Mitochondria-targeted small molecule SS31: a potential candidate for the treatment of Alzheimer's disease

P Hemachandra Reddy1,2,3,4,5,6,7, Maria Manczak1, Ramesh Kandimalla1

  • 1Garrison Institute on Aging, Texas Tech University Health Sciences Center, MS 9424 Lubbock, TX 79430, USA.

Human Molecular Genetics
|February 11, 2017
PubMed

Insights

Mitochondria-targeted tetra-peptide SS31 protects against Alzheimer's disease (AD) by reducing amyloid beta (Aβ) production and improving mitochondrial and synaptic function in AD mouse models.

Area of Science:

  • Neuroscience
  • Mitochondrial Biology
  • Pharmacology

Background:

  • Alzheimer's disease (AD) is characterized by amyloid beta (Aβ) accumulation and mitochondrial dysfunction.
  • Synaptic toxicity is a key feature contributing to cognitive decline in AD.
  • Mitochondria-targeted therapies offer a promising approach for AD treatment.

Purpose of the Study:

  • To investigate the protective effects of SS31 against Aβ-induced mitochondrial and synaptic toxicities in an AD mouse model.
  • To determine if SS31 can cross the blood-brain barrier and reach target sites within mitochondria.
  • To evaluate the impact of SS31 on Aβ levels, mitochondrial function, dynamics, biogenesis, and synaptic activity.

Main Methods:

  • Administration of SS31 via intraperitoneal injection to APP transgenic mice for 6 weeks.
  • Analysis of cortical tissues for SS31 levels, Aβ burden, and protein/mRNA expression.
  • Assessment of mitochondrial function, including H2O2 production, lipid peroxidation, enzyme activity, and ATP levels.

Main Results:

  • SS31 successfully crossed the blood-brain barrier and reached mitochondria.
  • SS31 treatment reduced Aβ production and accumulation in the brain.
  • SS31 treatment improved mitochondrial function, enhanced mitochondrial biogenesis and dynamics, and preserved synaptic activity.

Conclusions:

  • SS31 demonstrates significant protective effects against Aβ-induced mitochondrial and synaptic toxicities in an AD mouse model.
  • SS31 treatment modulates mitochondrial dynamics and biogenesis pathways, contributing to neuroprotection.
  • SS31 represents a potential therapeutic agent for Alzheimer's disease by targeting mitochondrial dysfunction and Aβ pathology.

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