2019
DOI: 10.1002/biot.201900105
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3D Culture Histology Cryosectioned Well Insert Technology Preserves the Structural Relationship between Cells and Biomaterials for Time‐Lapse Analysis of 3D Cultures

Abstract: When performing histology of softer biomaterials, aspiration disrupts the cellular and molecular location information. This study aims to develop a cryosectionable well insert able to preserve the biomaterial and cell's original 3D conformation from the well to histology analysis. The well insert is composed of a paraffin‐coated gelatine pill. Within the coated capsule, the human epithelial cell line (NS‐SV‐AC) is cultured in Matrigel, GrowDex, Myogel, Myogel + GrowDex, or cell culture media for 14 days. At 0 … Show more

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Cited by 7 publications
(9 citation statements)
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“…Previously, we described in detail the design and fabrication of the 3D-Cryo well insert [36]. Briefly, gelatine pills (size 000, Capsuline ®, Pompano Beach, FL, USA) were coated twice with paraffin (or Histowax) (00403, HistoLab, Espoo, Finland) heated to liquid, cooled, and exposed 20 min to UV lights.…”
Section: Methodsmentioning
confidence: 99%
See 2 more Smart Citations
“…Previously, we described in detail the design and fabrication of the 3D-Cryo well insert [36]. Briefly, gelatine pills (size 000, Capsuline ®, Pompano Beach, FL, USA) were coated twice with paraffin (or Histowax) (00403, HistoLab, Espoo, Finland) heated to liquid, cooled, and exposed 20 min to UV lights.…”
Section: Methodsmentioning
confidence: 99%
“…Two cell-less controls were frozen and cut. See our previous publication for more details on this technique [36].…”
Section: Methodsmentioning
confidence: 99%
See 1 more Smart Citation
“…Recently, a gelatin-based 3D cryo-sectioned well-insert technology has been developed to preserve the architecture of cells and soft biomaterials (scaffolds; Charbonneau, Al-Samadi, Salo, & Tran, 2019) suitable for histological analysis. This signifies that cryo-modification may be used as a value-added technique in 3D culture to enhance the mechanical stiffness of an in-well conformation.…”
Section: Recent Breakthroughs In the Development Of High Fidelity Modelsmentioning
confidence: 99%
“…Advantages are numerous, however, one of the limitations during the analysis of 3D culture with scaffolds is the displacement of original conformation or disruption of information on molecular location due to external hindering mechanical forces. Recently, a gelatin‐based 3D cryo‐sectioned well‐insert technology has been developed to preserve the architecture of cells and soft biomaterials (scaffolds; Charbonneau, Al‐Samadi, Salo, & Tran, 2019) suitable for histological analysis. This signifies that cryo‐modification may be used as a value‐added technique in 3D culture to enhance the mechanical stiffness of an in‐well conformation.…”
Section: Introductionmentioning
confidence: 99%