Joao D Mattos
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Explore the profile of Joao D Mattos including associated specialties, affiliations and a list of published articles.
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Articles
13
Citations
72
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Recent Articles
1.
Moll-Bernardes R, Ferreira J, Schaustz E, Sousa A, Mattos J, Tortelly M, et al.
J Clin Immunol
. 2023 Jun;
43(7):1496-1505.
PMID: 37294518
Purpose: Myocardial injury is common in hypertensive patients with 2019 coronavirus disease (COVID-19). Immune dysregulation could be associated to cardiac injury in these patients, but the underlying mechanism has not...
2.
Moll-Bernardes R, Mattos J, Schaustz E, Sousa A, Ferreira J, Tortelly M, et al.
J Clin Med
. 2022 Oct;
11(19).
PMID: 36233816
Myocardial injury (MI), defined by troponin elevation, has been associated with increased mortality and adverse outcomes in patients with coronavirus disease 2019 (COVID-19), but the role of this biomarker as...
3.
Fernandes I, Mattos J, Campos M, Rocha M, Mansur D, Rocha H, et al.
J Physiol
. 2021 Jul;
599(16):3993-4007.
PMID: 34245024
Key Points: The proposed mechanism for the increased ventilation in response to hyperoxia includes a reduced brain CO -[H ] washout-induced central chemoreceptor stimulation that results from a decrease in...
4.
Sejersen C, Fischer M, Mattos J, Volianitis S, Secher N
Scand J Med Sci Sports
. 2020 Dec;
31(4):790-798.
PMID: 33280195
Preload to the heart may be limited during rowing because both blood pressure and central venous pressure increase when force is applied to the oar. Considering that only the recovery...
5.
Rocha M, Campos M, Mattos J, Mansur D, Rocha H, Secher N, et al.
J Physiol
. 2020 May;
598(16):3343-3356.
PMID: 32463117
Key Points: ATP-sensitive K (K ) channels mediate hypoxia-induced cerebral vasodilatation and hyperperfusion in animals. We tested whether K channels blockade affects the increase in human cerebral blood flow (CBF)...
6.
Garcia V, Rocha H, Rocha M, Mattos J, Campos M, Mansur D, et al.
J Hypertens
. 2020 May;
38(6):1131-1139.
PMID: 32371803
Objective: The inability of the organism to appropriately respond to hypoxia results in abnormal cell metabolism and function. Hypoxia-induced angiogenesis seems to be suppressed in experimental models of hypertension; however,...
7.
Mattos J, Campos M, Rocha M, Mansur D, Rocha H, Garcia V, et al.
Am J Physiol Regul Integr Comp Physiol
. 2019 Oct;
318(1):R182-R187.
PMID: 31644318
Isocapnic hyperoxia (IH) evokes cerebral and peripheral hypoperfusion via both disturbance of redox homeostasis and reduction in nitric oxide (NO) bioavailability. However, it is not clear whether the magnitude of...
8.
Campos M, Mansur D, Mattos J, Paiva A, Videira R, Macefield V, et al.
J Appl Physiol (1985)
. 2019 Sep;
127(5):1491-1501.
PMID: 31545154
In animals, the blockade of acid-sensing ion channels (ASICs), cation pore-forming membrane proteins located in the free nerve endings of group IV afferent fibers, attenuates increases in arterial pressure (AP)...
9.
Mansur D, Campos M, Mattos J, Paiva A, Rocha M, Videira R, et al.
Am J Physiol Heart Circ Physiol
. 2018 Dec;
316(3):H734-H742.
PMID: 30592900
Peripheral venous distension mechanically stimulates type III/IV sensory fibers in veins and evokes pressor and sympathoexcitatory reflex responses in humans. As young women have reduced venous compliance and impaired sympathetic...
10.
Mattos J, Campos M, Rocha M, Mansur D, Rocha H, Garcia V, et al.
J Physiol
. 2018 Dec;
597(3):741-755.
PMID: 30506968
Key Points: It is unknown whether excessive reactive oxygen species (ROS) production drives the isocapnic hyperoxia (IH)-induced decline in human cerebral blood flow (CBF) via reduced nitric oxide (NO) bioavailability...