With a team of experienced scientists and state-of-the-art facilities, we can provide researchers with reliable C.elegans platform and Drosophila platform for their life science studies. Its C.elegans platform allows researchers to achieve C.elegans genetic engineering, high-throughput RNAi screening, EMS & ENU mutagenesis, disease model construction, and many more. The company's dedication to quality assurance enables that researchers can trust the integrity of their data and confidently move forward with their research projects.
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5 months ago
Heparan-Sulfate Proteoglycans Influence Alzheimer's Disease Cell Pathology
Researchers utilized mouse astrocytes and human cell cultures to investigate how HSPGs influence autophagy, mitochondrial function, and lipid synthesis.
They also explored whether altering HSPG signaling could mitigate the effects of mutated presenilin (PSEN1) in Drosophila models.
Know in Detail: https://thelifesciencesmag...
#Alzheimers #neuroscience #HSPG #Autophagy #Mitochondria #LipidSynthesis #PSEN1 #Drosophila #CellPathology #Astrocytes
Researchers utilized mouse astrocytes and human cell cultures to investigate how HSPGs influence autophagy, mitochondrial function, and lipid synthesis.
They also explored whether altering HSPG signaling could mitigate the effects of mutated presenilin (PSEN1) in Drosophila models.
Know in Detail: https://thelifesciencesmag...
#Alzheimers #neuroscience #HSPG #Autophagy #Mitochondria #LipidSynthesis #PSEN1 #Drosophila #CellPathology #Astrocytes
Alzheimer's Disease Pathology: Insights Into HSPGs And Cellular Health | The Lifesciences Magazine
Research on Alzheimer's disease pathology highlighting the role of heparan-sulfate-modified proteoglycans (HSPGs) in improving autophagy, mitochondrial function, and lipid synthesis, suggesting potential therapeutic strategies.
https://thelifesciencesmagazine.com/alzheimers-disease-pathology-study/