In WP1, we have gained insight into the molecular mechanisms of the DAMPs–NETs cycle driving the pathogenesis of sepsis. Several in vitro, cell-based, and in vivo experiments have been established. WP2 focuses more on technology in drug discovery and development, and we have developed novel AI/ML-based tools that can be utilized in the drug discovery process. These innovative approaches demonstrate higher performance in terms of both calculation speed and hit rate. At present, all projects in WP2 have reached a critical milestone, transitioning from in silico outputs to experimental testing of candidate compounds. The identified compounds will be tested in various experimental setups, including in vitro, cell-based, and animal models, supported by beneficiaries in WP1, WP2, and WP3. In WP3, we have investigated and correlated different biomarkers with the condition of sepsis. The results derived from these studies will contribute to more accurate diagnostics. Moreover, a large-animal (pig) model of septic shock has been successfully developed.
Overall, the project is progressing in the right direction to make a significant impact on sepsis diagnosis and treatment. The next critical step is to validate the biological activities of the identified compounds from WP2 across various experimental setups (WP1–3). Subsequently, a cycle of lead optimization (WP2) and experimental testing (WP1–3) will be performed to improve binding affinity, pharmacokinetics, and the chemical and physical properties of the lead compounds. Ultimately, the lead compounds are expected to exhibit therapeutic benefits in mouse and pig models of septic shock. These lead compounds can be further developed into drugs and may also be modified for use as diagnostic tools for sepsis therapy, potentially bringing a substantial impact to society.
The drug discovery process is inherently long, typically taking around 15 years. Currently, the project is still in the early phase and has not yet started the intellectual property rights (IPR) process. However, as soon as we identify the potential to patent and protect the products, such as novel inhibitors or innovative AI/ML-driven drug discovery tools and novel experimental setups/approaches, we will involve relevant participants, including, the developers, the IP manager, the Steering Committee (SC), and others mentioned in the proposal, to initiate the IPR strategy.