Related Experiment Video
Updated: Jan 16, 2026

An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
Estrogens and Antioxidants Prevent the Formation of Tubular Aggregates in Aging Male Mice
Giorgia Rastelli1,2, Matteo Serano3, Barbara Girolami1,4
1CAST-Center for Advanced Studies and Technology, University G. d'Annunzio of Chieti-Pescara, I-66100 Chieti, Italy.
Abstract:
Tubular aggregates (TAs), ordered arrays of sarcoplasmic reticulum (SR) tubes, are the main morphological alteration found in muscle biopsies from patients affected by TA myopathy (TAM). TAM has been linked to mutations in the genes encoding for STIM1 and ORAI1, which are two proteins that mediate Store-Operated Ca2+ entry (SOCE). SOCE is a mechanism that allows recovery of extracellular Ca2+ during fatigue, when the SR becomes depleted. As TAs also form in fast-twitch muscle fibers of aging male mice (not in females), we studied the effect of sex hormones on the aggregation of TAs during aging. We administered estrogen (ad libitum in drinking water) to male mice from 10 to 18 months of age and then evaluated the following: (a) the presence of TAs using histology and electron microscopy (EM); (b) oxidative stress, a mechanism that could underlie damage to proteins and membranes (and possibly their accumulation in TAs); and (c) SOCE function during ex vivo stimulation in the presence or absence of external Ca2+ or SOCE blocker (BTP-2). The results collected indicate that treatment with estrogen (a) significantly reduced the formation of TAs; (b) reduced oxidative stress, which was elevated in aging male mice; and (c) restored SOCE, i.e., the capability of aged EDL muscles to use external Ca2+ by promoting maintenance of Ca2+ Entry Units (CEUs, the intracellular junctions that mediate SOCE). Finally, we also show that formation of TAs is reduced by treatment of mice with N-acetilcysteine (NAC), a potent antioxidant also administered ad libitum in drinking water.
Insights
Estrogen treatment reduced tubular aggregates (TAs) and oxidative stress while restoring calcium entry in aging male mice. N-acetylcysteine (NAC) also decreased TA formation, suggesting antioxidant roles in TA myopathy.
Area of Science:
- Muscle Biology
- Cellular Physiology
- Aging Research
Background:
- Tubular aggregates (TAs) are key in TA myopathy, linked to STIM1/ORAI1 mutations affecting Store-Operated Calcium Entry (SOCE).
- TAs form in aging male mice but not females, suggesting a role for sex hormones.
- Oxidative stress may contribute to TA formation and muscle dysfunction.
Purpose of the Study:
- To investigate the impact of estrogen on TA formation and SOCE in aging male mice.
- To explore the role of oxidative stress in TA development.
- To assess the therapeutic potential of estrogen and antioxidants.
Main Methods:
- Administration of estrogen and N-acetylcysteine (NAC) to aging male mice.
- Histological and electron microscopy analysis of muscle tissue for TAs.
- Assessment of oxidative stress markers.
- Ex vivo measurement of SOCE function.
Main Results:
- Estrogen treatment significantly reduced TA formation in aging male mice.
- Estrogen administration decreased elevated oxidative stress levels.
- SOCE function was restored in estrogen-treated mice, enhancing calcium entry.
- NAC treatment also demonstrated a reduction in TA formation.
Conclusions:
- Sex hormones, specifically estrogen, play a protective role against TA formation during aging.
- Oxidative stress is implicated in TA development and can be mitigated by antioxidants.
- Estrogen and antioxidants show potential therapeutic benefits for TA myopathy.

