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Biomedical subjects

A Davison

Publications and source records attributed to A Davison.

At least 73 records · Page 4Linked to original sources

Functional cholesteryl binding agents: evaluation of viability and specificity of antibodies bound to modified phospholipid vesicles.

A cholesterol derivative was incorporated into small unilamellar phospholipid vesicles, and antibodies were bound covalently to the vesicles. More than one antibody was bound to each vesicle. The antigen binding viability and specificity were determined using a modified radioimmunoassay and an in vitro cell assay. Both of these tests showed good antibody activity and specificity. The antigen affinity of the bound antibodies was higher than for the unbound antibody due to more than one viable antibody being bound to each vesicle. The modified vesicles can be used as immunodirected drug delivery systems for both diagnosis and therapy.

Antibodies↗

Active oxygen in neuromuscular disorders.

Although muscle and nerve are reasonably well protected against active oxygen and related free radicals, environmental or inherited malfunctions can overpower their defences. Active oxygen is involved in many neuropathies and myopathies. In every case the damage is caused by agents which exert effects disproportionately greater than the quantities encountered, through a variety of amplification mechanisms. We can categorize these amplification mechanisms as follows: (a) non-replacement of targets (e.g. loss of genetic information, ataxia telangectasia being an hereditary ataxia in which an oxygen mediated chromosomal instability is apparent), (b) non-removal of unwanted materials (e.g. lipofuscin accumulation in brain and heart), (c) redox cycling, usually involving catalysis by trace-metal ions (e.g. some forms of Parkinsonism), (d) non-redox catalysis (e.g. toxicity in cardiac muscle or brain due to vanadium or aluminium respectively), (e) modification of ion transport (e.g. calcium ionophore or acrylamide induce histopathological changes in muscle, similar in some respects to those seen in Duchenne muscular dystrophy), (f) compromised defences (e.g. muscle and nerve become particularly susceptible to free radical damage after loss of the protective actions of vitamin E), and (g) amplification by inflammatory and immune responses (e.g. multiple sclerosis, reperfusion injury to brain and heart, and traumatic injury to nervous tissue). Unfortunately, a variety of therapeutic agents which might be expected to protect against almost every conceivable form of oxygen mediated damage have proved clinically ineffective in most of these disorders. The reasons for this will be explored with an emphasis on common features, differences, mechanisms, and potential therapeutic approaches.

Humans↗

Hexakis(carbomethoxyisopropylisonitrile) technetium(I), a new myocardial perfusion imaging agent: binding characteristics in cultured chick heart cells.

Cellular kinetics and binding characteristics of hexakis(carbomethoxyisopropylisonitrile) technetium(I) (Tc-CPI), a new cationic, highly lipophilic myocardial perfusion imaging agent, were evaluated in chick embryo heart cells grown in monolayer culture. Myocytes showed uptake of Tc-CPI to a plateau level with a half-time (t1/2) of 4.1 +/- 0.7 min (mean +/- s.e.m.; n = 6); t1/2 appeared independent of extracellular Tc-CPI concentration. Plateau level Tc-CPI uptakes (10(-16) to 10(-11) mole Tc-CPI/mg cell protein) were a linear function of extracellular Tc-CPI concentration (range: 10(-13)M to 10(-8)M, respectively). Tracer 99mTc-CPI uptake (binding) was not competitively displaced by carrier 99Tc-CPI. Uptake was temperature-sensitive; however, several inhibitors of cationic membrane transport (ouabain, amiloride, bumetanide, and verapamil) showed no significant effect. Extreme alkalinization of external load solution (pHo approximately 8.5) partially inhibited Tc-CPI uptake; however, intracellular pH changes showed no effect. Washout from contractile preparations could be described by a two component system: a fast component (myocytes) with a t1/2 approximately 4.5 min and a slow component (fibroblasts) with a t1/2 approximately 40 min. Cell fractionation experiments showed most of the activity to be associated with the cell membrane fraction. The data do not demonstrate a specific mechanism for uptake of Tc-CPI; however, results suggest binding to myocytes in a manner proportional to the delivery of the complex to the extracellular spaces. Such properties would be desirable for a myocardial perfusion imaging agent.

Animals↗

The utilization of technetium-99m CPI as a myocardial perfusion imaging agent in exercise studies.

Myocardial perfusion imaging with Tc-99m carbomethoxyisopropylisonitrile (CPI) was compared with Tl-201 imaging in 22 patients who were assessed for coronary artery disease. There was agreement between Tc-99m CPI and Tl-201 imaging for detecting segmental myocardial ischemia and fixed defects in 185/198 (93%) of left ventricular segments. There was also an excellent correlation between the two tracers for the detection of coronary artery disease (18/22 patients). Myocardial clearance of the isonitrile complex was slow, and there was no redistribution into ischemic regions; the normal to ischemic myocardial ratio remained relatively constant over time. Reinjection at rest was used to distinguish transient ischemia from infarction. The isonitrile complex was excreted rapidly via the hepatobiliary system. After 3 hours, background activity was reduced to about 20% of the initial activity. Tc-99m CPI appears comparable to Tl-201 thallous chloride for detecting coronary artery disease. Tc-99m CPI may be useful as a myocardial imaging agent because there is no myocardial redistribution, myocardial clearance is slow, and clearance from background tissues is rapid.

Adult↗

Myocardial imaging with technetium-99m CPI: initial experience in the human.

The hexakis(isonitrile)technetium(I) analog [99mTc]carbomethoxyisopropyl isonitrile (CPI) has high myocardial uptake and rapid lung and liver clearance in most animal species. To evaluate [99mTc]CPI as a myocardial imaging agent in the human, we evaluated this tracer in three normals and in six patients with coronary artery disease (CAD). In normals, [99mTc]CPI cleared quickly from the lungs and accumulated in the liver and heart. The liver activity peaked at 10-15 min and cleared through the hepatobiliary system. Planar images were of excellent technical quality with high myocardial to background ratios as early as 10 min after injection. Myocardial activity fell gradually to 76.1 +/- 2.9 (s.d.)% of initial activity by 60 min after injection. In six patients with CAD, myocardial defects were present on planar images up to 2 hr after exercise and injection. In one out of six patients, the defect was not seen 3 hr after injection. In five of the six patients, normal perfusion patterns were observed 1 hr after reinjection of CPI at rest (4 hr after the initial injection). In one patient who developed spontaneous angina prior to reinjection, the perfusion defects persisted. The repeat study 3 days later with injection of [99mTc]CPI at rest was normal. Technetium-99m CPI appears to have excellent physical and biologic properties for use in association with myocardial imaging with exercise.

Coronary Disease↗

The scintigraphic evaluation of myocardial infarction and regional ventricular performance using technetium-99m hexakis (t-butylisonitrile) technetium (I) (TBI): a new myocardial imaging agent.

Technetium-99m hexakis (t-butylisonitrile) technetium (I) (99mTc-TBI) is a new myocardial perfusion imaging agent. To determine its potential in the evaluation of myocardial infarction, 15 patients with suspected or confirmed acute infarction were studied by bedside imaging in the coronary care unit. Good-quality planar scintigrams in multiple projections were obtained in 13 patients. Gated perfusion studies were performed in 14 patients, and for comparison 13 of these were restudied 24-72 h later by standard gated equilibrium blood pool radionuclide ventriculography. Conventional and planar scintigraphic criteria for myocardial infarction (acute or old) agreed in 12 (92%) patients (k = 0.81, p less than 0.05). All the infarctions detected by scintigraphy were associated with electrocardiographic Q-waves. Localization of infarction by the electrocardiogram and scintigraphy exhibited moderate agreement (k = 0.49, p less than 0.1). Regional wall motion analysis by standard radionuclide ventriculography and gated 99mTc-TBI scintigraphy were in complete agreement for 25 (64%) of 39 left ventricular segments (k = 0.35, p less than 0.05). However, in 7 other segments, associated with areas of infarction, regional wall motion abnormalities were noted only on gated 99mTc-TBI scintigraphy. Therefore, 99mTc-TBI scintigraphy can readily provide data on regional myocardial perfusion and wall motion, permitting detection and localization of areas of myocardial infarction. The superior imaging properties, ready availability and low cost of 99mTc point to the considerable potential value of 99mTc-TBI in assessing patients with suspected or confirmed myocardial infarction.

Adult↗

Technique for maximizing the frequency response of the signal averaged Frank vectorcardiogram.

This system for signal averaging of the Frank vectorcardiogram incorporates several important features: 1, simultaneous analogue to digital conversion of three orthogonal leads; 2, interactive editing of the data; 3, optimization of the fiducial timing point using a template derived from the calculated QRS vector magnitude; and 4, simultaneous display of both the averaged recording and the noise level at high amplification, which facilitates the assessment of low amplitude signals in the ST segment. The effective frequency response of the system approached theoretical expectation and background noise was low. The effect of exclusion versus inclusion of the fiducial timing point optimizing routine in the signal averaging program was examined in 21 patients. Exclusion of the optimizing routine effectively reduced the high frequency response of the system at the -3dB point from 350 Hz to about 60 Hz. The QRS complex was prolonged, and attenuation and spreading of signals in the ST segment occurred so that some delayed potentials merged with background noise and were no longer visible. We conclude that the system has several theoretical and practical advantages when compared with other techniques. A major benefit is the inclusion of a routine to optimize the QRS fiducial timing point. This minimizes distortion and attenuation of signals in the ST segment, thereby enhancing the probability of detecting the signals.

Humans↗

Functional cholesteryl binding agents: synthesis, characterization, and evaluation of antibody binding to modified phospholipid vesicles.

A series of functionalized cholesteryl derivatives were synthesized. The various lipophilic protein modification agents were analyzed for their protein binding ability. The binding of human IgG, labeled with 125I, to modified phospholipid vesicles was ascertained. Two agents performed well. These were cholest-5-en-3 beta-yl 5-carboxypentyl ether succinimido ester and cholest-5-en-3 beta-yl 6-carboxyhexyl ether succinimido ester.

Antibodies↗

Absorption, deposition and distribution of dietary aluminium in immature rats: effects of dietary vitamin D3 and food-borne chelating agent.

We report the levels of aluminium, calcium and potassium in selected tissues of growing rats administered dietary or subcutaneous aluminium, and also the effect of dietary aluminium in combination with cholecalciferol, or with lactose plus a dietary chelating agent. Dietary aluminium decreased the growth rate of normal rats and increased the deposition of aluminium in the tissues. Animals given lactose with a dietary chelator showed a 17 - 100% increase in brain, heart, and muscle aluminium concentration in comparison with those fed aluminium alone. Animals fed both aluminium with cholecalciferol also showed increased levels (12-39%) of aluminium, chiefly in muscle and heart in comparison with those fed aluminium alone. Aluminium deposition was correlated positively with Ca2+ and K+ levels among each of these tissues. We conclude that in normal growing rats aluminium deposition is increased in heart and muscle in the presence of vitamin D3 and in brain, heart and muscle in the presence of lactose and a dietary chelating agent.

Aging↗

Effect of reperfusion and hyperemia on the myocardial distribution of technetium-99m t-butylisonitrile.

Technetium-99m t-butylisonitrile ([99mTc]TBI) is a promising new radiotracer for myocardial imaging. Its myocardial uptake is sufficiently high in humans to permit planar, tomographic, and gated images of excellent technical quality. We studied the behavior of [99mTc]TBI in the dog at rest and under conditions of hyperemia and reperfusion in order to determine the relationship between [99mTc]TBI myocardial concentration and blood flow. After permanent occlusion of the left anterior descending artery, the correlation between the relative myocardial concentration of [99mTc]TBI and regional myocardial blood flow (RMBF) measured with radiolabeled microspheres was excellent. In a dog model of transient hyperemia, the concentration of [99mTc]TBI was directly related to blood flow but underestimated the degree of hyperemia. Technetium-99m TBI redistributed into transiently ischemic myocardium. The myocardial concentrations of [99mTc]TBI and thallium-201(201TI) in transiently ischemic myocardium were similar at 10 and 30 min following reperfusion and were significantly higher than blood flow prior to reperfusion. When [99mTc]TBI was injected into the left anterior descending artery, the washout was slow, falling to 78% of initial activity at 120 min after injection. In conclusion, [99mTc]TBI reflects regional myocardial blood flow accurately in ischemic and normal resting myocardium and underestimates blood flow at high flows. The rate of myocardial redistribution after reperfusion is similar for [99mTc]TBI and 201TI.

Animals↗

Biological studies of a new class of technetium complexes: the hexakis(alkylisonitrile)technetium(I) cations.

This study describes the preparation and synthesis of a new class of cationic technetium compounds, the hexakis(alkylisonitrile)technetium(+ 1) complexes, at both carrier added and no carrier added concentrations in aqueous media from pertechnetate. Biological distribution and imaging data in animals indicate that certain members of this class may be effective for cardiac imaging in man. The usefulness of these lipophilic water-soluble species for labeling mammalian cells is also reported.

Animals↗

A new Tc-99m-labeled myocardial imaging agent, hexakis(t-butylisonitrile)-technetium(I) [Tc-99m TBI]: initial experience in the human.

The cationic complex Tc-99m hexakis(t-butylisonitrile)technetium(I) (TBI) has been shown to concentrate in the myocardial tissue of several animal species. In the present preliminary study, the biodistribution of this material was examined in four normal subjects and in two patients with coronary artery disease. In three normal humans injected at rest, planar, tomographic, and gated myocardial images of high technical quality were obtained between 1 and 4 hr after injection. In one subject studied both at rest and during maximal exercise, the lung and heart activities were similar, whereas the liver-to-heart activity ratio was 3:1 at 60 min at rest compared with 1.8:1 with maximal exercise. In two patients with coronary artery disease, transient ischemia appeared as a perfusion defect up to 4 hr after injection at maximal exercise, and the image appeared normal when Tc-99m TBI was administered at rest. The images of areas of infarction appeared abnormal after injection at rest and after injection during exercise. Technetium-99m TBI is a promising myocardial imaging agent that may permit high-quality planar, gated, and tomographic imaging of myocardial ischemia and infarction.

Coronary Disease↗

Cancer in Solomon Islands 1970-82.

An analysis of the pathology reports of cancer at the Central Hospital, Honiara, Solomon Islands from 1970 to 1982 revealed that skin cancer, lymphohaemopoietic malignancy, cancer of the digestive organs and oral cancer were the most common cancers in males, and that cancer of the genito-urinary organs, skin cancer, breast cancer and lymphohaemopoietic malignancy were the most common cancers in females. Leukaemia and lymphoma were the most common cancers diagnosed in children. Although this is a selected series, there are definite similarities with cancer data reported from Papua New Guinea, and significant differences from patterns of cancer reported from Australia. Cancer of the mouth and liver appear to be more common in Solomon Islanders, and cancer of the large bowel and lung less common compared with Australians. These differences probably relate to the effect of different environmental agents. The present prospects for prevention and control of cancer in Solomon Islands is discussed.

Adult↗

The investigation of radiopharmaceutical components by fast atom bombardment mass spectrometry: the identification of Tc-HIDA and the epimers of Tc-CO2DADS.

The nature of two technetium-labeled radiopharmaceutical components has been established by means of fast-atom-bombardment mass spectrometry (FABMS) in combination with carrier-added (CA) and no-carrier-added (NCA) reversed-phase high-pressure liquid chromatography (HPLC). Negative-ion FABMS was used to determine that the epimers of Tc-CO2DADS are the oxo[N,N'-(1-carboxyethylene)-bis-(2-mercaptoacetimido)]technetate(V) ions; positive-ion FABMS showed that Tc-HIDA is bis[N-(2,6-dimethylphenyl-carbamoylmethyliminodiaceto]technetate(III).

Chromatography, High Pressure Liquid↗