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  2. The 7 Best Matcha Powders for the Perfect Pick-Me-Up - AOL

    www.aol.com/7-best-matcha-powders-perfect...

    Reviewed by Dietitian Brierley Horton, M.S., RD. Matcha, a finely ground powder made from specially cultivated green tea leaves called tencha, has deep roots in both Japanese and Chinese cultures.

  3. Is Matcha Tea Healthy? Experts Explain Matcha’s ... - AOL

    www.aol.com/matcha-tea-healthy-experts-explain...

    Matcha vs. green tea “Each tea type comes from the same plant called Camellia sinensis,” explains De La Vega. “Through different processing methods we get different tea varieties.

  4. Matcha vs. Green Tea: What’s the Difference? - AOL

    www.aol.com/lifestyle/matcha-vs-green-tea...

    The health benefits of green tea have been widely reported. Yet, matcha—a specific type of green tea that comes in powder form—remains a mystery to many Westerners, despite the fact that it ...

  5. Theanine - Wikipedia

    en.wikipedia.org/wiki/Theanine

    [3] [4] It was discovered in 1949 as a constituent of green tea and isolated from gyokuro leaves in 1950. [5] It constitutes about 1–2% of the dry weight of green tea leaves. [4] The name theanine usually refers to the enantiomer L-theanine, which is the form found in tea leaves from which it is extracted as a powder.

  6. Matcha - Wikipedia

    en.wikipedia.org/wiki/Matcha

    Matcha [a] (抹茶) / ˈ m æ tʃ ə, ˈ m ɑː tʃ ə / ⓘ [2] [3] is a finely ground powder of green tea specially processed from shade-grown tea leaves. [4] [5] [6] Shade growing gives matcha its characteristic bright green color and strong umami flavor. [7] [8] Matcha is typically consumed suspended in hot water.

  7. Epigallocatechin gallate - Wikipedia

    en.wikipedia.org/wiki/Epigallocatechin_gallate

    It is found in high content in the dried leaves of green tea (7380 mg per 100 g), white tea (4245 mg per 100 g), and in smaller quantities, black tea (936 mg per 100 g). [2] During black tea production, the catechins are mostly converted to theaflavins and thearubigins via polyphenol oxidases .

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