Although FDA-approved drugs are effective, they cause systemic toxicity for their non-specific distribution in healthy organs and tissues, and for this reason, there is urgent need to use biomaterials to develop drug delivery systems to mitigate these side effects. In this context, biomaterials-based delivery systems offer clear advantages by enhancing drug bioavailability, solubility, stability, safety, and controlled release, thereby potentially enhancing therapeutic efficacy while minimizing off-target effects. Despite these advances, the field remains largely preclinical, and a gap persists between promising experimental outcomes and successful clinical implementation. Natural biomaterials, such as hyaluronic acid, alginate, gelatin, and collagen provide intrinsic biocompatibility and bioactivity, yet often suffer from batch variability and limited mechanical tunability. In contrast, synthetic polymers offer greater control over physicochemical properties and scalability but may raise concerns regarding long-term biocompatibility and degradation profiles. Moreover, a limited number of biomaterial-based systems successfully progress to clinical trials, often due to challenges related to their ability to overcome biological barriers such as BBB, stability, large-scale production, administration routes, and in vivo circulation.
Data being presented include results from a Phase 2 study evaluating the safety and efficacy of veliparib (ABT-888), a poly (adenosine diphosphate [ADP]–ribose) polymerase (PARP) inhibitor, in combination with two broad-acting chemotherapeutic medicines in patients with non-small cell lung cancer (NSCLC).
A new PARP Inhibitor
About ABT-767
ABT-767 is an investigational poly (adenosine diphosphate [ADP]-ribose) polymerase (PARP) inhibitor being evaluated in multiple tumor types. PARP is a naturally-occurring enzyme in the body that repairs damage to DNA, and in certain types of cancers, repairs cancer cells. ABT-767 is currently being investigated in an ongoing Phase I clinical trial in patients with a variety of solid tumors. ABT-767 is an investigational compound and its efficacy and safety have not been established by the FDA.