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Biomedical subjects

W J Atkinson

Publications and source records attributed to W J Atkinson.

At least 19 recordsLinked to original sources

Microvascular endothelial cells from E-selectin-deficient mice form tubes in vitro.

Studies of capillary morphogenesis and angiogenesis in vitro have suggested a role for E-selectin (CD62E) in the process of differentiation into tube-like structures. Recent studies by our group and others have demonstrated that mice lacking E-selectin because of germline inactivation of the E-selectin gene by gene targeting are viable and fertile, without apparent deficiencies in vascular development. Murine lung endothelial cells from wild-type and E-selectin-deficient animals were isolated using an activation-dependent sterile sorting method, and differentiation into tube-like structures on sparse fibronectin, Matrigel, and collagen gels was compared. Both types of murine lung endothelial cells spontaneously organized to form multicellular tubes and extensive anastomotic networks. There were no major differences in either the time course of development or the general appearance of the multicellular cords or tube-like structures formed by murine lung endothelial cells from wild-type or E-selectin-deficient mice, although different patterns were observed on different extracellular matrices. These studies, thus, demonstrate that E-selectin is not required for morphogenesis of 3-dimensional vascular structures in vitro.

Animals↗

A human colon carcinoma cell line exhibits adhesive interactions with P-selectin under fluid flow via a PSGL-1-independent mechanism.

It has been postulated that endothelial cell adhesion molecules involved in leukocyte recruitment play a role in metastasis. Using an in vitro flow model, we studied the adhesion of the human colon carcinoma cell line KM12-L4 to P-selectin, an inducible endothelial-expressed adhesion molecule involved in leukocyte recruitment. Recombinant forms of P-selectin and Chinese hamster ovary cells stably expressing P-selectin supported attachment and rolling of KM12-L4 cells at 1 to 2 dynes/cm2. The adhesive interactions to P-selectin were abolished by pretreatment of the KM12-L4 cells with neuraminidase but were unaltered by pretreatment of the KM12-L4 cells with O-sialoglycoprotein endopeptidase, an enzyme that cleaves mucin type glycoproteins such as P-selectin glycoprotein ligand-1 (PSGL-1). PSGL-1 is the only counter-receptor for P-selectin known to mediate myeloid cell adhesion to P-selectin under flow. Flow cytometric and Northern blot analyses revealed that KM12-L4 cells did not express PSGL-1 and monoclonal antibody PL1, a function-blocking monoclonal antibody to PSGL-1, had no inhibitory effect on KM12-L4 adhesion to P-selectin under flow. Compared with HL-60 cells, which express PSGL-1, the KM12-L4 cells exhibited a slightly lower rate of attachment to P-selectin and rolled at a significantly higher velocity. In summary, KM12-L4 human colon carcinoma cells interact with P-selectin, under flow, through a PSGL-1-independent adhesion pathway.

Animals↗

Activation-dependent isolation and culture of murine pulmonary microvascular endothelium.

OBJECTIVE: Establish a reproducible method for the isolation and cultivation of murine pulmonary microvascular endothelium. To this end, we exploited the localized pattern of microvascular endothelial activation induced in vivo by inflammatory stimuli to isolate a subpopulation of endothelium for in vitro study. METHODS: Immunohistochemical analyses of the pulmonary vasculature of mice treated systemically with gram-negative bacterial endotoxin (LPS) demonstrated selective expression of VCAM-1 (CD106) in the endothelial lining of small collecting veins, venules, septal capillaries, and, infrequently, small arteries, which was not observed in control mice. Single cell suspensions prepared by enzymatic dissociation of peripheral lobular tissues dissected from the lungs of LPS-stimulated mice were incubated with a phycoerythrin-conjugated antimouse VCAM-1 monoclonal antibody (MK 1.91). Cells expressing this antigen were isolated by sterile fluorescence-activated cell sorting (FACS). Positive cell populations were collected and cultured for 1-2 weeks. When confluent, these primary cultures were further FACS enriched for endothelium, positively selecting for cells incorporating a fluorescent derivative of acetylated low density lipoprotein (Di-I-Ac-LDL). RESULTS: The resulting population of cells (mouse lung endothelial cells, MLEC) were uniformly positive for the endothelial markers von Willebrand factor, thrombomodulin, and Dil-Ac-LDL uptake. MLEC readily formed tube-like structures when cultured on Matrigel and spontaneously demonstrated a sprouting phenotype on fibronectin or collagen matrices. MLEC retained responsiveness to cytokines (IL-1 alpha, IL-1 beta, TNF alpha, IFN gamma) up to at least eight passages from primary culture and demonstrated upregulation of E-selectin (CD62E) and P-selectin (CD62P) mRNA as early as 2 hr after LPS stimulation. Characteristic temporal expression patterns of cell surface E-selectin (maximal at 4 hr and declining toward baseline by 24 hr), VCAM-1 (maximal at 6-8 hr and remaining elevated for 24-48 hr), and ICAM-1 (maximal at 6-8 hr and maintained at 24 hr) were observed when cultured MLEC were treated with recombinant murine TNF alpha or recombinant human (rh) IL-1 alpha or rhIL-1 beta. The rolling, adhesion, and transmigration of human polymorphonuclear leukocytes was markedly increased on cytokine-activated MLEC monolayers under defined flow conditions. CONCLUSION: The strategy of activation-dependent isolation allows for the reproducible selection of a specific subset of microvascular endothelial cells for in vitro study. This experimental approach should further facilitate study of the functional heterogeneity of endothelium and its pathophysiologic dysfunction.

Animals↗

Shear stress selectively upregulates intercellular adhesion molecule-1 expression in cultured human vascular endothelial cells.

Hemodynamic forces induce various functional changes in vascular endothelium, many of which reflect alterations in gene expression. We have recently identified a cis-acting transcriptional regulatory element, the shear stress response element (SSRE), present in the promoters of several genes, that may represent a common pathway by which biomechanical forces influence gene expression. In this study, we have examined the effect of shear stress on endothelial expression of three adhesion molecules: intercellular adhesion molecule-1 (ICAM-1), which contains the SSRE in its promoter, and E-selectin (ELAM-1) and vascular cell adhesion molecule-1 (VCAM-1), both of which lack the SSRE. Cultured human umbilical vein endothelial cells, subjected to a physiologically relevant range of laminar shear stresses (2.5-46 dyn/cm2) in a cone and plate apparatus for up to 48 h, showed time-dependent but force-independent increases in surface immunoreactive ICAM-1. Upregulated ICAM-1 expression was correlated with increased adhesion of the JY lymphocytic cell line. Northern blot analysis revealed increased ICAM-1 transcript as early as 2 h after the onset of shear stress. In contrast, E-selectin and vascular cell adhesion molecule-1 transcript and cell-surface protein were not upregulated at any time point examined. This selective regulation of adhesion molecule expression in vascular endothelium suggests that biomechanical forces, in addition to humoral stimuli, may contribute to differential endothelial gene expression and thus represent pathophysiologically relevant stimuli in inflammation and atherosclerosis.

Cell Adhesion↗

Hyperthermia induction with thermally self-regulated ferromagnetic implants.

We have developed a self-regulating thermoseed for interstitial hyperthermia treatment of tumors. The seeds are made of a 70.4% nickel-29.6% copper alloy, and they have a Curie point at 50 degrees C. When exposed to an oscillating magnetic field (90 kHz, 50 Oersted amplitude), these seeds show a sharp drop in the rate of heat production at temperatures above the Curie point. In a simulated treatment of a small visceral mass that had negligible blood flow, the tissue temperature stabilized at the Curie point of the alloy with good temperature homogeneity throughout the volume heated by an array of thermoseeds.

Alloys↗

Epidermal growth factor, a vascular smooth muscle mitogen, induces rat aortic contraction.

Atherosclerotic arteries have enhanced reactivity to vasoconstrictors, which suggests that features of the atherosclerotic process itself may result in this abnormal responsiveness. Since vascular smooth muscle proliferation is a prominent feature of atherosclerosis, we postulated that vasoactive agonists and smooth muscle mitogens may share certain common cellular mechanisms of action which potentially contribute to this hyperreactivity. To test this hypothesis, we studied the effects of epidermal growth factor (EGF), a well-characterized mitogen, on rat aortic vascular smooth muscle, both in intact aortic strips and in culture. EGF caused contraction (EC50 = 19 nM) of rat aortic strips which maximally was equivalent to 40% of that induced by angiotensin II, a potent vasoconstrictor. EGF increased 45Ca efflux (EC50 = 3 nM) from cultured rat aortic smooth muscle cells, which was an effect shared by angiotensin II and thought to reflect increased cytosolic-free calcium concentration. EGF (7.5 nM) also stimulated growth of these cultured cells to the same extent as 10% calf serum. These results demonstrate that EGF is both a vasoconstrictor and mitogen for rat aortic smooth muscle cells. The similarities in the effects of EGF and angiotensin II suggest that certain common intracellular mechanisms of action may exist for vasoactive agonists and growth factors which may contribute to the altered vasoreactivity of atherosclerotic vessels.

Animals↗

Cultured vascular smooth muscle cells: an in vitro system for study of alpha-adrenergic receptor coupling and regulation.

Cultured vascular smooth muscle cells derived by enzymatic dissociation of rabbit aortic media were used for study of alpha 1-adrenergic receptors (AAR) and receptor-coupled calcium flux. AAR were characterized by binding of the alpha 1-selective radioligand [3H]prazosin, and norepinephrine-stimulated 45calcium efflux was measured as an index of AAR-mediated calcium flux. The binding of [3H]prazosin to a crude cellular homogenate was to a single, saturable site of high affinity (Kd = 0.15 nM, Bmax = 75-125 fmol/mg protein), which was stereo-specific and exhibited the appropriate potency order for competition by agonists. Prazosin (Kd = 0.07 nM) was approximately 3000-fold more potent than the alpha 2-selective antagonist yohimbine (Kd = 222 nM), both of which exhibited Hill coefficients of one, indicative of binding to a single receptor type. In intact cells, norepinephrine caused a concentration-related (EC50 = 100 nM) increase in 45calcium efflux which was blocked by low concentrations of prazosin (IC50 approximately equal to 0.1 nM), but not yohimbine (IC50 greater than 100 nM). An alpha 1-selective concentration of prazosin (100 nM) fully blocked norepinephrine-stimulated 45calcium efflux, and therefore, it appears that this effect does not involve alpha 2-adrenergic receptors. Treatment of cultured cells with 1-norepinephrine for 48 h caused a concentration-related decrease in both AAR density and maximum norepinephrine-stimulated 45calcium efflux. This cultured vascular smooth muscle cell system provides several advantages for the study of alpha-adrenergic receptor coupling and regulation.

Animals↗

Local hyperthermia with interstitial techniques.

The heating of deep visceral tumors with implanted electrodes and with self-regulating ferromagnetic thermoseeds was investigated. Clinical trials on six patients heated with implanted electrodes indicate that good local tumor control can be obtained by application of hyperthermia during a normal course of radiotherapy. The heating method was found practical, and neither toxicity nor severe patient discomfort was encountered. However, temperature inhomogeneity within the tumor volume remains a problem. Theoretical studies and an animal experiment indicate that temperature homogeneity can be largely improved by heating the tumor with thermoseeds made of an alloy of 70.4% nickel and 29.6% copper. The highly temperature-dependent rate of heat production in the vicinity of the Curie point, about 50 degrees for this material, provides automatic temperature regulation.

Body Temperature↗

Functional angiotensin II receptors in cultured vascular smooth muscle cells.

To study cellular mechanisms influencing vascular reactivity, vascular smooth muscle cells (VSMC) were obtained by enzymatic dissociation of the rat mesenteric artery, a highly reactive, resistance-type blood vessel, and established in primary culture. Cellular binding sites for the vasoconstrictor hormone angiotensin II (AII) were identified and characterized using the radioligand 125I-angiotensin II. Freshly isolated VSMC, and VSMC maintained in primary culture for up to 3 wk, exhibited rapid, saturable, and specific 125I-AII binding similar to that seen with homogenates of the intact rat mesenteric artery. In 7-d primary cultures, Scatchard analysis indicated a single class of high-affinity binding sites with an equilibrium dissociation constant (Kd) of 2.8 +/- 0.2 nM and a total binding capacity of 81.5 +/- 5.0 fmol/mg protein (equivalent to 4.5 x 10(4) sites per cell). Angiotensin analogues and antagonists inhibited 125I-AII binding to cultured VSMC in a potency series similar to that observed for the vascular AII receptor in vivo. Nanomolar concentrations of native AII elicited a rapid, reversible, contractile response, in a variable proportion of cells, that was inhibited by pretreatment with the competitive antagonist Sar1,Ile8-AII. Transmission electron microscopy showed an apparent loss of thick (12-18 nm Diam) myofilaments and increased synthetic activity, but these manifestations of phenotypic modulation were not correlated with loss of 125I-AII binding sites or hormonal responsiveness. Primary cultures of enzymatically dissociated rat mesenteric artery VSMC thus may provide a useful in vitro system to study cellular mechanisms involved in receptor activation-response coupling, receptor regulation, and the maintenance of differentiation in vascular smooth muscle.

Angiotensin II↗

De subitaneis mortibus. XXX. Observations on the pathophysiology of the long QT syndromes with special reference to the neuropathology of the heart.

Eight patients (different families) with syncopal attacks and a long QT interval in the ECG died suddenly. Five heard normally and three were born deaf. At postmortem examination of all eight hearts the single consistent abnormality was focal neuritis and neural degeneration within the sinus node, A-V node, His bundle and ventricular myocardium. Although the etiology of this intracardiac neural disease is uncertain, a chronic viral infection or some noninfectious degenerative process are among the plausible causes discussed. If intracardiac neuritis and neural degeneration prove to be a prevalent finding among other victims dying from the long QT syndromes, further consideration should be given to whether there is any genuine hereditary component in the pathogenesis. Because of the asymmetrical and focal distribution of the cardioneural lesions, the response to present forms of medical or surgical treatment of the lung QT syndromes may vary from benefit to harm. Until more is known of the true etiology of the neural disease, treatment will probably remain empirical in nature and should be conducted with cautious clinical observation.

Adolescent↗

New approach to management of intracranial aneurysms.

In six cases an attempt was made to relieve the tension on intracranial aneurysms by temporarily clamping the internal carotid artery in the neck, so as to increase the expansibility of the artery. This approach was based on the concept (or "A principle") that haemorrhage is caused by the aneurysm having to bear the full force of systolic pulse pressure when atherosclerosis prevents this pressure being taken up by the normally expansile arterial wall. Follow-up has been fairly short, but the preliminary findings in four of the six patients are encouraging. More attention must be paid in the future to the significance of atherosclerosis in the onset of bleeding from intracranial aneurysms and the incidence of postoperative problems. The argument that atherosclerosis permits the transmission of the systolic pulse directly to the aneurysm wall requires further investigation. The earlier pathological signs of atherosclerosis must receive greater attention, and post-mortem study of the walls of arteries in immediate juxtaposition to aneurysms with high-powered magnification is required.

Adult↗