Author:
MacQueen Luke A.,Alver Charles G.,Chantre Christophe O.,Ahn Seungkuk,Cera Luca,Gonzalez Grant M.,O’Connor Blakely B.,Drennan Daniel J.,Peters Michael M.,Motta Sarah E.,Zimmerman John F.,Parker Kevin Kit
Abstract
Abstract
Bioprocessing applications that derive meat products from animal cell cultures require food-safe culture substrates that support volumetric expansion and maturation of adherent muscle cells. Here we demonstrate scalable production of microfibrous gelatin that supports cultured adherent muscle cells derived from cow and rabbit. As gelatin is a natural component of meat, resulting from collagen denaturation during processing and cooking, our extruded gelatin microfibers recapitulated structural and biochemical features of natural muscle tissues. Using immersion rotary jet spinning, a dry-jet wet-spinning process, we produced gelatin fibers at high rates (~ 100 g/h, dry weight) and, depending on process conditions, we tuned fiber diameters between ~ 1.3 ± 0.1 μm (mean ± SEM) and 8.7 ± 1.4 μm (mean ± SEM), which are comparable to natural collagen fibers. To inhibit fiber degradation during cell culture, we crosslinked them either chemically or by co-spinning gelatin with a microbial crosslinking enzyme. To produce meat analogs, we cultured bovine aortic smooth muscle cells and rabbit skeletal muscle myoblasts in gelatin fiber scaffolds, then used immunohistochemical staining to verify that both cell types attached to gelatin fibers and proliferated in scaffold volumes. Short-length gelatin fibers promoted cell aggregation, whereas long fibers promoted aligned muscle tissue formation. Histology, scanning electron microscopy, and mechanical testing demonstrated that cultured muscle lacked the mature contractile architecture observed in natural muscle but recapitulated some of the structural and mechanical features measured in meat products.
Publisher
Springer Science and Business Media LLC
Subject
Public Health, Environmental and Occupational Health,Food Science
Reference67 articles.
1. Edelman, P. D., McFarland, D. C., Mironov, V. A. & Matheny, J. G. Commentary: in vitro-cultured meat production. Tissue Eng. 11, 659–662 (2005).
2. Datar, I. & Betti, M. Possibilities for an in vitro meat production system. Innov. Food Sci. Emerg. 11, 13–22 (2010).
3. Post, M. J. Cultured meat from stem cells: challenges and prospects. Meat Sci. 92, 297–301 (2012).
4. Lawrie, R. A. & Toldrá, F. Lawrie’s meat science. 8 edn (Woodhead Publishing is an imprint of Elsevier, 2017).
5. Dodson, M. V. et al. INVITED REVIEW: evolution of meat animal growth research during the past 50 years: adipose and muscle stem cells. J. Anim. Sci. 93, 457–481 (2015).
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