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Biomedical subjects

K Walsh

Publications and source records attributed to K Walsh.

At least 163 records · Page 9Linked to original sources

Practicing nursing therapeutically through acting as a skilled companion on the illness journey.

This article explores nursing's heritage as a healing, therapeutic activity. It examines the central characteristics of nursing as skilled companionship and links them with the foundational core of nursing--a therapeutic relationship based on an understanding of the illness experience. In addition, it discusses the role of literature and performance in developing knowledge to advance nursing as a therapeutic activity.

Humans↗

The human GATA-6 gene: structure, chromosomal location, and regulation of expression by tissue-specific and mitogen-responsive signals.

GATA factors constitute a family of transcriptional regulatory proteins expressed with distinct developmental and tissue-specific profiles and thought to regulate cell-restricted programs of gene expression. Here we describe the molecular cloning, chromosomal location, and transcription of the human GATA-6 gene. The GATA-6 cDNA encodes a predicted 449-amino-acid protein, which is highly conserved among vertebrates, and includes the two adjacent zinc-finger/basic domains characteristic of the GATA factor family. GATA-6 maps to human chromosome 18q11.1-q11.2 by fluorescence in situ hybridization. The gene is transcribed in a pattern overlapping that of GATA-4. Transcripts for both of these genes are prominent in heart, pancreas, and ovary, but only GATA-6 mRNA is found in lung and liver. GATA-6 transcripts are also detected in cultures of human and rat vascular smooth muscle cells (VSMCs). In VSMCs, GATA-6 transcripts are down- regulated when quiescent cultures are stimulated to proliferate in response to mitogen activation. These data demonstrate that GATA-6 is subject to both tissue-specific and mitogen-responsive regulatory signals. GATA-6 is a prime candidate for a gene that might regulate the differentiative state of VSMCs.

Amino Acid Sequence↗

Growth-arrest homeobox gene Gax: a molecular strategy to prevent arterial restenosis.

Tissue remodeling and alterations in cellular differentiation occur during atherosclerosis and restenosis following balloon angioplasty, but little is known about the nuclear proteins that regulates these processes. Homeobox genes encode transcription factors that regulate cell growth, differentiation, migration, and body plan formation. The Gax (growth arrest homeobox) gene is expressed in adult cardiovascular tissues. Gax is expressed in normal quiescent smooth muscle cells, but its expression is rapidly down-regulated when these cells are stimulated to proliferate with mitogens. Gax expression is also down-regulated in vascular tissue immediately following balloon injury. These characteristics of Gax suggest it may be required to maintain the non-proliferative or contractile phenotype in vascular smooth muscle. Indeed, the mitogen-induced proliferation of cultured vascular smooth muscle cells is inhibited when these cells are microinjected with recombinant Gax protein. Gax also inhibits the proliferation of vascular smooth muscle cells when overexpressed with a replication-defective adenovirus vector, and the local delivery of this recombinant virus to denuded rat carotid arteries significantly reduces neointima formation and luminal narrowing. Currently we are performing percutaneous Gax adenovirus-mediated gene transfer into normal and atherosclerotic rabbit iliac arteries. These data suggest that overexpression of Gax gene may prevent the neointimal formation that is characteristic of a number of vascular disorders.

Angioplasty, Balloon↗

Clinical evidence of angiogenesis after arterial gene transfer of phVEGF165 in patient with ischaemic limb.

BACKGROUND: Preclinical findings suggest that intra-arterial gene transfer of a plasmid which encodes for vascular endothelial growth factor (VEGF) can improve blood supply to the ischaemic limb. We have used the method in a patient. METHODS: Our patient was the eighth in a dose-ranging series. She was aged 71 with an ischaemic right leg. We administered 2,000 micrograms human plasmid phVEGF165 that was applied to the hydrogel polymer coating of an angioplasty balloon. By inflating the balloon, plasmid DNA was transferred to the distal popliteal artery. FINDINGS: Digital subtraction angiography 4 weeks after gene therapy showed an increase in collateral vessels at the knee, mid-tibial, and ankle levels, which persisted at a 12-week view. Intra-arterial doppler-flow studies showed increased resting and maximum flows (by 82% and 72%, respectively). Three spider angiomas developed on the right foot/ankle about a week after gene transfer; one lesion was excised and revealed proliferative endothelium, the other two regressed. The patient developed oedema in her right leg, which was treated successfully. INTERPRETATION: Administration of endothelial cell mitogens promotes angiogenesis in patients with limb ischaemia.

Aged↗

Resistance to apoptosis conferred by Cdk inhibitors during myocyte differentiation.

Proliferating murine C2C12 myoblasts can undergo either terminal differentiation or programmed cell death under conditions of mitogen deprivation. Unlike myoblasts, differentiated myotubes were resistant to apoptosis. During myogenesis the appearance of the apoptosis-resistant phenotype was correlated with the induction of the cyclin-dependent kinase (Cdk) inhibitor p21(CIP1) but not with the appearance of myogenin, a marker expressed earlier in differentiation. Forced expression of the Cdk inhibitors p21(CIP1) or p16(INK4A) blocked apoptosis during myocyte differentiation. These data indicate that induction of Cdk inhibitors may serve to protect differentiating myocytes from programmed cell death as well as play a role in establishing the postmitotic state.

Animals↗

Arterial gene transfer for therapeutic angiogenesis in patients with peripheral artery disease.

The age-adjusted prevalence of peripheral arterial disease (PAD) in the U.S. population has been estimated to approach 12%. The clinical consequences of occlusive peripheral arterial disease (PAD) include pain on walking (claudication), pain at rest, and loss of tissue integrity in the distal limbs; the latter may ultimately lead to amputation of a portion of the lower extremity. Surgical bypass techniques and percutaneous catheter-based interventions may be used to successfully revascularize the limbs of certain patients with PAD. In many patients, however, the anatomic extent and distribution of arterial occlusion is too severe to permit relief of pain and/or healing of ischemic ulcers. No effective medical therapy is available for the treatment of such patients. The purpose of this clinical protocol is to document the safety of therapeutic angiogenesis achieved in this case by percutaneous catheter-based delivery of the gene encoding vascular endothelial growth factor (VEGF) in patients with PAD; and, as secondary objectives, investigate the bioactivity of this strategy to relieve rest pain and heal ischemic ulcers of the lower extremities. The rationale for this human protocol is based upon preclinical studies performed in a rabbit model of hindlimb ischemia. These studies are described in detail below and in the manuscripts enclosed in the Appendix to this proposal. In brief, a single intra-arterial bolus of VEGF recombinant human protein, delivered percutaneously to the ischemic limb via an intravascular catheter, resulted in angiographic, hemodynamic, physiologic, and histologic evidence of augmented collateral artery development. Subsequently, similar results were achieved using an angioplasty catheter with a hydrogel-coated balloon to deliver 400 micrograms of a plasmid containing the cDNA for VEGF to the internal iliac artery in the same animal model. Accordingly, we propose to administer arterial gene (VEGF) therapy to patients with rest pain and/or ischemic leg ulcers considered not to be candidates for conventional revascularization techniques. The dose of plasmid to be administered will be progressively escalated beginning with 500 micrograms for the first four patients, 1000 micrograms for the following six patients, 2000 micrograms for the third group of six patients, and 400 micrograms for the fourth group of six patients.

Arteries↗

Characterization of cardiac gene cis-regulatory elements in the early stages of chicken heart morphogenesis.

To study transcriptional regulation during early stages of cardiogenesis, stage 10-17 chicken embryo hearts were transfected efficiently within the intact embryo by application of plasmid DNA complexed to liposomes. Viral regulatory sequences and the skeletal alpha-actin, SERCA2 and ANF promoters activated expression of reporter genes in the primitive heart tube. Deletion and mutation analysis of the skeletal alpha-actin promoter revealed the importance of CArG cis-regulatory elements in enhancing transcription of the gene during early heart development. These results demonstrate the utility of this method for the identification of gene regulatory elements that specify the cardiac phenotype during early stages of heart morphogenesis.

Actins↗

Tuberculous pericarditis in a child.

A 14-year-old boy with tuberculous pericarditis and tamponade is described. Confirmation was by culture of pericardial aspirate. Though he did not have a cough, acid-fast bacilli were detected following induced sputum. Chest X-ray did not show evidence of pulmonary tuberculosis, but enlarged mediastinal nodes were detected by computerized tomography. He made an excellent response to anti-tuberculous chemotherapy and corticosteroids.

Adolescent↗

Myogenin expression, cell cycle withdrawal, and phenotypic differentiation are temporally separable events that precede cell fusion upon myogenesis.

During terminal differentiation of skeletal myoblasts, cells fuse to form postmitotic multinucleated myotubes that cannot reinitiate DNA synthesis. Here we investigated the temporal relationships among these events during in vitro differentiation of C2C12 myoblasts. Cells expressing myogenin, a marker for the entry of myoblasts into the differentiation pathway, were detected first during myogenesis, followed by the appearance of mononucleated cells expressing both myogenin and the cell cycle inhibitor p21. Although expression of both proteins was sustained in mitogen-restimulated myocytes, 5-bromodeoxyuridine incorporation experiments in serum-starved cultures revealed that myogenin-positive cells remained capable of replicating DNA. In contrast, subsequent expression of p21 in differentiating myoblasts correlated with the establishment of the postmitotic state. Later during myogenesis, postmitotic (p21-positive) mononucleated myoblasts activated the expression of the muscle structural protein myosin heavy chain, and then fused to form multinucleated myotubes. Thus, despite the asynchrony in the commitment to differentiation, skeletal myogenesis is a highly ordered process of temporally separable events that begins with myogenin expression, followed by p21 induction and cell cycle arrest, then phenotypic differentiation, and finally, cell fusion.

Animals↗

Philosophical hermeneutics and the project of Hans Georg Gadamer: implications for nursing research.

The paper begins with an overview of the historical roots of philosophical hermeneutics grounded in the work of Husserl and Heidegger. It goes on to explore the philosophical hermeneutics of Hans Georg Gadamer as a philosophy useful to nursing research. The four concepts of prejudice, the fusion of horizons, the hermeneutic circle and play are discussed, as are the implications these concepts have for nursing research. These concepts have been utilized in the author's own research and examples from this research are given to illuminate how these concepts can be shaped to the purposes of nursing research. While the concepts discussed stem from the work of Gadamer, the ways they have been utilized by the author do not represent a Gadamerian method. Gadamer's project is purely philosophical.

Existentialism↗

Prognosis of supravalve aortic stenosis in 81 patients in Liverpool (1960-1993).

OBJECTIVE: To determine the prognosis of supravalve aortic stenosis into early adult life and the factors affecting this prognosis. DESIGN: 81 patients with supravalve aortic stenosis were followed for a median duration of 8.3 (range 1 to 29) years. PATIENTS: 40 patients (49.4%) had Williams' syndrome, 18 (22.2%) familial supravalve aortic stenosis, 18 (22.2%) sporadic supravalve aortic stenosis, and five (6.2%) other syndromes. Nineteen patients had additional levels of left ventricular outflow tract obstruction. RESULTS: 47 patients (58%) underwent operation; 20% within a year of presentation. Multivariable analysis predicted that 88% of patients would undergo intervention within 30 years of follow up. The chance of intervention was increased by more severe aortic stenosis at presentation and the presence of multilevel obstruction in patients with sporadic supravalve aortic stenosis. Three deaths occurred before operation and 13 within a month of operation. Ten (62.5%) of the postoperative deaths were in patients with multilevel obstruction. Predicted survival 30 years after presentation was 66%. Risk factors for survival were age and severity of aortic stenosis at presentation. Multilevel obstruction did not emerge as a significant risk factor for death because of the high association with the severity of stenosis at presentation. 74% of survivors had mild or insignificant stenosis at follow up. CONCLUSIONS: Long-term survival is related to age and the severity of aortic stenosis at presentation. Most patients will require intervention, and most survivors will have mild stenosis.

Aortic Valve Stenosis↗

Structures and chromosome locations of the human MEF2A gene and a pseudogene MEF2AP.

The MEF2 family of transcription factors control the expression of muscle-specific and mitogen-induced genes. Here we describe the isolation and structure of the human MEF2A gene. The protein coding region of MEF2A is divided by 10 introns. The 3' untranslated region (UTR) is 3.7 kb in length, and it contains a region that is highly homologous with a portion of the 3' UTR of Xenopus MEF2A. A partially processed pseudogene (MEF2AP) corresponding to MEF2A was also isolated and characterized. Human MEF2A was mapped by fluorescence in situ hybridization to chromosome 15q26, and MEF2AP was mapped to chromosome 1q24 --> q25.

Animals↗

Decision-making in the care of cavity wounds.

Good cavity-wound management requires a team approach. Nurses seeking autonomy may not recognise the responsibility that goes with it. There is still confusion and ignorance about wound dressings and agents used for cavity wounds.

Bandages↗

Inhibition of retinoblastoma protein phosphorylation by myogenesis-induced changes in the subunit composition of the cyclin-dependent kinase 4 complex.

The retinoblastoma protein (Rb) is essential for the maintenance of the postmitotic state in terminally differentiated myocytes. Upon C2C12 myogenesis, the level of the cyclin-dependent kinase 4 (CDK4) protein does not change, but its Rb kinase activity is down-regulated markedly. Here, we show that the reduction in CDK4 activity results from (a) the irreversible induction and association of the p21 CDK inhibitor with the CDK4 complex and (b) a decline in overall D-type cyclin expression. Immunoprecipitation-coupled immunoblot analyses demonstrated that myocyte differentiation produces alterations in the subunit interactions within the CDK4 complex, including a diminished interaction with cyclin D1 and enhanced interactions with cyclin D3 and p21. The significance of the p21 interaction with CDK4 was indicated by the ability of anti-p21 antibodies to specifically immunodeplete a Rb kinase inhibitory activity that was bound to the CDK4 complex in myotubes. Furthermore, the restimulation of myotubes with serum did not lead to the re-activation of CDK4 or disrupt the CDK4-p21 interaction. Despite the increase in cyclin D3 expression during myogenesis, quantitative immunoblot analyses revealed that the combined levels of cyclin D1 and D3 decline during this process and that CDK4 is expressed at much higher levels than either of these cyclin subunits in postmitotic myotubes. These results suggest that the myogenesis-induced up-regulation of p21 and down-regulation of the total D-type cyclin expression contribute to the inhibition of the CDK4 Rb kinase activity, leading to conditions that favor the accumulation of the hypophosphorylated Rb and growth arrest upon terminal differentiation.

Animals↗