1.Field evaluation of repellency of a polyherbal essential oil against blackflies and its dermal toxicity using rat model
Sunil Dhiman ; Bipul Rabha ; Pronobesh Chattopadhyay ; Das, N.G. ; Hazarika, S. ; Bhola, R.K. ; Vijay Veer and Lokendra Singh
Tropical Biomedicine 2012;29(3):391-397
In the present study we have evaluated the repellent activity of mixture of Curcuma longa, Zanthoxylum limonella and Pogostemon heyneanus essential oils in 1:1:2 ratio at 5%, 10% and 20% concentration against blackflies in northeastern India. Initially the essential oil
mixture tested here has been found effective against Aedes albopictus mosquitoes. The average protection recorded in 20% concentration (170.56±4.0; 95% CI = 162.09-179.02) was
higher as compared to other two concentrations (F = 90.2; p<0.0001; df = 53). Percentage repellency and repellency index was found to be higher in 20% concentration (p<0.017). No appreciable clinical and behavioral signs were observed in the acute dermal toxicity using rat
model. No changes were observed in biochemical profiles of treatment group animals. Similarly, no prominent lesions were observed in vital organs of treatment in both the sexes. The study concludes that tested repellent is safe for use and has multi-insects repellent property.
2.Nanocurcumin–pyrroloquinoline formulation prevents hypertrophy–induced pathological damage by relieving mitochondrial stress in cardiomyocytes under hypoxic conditions.
Sarita NEHRA ; Varun BHARDWAJ ; Anju BANSAL ; Pronobesh CHATTOPADHYAY ; Deepika SARASWAT
Experimental & Molecular Medicine 2017;49(12):e404-
This study investigates the therapeutic effect of a nanocurcumin formulation (NCF) containing nanocurcumin (NC) and pyrroloquinoline quinone (PQQ) on ameliorating hypoxia-induced stress in hypertrophied primary human ventricular cardiomyocytes (HVCM) under hypoxic conditions, as validated in a Sprague-Dawley rat model of chronic hypobaric hypoxia (cHH)-induced right ventricular hypertrophy (RVH). Based on our previous findings, here, we analyzed the improvement in the protective efficacy of NCF against mitochondrial damage. The electron transport chain Complexes’ activities were analyzed as a chief operational center for mitochondrial homeostasis, along with key gene and protein markers for mitochondrial biogenesis, redox function, fatty acid oxidation, bio-energetic deficit and cell survival. NCF supplementation imparts cyto-protection from hypoxia-induced hypertrophy and damage in both in vitro and in vivo models while maintaining mitochondrial homeostasis better than NC and PQQ alone. This study proposes the use of NCF as a potential candidate molecule for imparting protection from high altitude-induced maladies in ascendants.