New tools and strategies in investigative toxicology are continuously improved in biotech companies to reduce safety-related attrition in drug development. Current toxicology assessment adopts a multi-level sequential approach, employing progressively in silico assays, biochemical and cellular in vitro assays and in vivo safety experiments, according to the progress of a drug candidate in the screening pipeline, to build a strong strategy of hazard identification and mitigation of potential risk on the humans. However, this pipeline still relies on the massive use of animal models which have different physiology from humans and, therefore, might hide alterations triggered by a drug treatment.
In the field of electro-active tissue model, such as cardiac or brain tissue, electrophysiological monitoring is a well-known and well accepted assay to investigate how a drug can affect the functionality these tissues.
Compared to current gold standard electrophysiology investigations, SiMulTox offers the unique advantage of performing simultaneously parallel functional and structural assays on the same sample. Due to its core technology, SiMulTox enables a new concept of multiparametric analysis of the very same sample, providing translationally relevant insights into drug effects. According to this new concept, long-term (chronic) toxicity on both function and morphology can be reliably assessed, providing more statistically relevant data with a lower number of samples. This leads to an unprecedent optimization of lab equipment, resources and efforts thus accelerating drug safety assessment and commercialization. All together, these capabilities follow the 3R rule (Replacement, Reduction, Refinement), which has been adopted recently to optimize the use of cellular methods instead of animal ones.
Starting from the next months, we will try to showcase the prototype of the platform for brief demonstration and first-hand experience to create awareness among the academic/industry researchers who might be interested in such a platform. In addition, further mechanical development will be implemented to finalize the first prototype, ready to a product validation in relevant environment (TLR5-6).