Study type: In vitro · Status: Verified against declared source
SS-31 modification alleviates ferroptosis induced by superparamagnetic iron oxide nanoparticles in hypoxia/reoxygenation cardiomyocytes
2024
Study scale: What should be considered is that animal experiments are inherently more complex than in vitro studies.
Abstract only: Open source record
Product or molecular entity relationships
- SS-31: Exact entity relationship. Legacy citation custody associates this source with the catalog record; no product-relevance conclusion is implied.
Plain-language verified summary
Question
What should be considered is that animal experiments are inherently more complex than in vitro studies.
Methods
The primary cardiomyocytes from rats (obtained from the Shanghai Animal Administration Center) aged 1–3 days were isolated and cultured based on established methods [22].
Scale or participants
What should be considered is that animal experiments are inherently more complex than in vitro studies.
Key findings
To create SPION@SS-31, SS-31 was physically adsorbed onto SPION.
Limitations and uncertainty
Superparamagnetic iron oxide nanoparticles (SPION) are widely used in cardiovascular applications.
Verified against declared source. Verification is limited to the declared source and review scope. It does not mean independent replication or establish efficacy, safety, or suitability.