodies against the target cells has been examined in a culture of human endothelial cells. Internalizable (anti-endothelial, MoAb E25) and non-internalizable (anti-fibronectin, MoAb FN) monoclonal antibodies were employed as vectors. Anti-endothelial monoclonal antibody E78 (whether it can be internalized by endothelial cells is unclear) and polyclonal mouse antiserum to the human endothelium were also used. The conjugates were prepared by oxidation of the enzyme carbohydrate moiety with periodate. Free conjugates display similar enzyme activity in glucose solution. In contrast to glucose oxidase, conjugated with no-immune IgG, antibody-conjugated glucose oxidase binds specifically to target cells. The efficiency of targeting was different for various conjugates. Targeting via the anti-fibronectin antibody and anti-endothelial antiserum provided maximal quantitative binding of glucose oxidase to endothelial cells, while the conjugates with MoAb E25 and MoAb E78 monoclonal antibodies provided less effective binding. In the presence of glucose, targeted glucose oxidase generated H2O2. Hydrogen peroxide is relatively stable in buffer, but rapidly decays in the culture medium supplemented with 20% human serum. Though the quantitative binding of MoAb E25-conjugated glucose oxidase was minimal comparing to other conjugates, targeting via MoAb E25 produced the maximal cytotoxic effect as well as targeting via polyclonal antiserum. The killing efficiencies of MoAb FN-conjugated and MoAb E78-conjugated glucose oxidase were about 30-fold lower. The high efficiency of the MoAb E25-conjugated enzyme may be due to its internalization by target cells. Internalization can lead to unaccessibility of generated H2O2 for extracellular scavengers and pH optimization for glucose oxidase activity, which provides valuable advantages for the cytotoxicity of the conjugate. Thus, cytotoxicity of antibody-conjugated glucose oxidase depends not only on the efficiency of specific binding to the target cell, but also on the fate of cell-bound conjugate. Cytotoxicity is extremely effective in case of 'internalizable' conjugate and drastically less effective in case of 'non-internalizable' conjugate.

Animals↗

The role of platelet prostanoids and dense granule compounds in initial attachment, spreading and aggregation of platelets on collagen substrates.

The role of platelet prostanoids, ADP and 5HT in initial attachment, spreading and aggregation of platelets on collagen substrates (CI, CIII, CIV, CV, CC) was studied. A positive linear correlation was found between thrombi-like aggregate formation on collagen substrates and production of platelet prostanoids. No correlation was established between platelet aggregation and 14C-5HT release. Thrombi-like aggregate formation was completely inhibited by indomethacin and TXA2/PGH2 antagonists (13-APA and BM 13.177). Both 13-APA and BM 13.177 had no effect on platelet spreading, while indomethacin inhibited this process by 25%. The ADP-scavenger system (CP/CPK) inhibited platelet aggregation and spreading by 25-30%. Initial attachment was not influenced by aspirin, indomethacin and CP/CPK. The data obtained indicate that platelet aggregation on collagen substrates is mediated by PGH2 and TXA2 production. These compounds slightly affect the platelet spreading. Both platelet spreading and aggregation on collagen substrates are only partially mediated by ADP and 5HT release. Initial attachment of platelets does not depend on the release reaction and PGH2/TXA2 synthesis.

Adenosine Diphosphate↗

Phorbol ester stimulates platelet spreading and thrombi-like aggregate formation on the surface of immobilized type V collagen.

We have studied the effect of the tumor-promoting phorbol ester, 4 beta-phorbol-12 beta-myristate-13 a-acetate (PMA), and of the stable prostaglandin endoperoxide analogue U46619 on the interaction of human blood platelets with surfaces coated with monomeric human type V collagen (CV) and on free calcium concentration in platelet cytoplasm. It was shown by scanning electron microscopy that native resting platelets sparingly attach to CV and fail to spread or aggregate on the collagenous substrate in the absence of PMA and U46619. Addition of 0.15-1.5 nM PMA or 1.5 microM U46619 stimulates platelet spreading and formation of multilayer (thrombi-like) platelet aggregates on the per se non-thrombogenic type V collagen substrate. It was further demonstrated using the fluorescent indicator quin2 that U46619 (0.1 microM) increases cytoplasmic free calcium concentration from basal level (100-120 nM) up to 600 nM, whereas PMA (0.75-15 nM) exerts only a minor effect, increasing free calcium level by 30-40 nM. These results indicate that the tumor-promoting phorbol ester PMA induces massive platelet spreading and aggregation on surfaces coated with non-thrombogenic type V collagen via activation of protein kinase C with little or no apparent change in free cytoplasmic calcium.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Platelet interaction with [125I]-labeled collagen type III: requirement of fibrillar structure formation.

Interaction of collagen type III (CIII) with washed human platelets was studied using CIII preparation from human placenta. CIII was labeled with [125I] and [125I]-CIII in monomeric and fibrillar form [( 125I]-CIIIm and [125I]-CIIIf respectively) were incubated with platelets at room temperature. Platelet-associated and free labels were separated by centrifugation through 20% sucrose. Binding of [125I]-CIIIf was unsaturable, linearly dependent on the concentration of label and represented 28 +/- 3% of the added protein. In comparison with CIIIf, binding of [125I]-CIIIm was minimal and represents only 0.9 +/- 0.2% of the added protein. The binding of [125]-CIIIm was also nonsaturable and linearly depend on the concentration of the labeled protein. Platelet activation neither increases the CIIIf binding, nor stimulates the binding of CIIIm. The binding of [125I]-CIIIf was not inhibited by the excess of the unlabeled CIIIm. The data obtained suggests the absence of high-affinity collagen receptors in platelets and corroborates the hypothesis of multiple low-affinity interactions between collagen fibrils and platelet surface. Binding of CIIIf was very fast--the level of binding reached a plateau within 1 min, and was similar in the presence of Ca2+/Mg2+ and EDTA. Spectrophotometrically undetectable microfibril formation during the lag phase of fibrillogenesis was sufficient for nearly the same as with large fibrils binding of CIII to platelets. Unlike platelets red blood cells (RBC) fail to bind significant amounts of [125I]-CIIIf.

Autoradiography↗

Rapid blood clearance of biotinylated IgG after infusion of avidin.

The techniques of immunotherapy and radioimmunoimaging suffer from the problem of background: intravenously injected antibodies remain in the circulation much longer than it is necessary for effective binding to the target. Various approaches, including the postinjection of second antibodies, were explored to overcome the problem with some success. The phenomenon of a 100-fold more rapid blood clearance of biotinylated immunoglobulins after postinjection of an equivalent dose of avidin is described. The concentration of 125I-labeled biotinylated IgG in the circulation of rats slowly decreased to 20% of initial in 24 hr. Avidin injection at any interval during this period induced 90-95% reduction of radioactivity in blood in 15 min. Up to 70% of the radioactivity was recovered in the liver. Avidin-induced blood clearance of biotinylated immunoglobulins may find applications in immunotherapy and radio- or nuclear magnetic resonance immunoimaging.

Animals↗

Substances that polymerize or depolymerize cytoskeletal proteins affect platelet spreading and thrombus-formation on surfaces coated with human collagen isotypes I, IV, and V.

The effect of substances that affect platelet cytoskeleton on the interaction of gel-filtered platelets with surfaces coated with human monomeric type I, IV, and V collagen was studied. The sulfhydryl group oxidizing agent azodicarboxylic acid-bis-dimethylamide (diamide) which causes disulfide-linked polymer formation of certain cytoskeletal proteins, the actin-polymerization inhibitor, cytochalasin B, and 2-mercaptopropionylglycine (2-MPG), a cell-permeable SH-reagent, completely abolish adhesion-induced platelet spreading and mural platelet aggregate formation on collagen-coated surfaces. Extrusion of pseudopods was inhibited by cytochalasin B and 2-MPG as well as by diamide, but only the latter caused spherulation of platelets, whereas cytochalasin B and 2-MPG left the discoid shape of resting platelets intact. These effects are dose-dependent and are not accounted for by a chemical modification of the collagenous substrates by the cytoskeletal perturbing substances. The present data indicate that (i) cytoskeletal rearrangements are essential in adhesion-induced platelet spreading and aggregate formation on surfaces coated with collagen, but not in supporting the initial attachment of native platelets to the substrate; (ii) both, polymerization and depolymerization of actin filaments affect platelet activation; (iii) the sulfhydryl-disulfide status of the platelet seems to be a possible target for anti-platelet drugs, since chemical modification of platelets by the GSH-GSSG-active substances, diamide and 2-MPG, leads to a reversible inhibition of adhesion-induced platelet activation.

Chromatography, Gel↗

Two-step targeting of urokinase to plasma clot provides efficient fibrinolysis.

Two-step targeting of urokinase to a model thrombus (human plasma clot) has been examined in vitro. To this purpose a covalent conjugate of vector antibodies to fibrinogen with monoclonal non-inhibiting antibody to urokinase was obtained using cross-linking agent disuccinimidilsuberate. After pretreatment with the conjugate clot acquired affinity for urokinase, which alters the character of fibrinolysis. Pretreatment with the conjugate resulted in at least 10-fold decrease in dose of urokinase needed for effective clot lysis (from 150 IU/ml for intact clot to 10-15 IU/ml for pretreated one). This variant of urokinase targeting provides effective clot lysis without fibrinogenolysis in plasma.

Antibodies, Monoclonal↗

Monoclonal antibody to human endothelial cell surface internalization and liposome delivery in cell culture.

A monoclonal antibody (mAb), E25, is described that binds to the surface of cultured human endothelial cells. Upon binding E25 is rapidly internalized and digested intracellularly. Selective liposome targeting to the surface of the cells is performed using a biotinylated E25 antibody and an avidin-biotin system. Up to 30% of the cell-adherent liposomal lipid is internalized.

Animals↗

Specific killing of human endothelial cells by antibody-conjugated glucose oxidase.

Conjugates of antibody with glucose oxidase obtained via the carbohydrate moiety of the enzyme via oxidation with periodate are suggested as a tool for selective killing of the target cell. The conjugate was separated from uncoupled enzyme by repeated precipitation with ammonium sulfate (42% saturation). Purity of the conjugate was estimated by gel filtration on Toya Pearl TP-65. The glucose oxidase conjugated with rabbit antibody against mouse IgG bound specifically to plastic-adsorbed mouse immunoglobulins and to cultured human endothelial cells pretreated with mouse anti-endothelial antiserum. Glucose oxidase targeted to the cells generates hydrogen peroxide in the presence of glucose. This hydrogen peroxide killed the endothelial cells even in the absence of a halide-peroxidase system and in the presence of catalase. Features of the conjugate (specificity, effective cytotoxicity, high stability) make it suitable for prospective in vivo application and for immunoselective segregation of heterogeneous cell populations.

Animals↗

Participance of fibronectin and various collagen types in the formation of fibrous extracellular matrix in cardiosclerosis.

Investigation of the extracellular matrix composition of the left heart ventricle was carried out on autopsy material of subjects, aged from 60 to 70 years, in a number of cases, including: (1) tissue without cardiosclerosis; (2) granulation tissue formed 2 weeks after infarction; (3) post-infarctial fibrous scars; (4) diffuse cardiosclerosis in consequence of stenotic coronary atherosclerosis. Cryostat sections treated with highly specific antibodies to fibronectin and types I, III, IV and V collagens were examined by the indirect immunofluorescence technique. Fibronectin and the mentioned collagenous proteins were detected in the extracellular matrix of granulation tissue. In contrast, fibronectin and collagen type IV were not revealed in post-infarctial fibrous scars. Collagen types III and V were diffusely distributed in fibrous tissue, whereas collagen type I was demonstrated to accumulate preferentially in the deeper regions of post-infarctial scars. Fibronectin and collagen types I, III, V, but never type IV, were also found in the connective tissue in diffuse cardiosclerosis. The significance of type V collagen in the extracellular matrix is discussed.

Aged↗

Protection of cultured endothelial cells from hydrogen peroxide-induced injury by antibody-conjugated catalase.

The cytoprotective features of catalase-antibody conjugate prepared by covalent conjugation of catalase to rabbit antibody against mouse IgG is described. The bifunctional cross-linking agent m-maleimidobenzoic acid N-hydroxysuccinimide ester (MBS) was used for conjugation. Functionally active conjugate binds specifically to the plastic-adsorbed mouse IgG and to the surface of live human endothelial cells treated with mouse antiserum against human endothelial cells. Up to 4 units of catalase activity can bind to 1 cm2 of the endothelial monolayer. The targeted catalase protects endothelial cells from cytotoxic action of hydrogen peroxide: the minimal cytotoxic concentration of H2O2 for protected cells is 80-times higher than for intact cells. This effect is attributed partly to local reduction of H2O2 concentration in the cell microenvironment. Targeted catalase was estimated to reduce H2O2 concentration 8-fold near the cell surface with respect to average total concentration.

Antibodies↗

Binding of human monomeric type I collagen to platelets.

Interaction of platelets with subendothelial collagen is important in primary hemostasis and thrombosis. Although activation of platelets by collagen polymers has been widely investigated, only insufficient data are available concerning the binding of genetically distinct collagen types in their triple helical (monomeric) form to platelets. We report on the binding of 125I-labeled human type I collagen to platelets. The binding assay was performed at 20 degrees C in the presence of arginine in order to prevent polymerization of the collagen monomers. The binding of monomeric 125I-labeled human type I collagen is dose- and time-dependent, saturable and specific, since it is competitively inhibited by unlabeled type I collagen, but not by unlabeled human type V collagen. Scatchard analysis reveals a class of specific high affinity binding sites with a Kd of 2.5 X 10(-8) M. These results suggest that platelets interact with type I collagen through specific binding sites, and that there are various different binding sites on the platelet membrane for the genetically distinct collagen types.

Binding Sites↗

Relative distribution of fibronectin and type I, III, IV, V collagens in normal and atherosclerotic intima of human arteries.

Spatial distribution of fibronectin and type I, III, IV and V collagen has been investigated in normal arterial intima, fatty streaks, and atherosclerotic plaques by indirect immunofluorescence on transverse sections. Two distinct types of extracellular matrix were revealed in atherosclerotic lesions. The fibrous plaques consisted mostly of interstitial collagen types I and III, contained moderate amounts of type V and none of type IV collagen or fibronectin. In the extracellular matrix of the fatty streaks and in some areas of the fibrous plaques containing large amounts of subendothelial cells, some interstitial collagen was revealed, an increased amount of type IV, some type V collagen and a lot of fibronectin. Similarities of the extracellular matrix in atherosclerotic lesions and granulation tissues are discussed.

Adult↗