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Biomedical subjects

A Martinez-Hernandez

Publications and source records attributed to A Martinez-Hernandez.

At least 19 recordsLinked to original sources

The extracellular matrix in hepatic regeneration.

After partial hepatectomy, as a consequence of hepatocyte proliferation, cell clusters containing 10-14 hepatocytes are formed. These clusters are devoid of sinusoids and extracellular matrix; therefore, many hepatocytes are two to three cells removed from the vascular spaces. Four days after hepatectomy, Ito cells send delicate cell processes between the hepatocytes in the clusters. This "invasion" of the clusters coincides with the activation in Ito cells of genes encoding for several laminin chains. The penetration of Ito cells into the clusters is followed by fenestrated endothelial cells, and in this manner the normal hepatocyte vascular relationship is restored. As soon as the normal vascular structure is reestablished, the laminin genes are turned off. This chain of events is similar to the one taking place during hepatogenesis when continuous capillaries are converted into sinusoids. This similarity in hepatogenesis and regeneration suggests that the secreted laminin chains may be signals for the vascularization of the clusters by fenestrated sinusoids. During this process neither entactin nor laminin alpha chains are secreted. The vascularization of the regenerating clusters contrasts sharply to the vascularization of cirrhotic nodules. In the latter case, entactin and perhaps laminin alpha 1 chains are secreted, and the final result is the formation of basement membranes and continuous capillaries rather than fenestrated sinusoids. We suggest that entactin and specific laminin chains play a crucial role in determining the outcome of hepatic injury. Definition of the roles of entactin and laminin chains in vascularization and modulation of the endothelial phenotype will not only elucidate important aspects of regeneration, but may provide a better understanding of cirrhosis and even suggest therapeutic approaches.

Animals

Nonenzymatic glycosylation of poly-L-lysine: a new tool for targeted gene delivery.

The basic approach in targeted gene delivery relies on the formation of a complex between a vector and a molecule that will be selectively internalized by the target cells. In the case of hepatocytes, asialoglycoproteins are convenient targeting molecules because of the high affinity and avidity of the hepatocyte galactose receptor. In this system, poly-L-lysine is cross-linked to an asialoglycoprotein, and the resulting conjugate is complexed with the expression vector (DNA). The electrostatic binding between DNA and poly-L-lysine-asialoglycoprotein ensures delivery of the intravenously injected complex to the liver, where it is subjected to endocytosis by hepatocytes. However, the poly-L-lysine-asialoglycoprotein complexes tend to be unstable, of limited solubility and of fixed carbohydrate content. For these reasons we searched for a simpler alternative. We exploited the known capacity of reducing sugars to be reductively coupled to the epsilon-amino groups in proteins and used lactose to obtain poly-L-lysine with "exposed" galactose. Glycosylation with sodium cyanoborohydride at high pH in borate buffer is a simple, reproducible procedure. The "lactosylated" poly-L-lysine has proved very stable, highly soluble and easily bound to plasmids. In a set of experiments we compared the asialofetuin-poly-L-lysine vector complexes with lactosylated poly-L-lysine vector complexes by transfecting hepatoma cells (HepG2) in culture. For these experiments we used a pRc/cytomegalovirus eukaryotic expression vector containing a mutant TGF-beta 1 complementary DNA.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Microwave thermal balloon angioplasty in the atherosclerotic rabbit.

We evaluated the angiographic and histologic response of the coronary vessels of the atherosclerotic rabbit to microwave thermal balloon angioplasty. Sixteen rabbits with atherosclerosis of the external iliac arteries following a high fat diet and endothelial denudation were treated with either CBA or MBA. Four weeks following angioplasty angiography was repeated, and following the death of the animals, the vessels treated were excised for histologic evaluation. In vessels with MBA with peak temperatures of 85 degrees C there was an increase in luminal diameter immediately postangioplasty, from 1.66 +/- 0.32 mm to 2.54 +/- 0.23 mm (p < 0.05). The diameter at 4 weeks (2.29 +/- 0.74 mm) remained increased compared with the preangioplasty diameter (p < 0.05). With microwave angioplasty at 70 degrees C there was an increase in luminal diameter, from 1.92 +/- 0.37 mm to 2.40 +/- 0.22 mm (p < 0.05) immediately postangioplasty. This increase in diameter was not sustained at 4 weeks (1.86 +/- 0.28 mm). In the vessels treated with CBA there was no significant increase in diameter noted either immediately postangioplasty or at 4 weeks postangioplasty. In the thermally treated vessels, histologic evaluation revealed a loss of lipid-laden cells; it also revealed the formation of a concentric hypocellular fibrotic layer. Microwave thermal balloon angioplasty at 85 degrees C results in enhancement of the immediate and delayed response to angioplasty. Modification of the proliferative response to angioplasty may be accomplished with this modality.

Angioplasty, Balloon

The hepatic extracellular matrix. I. Components and distribution in normal liver.

The unique nature of the hepatic extracellular matrix (ECM) is predicated by the special configuration of the space of Disse. Whereas other epithelial organs have two basement membranes (BM) and a substantial ECM interposed between endothelial and epithelial cells, the liver lobule has no BM and only an attenuated ECM, consisting mostly of fibronectin, some collagen type I, and minor quantities of types III, IV, V, and VI. This configuration, together with the abundant fenestrations and gaps of the sinusoidal endothelial cells, seems ideally suited to facilitate the rapid bidirectional exchange of macromolecules normally taking place between plasma and hepatocytes. During organogenesis, the liver anlage is vascularized by continuous capillaries with BM, but by day 13.5 of development (in the rat) the vessels in the immediate proximity of hepatocytes become fenestrated, lacking specialized junctions and BM, suggesting that the hepatocytes produce signals capable of modulating the endothelial phenotype. In regeneration, hepatocyte proliferation precedes vascular proliferation resulting in the formation of hepatocyte clusters that, temporarily, lack sinusoids. Eventually, vascular proliferation follows and the normal hepatocyte-vascular relationships are restored. During this period laminin synthesis by Ito cells is prominent. As soon as hepatocytes become stable, secretion of the sinusoid phenotype-maintaining factors resumes and laminin synthesis and secretion terminates. The interplay between extracellular matrix and liver cells is essential for normal homeostasis and its modification results in deranged hepatic function.

Adult

The hepatic extracellular matrix. II. Ontogenesis, regeneration and cirrhosis.

The unique nature of the hepatic extracellular matrix (ECM) is predicted by the special configuration of the space of Disse. Whereas other epithelial organs have two basement membranes (BM) and a substantial ECM interposed between endothelial and epithelial cells, the liver lobule has no BM and only an attenuated ECM, consisting mostly of fibronectin (FN), some collagen type I, and minor quantities of types III, IV, V, and VI. This configuration, together with the abundant fenestrations and gaps of the sinusoidal endothelial cells, seems ideally suited to facilitate the rapid bidirectional exchange of macromolecules normally taking place between plasma and hepatocytes. During organogenesis, the liver anlage is vascularized by continuous capillaries with BM, but by day 13.5 of development (in the rat) the vessels in the immediate proximity of hepatocytes become fenestrated, lacking specialized junctions and BM, suggesting that the hepatocytes produce signals capable of modulating the endothelial phenotype. In regeneration, hepatocyte proliferation precedes vascular proliferation resulting in the formation of hepatocyte clusters that, temporarily, lack sinusoids. Eventually, vascular proliferation follows and the normal hepatocyte-vascular relationships are restored. During this period laminin synthesis by Ito cells is prominent. As soon as hepatocytes become stable, secretion of the sinusoid phenotype-maintaining factors resumes and laminin synthesis and secretion terminates. The interplay between extracellular matrix and liver cells is essential for normal homeostasis and its modification results in deranged hepatic function.

Animals

Dietary fat exacerbates liver disease in bile duct-ligated rats.

Previous studies have suggested that the mortality of bile duct-ligated (BDL) rats is related to the amount of dietary fat consumed. We investigated the influence of dietary fat concentration on liver disease in BDL rats. Groups of rats were fed for 4 wk either a low fat diet (LF, 0.92 kJ/g; 3% of total energy from fat), a high fat diet (HF, 1.07 kJ/g; 30% fat), a high fat diet with energy density equivalent to that of the LF diet (HFIB, 0.92 kJ/g; 30% fat) or a diet based on the composition of commercial nonpurified diets (COMP, 0.90 kJ/g; 10% fat). Energy intake, body weight gain, plasma biochemical indices and hepatic histology were compared in BDL and sham-operated control rats. Bile duct-ligated animals consuming the LF diet showed a faster recovery of energy intake and greater body weight gain following surgery than did BDL animals fed the other three diets. Plasma alkaline phosphatase activity was significantly greater in BDL animals fed either of the high fat diets than in those fed the LF or COMP diet starting 1 and 2 wk, respectively, after surgery. Hepatic fibrosis and bile duct proliferation at d 28 post-ligation were greater in rats fed a 30% fat (HF) diet than in rats fed the 3% fat (LF) diet. These results suggest that dietary fat concentration can influence the severity of liver dysfunction in extrahepatic biliary obstruction.

Alkaline Phosphatase

Microwave thermal balloon angioplasty in the normal rabbit.

The feasibility of utilizing microwave energy for thermal angioplasty was evaluated in 28 normal New Zealand white rabbits. Angioplasty catheters were inserted via bilateral femoral arteriotomy and balloon angioplasty was performed on the external iliac arteries. There were three variables in the microwave angioplasty procedure: peak temperature, energy duration, and peak balloon pressure. At 1 week after the angioplasty, animals were put to death and the iliac arteries were removed after perfusion fixation. Histologic analysis was performed. Injuries to the medial and intimal proliferation were evaluated using an index based on the circumferential extent and depth of abnormality. There was no relationship noted between intimal proliferation or medial injury and energy duration of peak balloon pressure. There was a direct relationship between peak temperature and medial injury. Furthermore, there was an inverse relationship between medial injury and intimal proliferation. The axial extent of change induced by microwave energy was 1.6 cm. Microwave thermal energy delivery through a balloon angioplasty catheter is feasible and can be performed conveniently.

Angioplasty, Balloon

Dissecting aortic aneurysm as a complication of generalized fibromuscular dysplasia.

This is the first report of a dissecting aneurysm of the aorta caused by generalized vascular fibromuscular dysplasia. An 18-year-old black man suddenly developed paraparesis and bilateral pulse loss below the waist. An aortogram disclosed a dissecting aneurysm of the entire aorta and an obstruction of blood flow below the renal arteries. On postmortem examination, the dissection of the aorta was found to be due to fibromuscular dysplasia that affected not only the aorta, but multiple other arteries as well.

Adolescent

Establishment of a cell line from the EHS tumor: biosynthesis of basement membrane constituents and characterization of a hybrid proteoglycan containing heparan and chondroitin sulfate chains.

We have established a continuous cell line from the Engelbreth-Holm-Swarm (EHS) tumor, a transplantable murine neoplasm that has been extensively utilized to investigate basement membrane constituents. The EHS-derived cells, designated BAM cells, have been subcultured for over 40 passages and have maintained phenotypic and biological properties of the parent EHS tumor cells. BAM cells have retained an epithelioid morphology and the ability to induce EHS-like tumors in mice. Biochemical and immunochemical studies demonstrated that BAM cells synthesize laminin A and B chains, collagen type IV, entactin and the basement membrane specific heparan sulfate proteoglycan. Interestingly, the proteoglycan synthesized by BAM cells was a hybrid molecule containing 2-3 heparan sulfate chains of 25-35 kDa and 1 chondroitin sulfate chain of approximately 17 kDa attached to a 400-kDa protein core. This cell line will be useful to investigations concerning biosynthesis of basement membrane constituents and will be a valuable source of extracellular matrix for testing cellular properties such as attachment, locomotion and differentiation.

Animals

Isolation, characterization, and localization of cardiac collagen type VI. Associations with other extracellular matrix components.

We have isolated and characterized collagen type VI from murine, canine, and nonhuman primate hearts. In the three species studied, collagen type I was the major collagenous component of the cardiac interstitium (80% of total collagen), whereas collagen type VI represented approximately 5% of total collagen. To define the exact distribution of collagen type VI and its possible interactions with other components of the cardiac extracellular matrix, collagen types I, III, IV, and VI, laminin, and fibronectin were localized in the rat myocardium by immunohistochemistry, using monospecific antibodies. In the rat myocardium, collagen type VI was prevalent in the media and adventitia of muscular arteries, in fine connective tissue septa, in the area surrounding capillaries, and in the delicate endomysium in proximity to myocardial cells. When compared with the immunohistochemical localization of collagen types I, III, and IV, laminin, and fibronectin, the continuity and hierarchical organization of the cardiac extracellular matrix became apparent. The matrix forms a continuous network extending from the pericardium to the endocardium. Furthermore, there is an arborescent hierarchy in the system such that collagen type I is more prevalent in the wider septa, collagen type III being more obvious in medium-sized branches, and fibronectin and collagen type VI prevailing in the terminal (pericellular) aspects of the network. In this pericellular location, fibronectin and collagen type VI, by means of specific interactions, may act as anchor components linking the myocardial cell basement membranes not only to the extracellular matrix but also to the cardiac interstitial cells. This continuity, organization, and coupling of the cardiac extracellular matrix appears well suited to integrate and distribute the physical stress generated by the continuous contraction and relaxation of the myocardium.

Animals

The role of capillarization in hepatic failure: studies in carbon tetrachloride-induced cirrhosis.

During the cirrhotic process, the hepatic microvascular phenotype is transformed from sinusoids (discontinuous capillaries) into continuous capillaries. This transformation has been termed capillarization. Many hepatic functions depend on the rapid, bidirectional exchange of macromolecules between plasma and hepatocytes. To determine whether capillarization contributes to hepatic failure in cirrhosis, we decided to study the plasma clearance (125I) and hepatocyte uptake (electron microscopy) of three tracers in normal and cirrhotic rats. The tracers chosen were a hemeundecapeptide with peroxidatic activity (fluid-phase pinocytosis), asialofetuin (receptor-mediated endocytosis of a medium size protein) and ferritin (receptor-mediated endocytosis of a large size protein). The results demonstrate a decreased hepatocyte uptake of hemeundecapeptide; a significant delay in plasma clearance of asialofetuin; and a minor delay in plasma clearance of ferritin, but a striking trapping of ferritin in the cirrhotic capillary basement membrane. The delayed plasma clearance in cirrhosis cannot be ascribed to a decreased number of surface receptors because, in isolated hepatocytes, the number of molecules bound per cell was equivalent in normal and cirrhotic livers. These findings support the concept of capillarization, with the formation of continuous diffusion and filtration barriers between plasma and hepatocytes, representing a significant hindrance to the bidirectional macromolecular exchange normally taking place between these two compartments. Furthermore, at least in the case of ferritin, the capillary basement membrane of cirrhotic livers seems to be the major filtration barrier. This hindrance to hepatocyte uptake, and presumably also to secretion, may be the cause (or at least a major determinant) of the hepatic failure characteristic of cirrhosis.

Animals

Hepatocytes modulate the hepatic microvascular phenotype.

The liver microvasculature is unique among epithelial organs because it is composed of sinusoids rather than capillaries. Since hepatocytes lack a basement membrane, they are not separated from plasma by any continuous filtration barrier. During the cirrhotic process, the sinusoids become transformed into typical continuous capillaries with specialized endothelial junctions, continuous basement membrane, and pericytes. To explore the factors that determine the phenotype of the hepatic microvasculature, we implanted fetal rat liver fragments onto the chorioallantoid membrane of 6-day-old, shell-less, quail embryos. After 5 days in culture they were studied by light and electron microscopy immunohistochemistry using markers specific for: quail cells, hepatocytes, and basement membrane components of murine or avian origin. The normal quail chorioallantoid membrane is vascularized by continuous capillaries. The periphery of the transplanted fetal rat liver fragments becomes vascularized by microvessels of quail origin. However, the quail microvessels in the proximity of rat hepatocytes assume a sinusoidal phenotype with fenestrations lacking diaphragms, endothelial cell gaps, and devoid of basement membrane. These results demonstrate that liver cells modulate the phenotype of the hepatic microvascular. Since hepatocytes and endothelium do not establish direct cell contacts, we postulate that this modulation is exerted either by secreted soluble cytokines or by the extracellular matrix.

Animals

The extracellular matrix in hepatic regeneration. Localization of collagen types I, III, IV, laminin, and fibronectin.

After partial hepatectomy, the liver is capable of complete regeneration, restoring normal hepatic size, architecture, and function. To study the role of the extracellular matrix in regeneration, the temporal and spatial sequence of deposition of several of its components, including collagen types I, III, and IV, laminin, and fibronectin, in rat liver, after an 80% hepatectomy, was characterized by light microscopy immunohistochemistry. A minimum of five animals were studied for each date. In agreement with previous reports, subsequent to 80% hepatectomy, there was a brisk mitosis of hepatocytes. The mitotic activity was maximal at 48 hours, primarily in the periportal and centrilobular zones, and resulted in the formation of hepatocyte clusters and widening of the hepatic plates. Of the extracellular matrix components studied, laminin was the one demonstrating the most dramatic changes. By 24 hours, laminin appeared in the hepatic sinusoids reaching a maximum staining intensity at 48 hours. Intracellular laminin was prominent in numerous non-parenchymal cells, with many having the morphology, location, and desmin content characteristic of Ito cells. Laminin staining decreased in the sinusoids at 4 days; however, some intracellular staining of Ito cells was present even at 8 days after hepatectomy. At the completion of regeneration, there was no evidence of any substantial change in the ratio: extracellular matrix/cell mass. The results indicate that: (a) hepatocytes can divide without prior removal of the subsinusoidal extracellular matrix; (b) during regeneration, hepatocyte division precedes sinusoidal formation; (c) during hepatic regeneration, and in spite of the presence of laminin in Ito cells, no basement membranes are formed; (d) the prominent expression of laminin and its proposed functions in morphogenesis suggest a critical role for this matrix component in the formation and reorganization of the regenerating liver.

Animals

Intrahepatic cholestasis and phospholipidosis associated with the use of trimethoprim-sulfamethoxazole.

Although liver injury after administration of the trimethoprim-sulfamethoxazole combination is rare, hepatocellular necrosis and cholestasis have developed in a few cases. We describe a patient who developed a severe, prolonged cholestatic reaction after trimethoprim-sulfamethoxazole administration. The findings from serial liver biopsy samples showed characteristic abnormalities of phospholipidosis that have not been previously described for trimethoprim-sulfamethoxazole-related hepatic injury. The most prominent finding on electron microscopic evaluation of the liver was the presence of prominent hepatocyte lysosomal inclusions characterized by concentric arrangements of membranous and lamellated structures. The patient improved after several courses of exchange plasmapheresis, which may have assisted in the removal of toxic drug-lipid complexes. The pathogenesis of this acquired secondary phospholipidosis is unknown. Possible mechanisms include generation of highly lipid-soluble metabolites and inhibition of the lysosomal enzyme phospholipase A1.

Chemical and Drug Induced Liver Injury

Thrombus-free, human endothelial surface in the midregion of a Dacron vascular graft in the splanchnic venous circuit--observations after nine months of implantation.

The addition of an endothelial cell lining to a prosthetic vascular graft may reduce the thrombogenicity of the blood-contacting surface. An endothelialized mesoatrial graft was implanted in a patient with Budd-Chiari syndrome caused by a primary inferior vena caval leiomyosarcoma. During the initial surgery a Dacron vascular graft was preclotted with plasma and then lined with microvascular endothelial cells derived from the patient's subcutaneous adipose tissue. The patient did well initially but 9 months later required resection of a mechanical stricture of the graft that occurred as it passed beneath the costochondral junction. Grossly, the luminal surface of the resected graft was free of thrombus, with a smooth, glistening, white surface. Light microscopy demonstrated a surface layer of cells morphologically consistent with an endothelial cell monolayer, a subendothelial layer composed of extracellular matrix and spindle-shaped cells, and granulation tissue around the Dacron fabric. Immunohistochemistry and electron microscopy confirmed the presence of vascular endothelium on the luminal surface. This report documents the successful achievement of a human endothelial cell monolayer that persisted for 9 months in the midportion of a Dacron vascular graft.

Adult

Immunohistochemical localization of laminin in the basement membranes of normal, hyperplastic, and neoplastic human prostate.

We examined the effects of fixatives and antibody sources on the immunohistologic localization of laminin in normal and cancer-containing human prostates and studied the localization patterns in carcinomas of varying degrees of histologic differentiation. Two different polyclonal antibodies were localized in paraffin-embedded or cryostat sections of fixed (alcohol, formalin, and paraformaldehyde) or unfixed tissue, using the immunofluorescence (IF) or immunoperoxidase (IP) techniques, with positive and negative controls. We found that the IF reactions were more intense in unfixed or alcohol-fixed sections than in paraformaldehyde-fixed specimens. IP reactions were very weak or absent in fixed and paraffin-embedded sections, but pepsin treatment of these sections resulted in more intense and uniform IP reaction products, stronger than in unfixed or ethanol-fixed cryostat sections. With the IP technique, laminin localization was intense and uniform in the basement membranes (BM) of acini, blood vessels, smooth muscle, and nerve fibers in normal prostate, benign hyperplasia (BPH), and well-differentiated carcinomas. The BM of poorly differentiated carcinomas showed widespread absence of laminin reactivity. In normal BPH and well-differentiated tumors, occasional epithelial cells and their surface and acinar lumina had laminin reactivity. However, in higher grade tumors, numerous neoplastic cells had laminin reactivity in cytoplasm, their surface, and secretory material. Some macrophages and neutrophils also contained laminin reactivity, presumably of degraded laminin. In some moderately and poorly differentiated tumors, the BM of small capillaries did not contain laminin. The BM of larger vessels always had laminin reactivity, even in the higher grade tumors.

Adenocarcinoma

Comparative ultrastructural localization of collagen types III, IV, VI and laminin in rat uterus and kidney.

Antibodies against collagen types III and VI have been localized by electron immunohistochemistry with two different techniques in normal rat uterus and kidney. Antibodies directed against two components of the extracellular matrix with known localization, laminin and type IV collagen, were used as controls for the specificity of the localization. The results demonstrate that types III and VI are found in the interstitium as fine (10- to 15-nm), beaded fibrils and filaments (6- to 10-nm), respectively. Both are often found associated with thick, crossbanded type I collagen fibers (30- to 35-nm) and occasionally associated with some basement membranes adjacent to the interstitium. Further, the findings suggest that collagens III and VI may connect the various components of the extracellular matrix, such as type I fibers with basement membranes and other structures, thus forming an integrated functional unit.

Animals

Connective tissue of rat lung. II: Ultrastructural localization of collagen types III, IV, and VI.

We localized collagen types III, IV, and VI in normal rat lung by light and electron immunohistochemistry. Type IV collagen was present in every basement membrane examined and was absent from all other structures. Although types III and VI had a similar distribution, being present in the interstitium of major airways, blood vessels, and alveolar septa, as in other organs, they had different morphologies. Type III collagen formed beaded fibers, 15-20 nm in diameter, whereas type VI collagen formed fine filaments, 5-10 nm in diameter. Both collagen types were found exclusively in the interstitium, often associated with thick (30-35 nm) cross-banded type I collagen fibers. Occasionally, type III fibers and type VI filaments could be found bridging from the interstitium to the adventitial aspect of some basement membranes. Furthermore, the association of collagen type VI with types I and III and basement membranes suggests that type VI may contribute to integration of the various components of the pulmonary extracellular matrix into a functional unit.

Animals