본문 바로가기 주메뉴 바로가기
국회도서관 홈으로 정보검색 소장정보 검색

결과 내 검색

동의어 포함

초록보기

The field of hair follicle regeneration is advancing rapidly, and there have been a number of major

achievements over the last decade. Nonetheless, most of the current technologies are still unable to maintain their in vivo characteristics in vitro. The formation of new hair follicles for the treatment of alopecia using tissue engineering technology is promising; however, little or no work has been attempted in this area so far. In order to enhance the hair inducing ability of epithelial cells and to form the functional epithelial structure, we attempted to fabricate threedimensional scaffolds by using bladder submucosal membrane (BSM), keratin, hyaluronic acid (HA), and mouse

newborn epithelial skin scaffold (NESS). We characterized their properties with respect to the formation of the epithelial structure. The BSM sponge demonstrated the intrinsic activation of melanocytes once we inserted the inductive dermal papilla sphere. We found that the fiber sheet made of keratin enhanced cell spreading and adhesion better than the sheet with HA. The human outer root sheath keratinocytes formed a cluster on the NESS. These scaffolds would be used for the follicular epithelial cell physiology and study for property

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
Gene Expression in Ca or Mg Implanted Titanium Surfaces 고경호, 김대곤, 이희수, 변응선, 정용수, 박찬진, 조리라 pp.137-146

A Bioinformatics Approach for In Vivo Imaging of Endogenous MicroRNA Targets During Neurogenesis 조미희, 이창현, Bahy A Ali, Saud A Alarifi, Abdulaziz A Al-Khedhairy, 김순학 pp.157-169

Effects of Alginate Hydrogels on In Vitro Maturation Outcome of Mouse Preantral Follicles 박경의, 김윤영, 구승엽, 백선미, 허율, 김용진, 김석현, 최영민, 문신용 pp.170-174

Specific Temporal Culturing and Microgroove Depth Influence Osteoblast Differentiation of Human Periodontal Ligament Cells Grown on Titanium Substrata 이성복, 이석원, 안수진, 김경희, 정수희, 박수정, 이도윤, 양대혁, 권일근 pp.128-136

Fabrication and Characterization of Epithelial Scaffolds for Hair Follicle Regeneration 오지원, 임정옥, 최정연, 김민지, Syed Izhar Haider Abdi, Hui Chong Lau, 김문규 pp.147-156

A Novel Method for the Production and Evaluation of Hernia Repair Mesh in an In Vitro Environment Bryant Mersereau, Richard E. Groff, Timothy Burg, Karen J.L. Burg pp.116-127

Effect of Tissue Engineering Small Vessel Scaffolds in Experimental Animals Chen Huayong, Bai Shuling, Chen Yingqing pp.109-115

Osteogenic Evaluation of Calcium Phosphate Scaffold with Drug-Loaded Poly(Lactic-Co-Glycolic Acid) Microspheres in Beagle Dogs 김종민, 허태성, 김명환, Daniel S. Oh, 강승수, 김곤형, 권태엽, 김교한, 이규복, 손준식, 최석화 pp.175-183

참고문헌 (28건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 JG Barber, AM Handorf, TJ Allee, et al., Braided nanofibrous scaffold for tendon and ligament tissue engineering, Tissue Eng Part A, (2011). 미소장
2 Regenerated Silk Fibroin Scaffold and Infrapatellar Adipose Stromal Vascular Fraction as Feeder-Layer: A New Product for Cartilage Advanced Therapy 네이버 미소장
3 Scaffold translation: barriers between concept and clinic. 네이버 미소장
4 A Two-Step Mechanism for Stem Cell Activation during Hair Regeneration 네이버 미소장
5 Molecular biology of hair morphogenesis: development and cycling. 네이버 미소장
6 K Elliott, TJ Stephenson, AG Messenger, Differences in hair follicle dermal papilla volume are due to extracellular matrix volume and cell number: implications for the control of hair follicle size and androgen responses, J Invest Dermatol, 113, 873 (1999). 미소장
7 Controls of hair follicle cycling. 네이버 미소장
8 Molecular basis of androgenetic alopecia : From androgen to paracrine mediators through dermal papilla 네이버 미소장
9 The natural history of androgenetic alopecia 네이버 미소장
10 Bald scalp in men with androgenetic alopecia retains hair follicle stem cells but lacks CD200-rich and CD34-positive hair follicle progenitor cells. 네이버 미소장
11 R Ehama, Y Ishimatsu-Tsuji, S Iriyama, et al., Hair follicle regeneration using grafted rodent and human cells, J Invest Dermatol, 127, 2106 (2007). 미소장
12 BM Kang, MH Kwack, MK Kim, et al., Sphere formation increases the ability of cultured human dermal papilla cells to induce hair follicles from mouse epidermal cells in a reconstitution assay, J Invest Dermatol, 132, 237 (2011). 미소장
13 Dihydrotestosterone-inducible dickkopf 1 from balding dermal papilla cells causes apoptosis in follicular keratinocytes. 네이버 미소장
14 Erythropoietin promotes hair shaft growth in cultured human hair follicles and modulates hair growth in mice 네이버 미소장
15 Cell 네이버 미소장
16 S Lyle, M Christofidou-Solomidou, Y Liu, et al., Human hair follicle bulge cells are biochemically distinct and possess an epithelial stem cell phenotype, J Investig Dermatol Symp Proc, 4, 296 (1999). 미소장
17 Comparisons of mouse models for hair follicle reconstitution 네이버 미소장
18 Molecular dissection of mesenchymal-epithelial interactions in the hair follicle. 네이버 미소장
19 Self-Renewal, Multipotency, and the Existence of Two Cell Populations within an Epithelial Stem Cell Niche 네이버 미소장
20 M Ito, Z Yang, T Andl, et al., Wnt-dependent de novo hair follicle regeneration in adult mouse skin after wounding, Nature, 447, 316 (2007). 미소장
21 Human hair keratin-associated proteins (KAPs). 네이버 미소장
22 Human hair keratin-associated proteins: Sequence regularities and structural implications 네이버 미소장
23 D Hohl, U Lichti, D Breitkreutz, et al., Transcription of the human loricrin gene in vitro is induced by calcium and cell density and suppressed by retinoic acid, J Invest Dermatol, 96, 414 (1991). 미소장
24 S100A11, S100A10, annexin I, desmosomal proteins, small proline-rich proteins, plasminogen activator inhibitor-2, and involucrin are components of the cornified envelope of cultured human epidermal keratinocytes. 네이버 미소장
25 Dissecting the bulge in hair regeneration. 네이버 미소장
26 Hair follicle regeneration in skin grafts: current concepts and future perspectives. 네이버 미소장
27 Hair follicle neogenesis induced by cultured human scalp dermal papilla cells. 네이버 미소장
28 The role of BMP signalling in the control of ID3 expression in the hair follicle. 네이버 미소장