We scan new podcasts and send you the top 5 insights daily.
The next evolution in this drug class involves inhibitors that only target mutated PI3K. This specificity aims to avoid effects on wild-type PI3K, which is involved in insulin signaling. The goal is to dramatically reduce severe side effects like hyperglycemia, which could allow for higher, more effective drug doses.
Advances in drug design mean newer PI3K inhibitors are more targeted, resulting in significantly less off-target toxicity. For example, some investigational agents have a hyperglycemia risk under 15%, a substantial improvement over earlier drugs, making them easier to manage clinically.
Next-generation mutant-specific PI3K inhibitors could lead to complex biomarker requirements. A future drug label might require a PIK3CA mutation for eligibility but simultaneously exclude patients who also have downstream PTEN or AKT alterations, which can confer resistance.
The INOVO-123 trial strategically investigates a PI3K inhibitor-based triplet therapy for endocrine-sensitive, PIK3CA-mutated breast cancer. This moves beyond its current approval in the endocrine-resistant setting, aiming to establish its efficacy for patients with de novo metastatic disease or as a first-line treatment, thereby widening its use much earlier in the patient journey.
iOnctura is tackling the PI3K Delta target, a mechanism with known efficacy but a history of severe side effects. By developing an allosteric modulator, they've engineered a drug (Roganolisib) with a significantly improved safety profile, aiming to unlock the target's full potential without its historical "baggage."
The IV drug gedatolisib, which inhibits the entire PI3K/AKT/mTOR pathway, is highly effective even in patients *without* PIK3CA mutations. This suggests pathway activation is not solely mutation-driven and creates a new option for a biomarker-negative patient group.
The VICTORIA-1 trial found that gedatolisib, a pan-PI3K/mTOR inhibitor, significantly improves progression-free survival in patients with PIK3CA *wild-type* tumors after CDK4/6 inhibitor progression. This is a crucial finding for a patient group lacking clear targeted options and broadens the utility of targeting the PI3K pathway beyond just mutated tumors.
Second-generation PI3K inhibitor enovalisib has a 7% discontinuation rate compared to 25% for its predecessor, alpelisib. This is due to a better toxicity profile (e.g., 6% vs. 33% high-grade hyperglycemia) and improved proactive side effect management by clinicians.
While its IV administration is a hurdle, the pan-PI3K/mTOR inhibitor gedotolisib is clinically compelling because of its distinct safety profile. It causes significantly less hyperglycemia and diarrhea compared to oral PI3K inhibitors like alpelisib, making it an attractive option for patients where those specific toxicities are a major concern.
Testing for PI3K/AKT alterations at the initial diagnosis of metastatic disease, rather than waiting for progression, provides a crucial window of time. This allows clinicians to implement proactive dietary and medical strategies to mitigate future side effects like hyperglycemia before the targeted therapy is even started.
The hyperglycemia from PI3K/AKT inhibitors is due to insulin resistance, not lack of insulin. Treatment must focus on insulin sensitizers (metformin, SGLT2 inhibitors). Using agents that increase insulin secretion is counterproductive as it can reactivate the PI3K cancer pathway.