Leonardo A Pinto
Overview
Explore the profile of Leonardo A Pinto including associated specialties, affiliations and a list of published articles.
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27
Citations
240
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Recent Articles
1.
Cunha D, Marega F, Pinto L, Backes E, Steffen T, Klok L, et al.
ACS Appl Mater Interfaces
. 2025 Mar;
PMID: 40072032
Plasma surface treatment of ceramic particles has emerged as a promising approach for developing biocomposites intended for use in tissue engineering applications. Introducing functional groups on particle surfaces promotes changes...
2.
de Lima E, Antunes M, de Souza J, Jones M, Stein R, Pinto L, et al.
Vaccine
. 2024 Nov;
44:126550.
PMID: 39603074
Introduction: Nationwide databases from large countries may provide real-world evidence about COVID-19 vaccine effectiveness (VE). This study sought to assess the VE of BNT162b2 and CoronaVac against COVID-19-related severe outcomes...
3.
Harb S, Kolanthai E, Pinto L, Beatrice C, Bezerra E, Backes E, et al.
Biomed Mater
. 2024 Jul;
19(5).
PMID: 38986475
Bioactive and biodegradable scaffolds that mimic the natural extracellular matrix of bone serve as temporary structures to guide new bone tissue growth. In this study, 3D-printed scaffolds composed of poly...
4.
Harb S, Kolanthai E, Pugazhendhi A, Beatrice C, Pinto L, Neal C, et al.
Biomater Biosyst
. 2024 Jan;
13:100086.
PMID: 38213985
The fabrication of customized implants by additive manufacturing has allowed continued development of the personalized medicine field. Herein, a 3D-printed bioabsorbable poly (lactic acid) (PLA)- β-tricalcium phosphate (TCP) (10 wt ...
5.
Harb S, Kolanthai E, Backes E, Beatrice C, Pinto L, Nunes A, et al.
Tissue Eng Regen Med
. 2023 Oct;
21(2):223-242.
PMID: 37856070
Background: Poly (lactic acid) (PLA) is a biodegradable polyester that has been exploited for a variety of biomedical applications, including tissue engineering. The incorporation of β-tricalcium phosphate (TCP) into PLA...
6.
Camargo S, Friedrich F, Pieta M, Martins L, Pinto L
J Bras Pneumol
. 2023 Jan;
49(1):e20220085.
PMID: 36700570
No abstract available.
7.
Soares G, Faria J, Pinto L, Prospero A, Pereira G, Stoppa E, et al.
Materials (Basel)
. 2022 Mar;
15(6).
PMID: 35329574
Once administered in an organism, the physiological parameters of magnetic nanoparticles (MNPs) must be addressed, as well as their possible interactions and retention and elimination profiles. Alternating current biosusceptometry (ACB)...
8.
Soares G, Pires D, Pinto L, Rodrigues G, Prospero A, Biasotti G, et al.
Pharmaceutics
. 2021 Aug;
13(8).
PMID: 34452233
Pharmacomagnetography involves the simultaneous assessment of solid dosage forms (SDFs) in the human gastrointestinal (GI) tract and the drug plasmatic concentration, using a biomagnetic technique and pharmacokinetics analysis. This multi-instrumental...
9.
Barbe-Tuana F, Grun L, Pierdona V, Parisi M, Friedrich F, Guma F, et al.
Aging (Albany NY)
. 2021 Jan;
13(2):1686-1691.
PMID: 33471779
Severe therapy-resistant asthma (STRA) is closely associated with distinct clinical and inflammatory pheno-endotypes, which may contribute to the development of age-related comorbidities. Evidence has demonstrated a contribution of accelerated telomere...
10.
Rispoli T, Rodrigues G, de Castro S, Prado M, Silva C, Grandi T, et al.
Mol Diagn Ther
. 2020 Mar;
24(3):315-325.
PMID: 32185651
Introduction: The incorporation of molecular genetic testing into cystic fibrosis (CF) screening programs increases the specificity of the diagnostic strategy and has the potential to decrease the rate of false-...