https://parkinsonsroadmap.org/#
They discuss NeuroScent, a quick, low-cost smell test that could help detect #Parkinsons earlier & enable broader screening in clinics & research studies.
📺 : bit.ly/3LH2bsM
They discuss NeuroScent, a quick, low-cost smell test that could help detect #Parkinsons earlier & enable broader screening in clinics & research studies.
📺 : bit.ly/3LH2bsM
In this episode of the Parkinson’s Life Podcast, J Solle explains why GP2’s globally diverse dataset is transforming what we know about Parkinson’s genetics 🧪
🎧 Listen now: bit.ly/493nQFp
In this episode of the Parkinson’s Life Podcast, J Solle explains why GP2’s globally diverse dataset is transforming what we know about Parkinson’s genetics 🧪
🎧 Listen now: bit.ly/493nQFp
🔗 Read the #publication: bit.ly/42MJ0Dx
🔗 Read the #publication: bit.ly/42MJ0Dx
🔗 Check out the full #preprint to read more about EVscope: bit.ly/48Nzh3Q
🔗 Check out the full #preprint to read more about EVscope: bit.ly/48Nzh3Q
Learn more: bit.ly/4of0OzX
Learn more: bit.ly/4of0OzX
Across 5 years & 35 teams, the CRN has advanced #ParkinsonsResearch through sharing 1,500+ research outputs, uniting 600+ PD donor brains, & integrating 100+ microbiome studies 🧪
🔗 www.asapcrn.org
Across 5 years & 35 teams, the CRN has advanced #ParkinsonsResearch through sharing 1,500+ research outputs, uniting 600+ PD donor brains, & integrating 100+ microbiome studies 🧪
🔗 www.asapcrn.org
GP2 is looking for a Project Manager to lead global #Parkinson’s genetics research and advance discovery worldwide. Strong science background, PhD preferred, and PM experience. Share with others who may be interested!
Apply by November 7 👉 bit.ly/49dC32s
GP2 is looking for a Project Manager to lead global #Parkinson’s genetics research and advance discovery worldwide. Strong science background, PhD preferred, and PM experience. Share with others who may be interested!
Apply by November 7 👉 bit.ly/49dC32s
🔗 Check out the full #preprint to read more about their findings: bit.ly/4h7OQFw
🔗 Check out the full #preprint to read more about their findings: bit.ly/4h7OQFw
Their open-access protocols ranked among the top 100 most viewed on @protocolsio.bsky.social in August 🎉
➡️ Mouse Perfusions (bit.ly/4qH6rIY)
➡️ Y-Maze (bit.ly/47aITTC)
➡️ Culture/transfection of HEK293T cells (bit.ly/4o4ytfR)
Their open-access protocols ranked among the top 100 most viewed on @protocolsio.bsky.social in August 🎉
➡️ Mouse Perfusions (bit.ly/4qH6rIY)
➡️ Y-Maze (bit.ly/47aITTC)
➡️ Culture/transfection of HEK293T cells (bit.ly/4o4ytfR)
👉 www.asapcrn.org
👉 www.asapcrn.org
GP2 Hackathon united global minds in Lübeck, Germany to tackle #Parkinsons research with data, mentorship & collaboration.
🔗 Dive into the recap: bit.ly/4nfmeeX
GP2 Hackathon united global minds in Lübeck, Germany to tackle #Parkinsons research with data, mentorship & collaboration.
🔗 Dive into the recap: bit.ly/4nfmeeX
They’ve maintained a near-perfect record of preprinting with a CC BY or CC0 license, advancing accessibility and collaboration across the research community.
#OpenScience
They’ve maintained a near-perfect record of preprinting with a CC BY or CC0 license, advancing accessibility and collaboration across the research community.
#OpenScience
⬅️ Identified a Mitophagic Stress Response (MitoSR) that supports mitochondrial quality. 🔗 bit.ly/4o3O4fD
➡️ Found that cells use autophagy to recycle damaged or unneeded material. 🔗 bit.ly/4hrGeKa
⬅️ Identified a Mitophagic Stress Response (MitoSR) that supports mitochondrial quality. 🔗 bit.ly/4o3O4fD
➡️ Found that cells use autophagy to recycle damaged or unneeded material. 🔗 bit.ly/4hrGeKa
Help lead global #Parkinsons genetics research, manage 15+ projects, and support diverse cohorts worldwide. PhD + PM experience preferred.
Mission-driven. Science-forward.
Apply now 👉 bit.ly/49dC32s
Help lead global #Parkinsons genetics research, manage 15+ projects, and support diverse cohorts worldwide. PhD + PM experience preferred.
Mission-driven. Science-forward.
Apply now 👉 bit.ly/49dC32s
⬅️ New protein identified that may be a future drug target for PD.
#preprint 🔗 bit.ly/3W7KXH5
➡️ GBA1 mutations block a neuroprotective pathway by changing the lipid composition of primary cilia.
#publication 🔗 bit.ly/3W7LjgT
⬅️ New protein identified that may be a future drug target for PD.
#preprint 🔗 bit.ly/3W7KXH5
➡️ GBA1 mutations block a neuroprotective pathway by changing the lipid composition of primary cilia.
#publication 🔗 bit.ly/3W7LjgT
🔗 bit.ly/3KzsOzz
@abu-remaileh.bsky.social
🔗 bit.ly/3KzsOzz
@abu-remaileh.bsky.social
👇 Reserve your spot using the link below.
📅 October 30, 2025
⏰ 1:00 PM ET
RSVP: bit.ly/47c5Ve9
👇 Reserve your spot using the link below.
📅 October 30, 2025
⏰ 1:00 PM ET
RSVP: bit.ly/47c5Ve9
🔗 Check out the recap blog: bit.ly/3IzTmjy
🔗 Check out the recap blog: bit.ly/3IzTmjy
Learn how to navigate genetic data, interpret findings, and understand their impact in #ParkinsonsDisease research 🧪
🔗 Create an account on our learning platform: bit.ly/4nJfarZ
👉 Access the course: bit.ly/46IASX9
Learn how to navigate genetic data, interpret findings, and understand their impact in #ParkinsonsDisease research 🧪
🔗 Create an account on our learning platform: bit.ly/4nJfarZ
👉 Access the course: bit.ly/46IASX9
He introduces PyRates, an open-source tool for generating code across languages to model complex biological systems. See how it advances computational neuroscience and #Parkinsons research.
📺 Watch: bit.ly/4h7Y5Wk
He introduces PyRates, an open-source tool for generating code across languages to model complex biological systems. See how it advances computational neuroscience and #Parkinsons research.
📺 Watch: bit.ly/4h7Y5Wk
🔗 Check out the full #publication to read more about their findings: bit.ly/4nV4ztR
🔗 Check out the full #publication to read more about their findings: bit.ly/4nV4ztR
🎧 bit.ly/4mHbCFp
🎧 bit.ly/4mHbCFp
➡️ Human transmembrane receptors initiate autophagosome biogenesis via ULK1 and WIPI–ATG13 complexes
🔗 bit.ly/47X259p
➡️ Neurons with pathogenic LRRK2 boost secretory autophagy and release exosomes for waste disposal and communication
🔗 bit.ly/45Mf1xx
➡️ Human transmembrane receptors initiate autophagosome biogenesis via ULK1 and WIPI–ATG13 complexes
🔗 bit.ly/47X259p
➡️ Neurons with pathogenic LRRK2 boost secretory autophagy and release exosomes for waste disposal and communication
🔗 bit.ly/45Mf1xx
Visit booth 8 in Exhibit Hall I to meet the team, check out our poster presentations tomorrow (10/8), and learn more about our global research progress.
🔗 Schedule: bit.ly/48Sqr4J
Visit booth 8 in Exhibit Hall I to meet the team, check out our poster presentations tomorrow (10/8), and learn more about our global research progress.
🔗 Schedule: bit.ly/48Sqr4J