Production in Bacteria and Characterization of Engineered Humanized Fab Fragment against the Nodal Protein.

Nodal humanization recombinant Fab

Journal

Pharmaceuticals (Basel, Switzerland)
ISSN: 1424-8247
Titre abrégé: Pharmaceuticals (Basel)
Pays: Switzerland
ID NLM: 101238453

Informations de publication

Date de publication:
10 Aug 2023
Historique:
received: 29 06 2023
revised: 29 07 2023
accepted: 02 08 2023
medline: 26 8 2023
pubmed: 26 8 2023
entrez: 26 8 2023
Statut: epublish

Résumé

Drug development in recent years is increasingly focused on developing personalized treatments based on blocking molecules selective for therapeutic targets specifically present in individual patients. In this perspective, the specificity of therapeutic targets and blocking agents plays a crucial role. Monoclonal antibodies (mAbs) and their surrogates are increasingly used in this context thanks to their ability to bind therapeutic targets and to inhibit their activity or to transport bioactive molecules into the compartments in which the targets are expressed. Small antibody-like molecules, such as Fabs, are often used in certain clinical settings where small size and better tissue penetration are required. In the wake of this research trend, we developed a murine mAb (3D1) neutralizing the activity of Nodal, an oncofetal protein that is attracting an ever-increasing interest as a selective therapeutic target for several cancer types. Here, we report the preparation of a recombinant Fab of 3D1 that has been humanized through a computational approach starting from the sequence of the murine antibody. The Fab has been expressed in bacterial cells (1 mg/L bacterial culture), biochemically characterized in terms of stability and binding properties by circular dichroism and bio-layer interferometry techniques and tested in vitro on Nodal-positive cancer cells.

Identifiants

pubmed: 37631045
pii: ph16081130
doi: 10.3390/ph16081130
pmc: PMC10459755
pii:
doi:

Types de publication

Journal Article

Langues

eng

Subventions

Organisme : Consiglio Nazionale delle Ricerche
ID : "Tracking and Identification of asymptomatic Patients through engineered antibod-ies-bioconjugated plasmonics in a Pandemic Scenario - TIPPS
Organisme : Regione Campania
ID : "Development of novel therapeutic approaches for treatment of resistant neoplastic diseases (SATIN
Organisme : Consiglio Nazionale delle Ricerche,
ID : Project "National Center for Gene Therapy and Drugs based on RNA Techology" CN0000004
Organisme : Consiglio Nazionale delle Ricerche
ID : Project Nutrage FOE CNR 2021
Organisme : Ministero Università e Ricerca
ID : Project "National Center for Gene Therapy and Drugs based on RNA Technology"- CN00000041

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Auteurs

Jwala P Sivaccumar (JP)

Institute of Biostructures and Bioimaging, CNR, Via P. Castellino, 111, 80131 Naples, Italy.

Emanuela Iaccarino (E)

Institute of Biostructures and Bioimaging, CNR, Via P. Castellino, 111, 80131 Naples, Italy.

Angela Oliver (A)

Institute of Biostructures and Bioimaging, CNR, Via P. Castellino, 111, 80131 Naples, Italy.
Università degli Studi della Campania Luigi Vanvitelli, Via Vivaldi 43, 81100 Caserta, Italy.

Maria Cantile (M)

BIOVIIIX, via A. Manzoni, 1, 80123 Naples, Italy.

Pierpaolo Olimpieri (P)

Department of Physics, Sapienza University, 00184 Rome, Italy.

Antonio Leonardi (A)

Department of Molecular Medicine and Medical Biotechnologies, University of Naples "Federico II", via Pansini 5, 80131 Naples, Italy.

Menotti Ruvo (M)

Institute of Biostructures and Bioimaging, CNR, Via P. Castellino, 111, 80131 Naples, Italy.

Annamaria Sandomenico (A)

Institute of Biostructures and Bioimaging, CNR, Via P. Castellino, 111, 80131 Naples, Italy.

Classifications MeSH