Helping in the fight against brain tumors

· Customer Testimonial

Helping in the fight against brain tumors

Childhood brain tumors are thankfully rare but, despite all the progress made over recent years, they are often associated with poor prognoses and low survival rates. Dr Alexander Beck worked as a fellow in pediatric neuro-oncology in Boston, USA, before returning to his native Germany to set up a lab dedicated to research into pediatric brain tumors and drug translation at the Ludwig Maximilian University of Munich. He explained: “Most of our work is funded by donations and every donation counts. Our main focus is on diffuse intrinsic pontine glioma, a brain tumor that usually affects children between five and nine years of age, with no significant long-term survival beyond five years. Progress in this area is very difficult, and so the emphasis is on the rapid translation of drugs that we can give children now, looking at approved drugs that we can repurpose, as well as working with pharmaceutical companies to develop new therapeutics.”

Project-changing equipment

“The ASSIST PLUS pipetting robot is without doubt the system that has had the most impact on our work; I don’t think there is anything else out there with the same capabilities, especially for its price point. We do a large amount of cell culture, and have set up an ASSIST PLUS workflow to test a lot of drugs weekly. Initially, we seed 96 or 384 well plates of tumor cells, then perform drug dilutions and the drug treatment. Finally, the system is used for the viability assay. We can test 20 to 30 plates a week – a much higher throughput than manual processing, where we could process two plates a week – and, at the same time, free up time for other tasks thanks to its automation abilities.”

Creating automated pipetting protocols is straightforward with the ASSIST PLUS pipetting robot and VIALAB software. Alexander added: “The software is super intuitive – it’s as easy to use as a smartphone – and it also lets us simulate programs, helping to prevent mistakes before they are made. Medical students don’t always have a lot of lab experience but, thanks to our automation, we just have to teach them basic cell culture techniques. The rest is then carried out by the robot, which is a huge benefit in terms of reproducibility.”

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