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Chemicals contained in cruciferous vegetables induce the expression of the liver enzyme CYP1A2. [10] Alliaceous and cruciferous vegetable consumption may induce glutathione S-transferases, uridine diphosphate-glucuronosyl transferases, and quinone reductases [11] all of which are potentially involved in detoxification of carcinogens such as ...
Cruciferous vegetables—broccoli, brussels sprouts, kale, and cabbage—are rich in phytonutrients crucial for reducing inflammation and the risk of cancer. They also contain magnesium, folate ...
A recent review of the biomedical research literature found that "evidence of an inverse association between cruciferous vegetable intake and breast or prostate cancer in humans is limited and inconsistent" and "larger randomized controlled trials are needed" to determine if supplemental indole-3-carbinol has health benefits. [7]
1. Broccoli. Packed with essential vitamins and minerals, this cruciferous powerhouse is known for its potential cancer-fighting benefits.. In terms of taste, broccoli has a mild bitterness — it ...
This cruciferous vegetable has precious few carbs and considerable health benefits—a 2011 study published in Epidemiology concluded that consumption of cruciferous vegetables can help prevent ...
The treatment of chronic liver disease depends on the cause. Specific conditions may be treated with medications including corticosteroids , interferon , antivirals , bile acids or other drugs. Supportive therapy for complications of cirrhosis include diuretics , albumin , vitamin K , blood products , antibiotics and nutritional therapy.
Eating four daily servings of cruciferous vegetables ... which can translate to roughly 5% lower risk of experiencing a major cardiovascular disease event, such as a heart attack or stroke ...
6-(Methylsulfinyl)hexyl isothiocyanate (6-MITC or 6-MSITC) is a compound within the isothiocyanate group of organosulfur compounds. 6-MITC is obtained from cruciferous vegetables, chiefly wasabi. Like other isothiocyanates, it is produced when the enzyme myrosinase transforms the associated glucosinolate into 6-MITC upon cell injury.
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