nav bg

연구데이터 > 검색

[논문] Polyphenol extract from Tagetes erecta L. flowers stimulates osteogenesis via β-catenin activation

메타 데이터

세부정보 닫기열기
세부과제책임자

김기영

논문제목(Title)

[논문] Polyphenol extract from Tagetes erecta L. flowers stimulates osteogenesis via β-catenin activation

학술지명(Journal)

Phytomedicine

ImpactFactor

6.7

ISSN_ISBN

0944-7113

학술지볼륨권호(Volume)

136

SCI구분

SCIE

초록(Abstract)

Background: Osteoporosis, a prevalent bone disorder, results in reduced bone mineral density and mass. With minimal side effects, medicinal plant-based natural remedies are increasingly explored for osteoporosis. However, the osteogenic potential of Tagetes erecta L. flower, traditionally used for cardiovascular and renal diseases, has not yet been studied.

Objective: This study investigates the osteogenic effects of the polyphenol-enriched extract from T. erecta L. flowers (TE) and its main components on osteoblast differentiation, with an emphasis on anti-osteoporotic activity.

Methods: The osteogenic activity of TE was assessed in MC3T3-E1 preosteoblast cells, analyzing osteogenic alkaline phosphatase (ALP) activity via a colorimetric assay and mineralization through Alizarin Red S staining over 14 d. Expression levels of osteogenic markers–transcription factor osterix (SP7), runt-related transcription factor 2 (RUNX2), and ALP–were quantified through quantitative reverse transcription-polymerase chain reaction and western blotting. In vivo effects were evaluated using zebrafish larvae for bone formation and antiosteoporotic properties. Vertebral development was visualized by staining mineralized structures with calcein or Alizarin Red S. Prednisolone (PDS) was administered to zebrafish larvae to model osteoporosis. Furthermore, molecular docking simulations were conducted to assess the binding affinity of TE components to the ATPbinding pocket of glycogen synthase kinase-3β (GSK-3β), and their inhibitory potential on GSK-3β kinase activity was quantified by in vitro kinase assays. Cellular thermal shift assay (CETSA) was performed to monitor
direct bindings of TE and its main components to GSK3–3β.

Results: TE promoted vertebral and cranial bone formation in zebrafish larvae, elevating key osteogenic genes, such as sp7, runx2a, runx2b, and alpl. Among TE components, kaempferol and patuletin significantly enhanced vertebral formation, while isorhamnetin showed moderate effects. Patulitrin and quercetagetin did not increased vertebral formation. In MC3T3-E1 cells, TE increased ALP activity, mineralization, and the expression of SP7, RUNX2, and ALP. It also induced GSK-3β phosphorylation at serine 9 and promoted β-catenin nuclear translocation. Inhibition of β-catenin signaling reversed TE-induced osteogenic effects. Molecular docking suggested strong GSK-3β binding by TE components, with patuletin showing notable inhibition GSK-3β activity (half maximal inhibitory concentration = 379.3 ng/mL) and enhancing vertebral formation. CETSA confirmed that TE and its main components, kaempferol and patuletin, degrades GSK-3β. Additionally, TE alleviated PDS-induced osteoporosis in both cellular and zebrafish models.

저자명(Author)

Sobarathne Senel Sanjaya , Jinkuk Park, Yung Hyun Choi, Hee Sun Park, Takayuki Sadanaga, Min-Jeong Jung, Gi-Young Kim

학술지출판일자(PublicationDate)

Available online 2024.12.07

DMP

과제명(영문)

Elucidating the signaling pathway of bisphenol A-induced activation of NLRP3 inflammasome via TLR4

연구책임자 / 소속

김기영/해양생명과학과

당해연구기간

2024.03.01. ~ 2025.02.28.

공개 및 라이선스

공개 일자

2025-01-06

라이선스

저작자표시-비영리

저작권

이 데이터의 저작권은 <연구자 기관/그룹/사용자>에게 있습니다.

  • 27views
  • 0downloads
컬렉션
[김기영] 비스페놀A가 TLR4를 경유하여 NLRP3인플레머솜을 활성화시키는 신호전달경로의 규명(2024)
제출자
관리자
공개일자
2025-01-06
Versions
  • Version 1 2025-01-06
Cite as
Sobarathne Senel Sanjaya , Jinkuk Park, Yung Hyun Choi, Hee Sun Park, Takayuki Sadanaga, Min-Jeong Jung, Gi-Young Kim, Available online 2024.12.07, [논문] Polyphenol extract from Tagetes erecta L. flowers stimulates osteogenesis via β-catenin activation
Export