Publications by authors named "Andi Sun"

Background: The identification of drugs targeting multiple pathways is essential for comprehensive protection against cerebral ischemia-reperfusion injury.

Research Design And Methods: This study aimed to develop RS31, a multi-target cytoprotectant composed of SS31 (an oxidative stress mitigator) and rapamycin (Rapa), contributes anti-inflammatory and blood-brain barrier protection. RS31 was synthesized using click chemistry, and its ability to scavenge reactive oxygen species (ROS) and reduce inflammation was tested in HO-injured PC12 cells and LPS-stimulated BV2 cells.

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Mitochondrial dysfunction plays a major role in driving acute kidney injury (AKI) via alteration in energy and oxygen supply, which creates further ROS and inflammatory responses. However, mitochondrial targeting medicine in recovering AKI is challenging. Herein, we conjugated SS31, a mitochondria-targeted antioxidant tetrapeptide connecting a cleavable linker to rapamycin (Rapa), which provided specific interaction with FK506-binding protein (FKBP) in the RBCs.

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Purpose: Nucleoporin 37 (NUP37) has been reported to activate the YAP-TEAD signaling, which is crucial for early embryo development. However, whether NUP37 is involved in oocyte meiosis and embryo development remains largely unknown. The study aimed to clarify the function of Nup37 in oocyte maturation and early embryo development, and to explore the mechanism.

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Article Synopsis
  • Mitochondria are vital for energy production and various cellular functions, particularly in mammalian oocytes, where they are crucial for germ cell development and avoiding inherited disorders.
  • A systematic analysis of oocyte mitochondria was hindered by both the scarcity of oocyte samples and technical issues in studying mitochondrial proteins in live cells.
  • This study utilized proximity labeling proteomics to identify 158 mitochondrial proteins in live mouse oocytes and demonstrated how exposure to the chemotherapy drug cisplatin caused changes in the levels of specific mitochondrial proteins.
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The spermatogenesis process is complex and delicate, and any error in a step may cause spermatogenesis arrest and even male infertility. According to our previous transcriptomic data, CEP70 is highly expressed throughout various stages of human spermatogenesis, especially during the meiosis and deformation stages. CEP70 is present in sperm tails and that it exists in centrosomes as revealed by human centrosome proteomics.

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