TY - JOUR
T1 - Muscle type from which satellite cells are derived plays a role in their damage response
AU - Lin, Chuang Yu
AU - Hou, Chun Yin
AU - Tsai, Chung Min
AU - Chang, Hsi
N1 - Funding Information:
This study was supported by Grant-in-Aid for Scientific Research TMU100-AE1-B10, 101TMU-TMUH-11 from Taipei Medical University and Taipei Medical University Hospital and Grant-in-Aid for Scientific Research 101-2314-B-038-017-MY3 from the Ministry of Science and Technology, R.O.C., Taiwan.
Publisher Copyright:
© 2020 Wolters Kluwer Medknow Publications. All rights reserved.
Copyright:
Copyright 2020 Elsevier B.V., All rights reserved.
PY - 2020/5/1
Y1 - 2020/5/1
N2 - The aim of this study was to evaluate the response of satellite cells to muscular atrophies which possess different pathological characteristics and which were induced by distinct damages. Right lower limbs of rats were exposed to denervation or disuse and later its tibialis anterior (TA) or soleus (SOL) muscles were analyzed. After confirming their functional impairments indicated by common but distinct pathological and electrophysiological characteristics, the quantitative polymerase chain reaction analysis of Pax7 and Pax3 expressions and the number of Pax7+veand Pax3+vecells were analyzed sequentially at day 0, day 7, and day 14. TA muscles of both denervation-and disuse-induced atrophy models showed persisted low level of Pax7 expression from day 7 (0.91 ± 0.23 and 0.31 ± 0.07, P = 0.06, n = 6) through day 14 (1.09 ± 0.15 and 0.4 ± 0.09 [P < 0.05]). On the other hand, significant elevations were observed in Pax3 expression in both atrophy models (2.73 ± 0.46 and 2.75 ± 0.26 [P < 0.05]) at day 7. Similar to TA muscle, resembled pattern of Pax7 and Pax3 expression changes were observed between the SOL muscles of denervation-and disused-atrophy models. These trends were further confirmed by the changes in Pax7+veand Pax3+vecell numbers of TA and SOL muscles in both atrophy models. Despite the distinct pathological findings, similar patterns in the changes of Pax3 and Pax7 expressions and the changes of Pax7+veand Pax3+vecell numbers were observed between the denervation-and disuse-induced atrophy models and this commonality was admitted among the muscle type. Therefore, we claim that the muscle regeneration orchestrated by satellite cells was governed by the muscle type in which satellite cells reside.
AB - The aim of this study was to evaluate the response of satellite cells to muscular atrophies which possess different pathological characteristics and which were induced by distinct damages. Right lower limbs of rats were exposed to denervation or disuse and later its tibialis anterior (TA) or soleus (SOL) muscles were analyzed. After confirming their functional impairments indicated by common but distinct pathological and electrophysiological characteristics, the quantitative polymerase chain reaction analysis of Pax7 and Pax3 expressions and the number of Pax7+veand Pax3+vecells were analyzed sequentially at day 0, day 7, and day 14. TA muscles of both denervation-and disuse-induced atrophy models showed persisted low level of Pax7 expression from day 7 (0.91 ± 0.23 and 0.31 ± 0.07, P = 0.06, n = 6) through day 14 (1.09 ± 0.15 and 0.4 ± 0.09 [P < 0.05]). On the other hand, significant elevations were observed in Pax3 expression in both atrophy models (2.73 ± 0.46 and 2.75 ± 0.26 [P < 0.05]) at day 7. Similar to TA muscle, resembled pattern of Pax7 and Pax3 expression changes were observed between the SOL muscles of denervation-and disused-atrophy models. These trends were further confirmed by the changes in Pax7+veand Pax3+vecell numbers of TA and SOL muscles in both atrophy models. Despite the distinct pathological findings, similar patterns in the changes of Pax3 and Pax7 expressions and the changes of Pax7+veand Pax3+vecell numbers were observed between the denervation-and disuse-induced atrophy models and this commonality was admitted among the muscle type. Therefore, we claim that the muscle regeneration orchestrated by satellite cells was governed by the muscle type in which satellite cells reside.
KW - Denervation-induced atrophy model
KW - disuse-induced atrophy model
KW - muscle regeneration
KW - muscle type
KW - Pax3 and Pax7
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U2 - 10.4103/CJP.CJP_98_19
DO - 10.4103/CJP.CJP_98_19
M3 - Article
C2 - 32594064
AN - SCOPUS:85087253809
SN - 0304-4920
VL - 63
SP - 113
EP - 121
JO - Chinese Journal of Physiology
JF - Chinese Journal of Physiology
IS - 3
ER -