Since structure–activity relationship can have any of linear and

Since structure–activity relationship can have any of linear and non-linear nature, it is always recommended to investigate dataset for either of them. Comparative studies on linear (MLR) and non-linear (SVM) QSAR models confirmed the postulate that statistical fitness and predictability of QSAR models are not related terms this website and should be

treated and analyzed separately. Linear and non-linear models possessed lower statistical fitness but were found efficient in predictions of biological responses of training set and test set. Another interesting conclusion explains that linear models (MLR) are more general in predictions of end points (biological responses) unlike non-linear models (SVM) which allocated predicted end points either so close or too far of regression line. Selection of the overlapping structural features in terms of molecular descriptors between linear and non-linear QSAR models concludes the outcome of the present work. Overlapping features can underline the points that differentiate a mathematical linear relationship from non-linear

one in terms of structural features. Bio-chemical aspects of QSAR models can also be better PF-06463922 molecular weight explored from identified overlapping structure features selection of linear and non-linear QSAR models. All authors have none to declare. “
“Phyllanthus wightianus Muell Arg – Synonyms – Reidia floribunda (Euphorbiaceae) is monocious sub shrub to 1 m branchless in lose spirals, pubescent. Leaves are alternate, distiches, elliptic to oblong, dark green above.

Flowers are reddish, and fruits are pendulous through the year. Plant is distributed to Peninsula (Hook.f.l.c), Hills (750) 1000 m, on the floor and border of shoals and also available abundantly in local areas. The whole plant of P. wightianus has long been used as a constituent of an ethno-medicine for bone setting, as an antidiarrhoeal, against jaundice and for treating dieresis. Chemical constituents and in-vitro antioxidant activity of P. wightianus were reported. much The whole plant extracts were subjected to isolation of their compounds of isomeric sterol mixture of (stigmasterol, compesterol and sitosterol), fredilin, lupeol, gallic acid, bergenin, geraniin, corilagin and ellagic acid were established through the use of column chromatographic methods. The percentage of tannins was also determined and estimated using the HPLC method. 1, 2 and 3 Plant extracts were investigated to estimate the primary and secondary metabolites using various analytical techniques and the alcoholic leaves extract subjected to bioactivity studies of in-vitro antioxidant and anti-inflammatory using standard assay like reducing power assay, hydrogen peroxide and (DPPH) α, α-diphenyl-β-picryl hydrazyl methods and in-vitro antiinflammatory studies through HRBC membrane stabilization in order to protect by using the plant extract of P. wightianus. The leaves of P. wightianus were collected from the Javadi Hills, Vellore district, Tamil Nadu during December 2010.

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