Kim Soesbergen

Kim Soesbergen
PhD candidate
I'm researching ALS using stem cell technology. From induced pluripotent stem cells, I generate motor neurons and skeletal muscle cells. By comparing these cells from healthy donors to those of ALS patients, I'm trying the unravel the causative mechanisms of the disease.
iPSC culture, motor neurons, skeletal muscle cells, neuromuscular junction on a chip, TDP-43

Evi Kokosali

Evi Kokosali
PhD candidate
My PhD project focuses on developing high-throughput methods for screening of drugs and small molecules using induced pluripotent stem cell-derived models. By targeting unique mutations, pathways or phenotypes, my project aims to improve personalized therapeutic approaches for ALS patients.
ALS, iPSCs, motor neurons, high throughput, drug screening, C21ORF2

Jonne Eggink

Jonne Eggink
PhD candidate
I am interested in uncovering the mechanisms of ALS pathogenesis and progression. My research leverages a state-of-the-art chimeroid model to investigate how dynamic cellular interactions in the cerebral cortex, across distinct genetic backgrounds, contribute to the disease within a complex cellular environment.
ALS, iPSC-derived model systems, cortical brain organoids, chimeroids

Sofie Peeters

Sofie Peeters
PhD candidate
My research focuses on the development of midbrain dopamine neurons and their dendrites. To study this, I study human fetal tissue and generating new iPSC-derived organoid models of the midbrain.
iPSC culture, brain organoids, midbrain dopamine neurons, dendrites

Kaya Hopman

Kaya Hopman
PhD candidate
My research focuses on investigating the spread of sporadic ALS TDP-43 pathology in neuronal and glial cells within cortical organoids and human post-mortem brain tissue.
Human-derived iPSCs, brain organoid models, glial cells, sporadic ALS, TDP-43

Marieke van der Maden

Marieke van der Maden
Phd candidate
Developing gene-targeted therapies for newly identified ALS-associated genes
ALS, antisense oligonucleotides, iPSC culture, iPSC-derived motor neurons
Carola Kußerow
PhD candidate
My research focuses on discovering the effects of rare ALS-associated genetic mutations on iPSC-derived motor neurons.
ALS, iPSC culture, TDP-43

Recent Papers

Pasterkamp lab

  1. van de Haar LL, Riga D, Boer JE, Garritsen O, Adolfs Y, Sieburgh TE, van Dijk RE, Watanabe K, van Kronenburg NCH, Broekhoven MH, Posthuma D, Meye FJ, Basak O, Pasterkamp RJ. Molecular signatures and cellular diversity during mouse habenula development. Cell Rep. 2022 Jul 5;40(1):111029. doi: 10.1016/j.celrep.2022.111029. Epub 2016 Dec 8. PMID: 35793630.
  2. Robinson RA, Griffiths SC, van de Haar LL, Malinauskas T, van Battum EY, Zelina P, Schwab RA, Karia D, Malinauskaite L, Brignani S, van den Munkhof MH, Düdükcü Ö, De Ruiter AA, Van den Heuvel DMA, Bishop B, Elegheert J, Aricescu AR, Pasterkamp RJ, Siebold C. Simultaneous binding of Guidance Cues NET1 and RGM blocks extracellular NEO1 signaling. Cell. 2021 Mar 11:S0092-8674(21)00234-8. doi: 10.1016/j.cell.2021.02.045. Epub ahead of print. PMID: 33740419.
  3. Brignani S, Raj DDA, Schmidt ERE, Düdükcü Ö, Adolfs Y, De Ruiter AA, Rybiczka-Tesulov M, Verhagen MG, van der Meer C, Broekhoven MH, Moreno-Bravo JA, Grossouw LM, Dumontier E, Cloutier JF, Chédotal A, Pasterkamp RJ. Remotely Produced and Axon-Derived Netrin-1 Instructs GABAergic Neuron Migration and Dopaminergic Substantia Nigra Development. Neuron. 2020 Aug 19;107(4):684-702.e9. doi: 10.1016/j.neuron.2020.05.037. Epub 2020 Jun 19. PMID: 32562661.
  4. Vangoor VR, Reschke CR, Senthilkumar K, van de Haar LL, de Wit M, Giuliani G, Broekhoven MH, Morris G, Engel T, Brennan GP, Conroy RM, van Rijen PC, Gosselaar PH, Schorge S, Schaapveld RQJ, Henshall DC, De Graan PNE, Pasterkamp RJ. Antagonizing Increased miR-135a Levels at the Chronic Stage of Experimental TLE Reduces Spontaneous Recurrent Seizures. J Neurosci. 2019 Jun 26;39(26):5064-5079. doi: 10.1523/JNEUROSCI.3014-18.2019. Epub 2019 Apr 23. PMID: 31015341; PMCID: PMC6595945.
  5. Ormel PR, Vieira de Sá R, van Bodegraven EJ, Karst H, Harschnitz O, Sneeboer MAM, Johansen LE, van Dijk RE, Scheefhals N, Berdenis van Berlekom A, Ribes Martínez E, Kling S, MacGillavry HD, van den Berg LH, Kahn RS, Hol EM, de Witte LD, Pasterkamp RJ. Microglia innately develop within cerebral organoids. Nat Commun. 2018 Oct 9;9(1):4167. doi: 10.1038/s41467-018-06684-2. PMID: 30301888; PMCID: PMC6177485.
  6. de Jongh R, Spijkers XM, Pasteuning-Vuhman S, Vulto P, Pasterkamp RJ. Neuromuscular junction-on-a-chip: ALS disease modeling and read-out development in microfluidic devices. J Neurochem. 2020 Dec 31. doi: 10.1111/jnc.15289. Epub ahead of print. PMID: 33382092.
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