Title :
Constitutive Bcl-2 over-expression triggers an anabolic response in chondrocytes, with partial abatement of IL-1β catabolic effects
Author :
Taboas, J.M. ; Connor, S.K. ; Tuan, R.S.
Author_Institution :
Cartilage Biol. & Orthopaedics Branch, NIAMS, Bethesda, MD
Abstract :
We are interested in engineering cartilage that is resistant to arthritic disease. We hypothesized that suppression of terminal differentiation pathways would lead to decreased chondrocyte catabolic response to inflammatory cytokines and used a Bcl-2 over-expression gene therapy approach targeting chondrocyte apoptosis. Retrovirally transduced chondrocytes were cultured in 1.25% alginate hydrogels and subjected to interleukin 1beta (IL-1beta) stimulation (5 ng/ml) over one month. In the absence of IL-1beta, Bcl-2 therapy induced a pro-chondrogenic effect, increasing anabolic gene expression and glycosaminoglycan (GAG) accumulation while decreasing injury markers. Though Bcl-2 continued to increase anabolic markers and tissue inhibitors of matrix metalloproteinases (MMPs) under IL-1beta stimulation, it did not override the overall IL-1beta suppression of cell number and anabolic markers. Bcl-2 further augmented MMP expression and total GAG loss with IL-1beta. However under long term IL-1beta stimulation, Bcl-2 abrogated the expression of hypertrophic markers such as collagen type X. Thus, elucidation of the mechanism driving the beneficial aspects of Bcl-2 over-expression and developing conditionally regulated anti-apoptotic gene therapy may prove therapeutic in engineering cartilage that is resistant to disease.
Keywords :
biological tissues; biomedical materials; cellular biophysics; diseases; gene therapy; genetics; hydrogels; proteins; tissue engineering; alginate hydrogel; anabolic gene expression; arthritic disease; cartilage engineering; chondrocyte anabolic response; chondrocyte catabolic response; chondrocyte culture; collagen expression; gene therapy; glycosaminoglycan accumulation; inflammatory cytokines; injury marker; interleukin-1beta catabolic effect; metalloproteinases matrix; time 1 month; tissue engineering; tissue inhibitor; Bovine; DNA; Diseases; Gene expression; Gene therapy; Immune system; Inhibitors; Injuries; Proteins; Testing;
Conference_Titel :
Bioengineering Conference, 2009 IEEE 35th Annual Northeast
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-4362-8
Electronic_ISBN :
978-1-4244-4364-2
DOI :
10.1109/NEBC.2009.4967657