Wang H, Zhang W, Zuo L, et al
doi: 10.1128/jb.128.1.192-201.1976 120 HellerJ
aqua/water/eau, sodium laureth sulfate, lauryl betaine, ppg-2 hydroxyethyl cocamide, glycerin, glycol distearate, parfum/fragrance, disodium laureth sulfosuccinate, allantoin, aloe barbadensis leaf juice, panthenol, tocopherol, tocotrienols, trilinolein, triolein, helianthus annuus (sunflower) seed oil, camellia sinensis leaf extract, polyquaternium-7, polyquaternium-10, maltodextrin, methyl gluceth-20, sodium benzotriazolyl butylphenol sulfonate, buteth-3, tributyl citrate, citric acid, sodium chloride, magnesium chloride, magnesium nitrate, sodium benzoate, sodium sulfite, polysorbate 20, potassium sorbate, disodium edta, maleic anhydride, sodium hydroxide, methylene di-t-butylcresol, phenoxyethanol, hexylene glycol, caprylyl glycol, methylchloroisothiazolinone, methylisothiazolinone, fd & c yellow no

There is a particular need for human studies focused on the following: (i) validation of airway and systemic GSH/GSSG redox balance as a biomarker of asthma susceptibility, (ii) the natural history of GSH/GSSG redox balance in asthma across the lifespan, (iii) the specific role of GSH/GSSG redox balance in clinical manifestations of the disorder, including asthma severity and the response to secondary insults, (iv) the utility of GSH/GSSG redox balance as a predictor and indictor of asthma treatment responsiveness, and (v) therapeutic approaches to restore the GSH/GSSG redox balance in asthma and modify the course of the disorder
Adachi T