Enhanced solute transport and steady mechanical stimulation in a novel dynamic perifusion bioreactor increase the efficiency of the in vitro culture of ovarian cortical tissue strips

新型动态灌注生物反应器中溶质运输增强和机械刺激稳定,提高了卵巢皮质组织条体外培养的效率

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作者:Gionata Fragomeni, Luigi De Napoli, Vincenza De Gregorio, Vincenzo Genovese, Vincenza Barbato, Giuseppe Serratore, Giuseppe Morrone, Angela Travaglione, Andrea Candela, Roberto Gualtieri #, Riccardo Talevi #, Gerardo Catapano #

Conclusions

Culture in dynamic bioreactors promoted effective oxygen transport to tissues and stimulated tissues with strains and fluid dynamic shear stresses that, although non-uniform, significantly influenced tissue metabolism. Tissue strip culture in bioreactors made of cytocompatible polypropylene preserved follicle viability and promoted follicle development better than static culture, less so in bioreactors made of cytotoxic ABS-like resin.

Methods

The most transport-effective dynamic bioreactor design was modified using 3D models of medium and oxygen transport to maximize strip perifusion and apply tissue fluid dynamic shear stresses and direct compressive strains to elicit tissue response. Prototypes of the final bioreactor design were manufactured with materials of varying cytocompatibility and assessed by testing the effect of leachables on sperm motility. Effectiveness of the bioreactor culture was characterized against static controls by culturing fresh bovine ovarian tissue strips for 7 days at 4.8 × 10-5 m/s medium filtration flux in air at -15% maximal total compressive strain and by assessing follicle development, health, and viability.

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