It is widely recognized that high levels of consumption of vegetables are associated with lower risks of developing several types of cancer. Certain cultivars of broccoli contain singularly elevated levels of the glucosinolate, glucoraphanin (GR), which yields the isothiocyanate sulforaphane upon hydrolysis. Both sulforaphane and GR (as a broccoli sprout hot water extract) are inhibitors of carcinogenesis in rodents. The discovery that GR levels are highest in young broccoli plants (3-day-old sprouts) prompted the hypothesis that sprouts are safe, effective, inexpensive, and practical means to achieve chemoprevention. Initial clinical studies have characterized the pharmacokinetics of broccoli sprout preparations in humans and have established the safety of this food under circumstances of normal consumption patterns. Therefore, the goals of this project are to use chemical biomarkers to assess the efficacy of chemoprevention interventions with broccoli sprouts in populations in Qidong, China exposed to high levels of food (aflatoxins) and air-borne toxicants (alkylanilines and polycyclic aromatic hydrocarbons).
The specific aims i n Project 4 are (1) to compare, in a short-term cross-over clinical trial, the bioavailablity of sulforaphane from broccoli sprouts in two forms: enterically generated from glucoraphanin by gut microflora;or pre-released by treatment with myrosinase from the plant daikon. Urinary excretion of glucoraphanin/sulforaphane metabolites (dithiocarbamates) will be measured.
Aim 2 will determine the pharmacodynamic impact of the broccoli sprout intervention on phenanthrene metabolism to phenols, tetraols and mercapturic acids using mass spectrometry.
Aim 3 will extend these findings by determining whether a 3-month placebo-controlled, randomized broccoli sprout intervention modulates biomarker levels in residents of Qidong. Aflatoxin-DNA adducts in the urine and aflatoxin-lysine adducts in the serum (Project 1) along with secondary endpoints of alkylaniline-hemoglobin in red blood cells and excreted urinary metabolites including alkylaniline-DNA adducts (Project 3) and mercapturic acids and phenanthrene tetraol metabolites resulting from exposures to air toxics will be measured.
Aim 4 is designed to monitor and understand source for exposures to the alkylanilines and phenanthrenes in residents of Qidong. Lastly, Aim 5 will evaluate the pharmacokinetics, pharmacodynamic action and chemopreventive efficacy of Moringa oleifera (""""""""Drumstick"""""""" tree), an edible plant indigenous to West Africa and India containing the potent enzyme inducer 4-(rhamnopyranosyloxy)- benzyl glucosinolate, in rat and mouse models. Results from these preclinical studies will provide impetus to consider conducting Moringa-based interventions in populations at high-risk for liver cancer in West Africa (Project 2). Collectively, these studies will define the utility and efficacy of culturally appropriate, affordable, safe foods for interventions in populations with unavoidable exposures to environmental toxicants.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Research Program Projects (P01)
Project #
5P01ES006052-17
Application #
8078953
Study Section
Special Emphasis Panel (ZES1)
Project Start
Project End
Budget Start
2010-06-01
Budget End
2011-05-31
Support Year
17
Fiscal Year
2010
Total Cost
$513,965
Indirect Cost
Name
Johns Hopkins University
Department
Type
DUNS #
001910777
City
Baltimore
State
MD
Country
United States
Zip Code
21218
Chen, Taoyang; Qian, Gengsun; Fan, Chunsun et al. (2018) Qidong hepatitis B virus infection cohort: a 25-year prospective study in high risk area of primary liver cancer. Hepatoma Res 4:
Yang, Li; Palliyaguru, Dushani L; Kensler, Thomas W (2016) Frugal chemoprevention: targeting Nrf2 with foods rich in sulforaphane. Semin Oncol 43:146-153
Watson, Sinead; Chen, Gaoyun; Sylla, Abdoulaye et al. (2016) Dietary exposure to aflatoxin and micronutrient status among young children from Guinea. Mol Nutr Food Res 60:511-8
Ravindra, Kodihalli C; Trudel, Laura J; Wishnok, John S et al. (2016) Hydroxyphenylation of Histone Lysines: Post-translational Modification by Quinone Imines. ACS Chem Biol 11:1230-7
Chao, Ming-Wei; Erkekoglu, P?nar; Tseng, Chia-Yi et al. (2015) Protective effects of ascorbic acid against the genetic and epigenetic alterations induced by 3,5-dimethylaminophenol in AA8 cells. J Appl Toxicol 35:466-77
Techapiesancharoenkij, Nirachara; Fiala, Jeannette L A; Navasumrit, Panida et al. (2015) Sulforaphane, a cancer chemopreventive agent, induces pathways associated with membrane biosynthesis in response to tissue damage by aflatoxin B1. Toxicol Appl Pharmacol 282:52-60
Shirima, Candida P; Kimanya, Martin E; Routledge, Michael N et al. (2015) A prospective study of growth and biomarkers of exposure to aflatoxin and fumonisin during early childhood in Tanzania. Environ Health Perspect 123:173-8
Hernandez-Vargas, Hector; Castelino, Jovita; Silver, Matt J et al. (2015) Exposure to aflatoxin B1 in utero is associated with DNA methylation in white blood cells of infants in The Gambia. Int J Epidemiol 44:1238-48
Chawanthayatham, Supawadee; Thiantanawat, Apinya; Egner, Patricia A et al. (2015) Prenatal exposure of mice to the human liver carcinogen aflatoxin B1 reveals a critical window of susceptibility to genetic change. Int J Cancer 136:1254-62
Castelino, Jovita M; Routledge, Michael N; Wilson, Shona et al. (2015) Aflatoxin exposure is inversely associated with IGF1 and IGFBP3 levels in vitro and in Kenyan schoolchildren. Mol Nutr Food Res 59:574-81

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