GinsengNation

GinsengNation

Search
Skip to content
  • Home
  • Blog

Daily Archives: 09/07/2017

General

Black Ginseng Activates Akt signaling, whereby Enhancing Myoblast Differentiation and Myotube Growth

09/07/2017 Soo-Yeon Lee, Ga-Yeon Go, Tuan Anh Vuong, Jee Won Kim, Sullim Lee, Ayoung Jo, Jun Min An, Su-Nam Kim, Dong-Wan Seo, Jin-Seok Kim, Yong Kee Kim, Jong-Sun Kang, Sang-Jin Lee, Gyu-Un Bae

Black ginseng (BG) has greatly enhanced pharmacological activities relative to white or red ginseng. However, the effect and molecular mechanism of BG on muscle growth has not been examined. In this study, we investigated whether BG could regulate myoblast differentiation and myotube hypertrophy.

Share this:

  • Tweet
  • More
  • Share on Tumblr
  • Share on Reddit (Opens in new window) Reddit
  • Pocket
  • Email a link to a friend (Opens in new window) Email
  • Print (Opens in new window) Print

Original Source: Journal of Ginseng Research >>

ginsengscience

Tags

  • american ginseng
  • announcements
  • aphrodisiac
  • asia
  • asian ginseng
  • full-spectrum
  • ginseng
  • ginseng garden
  • ginsengnation
  • ginseng root
  • history
  • journal of ginseng research
  • korea
  • korean ginseng
  • market
  • panax ginseng
  • panax quinquefolius
  • red ginseng
  • science
  • seoul
  • yin-yang

Videos

  1. History of American Ginseng

    05/09/2014 operator
  2. Ginseng Culture

    05/09/2014 operator
More videos →

Ginseng, American Ginseng, Growing & Harvesting

Recent Posts

  • Gintonin Prevents Paclitaxel-Induced Neuropathic Pain via Spinal LPA3 Receptors and Oligodendrocyte Precursor Cells in Mice
  • Ginseng nonsaponins: New insights into their pharmacological potentials in inflammasome-driven inflammation and immunopathology
  • Contemporary Perceptions of Ginseng Among Individuals with Health Needs: A Nationwide Questionnaire Survey
  • Ginsenoside Rg1 enhances stem cell abundance in aging human skeletal muscle after resistance exercise
  • Ginsenoside Rb1 mitigates senescence-associated hepatic steatosis in mice through enhanced lysine degradation

Categories

  • Culture
  • Feeds
  • Gallery
  • General
  • History
  • Products

Pages

  • Home
  • Blog

Archives

September 2017
M T W T F S S
 123
45678910
11121314151617
18192021222324
252627282930  
« Aug   Oct »
KeMeK | KeMeK Tech | KeMeK Philanthropy | KeMeK Network © 2021