Journal of Animal Science and Technology
Korean Society of Animal Science and Technology
Research Article

Conditioned media from embryonic chick tendon cells promotes C2C12 cell viability in serum-free media

Ermie Jr. Mariano1, Da-Young Lee1, Colin Venter1, So Young Choi1, Woo Jin Lee1, Chae Hyeon Bok1, Ye Won Shin1, Sun Jin Hur1
1Department of Animal Science and Technology, Chung-Ang University, Anseong-si 17546, Korea.

© Copyright 2026 Korean Society of Animal Science and Technology. This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

Received: Apr 08, 2026; Revised: Jul 06, 2026; Accepted: Jul 15, 2026

Published Online: Jul 31, 2026

Abstract

Given the high cost and ethical issues with fetal bovine serum (FBS), the development of serum-free media is essential. Tenocytes, specialized fibroblast cells necessary for tendon structure and signaling, may facilitate serum-free development. This study assessed the ability of embryonic chick tendon-derived cells to adapt to low-serum media and produce conditioned media. An explant isolation method was used, yielding high-purity primary tenocytes, evidenced by the detection of scleraxis through immunocytochemistry and western blotting. Sequential adaptation of tenocytes showed promising results, with positive detection of FGF2, IGF1, TGF-β, and TNF-ɑ in conditioned media from normal and adapted tenocyte cultures. Preliminary applications of conditioned media on C2C12 cell viability showed comparable viability to FBS-based culture media after 24 h. However, longer incubation revealed limitations compared to FBS owing to declining amino acid concentrations and a lack of fatty acids. The findings highlight the potential of tenocyte-derived conditioned media for serum-free media formulation.

Keywords: Embryonic chick; Conditioned media; Serum-free media; Tendon-derived cells