Pathogenesis‐Guided Engineering: pH‐Responsive Imprinted Polymer Co‐Delivering Folate for Inflammation‐Resolving as Immunotherapy in Implant‐Related Infections

Author:

Costa Raphael C.1ORCID,Nagay Bruna E.1ORCID,Villa Javier E. L.2,Sotomayor Maria D. P. T.3,Neres Lariel Chagas da Silva3,Benso Bruna4,Aguayo Sebastian45,Sacramento Catarina M.1,Ruiz Karina G. S.1,Spada Fernanda P.6,de Avila Erica Dorigatti7ORCID,da Costa Monique G.8,Faverani Leonardo P.8,Cintra Luciano T. A.9,Souza Joāo Gabriel S.10ORCID,Barão Valentim A. R.1ORCID

Affiliation:

1. Department of Prosthodontics and Periodontology Piracicaba Dental School Universidade Estadual de Campinas (UNICAMP) Piracicaba São Paulo 13414‐903 Brazil

2. Institute of Chemistry University of Campinas (UNICAMP) Campinas São Paulo 13081‐970 Brazil

3. Institute of Chemistry State University of São Paulo (UNESP) Araraquara São Paulo 14801‐970 Brazil

4. School of Dentistry Faculty of Medicine Pontificia Universidad Católica de Chile Santiago 8330024 Chile

5. Institute for Biological and Medical Engineering Schools of Engineering Medicine and Biological Sciences Pontificia Universidad Católica de Chile Santiago 7820436 Chile

6. Department of Agri‐food Industry Food and Nutrition, “Luiz de Queiroz” College of Agriculture University of São Paulo (USP) Piracicaba São Paulo 13418‐900 Brazil

7. Department of Dental Materials and Prosthodontics School of Dentistry São Paulo State University (UNESP) Sāo Paulo Araçatuba 16015‐050 Brazil

8. Department of Diagnosis and Surgery Division of Oral and Maxillofacial Surgery and Implantology São Paulo State University (UNESP), School of Dentistry Araçatuba São Paulo 16015‐050 Brazil

9. Department of Preventive and Restorative Dentistry São Paulo State University (UNESP) Araçatuba São Paulo 16015–050 Brazil

10. Dental Research Division Guarulhos University Guarulhos São Paulo 07023‐070 Brazil

Abstract

AbstractFolate (FT) is a suitable targeting ligand for folate receptors (FOLR) overexpressed on inflamed cells. Thus, FT‐loaded polymers can be used as FOLRs‐targeted immunotherapy to positively modulate the inflammatory process. A novel biodegradable imprinted polymer with a FT delivery mechanism driven by pH changes [PCL‐MIP@FT] is designed with molecularly imprinted technology. The pH mechanism is validated in vitro, demonstrating that an acidic environment accelerated and increased the release of FT for a period of 7 days (∼100 µg mL−1). For the first time, FT receptors (FOLR‐1 and FOLR‐3) are discovered and also overexpressed on activated human gingival fibroblasts, representing a favorable target in the oral environment. Although FT itself does not have antimicrobial effects, the nanomechanical properties of biofilm are changed after topical FT administration. In vivo systemic toxicity of PCL‐MIP@FT has been demonstrated to be a safe biomaterial (up to 1.3 mg kg−1). When the PCL‐MIP@FT is assessed in the subcutaneous tissue, it promoted an alleviating inflammation and may be able to stimulate tissue repair. The present findings have demonstrated the reliable in vitro and in vivo anti‐inflammatory actions of FT‐loaded polymer and support its use as a novel drug‐free therapeutic platform for modulating and mitigating inflammatory responses in dental implant‐related infections.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Fundação de Amparo à Pesquisa do Estado de São Paulo

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Wiley

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