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Biomedical subjects

D S Kumar

Publications and source records attributed to D S Kumar.

17 recordsLinked to original sources

Chemical modification of poly(vinyl chloride) resin using poly(ethylene glycol) to improve blood compatibility.

Poly(vinyl chloride) (PVC) was aminated by treating the resin with a concentrated aqueous solution of ethylenediamine. The aminated PVC was then reacted with hexamethylene diisocyanate to incorporate the isocyanate group onto the polymer backbone. The isocyanated PVC was further reacted with poly(ethylene glycol) (PEG) of molecular weight 600 Da. The modified polymer was characterized using infrared and X-ray photoelectron spectroscopy (XPS) and thermal analysis. Infrared and XPS spectra showed the incorporation of PEG onto PVC. The thermal stability of the modified polymer was found to be lowered by the incorporation of PEG. Contact angle measurements on the surface of polymer films cast from a tetrahydrofuran solution of the polymer demonstrated that the modified polymer gave rise to a significantly hydrophilic surface compared to unmodified PVC. The solid/water interfacial free energy of the modified surface was 3.9 ergs/cm(2) as opposed to 18.4 ergs/cm(2) for bare PVC surface. Static platelet adhesion studies using platelet-rich plasma showed significantly reduced platelet adhesion on the surface of the modified polymer compared to control PVC. The surface hydrophilicity of the films was remarkably retained even in the presence of up to 30 wt% concentration of the plasticizer di-(2-ethylhexyl phthalate). The study showed that bulk modification of PVC with PEG using appropriate chemistry can give rise to a polymer that possesses the anti-fouling property of PEG and such bulk modifications are less cumbersome compared to surface modifications on the finished product to impart anti-fouling properties to the PVC surface.

Biocompatible Materials↗

On the ethnomedical significance of the Arjun tree, Terminalia arjuna (Roxb.) Wight & Arnot.

Terminalia arjuna is an important cardiotonic plant described in the Ayurveda, the ancient Indian medical science. It is also believed to have the ability to cure hepatic, urogenital, venereal and viral diseases. An attempt is made here to analyse the available drug recipes using this plant from Sanskrit literature in the light of modern scientific knowledge. The chemistry and pharmacology of T. arjuna are also discussed, and areas of future investigations are identified.

Chemical Phenomena↗

Xenon arc photocoagulation for treatment of subluxation of lens.

In the treatment of congenital or acquired subluxation of the lens a conservative approach to reposition the pupil in front of the aphakic area by the use of the xenon arc photocoagulator is emphasised. The management of two cases of subluxation is discussed in detail and the results evaluated. The ease of repositioning the pupil by means of iris photocoagulation and the absence of surgical complications are indications for the use of this non-invasive procedure in the treatment of subluxated lenses.

Adult↗

Influence of oestradiol on tissue respiration of the Indian garden lizard, Calotes versicolor.

Ovariectomy reduced the respiratory rates of liver and skeletal muscle homogenates of the Indian garden lizard, Calotes versicolor. Administration of oestradiol dipropionate elevated the rate of tissue respiration of ovariectomized animals. This finding lends support to the view that oestradiol, like testosterone, is able to stimulate the oxidative metabolism of this animal.

Animals↗