Development of a biotechnology process for the production of a novel hyperglycosylated long‐acting recombinant bovine follicle‐stimulating hormone

Author:

Villarraza Javier12ORCID,Antuña Sebastián3ORCID,Tardivo María Belén3ORCID,Rodríguez María Celeste124ORCID,Díaz Pablo Uriel25ORCID,Notaro Ulises Sebastián25ORCID,Ortega Hugo Héctor25ORCID,Prieto Claudio13ORCID,Ceaglio Natalia26ORCID

Affiliation:

1. UNL (Universidad Nacional del Litoral) CBL (Centro Biotecnológico del Litoral) LDB (Laboratorio de Desarrollo Biotecnológico) Ciudad Universitaria Santa Fe Argentina

2. CONICET (Consejo Nacional de Investigaciones Científicas y Técnicas) Santa Fe Argentina

3. Biotecnofe S.A. Parque Tecnológico Litoral Centro (PTLC) Santa Fe Argentina

4. UNL (Universidad Nacional del Litoral) FBCB (Facultad de Bioquímica y Ciencias Biológicas) Cátedra de Química Analítica II Ciudad Universitaria Santa Fe Argentina

5. Centro de Medicina Comparada Instituto de Ciencias Veterinarias del Litoral (ICiVet‐Litoral) Universidad Nacional del Litoral (UNL)/Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) Esperanza Santa Fe Argentina

6. UNL (Universidad Nacional del Litoral) FBCB (Facultad de Bioquímica y Ciencias Biológicas) CBL (Centro Biotecnológico del Litoral) LCC (Laboratorio de Cultivos Celulares) Ciudad Universitaria Santa Fe Argentina

Abstract

AbstractFollicle‐stimulating hormone (FSH) is an important protein used for bovine ovarian hyperstimulation in multiple ovulation and embryo transfer technology (MOET). Several attempts to produce bovine FSH (bFSH) in recombinant systems have been reported, nonetheless, up to date, the most commonly used products are partially purified preparations derived from porcine or ovine (pFSH or oFSH) pituitaries. Here we describe the development of a biotechnology process to produce a novel, hyperglycosylated, long‐acting recombinant bFSH (LA‐rbFSH) by fusing copies of a highly O‐glycosylated peptide. LA‐rbFSH and a nonmodified version (rbFSH) were produced in suspension CHO cell cultures and purified by IMAC with high purity levels (>99%). LA‐rbFSH presented a higher glycosylation degree and sialic acid content than rbFSH. It also demonstrated a notable improvement in pharmacokinetic properties after administration to rats, including a higher concentration in plasma and a significant (seven‐fold) reduction in apparent clearance (CLapp). In addition, the in vivo specific bioactivity of LA‐rbFSH in rats was 2.4‐fold higher compared to rbFSH. These results postulate this new molecule as an attractive substitute for commercially available porcine pituitary‐derived products.

Publisher

Wiley

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