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Sustained Release Talazoparib Implants for Localized Treatment of BRCA1-deficient Breast Cancer
Jodi E Belz1,2, Rajiv Kumar2,3, Paige Baldwin1,2
1Northeastern University, Department of Bioengineering, Boston, MA.
Abstract:
Talazoparib, a potent PARP inhibitor, has shown promising clinical and pre-clinical activity by inducing synthetic lethality in cancers with germline Brca1/2 mutations. Conventional oral delivery of Talazoparib is associated with significant off-target effects, therefore we sought to develop new delivery systems in the form of an implant loaded with Talazoparib for localized, slow and sustained release of the drug at the tumor site in Brca1-deficient breast cancer. Poly(lactic-co-glycolic acid) (PLGA) implants (0.8 mm diameter) loaded with subclinical dose (25 or 50 µg) Talazoparib were fabricated and characterized. In vitro studies with Brca1-deficient W780 and W0069 breast cancer cells were conducted to test sensitivity to PARP inhibition. The in vivo therapeutic efficacy of Talazoparib implants was assessed following a one-time intratumoral injection in Brca1 mice and compared to drug-free implants and oral gavage. Immunohistochemistry studies were performed on tumor sections using PCNA and γ-H2AX staining. Sustained release of Talazoparib was observed over 28 days in vitro. Mice treated with Talazoparib implants showed statistically significant tumor growth inhibition compared to those receiving drug-free implants or free Talazoparib orally. Talazoparib implants were well-tolerated at both drug doses and resulted in less weight loss than oral gavage. PARP inhibition in mice treated with Talazoparib implants significantly increased double-stranded DNA damage and decreased tumor cell proliferation as shown by PCNA and γ-H2AX staining as compared to controls. These results demonstrate that localized and sustained delivery of Talazoparib via implants has potential to provide superior treatment outcomes at sub-clinical doses with minimal toxicity in patients with BRCA1 deficient tumors.
Insights
New Talazoparib implants offer localized, sustained drug delivery for BRCA1-deficient breast cancer. This approach significantly inhibits tumor growth with reduced toxicity compared to oral administration.
Area of Science:
- Oncology
- Drug Delivery
- Biomaterials
Background:
- Talazoparib is a potent PARP inhibitor effective against BRCA1/2-mutated cancers.
- Conventional oral Talazoparib causes off-target effects.
- Localized delivery aims to improve efficacy and reduce toxicity.
Purpose of the Study:
- Develop and evaluate poly(lactic-co-glycolic acid) (PLGA) implants for sustained Talazoparib release.
- Assess the in vivo therapeutic efficacy and toxicity of Talazoparib implants in BRCA1-deficient breast cancer models.
Main Methods:
- Fabrication and in vitro characterization of PLGA implants loaded with Talazoparib.
- In vitro drug release studies over 28 days.
- In vivo efficacy studies in BRCA1-deficient mice comparing implants to oral gavage and controls.
- Immunohistochemistry (PCNA, γ-H2AX) to assess DNA damage and proliferation.
Main Results:
- Sustained in vitro release of Talazoparib from PLGA implants over 28 days.
- Talazoparib implants demonstrated significant tumor growth inhibition in vivo.
- Implants were well-tolerated, causing less weight loss than oral Talazoparib.
- Increased DNA damage and decreased proliferation observed with implant treatment.
Conclusions:
- Localized, sustained delivery of Talazoparib via PLGA implants is effective in BRCA1-deficient breast cancer models.
- This approach offers potential for superior outcomes with reduced toxicity.
- Implants represent a promising alternative to oral administration for targeted cancer therapy.
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