Literature DB >> 33952732

Matcha and Its Components Control Angiogenic Potential.

Ryota Iwai1,2, Takeshi Ishii1, Yoichi Fukushima3, Tadashi Okamoto4, Masamitsu Ichihashi4, Yasuto Sasaki1, Ken-Ichi Mizuatni2.   

Abstract

The brain needs the appropriate capillary networks to maintain normal brain function. Since previous studies showed age-related decrease in the cortical capillaries, it is suggested that protection against capillary aging is critical for maintaining brain function. Epidemiological studies have indicated that brain functions were protected from age-related decline by the long-term consumption of matcha. However, whether matcha has protective effects on capillary aging has not been studied yet. In this study, we utilized Flt1-DsR mice that expressed a red fluorescent protein in vascular endothelial cells to visualize cortical capillaries clearly. We found that cortical capillary density decreased in aging Flt1-DsR mice. Our results of the aortic ring assay and tube formation assay revealed that matcha and its components vitamin K1 and lutein, which are abundant in matcha powder, enhanced the angiogenic potential. Moreover, we evaluated the effect of long-term ingestion of matcha on mouse cortical capillary aging by using imaging experiments. The capillary density of the Flt1-DsR mice, which were fed matcha-containing food, indicated the protective effects of matcha ingestion on capillary aging in a limited cortical layer. These results suggest that biological regulation of matcha and its components affect the angiogenic potential, which is related to the prevention of capillary aging.

Entities:  

Keywords:  aging; brain; capillary; lutein; matcha; neocortex; vascular; vitamin K1

Year:  2021        PMID: 33952732     DOI: 10.3177/jnsv.67.118

Source DB:  PubMed          Journal:  J Nutr Sci Vitaminol (Tokyo)        ISSN: 0301-4800            Impact factor:   2.000


  1 in total

1.  The Effects of Matcha and Decaffeinated Matcha on Learning, Memory and Proteomics of Hippocampus in Senescence-Accelerated (SAMP8) Mice.

Authors:  Kiharu Igarashi; Makiko Takagi; Yoichi Fukushima
Journal:  Nutrients       Date:  2022-03-11       Impact factor: 5.717

  1 in total

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