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Yuka Yamada,Sasicha Chensom,Hisataka Yonemoto,Hiroko Nakayama,Liqing Zang,Norihiro Nishimura,Takashi Mishima,Yasuhito Shimada 한국식품영양과학회 2020 Journal of medicinal food Vol.23 No.1
Yamato Tachibana (Tachibana; Citrus tachibana) is an endemic fruit and represents one of the oldest citrus species in Japan; it is grown in the Mie Prefecture. It has been attracting attention for its cultural heritage and unique scent. To evaluate biological activities of Tachibana, we fed several parts of the Tachibana fruit (whole fruit, pulp [albedo and segment wall], and flavedo) to adult zebrafish and found that Tachibana increased body weight and plasma triglycerides besides increasing overall food intake. We then created a simple fluorescence-based feeding assay using dried rotifer sheets and larval zebrafish (6 days postfertilization) to screen the various extracts of Tachibana parts. We found that water extracts of Tachibana pulp increased feeding volume in zebrafish. Although citrus species are believed to prevent obesity and obesity-associated diseases in general, our findings showed that water extracts of Tachibana increase food intake in zebrafish and lead to an increase in body weight. We suggest that Tachibana might reverse appetite loss in lean populations and may prove beneficial in aiding fish cultivation.
Genomic Profiling Shows Increased Glucose Metabolism in Luminal B Breast Cancer
Shigeto Ueda,Hideki Takeuchi,Takashi Shigekawa,Kazuo Matsuura,Noriko Nakamiya,Hiroshi Sano,Hiroko Shimada,Eiko Hirokawa,Akihiko Osaki,Toshiaki Saeki 한국유방암학회 2013 Journal of breast cancer Vol.16 No.3
We had previously reported a close association between pathological response and the maximum tumor standardized uptake value (SUVmax) measured by 18F-fluorodeoxyglucose positron emission tomography prior to chemotherapy in estrogen receptor (ER)-positive breast cancer. We hypothesized that glucose hypermetabolism by luminal B tumors may result in chemotherapy responsiveness. Using a single-gene expression assay, TargetPrint® (Agendia) and a 70-gene expression classifier,MammaPrint® (Agendia), we divided 20 patients with ERpositive primary breast cancer into luminal A and luminal B subtypes and compared the tumor SUVmax value between the two groups. A significantly higher SUVmax was measured for luminal B tumors (n=10; mean±SD, 7.6±5.6) than for luminal A tumors (n=10; mean±SD, 2.6±1.2; p=0.01). Glucose hypermetabolism could help predict intrinsic subtyping and chemotherapy responsiveness as a supplement to ER, progesterone receptor, HER2,and Ki-67 histochemical scores.