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Articles by Jason Z. Hu in JoVE

 JoVE Bioengineering

בימוי נייד הרכבה עצמית לפברק Cell-נגזר טבעות רקמות לניתוח biomechanical הנדסת רקמות


JoVE 3366 11/25/2011

Biomedical Engineering Department, Worcester Polytechnic Institute

מאמר זה מתאר שיטה צדדי כדי ליצור תאים שמקורם ברקמה טבעות על ידי הרכבה עצמית הסלולר. לתאי שריר חלק seeded לתוך בצורת טבעת המצרפי בארות agarose חוזה ליצירת חזקים תלת ממדי (3D) ברקמות בתוך 7 ימים. מילימטר בקנה מידה טבעות רקמה תורמת בדיקות מכניות לשמש כאבני בניין להרכבת רקמות.

Other articles by Jason Z. Hu on PubMed

Engineered Vascular Tissue Fabricated from Aggregated Smooth Muscle Cells

The goal of this study was to develop a system to rapidly generate engineered tissue constructs from aggregated cells and cell-derived extracellular matrix (ECM) to enable evaluation of cell-derived tissue structure and function. Rat aortic smooth muscle cells seeded into annular agarose wells (2, 4 or 6 mm inside diameter) aggregated and formed thick tissue rings within 2 weeks of static culture (0.76 mm at 8 days; 0.94 mm at 14 days). Overall, cells appeared healthy and surrounded by ECM comprised of glycosoaminoglycans and collagen, although signs of necrosis were observed near the centers of the thickest rings. Tissue ring strength and stiffness values were superior to those reported for engineered tissue constructs cultured for comparable times. The strength (100-500 kPa) and modulus (0.5-2 MPa) of tissue rings increased with ring size and decreased with culture duration. Finally, tissue rings cultured for 7 days on silicone mandrels fused to form tubular constructs. Ring margins were visible after 7 days, but tubes were cohesive and mechanically stable, and histological examination confirmed fusion between ring subunits. This unique system provides a versatile new tool for optimization and functional assessment of cell-derived tissue, and a new approach to creating tissue-engineered vascular grafts.

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