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Updated: Dec 25, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Targeting PI3Kβ alone and in combination with chemotherapy or immunotherapy in tumors with PTEN loss
Nicci Owusu-Brackett1, Ming Zhao2, Argun Akcakanat2
1Department of Surgical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Abstract:
Background: PTEN-deficient tumors are dependent on PI3Kβ activity, making PI3Kβ a compelling target. We evaluated the efficacy of PI3Kβ inhibitor AZD8186 on tumors with PTEN loss. Results: In vitro cell viability assay and immunoblotting demonstrated that PTEN loss was significantly correlated with AZD8186 sensitivity in triple negative breast cancer (TNBC) cell lines. Colony formation assay confirmed sensitivity of PTEN-deficient cell lines to AZD8186. AZD8186 inhibited PI3K signaling in PTEN loss TNBC cells. AZD8186 in combination with paclitaxel, eribulin had synergistic effects on growth inhibition in PTEN loss cells. AZD8186 promoted apoptosis in PTEN loss cells which was synergized by paclitaxel. In vivo, AZD8186 had limited activity as a single agent, but enhanced antitumor activity when combined with paclitaxel in MDA-MB-436 and MDA-MB-468 cell-line xenografts. AZD8186 significantly enhanced antitumor efficacy of anti-PD1 antibodies in the PTEN-deficient BP murine melanoma xenograft model, but not in the PTEN-wild-type CT26 xenograft model. Methods: In vitro, cell proliferation and colony formation assays were performed to determine cell sensitivity to AZD8186. Immunoblotting was performed to assess PTEN expression and PI3K signaling activity. FACS was performed to evaluate apoptosis. In vivo, antitumor efficacy of AZD8186 and its combinations were evaluated. Conclusions: AZD8186 has single agent efficacy in PTEN-deficient TNBC cell lines in vitro, but has limited single agent efficacy in vivo. However, AZD8186 has enhanced efficacy when combined with paclitaxel and anti-PD1 in vivo. Further study is needed to determine optimal combination therapies for PTEN-deficient solid tumors.
Insights
The PI3Kβ inhibitor AZD8186 shows promise against PTEN-deficient tumors, particularly triple-negative breast cancer (TNBC). While effective in vitro, its in vivo efficacy is enhanced when combined with paclitaxel or anti-PD1 therapies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- PTEN-deficient tumors exhibit dependency on PI3Kβ activity, identifying PI3Kβ as a potential therapeutic target.
- The study investigates the efficacy of the PI3Kβ inhibitor AZD8186 in preclinical models of PTEN-loss cancers.
Purpose of the Study:
- To evaluate the efficacy of AZD8186 as a single agent and in combination therapies for PTEN-deficient tumors.
- To assess the correlation between PTEN loss and sensitivity to AZD8186.
Main Methods:
- In vitro assays including cell viability, colony formation, and immunoblotting were used to assess sensitivity and signaling.
- In vivo studies utilized xenograft models to evaluate antitumor activity of AZD8186, paclitaxel, and anti-PD1 antibodies.
Main Results:
- AZD8186 demonstrated in vitro sensitivity in PTEN-deficient triple-negative breast cancer (TNBC) cell lines, inhibiting PI3K signaling and promoting apoptosis.
- Combination of AZD8186 with paclitaxel or eribulin showed synergistic growth inhibition in vitro.
- In vivo, AZD8186 showed limited single-agent activity but enhanced antitumor effects with paclitaxel and anti-PD1 antibodies in PTEN-deficient models.
Conclusions:
- AZD8186 exhibits in vitro efficacy in PTEN-deficient TNBC cell lines, with enhanced in vivo activity when combined with paclitaxel and anti-PD1 therapies.
- Further research is warranted to optimize combination strategies for PTEN-deficient solid tumors.
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