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Iolanda F L C Tiberio

Explore the profile of Iolanda F L C Tiberio including associated specialties, affiliations and a list of published articles. Areas
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Articles 43
Citations 702
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Recent Articles
1.
Banzato R, Pinheiro-Menegasso N, Novelli F, Olivo C, Taguchi L, de Oliveira Santos S, et al.
Inflammation . 2024 Jan; 47(3):958-974. PMID: 38227123
Pulmonary emphysema is a primary component of chronic obstructive pulmonary disease (COPD), a life-threatening disorder characterized by lung inflammation and restricted airflow, primarily resulting from the destruction of small airways...
2.
Banzato R, Pinheiro N, Olivo C, Santana F, Lopes F, Caperuto L, et al.
Sci Rep . 2021 Aug; 11(1):15918. PMID: 34354132
Acetylcholine (ACh), the neurotransmitter of the cholinergic system, regulates inflammation in several diseases including pulmonary diseases. ACh is also involved in a non-neuronal mechanism that modulates the innate immune response....
3.
Bittencourt-Mernak M, Pinheiro N, Da Silva R, Ponci V, Banzato R, Pinheiro A, et al.
J Nat Prod . 2021 Jul; 84(8):2282-2294. PMID: 34264084
Acute lung injury (ALI) is an important public health problem. The present work investigated whether dehydrodieugenol B treatment, a compound isolated from Brazilian plant (Lauraceae), modulates experimental ALI and compared...
4.
Lourenco J, Teodoro W, Barbeiro D, Velosa A, Silva L, Kohler J, et al.
Cells . 2021 Jul; 10(7). PMID: 34206428
Th17/Treg imbalance plays a pivotal role in COPD development and progression. We aimed to assess Th17/Treg-related intracellular signaling at different COPD stages in local and systemic responses. Lung tissue and/or...
5.
Santana F, Ricardo-da-Silva F, Fantozzi E, Pinheiro N, Tiberio I, Moreira L, et al.
Inflammation . 2021 Mar; 44(4):1553-1564. PMID: 33715111
Acute lung injury induced by intestinal ischemia/reperfusion (I/R) is a relevant clinical condition. Acetylcholine (ACh) and the α7 nicotinic ACh receptor (nAChRα-7) are involved in the control of inflammation. Mice...
6.
Dos Santos T, Righetti R, Rezende B, Campos E, Camargo L, Saraiva-Romanholo B, et al.
Ther Adv Respir Dis . 2020 Dec; 14:1753466620962665. PMID: 33357114
Background And Aims: Expansion and morphological dysregulation of the bronchial vascular network occurs in asthmatic airways. Interleukin (IL) -17 and Rho-kinase (ROCK) are known to act in inflammation control and...
7.
Santana F, Da Silva R, Ponci V, Pinheiro A, Olivo C, Caperuto L, et al.
Biochem Pharmacol . 2020 Jul; 180:114175. PMID: 32717226
Background: Eugenol, a common phenylpropanoid derivative found in different plant species, has well-described anti-inflammatory effects associated with the development of occupational hypersensitive asthma. Dehydrodieugenol, a dimeric eugenol derivative, exhibits anti-inflammatory...
8.
Pinheiro N, Miranda C, Santana F, Bittencourt-Mernak M, Arantes-Costa F, Olivo C, et al.
Eur J Pharmacol . 2020 Jul; 882:173239. PMID: 32619677
The cholinergic anti-inflammatory pathway has been shown to regulate lung inflammation and cytokine release in acute models of inflammation, mainly via α7 nicotinic receptor (α7nAChR). We aimed to evaluate the...
9.
Florencio A, de Almeida R, Arantes-Costa F, Saraiva-Romanholo B, Duran A, Sasaki S, et al.
Sci Rep . 2019 Nov; 9(1):17011. PMID: 31719669
An amendment to this paper has been published and can be accessed via a link at the top of the paper.
10.
Santana F, Da Silva R, Grecco S, Pinheiro A, Caperuto L, Arantes-Costa F, et al.
Mediators Inflamm . 2019 Oct; 2019:1356356. PMID: 31565031
Asthma allergic disease is caused by airway chronic inflammation. Some intracellular signaling pathways, such as MAPK and STAT3-SOCS3, are involved in the control of airway inflammation in asthma. The flavonoid...