Literature DB >> 19388093

Conditions affecting cell seeding onto three-dimensional scaffolds for cellular-based biodegradable implants.

Christian Weinand1, Jian Wei Xu, Giuseppe M Peretti, Lawrence J Bonassar, Thomas J Gill.   

Abstract

Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engineering tissues, particularly when only a low-number of cells is available for tissue repair and regeneration. The aim of this study was to evaluate three seeding techniques on two biocompatible scaffolds in vitro using chondrocytes as follows: (1) static; (2) modified centrifugal cell immobilization (CCI); and (3) dynamic oscillating motion. Five milliliters of media containing 5, 10, or 25 million articular, auricular, or costal chondrocytes were used to seed porous PLGA scaffolds and sections of devitalized cartilage. The dynamic oscillating technique resulted in up to 150% higher cellular load at 7 days than CCI seeding. Cell distribution was more homogeneous throughout the scaffold under dynamic conditions versus more sporadic and dispersed cell concentrations on the scaffolds when using either the static or the modified CCI technique. Cell load and distribution, when using a low numbers of chondrocytes at one and two million cells per milliliter, was comparable to that using the much higher number, especially under dynamic seeding conditions. The seeded scaffolds were used as implants to achieve cellular bonding between two devitalized meniscus discs. The constructs were implanted subcutaneously in nude mice for 12 weeks and analyzed histologically. Implants seeded with auricular chondrocytes showed qualitative more integration into native meniscus tissue than articular and costal cell implants. We conclude the dynamic oscillating seeding technique is an efficient technique for seeding low-cell numbers onto scaffolds resulting in consistent and uniform cell distribution throughout porous PLGA scaffolds. (c) 2009 Wiley Periodicals, Inc.

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Year:  2009        PMID: 19388093     DOI: 10.1002/jbm.b.31376

Source DB:  PubMed          Journal:  J Biomed Mater Res B Appl Biomater        ISSN: 1552-4973            Impact factor:   3.368


  16 in total

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Review 6.  Human Knee Meniscus Regeneration Strategies: a Review on Recent Advances.

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Review 8.  Bone regeneration: current concepts and future directions.

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9.  Effect of static seeding methods on the distribution of fibroblasts within human acellular dermis.

Authors:  Mario Vitacolonna; Djeda Belharazem; Peter Hohenberger; Eric D Roessner
Journal:  Biomed Eng Online       Date:  2013-06-24       Impact factor: 2.819

Review 10.  3-Dimensional Bioprinting of Cardiovascular Tissues: Emerging Technology.

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