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Non-invasive evaluation of alginate/poly-L-lysine/alginate microcapsules by magnetic resonance microscopy

Constantinidis, Ioannis (författare)
Grant, Samuel C. (författare)
Celper, Susanne (författare)
KTH
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Gauffin-Holmberg, Isabel (författare)
KTH
Agering, Kristina (författare)
KTH
Oca-Cossio, Jose A. (författare)
Bui, Jonathan D. (författare)
Flint, Jeremy (författare)
Hamaty, Christine (författare)
Simpson, Nicholas E. (författare)
Blackband, Stephen J. (författare)
visa färre...
 (creator_code:org_t)
Elsevier BV, 2007
2007
Engelska.
Ingår i: Biomaterials. - : Elsevier BV. - 0142-9612 .- 1878-5905. ; 28:15, s. 2438-2445
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • In this report, we present data to demonstrate the utility of H-1 MR microscopy to non-invasively examine alginate/poly-L-lysine/ alginate (APA) microcapsules. Specifically, high-resolution images were used to visualize and quantify the poly-L-lysine (PLL) layer, and monitor temporal changes in the alginate gel microstructure during a month long in vitro culture. The thickness of the alginate/PLL layer was quantified to be 40.6 +/- 6.2 mu m regardless of the alginate composition used to generate the beads or the time of alginate/PLL interaction (2, 6, or 20 min). However, there was a notable difference in the contrast of the PLL layer that depended upon the guluronic content of the alginate and the alginate/PLL interaction time. The T-2 relaxation time and the apparent diffusion coefficient (ADC) of the alginate matrix were measured periodically throughout the month long culture period. Alginate beads generated with a high guluronic content alginate demonstrated a temporal decrease in T-2 over the duration of the experiment, while ADC was unaffected. This decrease in T-2 is attributed to a reorganization of the alginate microstructure due to periodic media exchanges that mimicked a regular feeding regiment for cultured cells. In beads coated with a PLL layer, this temporal decrease in T-2 was less pronounced suggesting that the PLL layer helped maintain the integrity of the initial alginate microstructure. Conversely, alginate beads generated with a high mannuronic content alginate (with or without a PLL layer) did not display temporal changes in either T-2 or ADC. This observation suggests that the microstructure of high mannuronic content alginate beads is less susceptible to culture conditions.

Nyckelord

MR imaging
alginate encapsulation
poly-L-lysine
TECHNOLOGY
TEKNIKVETENSKAP

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