Kuender D. Yang
Mackay Memorial Hospital
236 Papers
1.5K Citations
Kuender D. Yang is an academic researcher from Mackay Memorial Hospital. The author has contributed to research in topics: Medicine & Internal medicine. The author has an hindex of 54, co-authored 228 publications. Previous affiliations of Kuender D. Yang include National Defense Medical Center & I-Shou University.
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Papers
Shock wave therapy induces neovascularization at the tendon-bone junction. A study in rabbits.
Ching-Jen Wang,Feng-Sheng Wang,Kuender D. Yang,Lin-Hsiu Weng,Chia-Chen Hsu,Chun-Shun Huang,Lin-Cheng Yang +6 more
TL;DR: In conclusion, shock wave therapy induces the ingrowth of neovascularization associated with early release of angiogenesis‐related markers at the Achilles tendon–bone junction in rabbits, which may play a role to improve blood supply and tissue regeneration at the tendon-bone junction.
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miR-146b is highly expressed in adult papillary thyroid carcinomas with high risk features including extrathyroidal invasion and the BRAF(V600E) mutation.
Chen-Kai Chou,Rong-Fu Chen,Fong-Fu Chou,Hsueh-Wen Chang,Yi-Ju Chen,Ya-Fang Lee,Kuender D. Yang,Jiin-Tsuey Cheng,Chao-Cheng Huang,Rue-Tsuan Liu +9 more
TL;DR: The results show the potential importance of miR-221, mi-222, and mi-146b in determining the aggressive properties of PTCs and highlight the need to identify the gene targets of these miRNAs.
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Ras Induction of Superoxide Activates ERK-dependent Angiogenic Transcription Factor HIF-1α and VEGF-A Expression in Shock Wave-stimulated Osteoblasts
Feng-Sheng Wang,Ching-Jen Wang,Yeung-Jen Chen,Per-Rong Chang,Yu-Ting Huang,Yi-Chih Sun,Hueng-Chen Huang,Ya-Ju Yang,Kuender D. Yang +8 more
TL;DR: Modulation of redox reaction by SW may have some positive effect on angiogenesis during bone regeneration, as observed in animal studies.
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Recruitment of mesenchymal stem cells and expression of TGF‐β1 and VEGF in the early stage of shock wave‐promoted bone regeneration of segmental defect in rats
Yeung-Jen Chen,Tilmann Wurtz,Ching-Jen Wang,Yur-Ren Kuo,Kuender D. Yang,Hue-Chen Huang,Feng-Sheng Wang +6 more
TL;DR: It is reported that ESW‐promoted healing of segmental defect via stimulation of mesenchymal stem cell recruitment and differentiation into bone forming cells is a critical step in bone reparation that is enhanced by ESW treatment.
211
Superoxide mediates shock wave induction of ERK-dependent osteogenic transcription factor (CBFA1) and mesenchymal cell differentiation toward osteoprogenitors
Feng Sheng Wang,Ching Jen Wang,Shyr Ming Sheen-Chen,Yur-Ren Kuo,Rong-Fu Chen,Kuender D. Yang +5 more
TL;DR: It was shown that ESW-induced O 2 − production followed by tyrosine kinase-mediated ERK activation and core binding factor A1 activation resulted in osteogenic cell growth and maturation, and an appropriate modulation of redox reaction by ESW may have some positive effect on the bone regeneration.
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