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Laser capture microdissection and analysis of amplified antisense RNA from distinct cell populations of the young and aged rat brain: effect of traumatic brain injury on hippocampal gene expression.

To explore the molecular mechanisms underlying the increased vulnerability of the aged brain to traumatic brain injury (TBI), we compared the expression of several age-related genes in the CA1, CA3 and dentate gyrus subfields of the young and aged rat hippocampus before and after lateral fluid percussion TBI. Using laser capture microdissection (LCM), we obtained hippocampal neurons and glia from the neuropil adjacent to the pyramidal and granule cell layers. Subsequently, we linearly amplified and analyzed the antisense mRNA using Northern blot and ribonuclease protection assays (RPA). Our procedures, which have not been previously applied to quantitative analysis of LCM mRNA from neural tissue, included a modified reverse transcription step to enhance full-length cDNA synthesis, thus enhancing the yield of larger components of in vitro-transcribed mRNA for downstream analysis. Northern analysis showed greater expression of two aging-associated genes, p21 and brain-derived neurotrophic factor (BDNF) in the aged hippocampus. The age-related differences in p21 and BDNF expression were particularly prominent after TBI. By quantitative RPA analysis, we found that the expression of p21, known to be induced in senescent cells, was significantly greater in the CA3 region of aged rats, an area that is selectively vulnerable to TBI. However, expression of genes associated with regenerative and repair functions was significantly decreased in aged hippocampus. Our RPA results indicate that substantial age-dependent differences in the transcriptional profile of distinct regions of the hippocampal formation may account, in part, for their differential susceptibility to brain injury.

Age Factors↗

Role of thrombophilic gene polymorphisms in branch retinal vein occlusion.

OBJECTIVE: Branch retinal vein occlusion (BRVO) is a common cause of severe visual loss. Numerous risk factors, including arterial hypertension, diabetes mellitus, and arteriosclerosis, have been identified. Gene polymorphisms affecting hemostasis may also play a role in the pathogenesis of BRVO. The present study was therefore done to determine the prevalence of genetic polymorphisms in factors implicated in hypercoagulability among patients with BRVO. DESIGN: Retrospective case-control study. PARTICIPANTS: The study cohort consisted of 294 patients with BRVO and 294 control subjects, matched for age and gender. METHODS: Determination of genotypes was done by allele-specific digestion of polymerase chain reaction products, or by 5' exonuclease assay (TaqMan). MAIN OUTCOME PARAMETERS: Genotypes of factor V R506Q (factor V Leiden), prothrombin 20210G>A, fibrinogen beta -455G> A, factor XII (FXII) 46C>T, and ITGA2 807C>T (platelet glycoprotein Ia [GPIa] 807C>T) and ITGB3 L59P (platelet GPIIIa PlA1/PlA2) polymorphisms. RESULTS: Genotype distributions of the investigated gene polymorphisms did not differ significantly between patients and control subjects. In contrast, significantly increased prevalences of arterial hypertension and hypercholesterolemia were found among patients with BRVO. In a logistic regression analysis, the presence of arterial hypertension was associated with an odds ratio (OR) of 2.32 (95% confidence interval [CI], 1.62-3.32), whereas hypercholesterolemia yielded an OR of 2.54 (95% CI, 1.74-3.70) for BRVO. CONCLUSION: Our data indicate that the prevalences of the investigated gene polymorphisms do not differ significantly in patients with BRVO and control subjects. This suggests that these polymorphisms are not major risk factors for BRVO.

Adult↗

Expression, production, and characterization of full-length vitronectin in Escherichia coli.

Vitronectin (VN) is one of the primary adhesive proteins in serum and serves to promote the attachment and spreading of a wide variety of cell types to tissue culture plastic. In this study, the pGEX2t expression vector was used to express full-length human VN as a GST-tagged fusion protein in Escherichia coli. GST/VN production was induced with IPTG and the protein was found to localize to inclusion bodies. The inclusion bodies were isolated from cell lysates, washed once with 2 M urea and Triton X-100, and then solubilized with 8 M urea in the presence of a reducing compound. Solubilized GST/VN was purified by heparin affinity chromatography and refolded by dialysis against phosphate buffered saline. Approximately 40 mg of GST/VN was recovered from 1L of bacterial culture. Purified GST/VN migrated at the predicted molecular mass on SDS-PAGE and was recognized by both anti-GST and anti-VN antibodies. GST/VN bound to heparin and promoted cell adhesion, spreading, and growth to a similar extent as that observed with plasma-derived VN. As such, the production of recombinant VN in bacteria represents a rapid and convenient method to produce large quantities of VN for cellular studies.

Animals↗

Association of C807T, Pl(A), and -5 C/T Kozak genotypes with density of glycoprotein receptors on platelet surface.

This study investigates whether three platelet glycoprotein (GP) polymorphisms, C807T in GP Ia, Pl(A1/A2) in GP IIIa, and -5 T/C Kozak in GP Ibalpha gene, influence the density of the three important adhesion and activation receptors on the platelet surface. Fifty-four healthy donors were genotyped according to the three polymorphisms, and densities of the corresponding GPs were measured by flow cytometry. Our study confirmed the association between C807T polymorphism and platelet surface expression of GP Ia-IIa and GP Ia and demonstrated that the density of GP Ibalpha or GP IX is not associated with the Kozak polymorphism. Although the Pl(A1/A2) polymorphism did not affect the expression of GP IIb-IIIa and GP IIIa on the platelet surface, flow-cytometric analysis employing murine monoclonal antibody SZ21 against GP IIIa can be applied to distinguish Pl(A1/A1) and Pl(A1/A2) polymorphism.

Adult↗

A defined peptide that inhibits the formation of the glycoprotein IIb and IIIa complex.

Collagen-platelet interaction plays an important role in hemostasis and pathological thrombosis. The proposed mechanism of the interaction was the activation of platelets-->releasing of contents from granules-->aggregation. The common end point is the platelets and fibrin aggregates. Platelet glycoprotein (GP) IIb/IIIa (the alphaIIbbeta3 integrin) complexes serve as a receptor for the binding of fibrinogen to form firmed aggregates. Blockading of GP IIb/IIIa has been proposed to prevent platelet aggregation independent of the substance(s) responsible for activating the platelets. The development of various forms of GP IIb/IIIa inhibitor has resulted in the inhibition of platelet aggregation, although studies of alphaIIbbeta3 receptor function and various GP IIb/IIIa inhibitors have demonstrated the potential for these agents to produce effects on other aspects of platelet function as well as having nonplatelet effects. This study investigated platelet inhibition provided by blocking the GP IIb/IIIa complex formation by using a peptide derived from the GP IIIa molecule. The peptide inhibits both types I and III collagen-induced platelet aggregation in a dose-dependent manner. The defined peptide interferes with the formation of the GP IIb/IIIa complex by inhibiting the binding of FITC-PAC-1 onto ADP-, type I collagen-, and type III collagen-activated platelets. However, P-selectin secretion is not affected by the peptide. In addition, the peptide is not interfering with the binding of FITC-PAC-1 to platelets that were preincubated with indomethacin. Results from this study may suggest that the defined peptide is an effective agent to block the interaction of types I and III collagen with platelets.

Dose-Response Relationship, Drug↗

Genetic polymorphisms of the platelet receptors P2Y(12), P2Y(1) and GP IIIa and response to aspirin and clopidogrel.

INTRODUCTION: There is wide variability in the responses of individual patients to aspirin and clopidogrel. Polymorphisms of several platelet receptors have been related to increased platelet aggregation. We therefore aimed to evaluate whether these polymorphisms are related to altered response to aspirin or clopidogrel. MATERIALS AND METHODS: Patients (n=120) undergoing percutaneous coronary intervention who received aspirin for > or =1 week but not clopidogrel were included. Blood samples were drawn at baseline and 20-24h after a 300-mg clopidogrel dose. Aspirin insensitivity was defined as 5 microM ADP-induced aggregation > or =70% and 0.5 mg/mL arachidonic acid-induced aggregation > or =20%. Clopidogrel insensitivity was defined as baseline minus post-treatment aggregation < or =10% in response to 5 and 20 microM ADP. PlA polymorphism of glycoprotein IIIa, T744C polymorphism of the P2Y(12) gene and the 1622A>G polymorphism of the P2Y(1) gene were genotyped by polymerase chain reaction. RESULTS: There were no differences in polymorphism frequencies between drug-insensitive vs. drug-sensitive patients. There were also no significant differences in response to aspirin (assessed by arachidonic acid-induced aggregation) or to clopidogrel (assessed by ADP-induced aggregation or activation markers) when patients were grouped according to genotype. The only trend observed was lower reduction in PAC-1 binding following clopidogrel in PlA(2) carriers (P=0.065). CONCLUSIONS: We did not find an association between polymorphisms in the platelet receptors GP IIIa, P2Y(12) or P2Y(1) and response to aspirin or clopidogrel in cardiac patients. These findings suggest that the variability in response to anti-platelet drugs is multi-factorial and is not caused only by single gene mutations.

Aged↗

Antithrombotic effects of aspirin based on PLA1/A2 glycoprotein IIIa polymorphism in patients with coronary artery disease.

OBJECTIVE: The diallelic glycoprotein IIIa polymorphism P1A1/A2 was attributed to be an inherited risk factor for coronary events. Whether this polymorphism affects response to aspirin in patients with coronary artery disease is not known. METHODS: We assessed thrombin generation (prothrombin fragment F1+2) in consecutive blood samples collected from bleeding-time wounds in 28 men with coronary artery disease; P1A2 carriers, n=9; P1A1/A1, n=19. Thrombin generation and bleeding time were measured before and after 2 weeks of aspirin 300 mg/day. RESULTS: Aspirin-depressed thrombin generation in A1 homozygotes (p=0.04), but not in A2 carriers. Bleeding time after aspirin was also prolonged in A1 subjects only (p=0.02). CONCLUSION: Genotyping for glycoprotein IIIa polymorphism might be helpful in predicting antithrombotic action of aspirin in secondary prevention of coronary artery disease.

Alleles↗

Evaluation of a new flow cytometric HPA 1a screening method. A rapid and reliable tool for HPA 1a screening of blood donors and pregnant women.

We have evaluated a flow cytometric screening method for identification of HPA la negative individuals, using a commercially available monoclonal anti-CD61 antibody specific for the HPA 1a allotype, and compared the method with an ELISA based method for HPA la phenotyping and two methods for PCR genotyping. HPA 1a phenotyping by fluorochrome conjugated monoclonal anti-HPA la and analysis by flow cytometry is a rapid, reliable and inexpensive technique, suitable for screening purposes.

Antibodies, Monoclonal↗

What's happening? The expanding role of apheresis platelet support in neonatal alloimmune thrombocytopenia: current status and future trends.

Despite some unresolved problems that may be associated with platelet transfusion, such as alloimmunisation, refractoriness, bacterial contamination, and the potential side effects related to the development of some biological response modifiers during storage, platelet therapy remains the most effective treatment for the management and prevention of severe thrombocytopenia and hemorrhage [Seghatchian J, Snyder EL, Krailadsiri P, editors. Platelet therapy: current status and future trends. Amsterdam, The Netherlands: Elsevier; 2000]. This appears to be particularly the case in neonatal alloimmune thrombocytopenia (NAIT), which arises due to an incompatibility of the platelet specific antigens between the pregnant mother and her baby. Over 80% of severe NAIT cases in the Caucasian population occur when the mother and baby differ in their HPA-1 epitope (HPA-1a negative and positive respectively) leading, in 10% of cases, to the production of anti-HPA-1a which can cross the placenta and cause NAIT in utero or post-partum. Anti-HPA-5b is the second most cause of NAIT, although severe cases occur only after the first pregnancy. Clinical manifestations of NAIT vary from mild (petechia and bruises) to severe (intracranial haemorrhage with possible death or life long morbidity). A recent study in Scotland indicated that the cost per case of severe NAIT detected during screening of pregnant women, where anti-HPA-1a is detected for the first time, would amount to $98,771 [Turner M, Bessos H, et al. Prospective epidemiological study of the outcome and cost effectiveness of antenatal screening to detect neonatal alloimmune thrombocytopenia (NAIT) due to anti-HPA-1a. Transfusion, in press. Yet, unlike the case with Rhesus hemolytic disease of the new born, the cost-effectiveness of HPA-1 screening in NAIT remains unresolved, as does the most optimal mode of treatment. Therefore, in the absence of a consensus on the screening and optimal management of NAIT, the availability and provision of HPA-1a/5b negative apheresis platelets based on current practice (transfusionguidelines.org.uk) appear to be a clinically effective treatment in NAIT. In that vein, an increasing number of blood transfusion centres are screening blood donors in order to secure panels of donors for the prompt provision of HPA-1a/5b negative apheresis platelets. However, evidence is also accumulating that while platelets derived from various apheresis technologies currently in use may be equivalent in terms of cellular contents (thus meeting specifications), they may differ in terms of the platelet storage lesion, microvesiculation and the development of platelet-derived cytokines and some other biological response modifiers [Seghatchian J. Platelet storage lesion: the influence of various leukoreduction procedures on generation/retention of some biological response modifiers, microvesiculation, distribution of membrane-bound/soluble Prion and the rate of HLA-CLASS1 release. Trans Apher Sci, in press. This manuscript summarises strategy and progress both in the improvement of apheresis platelet quality and provision in NAIT.

Antigens, Human Platelet↗

Beta 3 integrin expression on T cells from renal allograft recipients.

Recent studies emphasize the paramount significance of beta 3 integrin in cell adhesion and homing, which may be particularly relevant in cancer progression and metastasis. In contrast, the presence and potential role of beta 3 on human T cells is practically unknown. We show that T cells can express significant amounts of alpha-beta 3 integrin (CD41/CD61), and the expression of alpha(v)-beta 3 (CD51/CD61) remains very low. T-cell beta 3 integrin is probably transferred by platelet-derived microparticles.

Antigens, CD↗

Pharmacogenetics of multigenic disease: heart disease as an example.

We now have a greater understanding of the workings of the human genome as well as a wide assortment of pharmacological and mechanical therapies that clearly improve mortality and quality of life for our patients with cardiovascular disease, but these areas of therapeutics and genomics have essentially advanced independently with little interaction up until recently. Pharmacogenetics is the study of the effect of a medication as it relates to single or defined sets of genes. A major goal will be to integrate the two so that true personalized therapy can be delivered. This review explores the clinical implications of the complex interactions in multigenic disease and pharmacology with examples of atherosclerosis and heart failure. The therapies of today are the direct result of understanding the epidemiological, molecular and genetic basis of cardiovascular disease with the application to clinical practice. The complexity of multigenic disease and the promise of pharmacogenetics will require that we improve on the methods of drug evaluation and this includes the need for new statistical methods, bioinformatics, and novel clinical trial design with sufficient power to detect differences in therapy. There must be a continued effort to apply biological and mechanistic plausibility in understanding disease and pharmacology but openness to new ideas and concepts, especially in understanding the workings of the genome.

Antigens, Human Platelet↗

Interleukin-4 improves the migration of human myogenic precursor cells in vitro and in vivo.

Different molecules are available to recruit new neighboring myogenic cells to the site of regeneration. Formerly called B cell stimulatory factor-1, IL-4 can now be included in the list of motogenic factors. The present report demonstrates that human IL-4 is not required for fusion between mononucleated myoblasts but is required for myotube maturation. In identifying IL-4 as a pro-migratory agent for myogenic cells, these results provide a mechanism which partly explains IL-4 demonstrated activity during differentiation. Among the different mechanisms by which IL-4 might enhance myoblast migration processes, our results indicate that there are implications of some integrins and of three major components of the fibrinolytic system. Indeed, increases in the amount of active urokinase plasminogen activator and its receptor were observed following an IL-4 treatment, while the plasminogen activator inhibitor-1 decreased. Finally, IL-4 did not modify the amount of cell surface alpha5 integrin but increased the presence of beta3 and beta1 integrins. This integrin modulation might favor myogenic cell migration and its interaction with newly formed myotubes. Therefore, IL-4 co-injection with transplanted myoblasts might be an approach to enhance the migration of transplanted cells for the treatment of a damaged myocardium or of a Duchenne Muscular Dystrophy patient.

Cell Differentiation↗

HDAC inhibition is associated to valproic acid induction of early megakaryocytic markers.

Valproic acid (VPA), a histone deacetylase inhibitor, causes differentiation in different cell lines and in a cell-specific manner; yet, its effect on megakaryocytic (MK) differentiation has not been studied. We evaluated whether VPA induces MK differentiation in a UT-7 cell line through histone acetylation in the GpIIIa gene region and activation of the ERK pathway. UT-7 cells, derived from megakaryoblastic leukemia, were treated with VPA at various concentrations, and the expression of differentiation markers as well as the gene expression profile was assessed. Flow cytometry, immunoblot analysis, and RT-PCR demonstrated that VPA induced the expression of the early MK markers GpIIIa (CD61) and GpIIb/IIIa (CD41) in a dose-dependent manner. The VPA-treated cells showed hyperacetylation of the histones H3 and H4; in particular, histone acetylation was found to have been associated with CD61 expression, in that the GpIIIa promoter showed H4 hyperacetylation, as demonstrated by the chromatin immunoprecipitation assay. Furthermore, activation of the ERK pathway was involved in VPA-mediated CD61/CD41 expression and in cell adhesion, as demonstrated by using the MEK/ERK inhibitor U0126. In conclusion, the capacity of VPA to commit UT-7 cells to MK differentiation is mediated by its inhibitory action on HDAC and the long-lived activation of ERK1/2.

Acetylation↗

PIa1/a2 polymorphism of glycoprotein IIIa and risk of coronary artery disease and restenosis following coronary angioplasty.

Glycoprotein IIIa (GpIIIa), a platelet protein that mediates platelet aggregation and thrombus formation, has attained recent widespread interest following a report that a common genetic variant of GpIIIa, known as Pla2, is an inherited risk factor for the development of premature coronary artery disease (CAD). We determined the frequency of the Pla2 allele in 589 prospectively recruited subjects aged <50 years presenting with symptomatic CAD with or without myocardial infarction and documented by coronary angiography (group I), 207 subjects investigated prospectively for restenosis 6 months after coronary balloon angioplasty (group II), and 570 control subjects without a history of angina or myocardial infarction, randomly selected from the community. Detection of the Pla2 allele was based on MspI digestion of polymerase chain reaction (PCR) amplified deoxyribonucleic acid (DNA) spanning the Pla1/a2 locus. The accuracy of genotyping was verified with a second independent method based on BstXI digestion of DNA amplified with mutagenic PCR primers. The frequency of the Pla2 allele was similar (p >0.1) in group I (170 of 1,178, 14%), group II (49 of 414, 12%), and control subjects (160 of 1,140, 14%). Among group I subjects, there was no relation (p >0.1) between the Pla2 allele frequency and the number of coronary vessels with >50% diameter obstruction, and current or previous myocardial infarction; among group II subjects, there was no difference between those with and without restenosis after angioplasty (26 of 242 and 23 of 172, respectively, p >0.1). We conclude that the Pla2 allele is not associated with a significantly elevated risk of premature CAD, myocardial infarction, or restenosis after coronary angioplasty.

Angioplasty, Balloon↗

Role of platelet glycoprotein PL(A1/A2) polymorphism in restenosis after percutaneous transluminal coronary angioplasty.

This study suggests a macroheterogeneity in prevalence of platelet glycoprotein PL(A1/A2) polymorphism in different ethnic populations. In patients undergoing percutaneous transluminal coronary angioplasty, this polymorphism does not represent an independent risk factor but seems to be implicated in restenosis after percutaneous transluminal coronary angioplasty.

Adult↗

Molecular analysis of human platelet antigen system 1 antigen on single cells can be applied to preimplantation genetic diagnosis for prevention of alloimmune thrombocytopenia.

OBJECTIVE: Our purpose was to develop a molecular assay to determine the human platelet antigen system 1 status on single nucleated cells, including human blastomeres. STUDY DESIGN: Eighty single cultured lymphoblasts of known human platelet antigen system 1 genotype and 24 media blanks were mixed in blinded fashion. Amplification of a 246 bp deoxyribonucleic acid fragment and subsequent Nci I restriction digestion were performed to distinguish human platelet antigen system 1a from 1b alleles. Specificity and sensitivity of the technique were determined. Eight blastomeres were also tested. RESULTS: Deoxyribonucleic acid amplification at the human platelet antigen system 1 locus was successful in 95% of the reactions. No media blanks showed amplified deoxyribonucleic acid. The diagnosis was correct in all homozygous human platelet antigen system 1a or 1b cells; three of 23 heterozygous cells amplified but failed to digest with Nci I. Overall specificity was 95%. All blastomeres successfully amplified. CONCLUSIONS: The human platelet antigen system 1 status determination is reliable from a single cell and can be used for preimplantation genetic diagnosis for the prevention of alloimmune thrombocytopenia.

Antigens, Human Platelet↗

cis Interaction of the cell adhesion molecule CEACAM1 with integrin beta(3).

CEACAM1 is a cell adhesion molecule that has been implicated in a number of physiological processes (eg, tumor suppressor in epithelial tissues, potent angiogenic factor in microvessel formation, microbial receptor in human granulocytes and epithelial cells). The mechanism of CEACAM1 action is still largely unresolved but recent findings demonstrated that the cytoplasmic CEACAM1 domain is linked indirectly to the actin-based cytoskeleton. We have isolated integrin beta(3) as an associated protein using CEACAM1 tail affinity purification. This association depends on phosphorylation of Tyr-488 in the CEACAM1 cytoplasmic domain. Confocal laser scanning microscopy confirmed in vivo colocalization of both molecules in human granulocytes and epithelial cells. Furthermore, the concentrated colocalization at the tumor-stroma interface of invading melanoma masses suggests a functional role of CEACAM1-integrin beta(3) interaction in melanoma invasion. Moreover, colocalization of the two adhesion molecules is also found at the apical surface of glandular cells of pregnancy endometrium. Colocalization of CEACAM1 and integrin beta(3) at the transitional zone from proliferative to invasive extravillous trophoblast of the maternal-fetal interface supports a role for CEACAM1/integrin beta(3) complexes in cell invasion.

Antigens, CD↗

Abnormalities of GATA-1 in megakaryocytes from patients with idiopathic myelofibrosis.

The abnormal megakaryocytopoiesis associated with idiopathic myelofibrosis (IM) plays a role in its pathogenesis. Because mice with defective expression of transcription factor GATA-1 (GATA-1(low) mutants) eventually develop myelofibrosis, we investigated the occurrence of GATA-1 abnormalities in IM patients. CD 34(+) cells were purified from 12 IM patients and 8 controls; erythroblasts and megakaryocytes were then obtained from unilineage cultures of CD 34(+) cells. Purified CD 61(+), GPA(+), and CD 34(+) cells from IM patients contained levels of GATA-1, GATA-2, and FOG-1 mRNA, as well as of GATA-2 protein, that were similar to controls. In contrast, CD 61(+) cells from IM patients contained significantly reduced GATA-1 protein. Furthermore, 45% of megakaryocytes in biopsies from IM patients did not stain with anti-GATA-1 antibody, as compared to controls (2%), essential thrombocythemia (4%), or polycythemia vera (11%) patients. Abnormalities in immunoreactivity for FOG-1 were not found, and no mutations in GATA-1 coding sequences were found. The presence of GATA-1(neg) megakaryocytes in bone marrow biopsies was independent of the Val 617 Phe JAK 2 mutation, making it unlikely that a downstream functional relationship exists. We conclude that megakaryocytes from IM patients have reduced GATA-1 content, possibly contributing to disease pathogenesis as in the GATA-1(low) mice and also representing a novel IM-associated marker.

Antibodies↗