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Pan-PI3Ki targets multiple B-ALL microenvironment interactions that fuel systemic and CNS relapse.


ABSTRACT: The majority of adult patients with acute lymphoblastic leukemia (ALL) suffer relapse, and in patients with central nervous system (CNS) metastasis, prognosis is particularly poor. We recently demonstrated a novel route of ALL CNS metastasis dependent on PI3Kδ regulation of the laminin receptor integrin α6. B-ALL cells did not, however, rely on PI3Kδ signaling for growth. Here we show that broad targeting of PI3K isoforms can induce growth arrest in B-ALL, reducing systemic disease burden in mice treated with a single agent pan-PI3Ki, copanlisib. Moreover, we show that cellular stress activates PI3K/Akt-dependent survival pathways in B-ALL, exposing their vulnerability to PI3Kδ and pan-PI3Ki. The addition of a brief course of copanlisib to chemotherapy delivered the combined benefits of increased survival, decreased systemic disease, and reduced CNS metastasis. These data suggest the promising, multifaceted potential of pan-PI3Ki for B-ALL CNS prophylaxis, systemic disease control, and chemosensitization.

SUBMITTER: Ridge SM 

PROVIDER: S-EPMC8722463 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Pan-PI3Ki targets multiple B-ALL microenvironment interactions that fuel systemic and CNS relapse.

Ridge Sarah M SM   Whiteley Andrew E AE   Yao Hisayuki H   Price Trevor T TT   Brockman Maegan L ML   Murray Andrew S AS   Simon Brennan G BG   Islam Prioty P   Sipkins Dorothy A DA  

Leukemia & lymphoma 20210806 11


The majority of adult patients with acute lymphoblastic leukemia (ALL) suffer relapse, and in patients with central nervous system (CNS) metastasis, prognosis is particularly poor. We recently demonstrated a novel route of ALL CNS metastasis dependent on PI3Kδ regulation of the laminin receptor integrin α6. B-ALL cells did not, however, rely on PI3Kδ signaling for growth. Here we show that broad targeting of PI3K isoforms can induce growth arrest in B-ALL, reducing systemic disease burden in mic  ...[more]

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