Comprehensive Ocular and Systemic Safety Evaluation of Polysialic Acid-Decorated Immune Modulating Therapeutic Nanoparticles (PolySia-NPs) to Support Entry into First-in-Human Clinical Trials

Author:

Krishnan Anitha1,Callanan David G.1,Sendra Victor G.1ORCID,Lad Amit1,Christian Sunny1,Earla Ravinder1,Khanehzar Ali1,Tolentino Andrew J.2,Vailoces Valory Anne Sarmiento3,Greene Michelle K.14,Scott Christopher J.14,Kunimoto Derek Y.1,Hassan Tarek S.15,Genead Mohamed A.1,Tolentino Michael J.167ORCID

Affiliation:

1. Aviceda Therapeutics, Cambridge, MA 02142, USA

2. Department of Biology, University of California Berkeley, Berkeley, CA 94720, USA

3. School of Medicine and Health Sciences, George Washington University, Washington, DC 20052, USA

4. The Patrick G. Johnston Centre for Cancer Research, School of Medicine, Dentistry & Biomedical Sciences, Queen’s University Belfast, Belfast BT9 7AE, UK

5. Oakland University William Beaumont School of Medicine, Royal Oaks, MI 48067, USA

6. Department of Ophthalmology, University of Central Florida School of Medicine, Orlando, FL 32827, USA

7. Department of Ophthalmology, Orlando College of Osteopathic Medicine, Orlando, FL 34787, USA

Abstract

An inflammation-resolving polysialic acid-decorated PLGA nanoparticle (PolySia-NP) has been developed to treat geographic atrophy/age-related macular degeneration and other conditions caused by macrophage and complement over-activation. While PolySia-NPs have demonstrated pre-clinical efficacy, this study evaluated its systemic and intraocular safety. PolySia-NPs were evaluated in vitro for mutagenic activity using Salmonella strains and E. coli, with and without metabolic activation; cytotoxicity was evaluated based on its interference with normal mitosis. PolySia-NPs were administered intravenously in CD-1 mice and Sprague Dawley rats and assessed for survival and toxicity. Intravitreal (IVT) administration in Dutch Belted rabbits and non-human primates was assessed for ocular or systemic toxicity. In vitro results indicate that PolySia-NPs did not induce mutagenicity or cytotoxicity. Intravenous administration did not show clastogenic activity, effects on survival, or toxicity. A single intravitreal (IVT) injection and two elevated repeat IVT doses of PolySia-NPs separated by 7 days in rabbits showed no signs of systemic or ocular toxicity. A single IVT inoculation of PolySia-NPs in non-human primates demonstrated no adverse clinical or ophthalmological effects. The demonstration of systemic and ocular safety of PolySia-NPs supports its advancement into human clinical trials as a promising therapeutic approach for systemic and retinal degenerative diseases caused by chronic immune activation.

Funder

Aviceda Therapeutics

Publisher

MDPI AG

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