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Mirando, A. C.

Publications and source records attributed to Mirando, A. C..

2 recordsLinked to original sources

Suprachoroidal Delivery of Anti-Angiogenic Peptide Microparticles Enables Sustained Activity with Favorable Ocular Safety

Retinal and choroidal vascular diseases are major causes of vision loss that require frequent intravitreal anti-VEGF therapy. Anti-angiogenic peptide AXT107 demonstrated efficacy in preclinical studies and was advanced to the clinical stage. To provide for sustained delivery of the peptide and avoid complications with intravitreal injection, we evaluated suprachoroidal delivery of AXT107 microparticles (MP-AXT107). The original, soluble AXT107 formulation was ineffective at inhibiting laser-induced choroidal neovascularization (CNV) in our rat model and was consequently reformulated as microparticles. MP-AXT107 demonstrated high peptide incorporation efficiency, reproducible morphology, and physical and chemical stability for at least 9 months under refrigerated storage. In the rat CNV model, suprachoroidal MP-AXT107 significantly reduced neovascular area by approximately 60% relative to vehicle controls. Safety and durability were evaluated in a 9-month GLP toxicology study in Gottingen minipigs following a single suprachoroidal injection of vehicle or MP-AXT107 (0.125-1.25 mg/eye). Transient increases in IOP and mild ocular inflammatory findings were observed immediately following administration but resolved rapidly without lasting effects. No treatment-related adverse ocular findings were observed during the remainder of the study, and the highest tested dose (1.25 mg/eye) was established as the no-observed-adverse-effect level. Bioanalysis at study completion demonstrated persistent AXT107 localization primarily within choroid/RPE and scleral tissues, with no signs of systemic exposure. Collectively, these findings demonstrate that suprachoroidal delivery of MP-AXT107 enables sustained anti-angiogenic activity with favorable ocular safety and prolonged tissue retention, supporting further clinical development as a durable therapy for retinal and choroidal vascular diseases.

pharmacology and toxicology↗

Oncolytic peptide NF27 effectively inhibits tumor growth and eradicates tumors in multiple cancer types

Oncolytic peptides are amphipathic peptides that specifically induce cell death in cancer cells by rupturing the cell membrane. Despite their therapeutic potential, few have advanced to clinical trials, and none have been approved for cancer treatment, highlighting the need for more potent and safe candidates. Moreover, the structure-activity relationship (SAR) of oncolytic peptides remains poorly understood. To address these challenges, we designed a series of peptides based on the previously reported oncolytic peptide CKS1 and evaluated their activity to induce cancer cell death. By comparing the structures and the activities of these peptides, we discovered novel insights in the SAR of oncolytic peptides. Among the peptides, we identified NF27 as the most potent peptide. NF27 showed broad cytotoxicity across multiple cancer types but displayed minimal toxicity against healthy cells and low hemolysis. Cell death induced by NF27 was immunogenic and promoted infiltration of immune cells in murine tumors. In murine tumor models, NF27 effectively suppressed tumor growth and achieved complete eradication in some cases, with no observable side effects. These findings highlight NF27 as a promising lead peptide for the development of safe and effective oncolytic therapies. One Sentence SummaryWe identified NF27, a novel oncolytic peptide that induces immunogenic cancer cell death and eradicates tumors with low toxicity via SAR study.

pharmacology and toxicology↗