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  • New orphan disease therapies from the proteome of industrial plasma processing waste- a treatment for aceruloplasminemia.

New orphan disease therapies from the proteome of industrial plasma processing waste- a treatment for aceruloplasminemia.

Communications biology (2024-01-31)
Alan Zanardi, Ilaria Nardini, Sara Raia, Antonio Conti, Barbara Ferrini, Patrizia D'Adamo, Enrica Gilberti, Giuseppe DePalma, Sara Belloli, Cristina Monterisi, Angela Coliva, Paolo Rainone, Rosa Maria Moresco, Filippo Mori, Giada Zurlo, Carla Scali, Letizia Natali, Annalisa Pancanti, Pierangelo Giovacchini, Giulio Magherini, Greta Tovani, Laura Salvini, Vittoria Cicaloni, Cristina Tinti, Laura Tinti, Daniele Lana, Giada Magni, Maria Grazia Giovannini, Alessandro Gringeri, Andrea Caricasole, Massimo Alessio
ABSTRACT

Plasma-derived therapeutic proteins are produced through an industrial fractionation process where proteins are purified from individual intermediates, some of which remain unused and are discarded. Relatively few plasma-derived proteins are exploited clinically, with most of available plasma being directed towards the manufacture of immunoglobulin and albumin. Although the plasma proteome provides opportunities to develop novel protein replacement therapies, particularly for rare diseases, the high cost of plasma together with small patient populations impact negatively on the development of plasma-derived orphan drugs. Enabling therapeutics development from unused plasma fractionation intermediates would therefore constitute a substantial innovation. To this objective, we characterized the proteome of unused plasma fractionation intermediates and prioritized proteins for their potential as new candidate therapies for human disease. We selected ceruloplasmin, a plasma ferroxidase, as a potential therapy for aceruloplasminemia, an adult-onset ultra-rare neurological disease caused by iron accumulation as a result of ceruloplasmin mutations. Intraperitoneally administered ceruloplasmin, purified from an unused plasma fractionation intermediate, was able to prevent neurological, hepatic and hematological phenotypes in ceruloplasmin-deficient mice. These data demonstrate the feasibility of transforming industrial waste plasma fraction into a raw material for manufacturing of new candidate proteins for replacement therapies, optimizing plasma use and reducing waste generation.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-NeuN Antibody, clone A60, clone A60, Chemicon®, from mouse
Sigma-Aldrich
Anti-Glial Fibrillary Acidic Protein Antibody, clone GA5, Alexa Fluor 488, clone GA5, Chemicon®, from mouse