Previously, we reported that mammalian cells, specifically human dermal fibroblasts (HDFs), could be transdifferentiated by lactic acid bacteria (LAB). Later, we observed that HDFs incorporated LAB-derived ribosomes, forming the ribosome-induced cell clusters (RICs) and transdifferentiating into cells derived from all three germ layers. Based on this insight, we hypothesized that incorporating ribosomes into non-mammalian cells could reveal the universality of this mechanism and open the door to commercial applications. Our current study demonstrates that ribosome incorporation can transdifferentiate chick primary muscle-derived cells (CMCs) into adipocytes, osteoblasts, and chondrocytes. Furthermore, the culture medium supernatant from ribosome-incorporated CMCs was found to significantly enhance CMC's proliferation. RNA-seq analysis revealed that RICs-CMC exhibit increased expression of genes related to multi-lineage cell growth. In addition, we developed a novel technological shift in meat production-the "CulNet System"-which replicates organ interactions within mechanical systems for cell-cultured meat production. While significant efforts are still required to implement this technology in a cost-effective manner, we believe that combining the "CulNet System" with ribosome-incorporated multipotent cells that have prolonged culture capability could substantially improve the scalability and cost-effectiveness of cultured chicken meat production. This report highlights a promising approach for cell-culture-based meat production, offering a sustainable alternative to traditional methods.
Ribosome Incorporation Transdifferentiates Chick Primary Cells and Induces Their Proliferation by Secreting Growth Factors.
核糖体掺入可使鸡原代细胞发生转分化,并通过分泌生长因子诱导其增殖
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作者:Inoue Shota, Istiaq Arif, Datta Anamika, Lu Mengxue, Nakayama Shintaro, Takashi Kousei, Nakajo Nobushige, Tamura Shigehiko, Kawashima Ikko, Ohta Kunimasa
| 期刊: | Journal of Developmental Biology | 影响因子: | 2.500 |
| 时间: | 2025 | 起止号: | 2025 Jun 1; 13(2):19 |
| doi: | 10.3390/jdb13020019 | 研究方向: | 细胞生物学 |
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