Carlos Palo Nieto
Forskare vid Institutionen för kirurgiska vetenskaper; Ortopedi och Handkirurgi
- Mobiltelefon:
- 076-580 64 53
- E-post:
- carlos.nieto@uu.se
- Besöksadress:
- Rudbeckslaboratoriet Hus 11 Bv
Dag Hammarskjölds v 20
75185 Uppsala - Postadress:
- Rudbeckslaboratoriet Hus 11 Bv
Dag Hammarskjölds v 20
75185 Uppsala
- CV:
- Ladda ned CV
- ORCID:
- 0000-0002-1591-3828

Publikationer
Senaste publikationer
Ionic silver coating of orthopedic implants may impair osteogenic differentiation and mineralization
Ingår i Experimental and Therapeutic Medicine, 2025
- DOI för Ionic silver coating of orthopedic implants may impair osteogenic differentiation and mineralization
- Ladda ner fulltext (pdf) av Ionic silver coating of orthopedic implants may impair osteogenic differentiation and mineralization
Ingår i ACS Applied Materials and Interfaces, s. 30385-30395, 2024
Chemical Modification of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
2023
Ingår i ACS Applied Materials and Interfaces, s. 24186-24196, 2023
Functionalization of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
Ingår i Materials Advances, s. 1555-1565, 2023
- DOI för Functionalization of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
- Ladda ner fulltext (pdf) av Functionalization of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
Alla publikationer
Artiklar i tidskrift
Ionic silver coating of orthopedic implants may impair osteogenic differentiation and mineralization
Ingår i Experimental and Therapeutic Medicine, 2025
- DOI för Ionic silver coating of orthopedic implants may impair osteogenic differentiation and mineralization
- Ladda ner fulltext (pdf) av Ionic silver coating of orthopedic implants may impair osteogenic differentiation and mineralization
Ingår i ACS Applied Materials and Interfaces, s. 30385-30395, 2024
Ingår i ACS Applied Materials and Interfaces, s. 24186-24196, 2023
Functionalization of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
Ingår i Materials Advances, s. 1555-1565, 2023
- DOI för Functionalization of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
- Ladda ner fulltext (pdf) av Functionalization of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
In Vitro Anticancer Activity and Mechanism of Action of an Aziridinyl Galactopyranoside
Ingår i Biomedicines, 2022
- DOI för In Vitro Anticancer Activity and Mechanism of Action of an Aziridinyl Galactopyranoside
- Ladda ner fulltext (pdf) av In Vitro Anticancer Activity and Mechanism of Action of an Aziridinyl Galactopyranoside
Angiotensin II AT2 receptor ligands with phenylthiazole scaffolds
Ingår i Bioorganic & Medicinal Chemistry, 2022
- DOI för Angiotensin II AT2 receptor ligands with phenylthiazole scaffolds
- Ladda ner fulltext (pdf) av Angiotensin II AT2 receptor ligands with phenylthiazole scaffolds
Diastereoselective Synthesis of N-Methylspiroindolines by Intramolecular Mizoroki–Heck Annulations
Ingår i ACS Omega, 2022
- DOI för Diastereoselective Synthesis of N-Methylspiroindolines by Intramolecular Mizoroki–Heck Annulations
- Ladda ner fulltext (pdf) av Diastereoselective Synthesis of N-Methylspiroindolines by Intramolecular Mizoroki–Heck Annulations
Ingår i Polymers, 2021
- DOI för In Vitro Investigation of Thiol-Functionalized Cellulose Nanofibrils as a Chronic Wound Environment Modulator
- Ladda ner fulltext (pdf) av In Vitro Investigation of Thiol-Functionalized Cellulose Nanofibrils as a Chronic Wound Environment Modulator
Ingår i Journal of Organic Chemistry, s. 2415-2424, 2019
- DOI för Substrate-Controlled Direct α-Stereoselective Synthesis of Deoxyglycosides from Glycals Using B(C6F5)3 as Catalyst
- Ladda ner fulltext (pdf) av Substrate-Controlled Direct α-Stereoselective Synthesis of Deoxyglycosides from Glycals Using B(C6F5)3 as Catalyst
Artiklar, forskningsöversikt
Konferensbidrag
Chemical Modification of cellulose nanofibrils to develop novel ROS-sensitive biomaterials
2023
2022
Developing reactive oxygen species-sensitive cellulose nanofibers for chronic wound care
2022
2022
Cysteine functionalized cellulose nanofibrils for the treatment of chronic wounds
Ingår i The International Chemical Congress of Pacific Basin Societies, Pacifichem 2021, 16/12 2021., 2021
Bioactive nanofibrillated cellulose modulates the chronic wound environment in vitro
Ingår i 31st Conference of the European Society for Biomaterials, 2021