ATH alterity therapeutics limited

This interesting paper from China explains how iron accumulation...

  1. 3,119 Posts.
    lightbulb Created with Sketch. 1160

    This interesting paper from China explains how iron accumulation in the hippocampus causes impairment of cognition after hemorrhagic stroke and in the experimental part of the study how iron chelation helps in this problem. Fortunately, ATH has already experimental evidence on how ATH434 can help in many iron overload models.

    It is a free paper, here is the abstract:

    . 2024 Feb 13:71:103086.
    doi: 10.1016/j.redox.2024.103086. Online ahead of print.

    Iron/ROS/Itga3 mediated accelerated depletion of hippocampal neural stem cell pool contributes to cognitive impairment after hemorrhagic stroke

    Affiliations
    • PMID: 38367510
    DOI: 10.1016/j.redox.2024.103086

    Abstract

    Hemorrhagic stroke, specifically intracerebral hemorrhage (ICH), has been implicated in the development of persistent cognitive impairment, significantly compromising the quality of life for affected individuals. Nevertheless, the precise underlying mechanism remains elusive. Here, we report for the first time that the accumulation of iron within the hippocampus, distal to the site of ICH in the striatum, is causally linked to the observed cognitive impairment with both clinical patient data and animal model. Both susceptibility-weighted imaging (SWI) and quantitative susceptibility mapping (QSM) demonstrated significant iron accumulation in the hippocampus of ICH patients, which is far from the actual hematoma. Logistical regression analysis and multiple linear regression analysis identified iron level as an independent risk factor with a negative correlation with post-ICH cognitive impairment. Using a mouse model of ICH, we demonstrated that iron accumulation triggers an excessive activation of neural stem cells (NSCs). This overactivation subsequently leads to the depletion of the NSC pool, diminished neurogenesis, and the onset of progressive cognitive dysfunction. Mechanistically, iron accumulation elevated the levels of reactive oxygen species (ROS), which downregulated the expression of Itga3. Notably, pharmacological chelation of iron accumulation or scavenger of aberrant ROS levels, as well as conditionally overexpressed Itga3 in NSCs, remarkably attenuated the exhaustion of NSC pool, abnormal neurogenesis and cognitive decline in the mouse model of ICH. Together, these results provide molecular insights into ICH-induced cognitive impairment, shedding light on the value of maintaining NSC pool in preventing cognitive dysfunction in patients with hemorrhagic stroke or related conditions.


 
Add to My Watchlist
What is My Watchlist?
A personalised tool to help users track selected stocks. Delivering real-time notifications on price updates, announcements, and performance stats on each to help make informed investment decisions.
(20min delay)
Last
1.1¢
Change
0.000(0.00%)
Mkt cap ! $119.6M
Open High Low Value Volume
1.1¢ 1.1¢ 1.0¢ $46.86K 4.283M

Buyers (Bids)

No. Vol. Price($)
64 25268416 1.0¢
 

Sellers (Offers)

Price($) Vol. No.
1.1¢ 18128695 9
View Market Depth
Last trade - 16.10pm 19/09/2025 (20 minute delay) ?
ATH (ASX) Chart
arrow-down-2 Created with Sketch. arrow-down-2 Created with Sketch.