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R. Organoid
Bladder assembloids mimic the pathophysiology of the in vivo bladder and Figure 6.
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전체 10쪽 · 온라인 플립북
목차
- 슬라이드 번호 1 1쪽
- 슬라이드 번호 1 9쪽
출처: 이북나라 전자책 『R. Organoid』 원본 목차
본문에서 살펴볼 내용
본문 1쪽
Characterization of iPSC-derived midbrain organoids from Parkinson’s disease patient Yunsu Bang, Juhyun Choi, Ki Soon Kim, Jong Gu Lee, Woo yong Oh, Yoonsook Lee Clinical Research Division, NIFDS, MFDS, Osong Health Technology Administration Complex, 187, Osongsaengmyeong 2-ro, Osong, Heungdeok, Cheongju, 28159, Korea Abstract Parkinson's disease(PD) is the one of common neurodegenerative diseases, that results from the loss of neuromelanin(NM)-containing dopaminergic(DA) neurons.
출처: 이 전자책 1쪽
본문 3쪽
Comparative Proteomic Analysis and Evaluation of Anticancer Drug Responses Using Patient-Derived Tumor Organoids Yeon-Jin Chu, Hyuna Kim, Hyeong Ho Cho, Ki Soon Kim, Donghyun Park, Woo Yong Oh, Yoonsook Lee* Clinical Research Division, National Institute of Food and Drug Safety Evaluation, Ministry of Food and Drug Safety, Osong Health Technology Administration Complex, 187 Osongsaengmyeong2-ro, Osong, Heungdeok, Cheongju, 28159, Korea ABSTRACT Tumor organoids using three-dimensional(3D) culture system are well known to reflect the heterogeneity and biological properties of patients compared…
출처: 이 전자책 3쪽
본문 5쪽
Three-dimensional reconstitution of bladder assembloids that structurally and functionally recapitulate in vivo tissue regeneration and cancer Eunjee Kim, Sungeun Kim, Seoyoung Choi, Yubin Kim, and Kunyoo Shin* Department of Life Sciences, Pohang University of Science and Technology, Pohang, Gyeongbuk 37673, South Korea Abstract Figure 3. Bladder assembloids mimic the pathophysiology of the in vivo bladder and Figure 6. Development of tumor assembloids by 3D bioprinting-based reconstitution and represent tissue dynamics during urinary tract infection.
출처: 이 전자책 5쪽
본문 6쪽
[R. Organoid-3] Three-dimensional reconstitution of bladder assembloids that structurally and functionally recapitulate in vivo tissue regeneration and cancer Eunjee Kim1, Yubin Kim1, Seoyoung Choi1, SungEun Kim1, Kunyoo Shin1 1Life Sciences, POSTECH, Pohang 37673, 대한민국 Current organoid models are limited by their inability to mimic mature organ architecture and associated tissue microenvironments.
출처: 이 전자책 6쪽
본문 8쪽
[R. Organoid-4] Development of mature forebrain organoids by spatially and temporally controlling neurodevelopmental cues for schizophrenia modeling Seoyoung Choi1, Eunjee Kim1, Jihye Han1, JungHo Kong1, Gwanghwan Lee1, Minhyuk Park1, Sanguk Kim1 ̇*, Kunyoo Shin1 ̇* 1Department of Life Sciences, Pohang University of Science and Technology , Pohang 37673, Republic of Korea The biggest challenge to study human brain is the lack of experimental systems that can precisely represent the complexity of human brain.
출처: 이 전자책 8쪽
본문 10쪽
[R. Organoid-5] Human pluripotent stem cell-derived hepatic organoids as a screening platform for toxicity prediction and drug evaluation Seon Ju Mun1 ̇2, Jaeseo Lee1, Mi-Ok Lee1 ̇2, Ye Seul Son1 ̇2, Soo Jin Oh3, Hyun-Soo Cho1 ̇2, Mi-Young Son1 ̇2, Dae-Soo Kim2 ̇4, Ho-Joon Lee1, Janghwan Kim1 ̇2, Cho-Rok Jung1 ̇2, Kyung-Sook Chung1 ̇2 ̇5 ̇*, Myung Jin Son1 ̇2 ̇* 1Stem Cell Convergence Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea, 2Department of Functional Genomics, Korea University of Science & Technology (UST), Daejeon…
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