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Heparin-binding growth factor isolated from human prostatic extracts.

Prostatic tissue extracts from patients with benign prostatic hyperplasia (BPH) and prostatic carcinoma were fractionated using heparin-Sepharose chromatography. The mitogenic activity of eluted fractions on quiescent subconfluent Swiss Albino 3T3 fibroblasts was tested employing a tritiated-thymidine-incorporation assay. Two peaks of activity were consistently noted--one in the void volume and a second fraction which eluted with 1.3-1.6 M NaCl and contained the majority of the mitogenic activity. Both non-heparin- and heparin-binding fractions increased tritiated incorporation into a mouse osteoblast cell line (MC3T3), while only the heparin-binding fractions stimulated a human umbilical vein endothelial cell line (HUV). No increased uptake of thymidine was seen using a human prostatic carcinoma cell line (PC-3). Sodium dodecyl sulfate/polyacrylamide gel electrophoresis (SDS/PAGE) of lyophilized active fractions showed a persistent band at 17,500 daltons. The purified protein demonstrated angiogenic properties using the chick embryo chorioallantoic membrane (CAM) assay. Western blot analysis using antibodies specific to basic fibroblast growth factor (bFGF) or acidic FGF (aFGF) demonstrated that the former, but not the latter, bound to prostatic growth factor (PrGF), and inhibited its mitogenic activity as well. It appears that PrGF shares homology with basic fibroblast growth factors.

Allantois↗

Heterogeneity in human acid beta-glucosidase revealed by cellulose-acetate electrophoresis.

Cellulose-acetate gel electrophoresis, a technique commonly used for the separation of human acid hydrolases, was applied to study heterogeneity in acid beta-glucosidase (EC 3.2.1.45). With this technique, three forms of beta-glucosidase were distinguishable in extracts of several tissues. The most anodic beta-glucosidase activity (band 3) represents the broad-specificity beta-glucosidase that is not deficient in Gaucher disease and is not inhibited by conduritol B-epoxide (CBE). The beta-glucosidase activity was deficient in Gaucher disease. A third beta-glucosidase activity with an intermediate mobility (band 2) was also inhibited by CBE and deficient in Gaucher disease. Band 1 and band 2 beta-glucosidase thus represent different forms of glucocerebrosidase. By adding phosphatidylserine and sphingolipid activator protein (SAP-2), monomeric glucocerebrosidase could be completely converted into a form that comigrated with band 2 beta-glucosidase of tissue extracts. The addition of phosphatidylserine only also resulted in a changed mobility of the monomeric enzyme, but the migration in this case differed from that of band 2 beta-glucosidase of tissue extracts. The electrophoretic profile of beta-glucosidase activity of tissue extracts changed upon ethanol/chloroform extraction: the two glucocerebrosidase forms were converted into a band with a mobility identical to that of band 1 beta-glucosidase. Our findings indicate that the interaction of glucocerebrosidase with phospholipid and SAP-2 has major effects on the mobility of the enzyme in the cellulose-acetate gel electrophoresis system. The findings with the cellulose-acetate gel electrophoretic system are discussed in relation to the heterogeneity in glucocerebrosidase observed with sucrose density gradient analysis, immunochemical methods and isoelectric focussing studies.

Electrophoresis↗

Peroxisomal fatty acid oxidation capacity is more resistant to ischaemic and reperfusion injury than mitochondrial fatty acid oxidation capacity in feline hearts.

We investigated ischaemic and postischaemic mitochondrial and peroxisomal fatty acid oxidation capacity, ATP levels and regional function in 40 anaesthetized open chest cats subjected to 10 or 40 min of regional myocardial ischaemia with or without 3 h of reperfusion (n = 10 in each situation). Following 10 min of ischaemia, the mitochondrial fatty acid oxidation capacity measured in tissue extracts from ischaemic tissue (nmol min-1 mg protein-1) was reduced in both subepi- and subendocardium, but was normalized in reperfused tissue extracts from both wall layers (0.29 +/- 0.03 and 0.30 +/- 0.04 vs. 0.57 +/- 0.05 and 0.59 +/- 0.05. P < 0.05). Peroxisomal fatty acid oxidation capacity in tissue extracts was unaffected by ischaemia and reperfusion. ATP levels and regional function measured in the LAD region was partly restored transmurally. After 40 min of LAD occlusion, mitochondrial fatty acid oxidation capacity was reduced, with higher activity in subepi- than in subendocardium (0.27 +/- 0.05 vs. 0.19 +/- 0.04. P < 0.05). Reperfusion did not restore mitochondrial fatty acid oxidation capacity. Peroxisomal fatty acid oxidation capacity was increased in the ischaemic subendocardium compared with levels in non-ischaemic subendocardium (0.53 +/- 0.02 vs. 0.45 +/- 0.03, P < 0.05), with normalization at the end of reperfusion. ATP levels were non-uniformly reduced during ischaemia and not repleted during reperfusion. Regional function recovered in circumferential segments but not in longitudinal segments following 40 min of ischaemia. In conclusion fatty acid oxidation enzymes seem to be more resistant to ischaemia in peroxisomes than in mitochondria. Mitochondrial fatty acid oxidation is fully reversible following shortlasting ischaemia, but remains depressed following prolonged ischaemia and reperfusion.

Adenine Nucleotides↗

Reverse transcriptase activity in extracts of human prostatic tissues.

The extracts of human prostatic tissue specimens contain oncornavirus-like reverse transcriptase activity. This activity was isolated by banding the tissue extract in an equilibrium sucrose density gradient followed by phosphocellulose chromatography of the lysate of the material banding at a density of 1.14--1.20 g/cc. It was characterised by its utilisation of poly (Cm) as a template and its inhibition by selective inhibitors of viral reverse transcriptase. Human prostatic tissues of three histo-pathologic types--normal, hyperplastic and adenocarcinoma--were examined. One out of four normal, five out of six hyperplastic, and two out of two adenocarcinoma specimens displayed virus-like reverse transcriptase activity.

Adenocarcinoma↗

Detection of placental-type alkaline phosphatase in ovarian cancer.

A monoclonal antibody, H317, has been used for the sensitive and specific detection of placental-type alkaline phosphatase (PLAP) in sera, solubilized tissue extracts and fixed tumour tissue sections from patients representing a variety of ovarian tumours. PLAP was detected in over 30% of these sera and in most solubilized tumour tissue extracts. There was no association between circulating PLAP levels and either tissue extract levels or immunohistological staining of ovarian tumour tissue sections with H317. Nevertheless, immunohistology demonstrated the heterogeneity of cellular localization of PLAP within different tumours, and can often be of value in localizing tumour tissue.

Alkaline Phosphatase↗

DETECTION AND PERSISTENCE OF VI ANTIGEN IN TISSUES OF ACTIVELY IMMUNIZED MICE.

Gaines, Sidney (Walter Reed Army Institute of Research, Washington, D.C.), Julius A. Currie, and Joseph G. Tully. Detection and persistence of Vi antigen in tissues of actively immunized mice. J. Bacteriol. 89:776-781. 1965.-The presence, distribution, and persistence of Vi antigen in mouse tissue was determined by means of active immunization tests with tissue extracts. Mice were injected intraperitoneally with purified Vi antigen or Vi-containing bacilli. At appropriate intervals, animals were killed, and saline extracts of their tissues were prepared. Mice were immunized with these extracts and challenged 6 days later with 10 ld(50) of Salmonella typhosa Ty2. Protection was afforded by tissue extracts from Vi-injected mice, but not by normal tissue extracts. That the immunizing capacity of tissue extracts from Vi-injected mice was attributable to Vi antigen was affirmed by the demonstration that these extracts stimulated the production of Vi antibody in mice, coated erythrocytes for agglutination by Vi antiserum, and inhibited agglutination of Vi-sensitized red blood cells by known Vi antisera. Vi antigen could be detected in the liver and spleen of mice injected with as little as 1 mug. In mice given 150 mug, the antigen was still present in liver tissue 231 days later.

Animals↗

Identification of a 51-kilodalton polypeptide fatty acyl chain acceptor in soluble extracts from mouse cardiac tissue.

We have identified a protein in the soluble fraction from mouse cardiac tissue extracts which is rapidly and selectively acylated by myristyl CoA. This protein was partially purified by anion-exchange chromatography and gel filtration, and the acylation reaction was measured using [3H]myristyl CoA as substrate, followed by sodium dodecyl sulfate - polyacrylamide gel electrophoresis to resolve [3H]fatty acyl polypeptides. The [3H]acyl protein migrated as heterogeneous bands corresponding to relative masses (MrS) of 42,000-51,000 under nonreducing conditions or as a single polypeptide of Mr 51,000 in the presence of reducing agents. Fatty acyl chain incorporation into protein was very rapid and already maximum after 30 s of incubation, whereas no acylation was detected using heat-denatured samples or when the reaction was stopped immediately after initiation. Only the acyl CoA served as fatty acyl chain donor. No incorporation into protein occurred when myristyl CoA was substituted by myristic acid, ATP, and CoA. A time-dependent reduction in the level of [3H]fatty acyl polypeptide was observed upon addition of excess unlabeled myristyl CoA, indicating the ability of the labeled acyl moiety of the protein to turn over during incubation. The saturated C10:0, C14:0, and C16:0 acyl CoAs were more effective to chase the label from the [3H]acyl polypeptide than the C18:0 and C18:1 acyl CoAs. These results provide evidence for a 51-kilodalton polypeptide which serves as an acceptor for fatty acyl chains and could represent an important intermediate in fatty acyl chain transfer reactions in cardiac tissue.

Acyl Coenzyme A↗

Characterization of the enzyme responsible for nopaline and ornaline synthesis in sunflower crown gall tissues.

Extracts prepared from sunflower (Helianthus annuus L.) crown gall tissues induced by Agrobacterium tumefaciens strains C58 and T37 (nopaline utilizers) catalyze the synthesis of nopaline and ornaline. These compounds are not synthesized in extracts of crown gall tissues induced by strains B6, 15955 (octopine utilizers), and AT1 (utilizes neither octopine nor nopaline) or in extracts of habituated sunflower callus. Both synthetic activities require NADPH, alpha-ketoglutarate, and either arginine or ornithine; histidine and lysine will not substitute. Incorporation of arginine or ornithine into product is inhibited by the other substrate but not by histidine or lysine. On the basis of inhibition and K(m) data, both activities appear to be catalyzed by one enzyme and the same enzyme is apparently present in crown gall tissues induced by strains C58 and T37.

Journal Article↗

Hemodialysis graft mechanical thrombolysis with use of the Amplatz Thrombectomy Device: histopathologic evaluation of extracted myointimal tissue.

PURPOSE: To histopathologically evaluate material extracted from thrombosed hemodialysis access grafts by the Amplatz Thrombectomy Device (ATD). MATERIALS AND METHODS: Thrombosed hemodialysis access grafts were recanalized with use of crossed catheter technique with introduction of the ATD through 8-F sheaths. After removal of the ATD from the introducer sheath, the tip of the device was visually inspected. Discernible tissue in the impeller/housing mechanism was gently extracted with a hemostat and preserved in formalin. Specimens were evaluated histologically with hematoxylin-eosin and smooth muscle immunoperoxidase stains. RESULTS: The ATD was utilized in 18 patients with acutely thrombosed grafts. Sufficient tissue for pathologic evaluation was extracted from 10 devices. Histopathologic analysis yielded findings of fibrotic myointima in all 10 cases with positive smooth muscle stains. CONCLUSIONS: The unexpected, although consistent, finding of intimal and myointimal tissue fragments in the impeller/housing mechanism of the ATD raises questions with respect to the mechanism of tissue extraction and concerns regarding the use of the device in native vessels. Further studies are indicated to determine whether this apparent intimal injury will have a deleterious effect on vessel patency.

Angioplasty, Balloon↗

An assay method for cyclic AMP using high-performance liquid chromatography with pretreatment by alkaline phosphatase.

A convenient method for determination of cyclic AMP is described. This nucleotide was determined using high-performance liquid chromatography after the treatment of tissue extracts by alkaline phosphatase. Tissue extracts contain large amounts of materials which interfere with the measurement of cyclic AMP on the chromatogram. By the alkaline phosphatase treatment, these materials were completely converted to compounds which no longer interfered with the measurement. This method enables the detection of 2 pmol cyclic AMP, and is applicable to various tissue extracts which contain at least 0.1 nmol cyclic AMP/g wet wt.

3',5'-Cyclic-AMP Phosphodiesterases↗

[Antiviral effect of aqueous plant extracts in tissue culture].

The aqueous extracts from 178 kinds of medicinal plants belonging to 69 families were examined from the point of their virustatic activity against herpes-, influenza-, vaccine- and poliovirus. 75 kinds proved to be virustatic against one or more kinds of virus. Nearly one-third of the active plants belong to families that are known as especially rich in tannin. Besides the virustatic activity a great number of extracts showed also a cytostatic activity.

Antiviral Agents↗

Cardiovascular effects of atrial natriuretic extract in the whole animal.

Atrial tissue extract (AE) and ventricular tissue extract cause identical decreases in total peripheral resistance when they are injected i.v. into anesthetized rats. However, only AE causes significant hypotension because of cardiac inhibition. This involves both bradycardia and failure of stroke volume to increase appropriately. The observations cannot be explained by direct action of AE on myocytes, but are more likely to be the result of interactions with cardiovascular reflex mechanisms. Excitation of chemosensitive cardiac receptors with vagal afferents appears to be an important afferent mechanism. The efferent limb for the negative chronotropic response resides partly in the vagus nerves and partly in cardiac sympathetic nerves. The negative inotropic response of AE was not altered by vagotomy, spinal section, atropine, or propranolol. These results suggest that atrial peptides may cause the release of a negatively inotropic substance from a site that is not yet identified.

Afferent Pathways↗

Detection of human kallikrein 4 in healthy and cancerous prostatic tissues by immunofluorometry and immunohistochemistry.

BACKGROUND: Human kallikrein 4 (gene, KLK4; protein, hK4), a recently discovered member of the kallikrein gene family, shares many characteristics with prostate-specific antigen, the best available marker for prostate cancer. Because the protein has not been detected in any human tissue, we attempted to develop immunologic methods for hK4 analysis and use them to detect hK4 in healthy and cancerous tissue extracts and biological fluids. METHODS: We extracted total RNA from 20 pairs of matched (healthy-cancer) prostate tissue samples. KLK4 cDNA was amplified by reverse transcription-PCR (RT-PCR) and cloned in a pPICZalphaA expression vector. We then transformed the construct product into Pichia pastoris yeast strains and induced secreted recombinant protein production by addition of methanol. We purified the recombinant protein by nickel ion-affinity chromatography and used it as an immunogen in rabbits and mice to generate polyclonal anti-hK4 antibodies. These antibodies were used to develop a sandwich-type immunoassay suitable for hK4 quantification in biological fluids and tissue extracts. RESULTS: The immunoassay had a detection limit of 0.1 microg/L. We detected hK4 in 10 of 21 matched (healthy-cancer) prostate tissues, and hK4 was frequently higher in healthy tissues. In one matched-sample pair, the hK4 content was relatively high in both the healthy [4.62 microg/g of total protein (TP)] and the cancerous (1.22 microg/g of TP) prostate tissue. Among tissue extracts, we found the highest concentrations of hK4 in healthy (0.0-4.62 microg/g of TP) and cancerous (0.0-1.72 microg/g of TP) prostatic extracts and in placental extracts (0.0-0.05 microg/g of TP). We also detected traces of hK4 protein immunoreactivity in amniotic fluid (<0.1-0.6 microg/L), human breast milk (<0.1-0.75 microg/L), and seminal plasma (0.2-0.9 microg/L). Immunohistochemical studies showed cytoplasmic staining for hK4 protein in both malignant and benign epithelial cells of the prostate. However, we did not detect hK4 in cerebrospinal fluid, healthy and cancerous ovarian tissue extracts, and many other human tissue extracts. CONCLUSIONS: hK4 protein is present in some prostatic tissue extracts but at relatively low concentrations, although KLK4 mRNA is readily detectable by RT-PCR. We propose that the protein either is not synthesized efficiently or is degraded very quickly.

Animals↗

Studies on the in vivo uptake and incorporation of 1-14C-labeled D-hexosamines in tissues, mucopolysaccharide-peptide complexes, and glycosaminoglycans of the domestic fowl.

The incorporation of radioactivity from D-[1-14C]glucosamine and D-[1-14C]galactosamine into the tissues of skin, comb, wattle, liver, kidney, spleen, lung, heart, ovaries, egg yolk, infundibulum, magnum, isthmus, shell gland, and vagina of the White Leghorn laying hens was studied for different time intervals up to 120 h. A total of 28 laying hens were involved in this experimentation. The radioactivity was measured in the above whole tissue, the acetone extracts, the acetone-extracted tissues, the mucopolysaccharide-peptide complex (MPS-P), and in individual glycosaminoglycan (GAG) isolated from skin, comb, liver, kidney, and egg yolk. The radioactivities of the expired CO2 of the eggs and of the excreted urine and faeces were also measured in some cases. There was an increase in 14C associated with MPS-P with increasing time of experiment in all the tissues studied except in the case of the liver. The rate of increase of radioactivity was dependent on the tissue. A useful scheme for the study of the speed of the formation of GAG is to consider the acetone extract and the acetone-extracted tissue as macrocompartments from where the GAG draw hexosamines for their formation.

Acetylgalactosamine↗

Analyses of volatile C2 haloethanes and haloethenes in tissues: sample preparation and extraction.

A tissue extraction procedure was developed which minimized loss of readily volatilizable compounds for subsequent quantification by headspace gas chromatography, and evaluated for perchloroethylene (PER), 1,1,1-trichloroethane, 1,1,2,2-tetrachloroethane, and 1,1,2-trichloroethylene. Of the procedures evaluated, joint isooctane and saline tissue homogenization had the most efficient recovery, ranging from 73 to 104% for the four halocarbons from seven different rat tissues. PER concentrations were also determined in tissues of rats following in vivo halocarbon administration. Recovery did not appear to be tissue-dependent, but did vary somewhat with test chemical, with the least volatile, most lipophilic compounds exhibiting the highest recovery.

Animals↗

Haptoglobin typing from fatty tissues after extraction with non-ionic detergents.

Of the seven non-ionic detergents tested, Span 40, Tween 20 and Triton X-45 were suitable for extraction of haptoglobin (Hp) from fatty tissues. The extracted samples were subjected to electrophoresis and subsequently stained with o-tolidine. Enzyme-immunoassay and Western blotting (electrophoretic) techniques were used successfully to determine the Hp phenotypes from minute quantities of tissue samples after extractions with non-ionic detergents.

Adipose Tissue↗

Production of a monoclonal antibody directed against rat liver glutathione-insulin transhydrogenase.

A hybridoma cell line secreting monoclonal antibody specific for glutathione-insulin transhydrogenase has been produced by fusing mouse myeloma cells with spleen cells from mice immunized to purified rat liver glutathione-insulin transhydrogenase. The secreted antibody isotypes were found to be: Ig gamma 1 heavy chains and kappa light chains. This monoclonal antibody has been used to screen glutathione-insulin transhydrogenase in various rat tissue extracts (liver, fat, heart, testis, spleen, lung and kidney) following separation on NaDodSO4/urea polyacrylamide disc-gel electrophoresis and electrophoretic transfer to nitrocellulose. Screening with the monoclonal antibody showed the presence of one immunoreactive protein band equal in molecular weight to that of purified rat liver GIT (Mr 53,000) in extracts of all tissues studied and a second immunoreactive protein band of lower molecular weight (Mr 49,000) in spleen and lung tissue extracts. Separation of these two proteins by HPLC using a TSK-DEAE column demonstrated that both proteins exhibit insulin degrading activity. These data indicate that GIT may occur in multiple forms in some tissues.

Animals↗