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1.
ACS Appl Mater Interfaces ; 16(5): 6589-6604, 2024 Feb 07.
Article in English | MEDLINE | ID: mdl-38282580

ABSTRACT

Chronic kidney disease (CKD), a pressing global health issue, affects millions and leads to end-stage renal disease (ESRD). Hemodialysis (HD) is a crucial treatment for ESRD, yet its limited efficiency in removing protein-bound uremic toxins (PBUTs) results in high morbidity and mortality rates. A high affinity of pharmaceutical drugs for human serum albumin (HSA) can be leveraged to compete effectively with PBUTs for the same HSA binding sites, thereby enabling them to be capable of displacing these toxins. One such drug is ibuprofen (IBF), known for its very high affinity for HSA and sharing the same binding site as indoxyl sulfate (IS). This study explores the development of IBF-immobilized cellulose acetate-based (CA-based) thin films. The films were created by reacting CA with IBF-modified silica precursors at varying concentrations. The presence of IBF in CA/TEOS/APTES-IBF-3 and CA/TEOS-IBF-25 films, containing 3 and 25 wt % IBF, respectively, was confirmed through 1H NMR spectra. Competitive displacement binding assays indicated that while the incorporation of 3 wt % IBF showed no significant enhancement in IS displacement, the 25 wt % IBF film increased the dialyzed IS by 1.3 when normalized to non-IBF films. Furthermore, there was a 1.2-fold decrease in the total percentage of IS, and the free percentage of IS increased 1.3 to 3.0 times. Although direct systemic infusion of IBF in HD patients achieves a 2.4 times higher removal of IS, it is impractical due to the risks it poses to ESRD patients. The IBF-immobilized films offer the advantage of localized binding, thus eliminating the need for systemic exposure. This innovative approach lays a foundation for developing more efficient HD membranes, aiming to address the challenging issue of PBUT elimination and potentially enhance the quality of life and treatment outcomes for ESRD patients.


Subject(s)
Kidney Failure, Chronic , Toxins, Biological , Uremia , Humans , Uremic Toxins , Ibuprofen , Quality of Life , Protein Binding , Kidney Failure, Chronic/therapy , Renal Dialysis , Serum Albumin, Human/metabolism , Indican
2.
PeerJ ; 11: e16387, 2023.
Article in English | MEDLINE | ID: mdl-38025690

ABSTRACT

Long-term monitoring of zooplankton assemblages provides essential knowledge to assess key factors impacting marine ecosystems. Despite the importance of this type of data, monitoring stations worldwide are spatially and temporally limited due to the difficulty of maintaining them. In the northeastern Atlantic area, Cascais-Watch is one monitoring site operating since 2005, despite some constraints throughout the years, and has allowed the collection of important data on the zooplankton communities of the area. The present work summarizes the knowledge collected until 2015 on the biodiversity and dynamics of zooplankton in the site. The results showed a year-round high productivity of the zooplankton abundance, biomass and diversity for the area, with no significant general trends or periodicity, despite the relatively lower winter and higher spring values. The results revealed two main transition periods with marked changes in species composition and dominance of the most abundant taxa. This shift was tentatively attributed to the extended annual dry season verified in Portugal after 2011, the low values of upwelling and precipitation, and the warmer waters. The zooplankton abundance presented an interannual increase for spring periods, and the proportion of Copepoda, the dominant taxa, was lower during summer months, corresponding to increased abundances of Mollusca, Diplostraca (Cladocera) and Cnidaria. In particular, the study shows an increasing abundance of the gelatinous species (particularly Cnidaria) for spring/summer months in recent years, suggesting changes in primary production and prey dynamics. Other relevant tendencies were the higher abundance of meroplankton, such as Bivalvia and fish larvae/eggs, and the decreasing trend in the abundance of the meroplanktonic coastal crustaceans, Decapoda and Cirripedia taxa, highlighting possible changes in the benthic coastal populations in the study region. The present study highlights probable changes and trends in the zooplankton community that should be monitored in the following years.


Subject(s)
Cnidaria , Ecosystem , Animals , Zooplankton , Portugal , Biodiversity , Atlantic Ocean
3.
Brain Sci ; 13(9)2023 Sep 08.
Article in English | MEDLINE | ID: mdl-37759899

ABSTRACT

Exposure to repeated mild blast traumatic brain injury (mbTBI) is common in combat soldiers and the training of Special Forces. Evidence suggests that repeated exposure to a mild or subthreshold blast can cause serious and long-lasting impairments, but the mechanisms causing these symptoms are unclear. In this study, we characterise the effects of single and tightly coupled repeated mbTBI in Sprague-Dawley rats exposed to shockwaves generated using a shock tube. The primary outcomes are functional neurologic function (unconsciousness, neuroscore, weight loss, and RotaRod performance) and neuronal density in brain regions associated with sensorimotor function. Exposure to a single shockwave does not result in functional impairments or histologic injury, which is consistent with a mild or subthreshold injury. In contrast, exposure to three tightly coupled shockwaves results in unconsciousness, along with persistent neurologic impairments. Significant neuronal loss following repeated blast was observed in the motor cortex, somatosensory cortex, auditory cortex, and amygdala. Neuronal loss was not accompanied by changes in astrocyte reactivity. Our study identifies specific brain regions particularly sensitive to repeated mbTBI. The reasons for this sensitivity may include exposure to less attenuated shockwaves or proximity to tissue density transitions, and this merits further investigation. Our novel model will be useful in elucidating the mechanisms of sensitisation to injury, the temporal window of sensitivity and the evaluation of new treatments.

4.
J Funct Biomater ; 14(3)2023 Feb 28.
Article in English | MEDLINE | ID: mdl-36976062

ABSTRACT

Currently available hemodialysis (HD) membranes are unable to safely remove protein-bound uremic toxins (PBUTs), especially those bonded to human serum albumin (HSA). To overcome this issue, the prior administration of high doses of HSA competitive binders, such as ibuprofen (IBF), has been proposed as a complementary clinical protocol to increase HD efficiency. In this work, we designed and prepared novel hybrid membranes conjugated with IBF, thus avoiding its administration to end-stage renal disease (ESRD) patients. Two novel silicon precursors containing IBF were synthesized and, by the combination of a sol-gel reaction and the phase inversion technique, four monophasic hybrid integral asymmetric cellulose acetate/silica/IBF membranes in which silicon precursors are covalently bonded to the cellulose acetate polymer were produced. To prove IBF incorporation, methyl red dye was used as a model, thus allowing simple visual color control of the membrane fabrication and stability. These smart membranes may display a competitive behavior towards HSA, allowing the local displacement of PBUTs in future hemodialyzers.

5.
Behav Brain Res ; 440: 114257, 2023 02 25.
Article in English | MEDLINE | ID: mdl-36526017

ABSTRACT

Parkinson's disease (PD) is the second most common neurodegenerative disease worldwide. The main therapeutic approach available nowadays relieves motor symptoms but does not prevent or stop neurodegeneration. Rosmarinic acid (RA), an ester of caffeic and 3,4-dihydroxyphenylacetic acids, is obtained from numerous plant species such as Salvia officinalis L. (sage) and Rosmarinus officinalis (rosemary). This compound has a wide spectrum of biological activities, such as antioxidant and anti-inflammatory, and could be an additional therapy for neurodegenerative disorders. Here we evaluated the potential neuroprotective effects of RA treatment in a murine model of PD induced by 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP). Mice were separated into four groups: CN, Control/saline; RA, Rosmarinic acid/vehicle; MPTP, MPTP/saline; MPTP+RA, MPTP/RA. RA (20 mg/kg, or vehicle) was administered orally by intra-gastric gavage for 14 days, one hour before MPTP or saline injection. MPTP groups received the drug (30 mg/kg, intraperitoneally) once a day for five days (fourth to the eighth day of the experiment). MPTP-treated animals displayed hyperlocomotion behavior, which was significantly prevented by RA treatment. In addition, RA treatment increased dopaminergic signaling in the parkinsonian mice and improved the monoaminergic system in healthy animals. Analysis of alterations in the striatal mRNA expression of dopaminergic system components showed that MAO-A expression was increased in the MPTP+AR group. Overall, this study brings new evidence of the potential neuroprotective properties of RA not only in preventing behavioral features observed in PD, but also by improving neurotransmission in the healthy brain.


Subject(s)
Neurodegenerative Diseases , Neuroprotective Agents , Parkinson Disease , Animals , Mice , Parkinson Disease/drug therapy , Neurodegenerative Diseases/drug therapy , Dopamine/metabolism , Neuroprotective Agents/pharmacology , Neuroprotective Agents/therapeutic use , Disease Models, Animal , Mice, Inbred C57BL , 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine/pharmacology , Rosmarinic Acid
6.
Neural Regen Res ; 18(7): 1450-1456, 2023 Jul.
Article in English | MEDLINE | ID: mdl-36571341

ABSTRACT

Parkinson's disease is the most common movement disorder, affecting about 1% of the population over the age of 60 years. Parkinson's disease is characterized clinically by resting tremor, bradykinesia, rigidity and postural instability, as a result of the progressive loss of nigrostriatal dopaminergic neurons. In addition to this neuronal cell loss, Parkinson's disease is characterized by the accumulation of intracellular protein aggregates, Lewy bodies and Lewy neurites, composed primarily of the protein α-synuclein. Although it was first described almost 200 years ago, there are no disease-modifying drugs to treat patients with Parkinson's disease. In addition to conventional therapies, non-pharmacological treatment strategies are under investigation in patients and animal models of neurodegenerative disorders. Among such strategies, environmental enrichment, comprising physical exercise, cognitive stimulus, and social interactions, has been assessed in preclinical models of Parkinson's disease. Environmental enrichment can cause structural and functional changes in the brain and promote neurogenesis and dendritic growth by modifying gene expression, enhancing the expression of neurotrophic factors and modulating neurotransmission. In this review article, we focus on the current knowledge about the molecular mechanisms underlying environmental enrichment neuroprotection in Parkinson's disease, highlighting its influence on the dopaminergic, cholinergic, glutamatergic and GABAergic systems, as well as the involvement of neurotrophic factors. We describe experimental pre-clinical data showing how environmental enrichment can act as a modulator in a neurochemical and behavioral context in different animal models of Parkinson's disease, highlighting the potential of environmental enrichment as an additional strategy in the management and prevention of this complex disease.

7.
Mol Biotechnol ; 65(3): 419-432, 2023 Mar.
Article in English | MEDLINE | ID: mdl-35976558

ABSTRACT

An accurate profile of gene expression at a cellular level can contribute to a better understanding of biological processes and complexities involved in regulatory mechanism of woody plants. Laser microdissection is one technique that allows isolation of specific, target cells or tissue from a heterogeneous cell population. This technique entails microscopic visualization of the selected tissue and use a laser beam to separate the desired cells from surrounding tissue. Initial identification of these cells is made based on morphology and/or histological staining. Some works have been made in several tissues and plant models. However, there are few studies of laser microdissection application in woody species, particularly, lignified and suberized cells. Moreover, the presence of high level of suberin in cell walls can be a big challenge for the application of this approach. In our study it was developed a technique for tissue isolation, using laser microdissection of four different plant cell types (phellogen, lenticels, cortex and xylem) from woody tissues of cork oak (Quercus suber), followed by RNA extraction and RNA-Seq. We tested several methodologies regarding laser microdissection, cryostat equipments, fixation treatments, duration of single-cells collection and number of isolated cells by laser microdissection and RNA extraction procedures. A simple and efficient protocol for tissue isolation by laser microdissection and RNA purification was obtained, with a final method validation of RNA-Seq analysis. The optimized methodology combining RNA-Seq for expression analysis will contribute to elucidate the molecular pathways associated with different development processes of the xylem and phellem in oaks, including the lenticular channels formation.


Subject(s)
Microdissection , Quercus , RNA-Seq , Plants/genetics , Lasers , Quercus/genetics , RNA, Plant/genetics
8.
Membranes (Basel) ; 12(9)2022 Aug 24.
Article in English | MEDLINE | ID: mdl-36135845

ABSTRACT

The production of medical devices follows strict guidelines where bio- and hemocompatibility, mechanical strength, and tear resistance are important features. Segmented polyurethanes (PUs) are an important class of polymers that fulfill many of these requirements, thus justifying the investigation of novel derivatives with enhanced properties, such as modulated carbon dioxide and oxygen permeability. In this work, three segmented polyurethane-based membranes, containing blocks of hard segments (HSs) dispersed in a matrix of soft segment (SS) blocks, were prepared by reacting a PU prepolymer (PUR) with tris(hydroxymethyl)aminomethane (TRIS), Congo red (CR) and methyl-ß-cyclodextrin (MBCD), rendering PU/TRIS, PU/CR and PU/MBCD membranes. The pure (control) PU membrane exhibited the highest degree of phase segregation between HSs and SSs followed by PU/TRIS and PU/MBCD membranes, and the PU/CR membrane displayed the highest degree of mixing. Pure PU and PU/CR membranes exhibited the highest and lowest values of Young's modulus, tangent moduli and ultimate tensile strength, respectively, suggesting that the introduction of CR increases molecular mobility, thus reducing stiffness. The CO2 permeability was highest for the PU/CR membrane, 347 Barrer, and lowest for the pure PU membrane, 278 Barrer, suggesting that a higher degree of mixing between HSs and SSs leads to higher CO2 permeation rates. The permeability of O2 was similar for all membranes, but ca. 10-fold lower than the CO2 permeability.

9.
Biomater Sci ; 10(18): 5197-5207, 2022 Sep 13.
Article in English | MEDLINE | ID: mdl-35880970

ABSTRACT

The efficacy of conventional antimicrobials is falling to critical levels and raising alarming concerns around the globe. In this scenery, engineered nanoparticles emerged as a solid strategy to fight growing deadly infections. Here, we show the in vitro and in vivo performance of pharmadendrimers, a novel class of engineered polyurea dendrimers that are synthetic mimics of antibacterial peptides, against a collection of both Gram-positive and Gram-negative bacteria and fungi. These nanobiomaterials are stable solids prepared by low-cost and green processes, display a dense positively charged core-shell, and are biocompatible and hemocompatible drugs. Mechanistic data, corroborated by coarse-grained molecular dynamics simulations, points towards a fast-killing mechanism via membrane disruption, triggered by electrostatic interactions. Altogether this study provides strong evidence and support for the future use of polyurea pharmadendrimers in antibacterial and antifungal nanotherapeutics.


Subject(s)
Anti-Bacterial Agents , Gram-Negative Bacteria , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/pharmacology , Antifungal Agents/pharmacology , Gram-Positive Bacteria , Microbial Sensitivity Tests , Polymers
10.
Front Oncol ; 11: 656229, 2021.
Article in English | MEDLINE | ID: mdl-34041026

ABSTRACT

The activation of endothelial cells (ECs) is a crucial step on the road map of tumor angiogenesis and expanding evidence indicates that a pro-oxidant tumor microenvironment, conditioned by cancer metabolic rewiring, is a relevant controller of this process. Herein, we investigated the contribution of oxidative stress-induced ferroptosis to ECs activation. Moreover, we also addressed the anti-angiogenic effect of Propranolol. We observed that a ferroptosis-like mechanism, induced by xCT inhibition with Erastin, at a non-lethal level, promoted features of ECs activation, such as proliferation, migration and vessel-like structures formation, concomitantly with the depletion of reduced glutathione (GSH) and increased levels of oxidative stress and lipid peroxides. Additionally, this ferroptosis-like mechanism promoted vascular endothelial cadherin (VE-cadherin) junctional gaps and potentiated cancer cell adhesion to ECs and transendothelial migration. Propranolol was able to revert Erastin-dependent activation of ECs and increased levels of hydrogen sulfide (H2S) underlie the mechanism of action of Propranolol. Furthermore, we tested a dual-effect therapy by promoting ECs stability with Propranolol and boosting oxidative stress to induce cancer cell death with a nanoformulation comprising selenium-containing chrysin (SeChry) encapsulated in a fourth generation polyurea dendrimer (SeChry@PUREG4). Our data showed that novel developments in cancer treatment may rely on multi-targeting strategies focusing on nanoformulations for a safer induction of cancer cell death, taking advantage of tumor vasculature stabilization.

11.
JBI Evid Synth ; 19(9): 2155-2187, 2021 09.
Article in English | MEDLINE | ID: mdl-34038923

ABSTRACT

OBJECTIVE: The objective of this scoping review was to examine and map the range of nonpharmacological interventions used in the perioperative period to prevent anxiety in adolescents. INTRODUCTION: Undergoing surgery involves experiencing fears and uncertainties that lead to an increase in anxiety levels. The interventions used to prevent anxiety in the perioperative period in adolescents must be appropriate to their developmental stage. INCLUSION CRITERIA: Studies involving adolescents (10 to 19 years of age) undergoing any type of surgical procedure and specifying any nonpharmacological interventions administered to prevent anxiety, implemented in the perioperative period, were included in this review. METHODS: A comprehensive search strategy using multiple databases was employed to find relevant studies. The databases search included MEDLINE via PubMed; CINAHL Plus with Full Text via EBSCO; Cochrane Central Register of Controlled Trials; LILACS; Scopus; Library, Information Science and Technology Abstracts; PsycINFO; JBI Connect+; and Cochrane Database of Systematic Reviews. Sources of unpublished studies and gray literature were TDX - Tesis Doctorals en Xarxa (Spain); RCAAP - Repositório Científico de Acesso Aberto de Portugal; OpenGrey - System for Information on Grey Literature in Europe; and MedNar. Studies published in English, Spanish, or Portuguese were included. There was no date restriction, or geographical or cultural limitation applied to the search. The relevant studies and their reported outcomes were organized and analyzed. RESULTS: The database search yielded 1438 articles, and three additional records were added after hand searching. Title, abstract, and full-text review identified 11 papers that met the inclusion criteria. The final data set represented 947 participants. The data were analyzed according to the type of nonpharmacological intervention, population, concept (outcome measured and tool used), context (physical location; preoperative vs. postoperative), frequency and duration of the intervention, and which professional team member implemented the intervention. Eight nonpharmacological interventions were identified, applied either in the preoperative or postoperative context. The nurses were the main professionals administering the nonpharmacological interventions to the adolescents. CONCLUSIONS: A variety of nonpharmacological interventions were used in the perioperative period to prevent anxiety in adolescents. The most common interventions were music/musicotherapy and hypnosis/guided imagery. However, other interventions such as therapeutic play, preoperative preparation program, mothers' presence during the anesthesia induction, distraction, relaxation training, massage therapy, and reading were also identified. These interventions were used alone or in a combination of two interventions, either preoperatively or postoperatively. The adolescents in the early stage (10 to 14 years) were the most studied group and the adolescents in the late stage (17 to 19 years) were the least studied. Future research should focus on the implementation of nonpharmacological interventions in the perioperative period involving adolescents, particularly late adolescents. A systematic review on the effect of nonpharmacological interventions for anxiety management in adolescents in the perioperative period should be conducted. SCOPING REVIEW REGISTRATION: Open Science Framework: https://osf.io/jhwca/.


Subject(s)
Anxiety , Hypnosis , Adolescent , Anxiety/prevention & control , Anxiety Disorders , Humans , Perioperative Period , Systematic Reviews as Topic
12.
J Mater Chem B ; 9(15): 3371-3376, 2021 04 21.
Article in English | MEDLINE | ID: mdl-33881429

ABSTRACT

The presence of genotoxic impurities in active pharmaceutical ingredients (APIs) is a major concern for the pharmaceutical industry. Acetamide is a common genotoxic byproduct found in synthetic routes of many APIs, mainly due to acetonitrile hydrolysis, and selective scavenging is a still a challenging task. Herein, as a proof-of-concept, we evaluate polyurea (PURE) biodendrimers as strategic nanopolymers to prepare safe drug nanoformulations from mixtures containing acetamide, using (S)-ibuprofen (IBF) as a model drug. Furthermore, computational molecular dynamics (MD) simulations were conducted to rationalize in vitro results and to identify the key intermolecular interactions within mixtures. Experimental data were corroborated by MD simulations which showed that acetamide, IBF and carboxyfluorescein interactions with PURE biodendrimers are mostly at the surface. Also, PURE nanoformulations appear to be driven by hydrogen bonding, electrostatic and hydrophobic interactions.


Subject(s)
Acetamides/chemistry , Dendrimers/chemistry , Polymers/chemistry , Molecular Dynamics Simulation , Molecular Structure
13.
ASN Neuro ; 13: 17590914211009857, 2021.
Article in English | MEDLINE | ID: mdl-33906482

ABSTRACT

Huntington's disease (HD) is a genetic disorder marked by transcriptional alterations that result in neuronal impairment and death. MicroRNAs (miRNAs) are non-coding RNAs involved in post-transcriptional regulation and fine-tuning of gene expression. Several studies identified altered miRNA expression in HD and other neurodegenerative diseases, however their roles in early stages of HD remain elusive. Here, we deep-sequenced miRNAs from the striatum of the HD mouse model, BACHD, at the age of 2 and 8 months, representing the pre-symptomatic and symptomatic stages of the disease. Our results show that 44 and 26 miRNAs were differentially expressed in 2- and 8-month-old BACHD mice, respectively, as compared to wild-type controls. Over-representation analysis suggested that miRNAs up-regulated in 2-month-old mice control the expression of genes crucial for PI3K-Akt and mTOR cell signaling pathways. Conversely, miRNAs regulating genes involved in neuronal disorders were down-regulated in 2-month-old BACHD mice. Interestingly, primary striatal neurons treated with anti-miRs targeting two up-regulated miRNAs, miR-449c-5p and miR-146b-5p, showed higher levels of cell death. Therefore, our results suggest that the miRNAs altered in 2-month-old BACHD mice regulate genes involved in the promotion of cell survival. Notably, over-representation suggested that targets of differentially expressed miRNAs at the age of 8 months were not significantly enriched for the same pathways. Together, our data shed light on the role of miRNAs in the initial stages of HD, suggesting a neuroprotective role as an attempt to maintain or reestablish cellular homeostasis.


Subject(s)
High-Throughput Nucleotide Sequencing/methods , Huntington Disease/genetics , MicroRNAs/biosynthesis , MicroRNAs/genetics , Neuroprotection/physiology , Prodromal Symptoms , Animals , Cells, Cultured , Female , Huntington Disease/metabolism , Huntington Disease/prevention & control , Male , Mice , Mice, Inbred C57BL , Mice, Transgenic , Sequence Analysis, RNA/methods , Up-Regulation/physiology
14.
Antibiotics (Basel) ; 10(1)2021 Jan 08.
Article in English | MEDLINE | ID: mdl-33430101

ABSTRACT

Klebsiella pneumoniae, one of the most common pathogens found in hospital-acquired infections, is often resistant to multiple antibiotics. In fact, multidrug-resistant (MDR) K. pneumoniae producing KPC or OXA-48-like carbapenemases are recognized as a serious global health threat. In this sense, we evaluated the virulence of K. pneumoniae KPC(+) or OXA-48(+) aiming at potential antimicrobial therapeutics. K. pneumoniae carbapenemase (KPC) and the expanded-spectrum oxacillinase OXA-48 isolates were obtained from patients treated in medical care units in Lisbon, Portugal. The virulence potential of the K. pneumonia clinical isolates was tested using the Galleria mellonella model. For that, G. mellonella larvae were inoculated using patients KPC(+) and OXA-48(+) isolates. Using this in vivo model, the KPC(+) K. pneumoniae isolates showed to be, on average, more virulent than OXA-48(+). Virulence was found attenuated when a low bacterial inoculum (one magnitude lower) was tested. In addition, we also report the use of a synthetic polycationic oligomer (L-OEI-h) as a potential antimicrobial agent to fight infectious diseases caused by MDR bacteria. L-OEI-h has a broad-spectrum antibacterial activity and exerts a significantly bactericidal activity within the first 5-30 min treatment, causing lysis of the cytoplasmic membrane. Importantly, the polycationic oligomer showed low toxicity against in vitro models and no visible cytotoxicity (measured by survival and health index) was noted on the in vivo model (G. mellonella), thus L-OEI-h is foreseen as a promising polymer therapeutic for the treatment of MDR K. pneumoniae infections.

15.
Metab Brain Dis ; 36(3): 453-462, 2021 03.
Article in English | MEDLINE | ID: mdl-33394286

ABSTRACT

Stroke is considered one of the leading causes of death worldwide. The treatment is limited; however, the Brazilian flora has a great source of natural products with therapeutic potentials. Studies with the medicinal plant Polygala sabulosa W. Bennett provided evidence for its use as an anti-inflammatory and neuroprotective drug. In the case of ischemic stroke due to lack of oxygen, both acute and chronic inflammatory processes are activated. Thus, we hypothesized that P. sabulosa (HEPs) has the potential to treat the motor and cognitive deficits generated by ischemic stroke. Male mice were subjected to global ischemia for 60 min, followed by reperfusion and orally treated with HEPs (100 mg/kg in saline + 3% tween 20) twice a day (12 h apart) for 48 h starting 3 h after surgery. Motor skills were assessed using grip force and open field tasks. Hippocampi were then collected for mRNA quantification of the cytokines IL-1-ß and TNF-α levels. After 48 h of acute treatment, spatial reference memory was evaluated in a Morris water maze test for another group of animals. We show that HEPs treatment significantly prevented motor weakness induced by ischemia. Brain infarct area was reduced by 22.25% with downregulation of the levels of IL-1ß and TNF-α mRNA. Learning performance and memory ability on Morris water maze task were similar to the sham group. Our data demonstrates the neuroprotective properties of HEPs through its anti-inflammatory activities, which prevent motor and cognitive impairments, suggesting that HEPs may be an effective therapy for ischemic stroke.


Subject(s)
Brain Ischemia/drug therapy , Cognitive Dysfunction/drug therapy , Motor Disorders/drug therapy , Neuroprotective Agents/therapeutic use , Plant Extracts/therapeutic use , Polygala , Animals , Brain Ischemia/metabolism , Cognition/drug effects , Cognitive Dysfunction/metabolism , Disease Models, Animal , Hand Strength , Interleukin-1beta/metabolism , Maze Learning/drug effects , Mice , Motor Disorders/metabolism , Motor Skills/drug effects , Muscle Strength/drug effects , Neuroprotective Agents/pharmacology , Plant Extracts/pharmacology , Tumor Necrosis Factor-alpha/metabolism
16.
Neurol Sci ; 42(5): 1963-1967, 2021 May.
Article in English | MEDLINE | ID: mdl-32995988

ABSTRACT

Huntington's disease (HD) is a neurodegenerative disorder caused by a CAG nucleotide expansion, which encodes the amino acid glutamine, in the huntingtin gene. HD is characterized by motor, cognitive, and psychiatric dysfunctions. In a previous study, we showed by qPCR that some genes altered in an HD mouse model were also altered in blood of HD patients. These alterations were mainly with respect to the dynein family. Therefore, this study aimed to investigate whether dynein light chain Tctex type 1 (DYNLT1) is altered in HD patients and if there is a correlation between DYNLT1 gene expression changes and disease progression. We assessed the DYNLT1 gene expression in the blood of 19 HD patients and 20 healthy age-matched controls. Also, in 6 of these patients, we analyzed the DYNLT1 expression at two time points, 3 years apart. The DYNLT1 gene expression in the whole blood of HD patients was significantly downregulated and this difference was widened in later stages. These data suggest that DYNLT1 could emerge as a peripheral prognostic indicator in HD and, also, might be a target for potential intervention in the future.


Subject(s)
Dyneins/genetics , Huntington Disease , Animals , Case-Control Studies , Disease Models, Animal , Disease Progression , Dyneins/blood , Gene Expression , Humans , Huntingtin Protein/genetics , Huntington Disease/genetics , Mice
17.
Crit Care ; 24(1): 667, 2020 11 27.
Article in English | MEDLINE | ID: mdl-33246487

ABSTRACT

BACKGROUND: Traumatic brain injury (TBI) is a major cause of morbidity and mortality, but there are no clinically proven treatments that specifically target neuronal loss and secondary injury development following TBI. In this study, we evaluate the effect of xenon treatment on functional outcome, lesion volume, neuronal loss and neuroinflammation after severe TBI in rats. METHODS: Young adult male Sprague Dawley rats were subjected to controlled cortical impact (CCI) brain trauma or sham surgery followed by treatment with either 50% xenon:25% oxygen balance nitrogen, or control gas 75% nitrogen:25% oxygen. Locomotor function was assessed using Catwalk-XT automated gait analysis at baseline and 24 h after injury. Histological outcomes were assessed following perfusion fixation at 15 min or 24 h after injury or sham procedure. RESULTS: Xenon treatment reduced lesion volume, reduced early locomotor deficits, and attenuated neuronal loss in clinically relevant cortical and subcortical areas. Xenon treatment resulted in significant increases in Iba1-positive microglia and GFAP-positive reactive astrocytes that was associated with neuronal preservation. CONCLUSIONS: Our findings demonstrate that xenon improves functional outcome and reduces neuronal loss after brain trauma in rats. Neuronal preservation was associated with a xenon-induced enhancement of microglial cell numbers and astrocyte activation, consistent with a role for early beneficial neuroinflammation in xenon's neuroprotective effect. These findings suggest that xenon may be a first-line clinical treatment for brain trauma.


Subject(s)
Inflammation , Locomotion , Neurons , Xenon , Animals , Male , Brain/pathology , Brain/physiopathology , Brain Injuries, Traumatic , Disease Models, Animal , Inflammation/drug therapy , Inflammation/prevention & control , Locomotion/drug effects , Neurons/drug effects , Neurons/pathology , Neuroprotective Agents/pharmacology , Neuroprotective Agents/therapeutic use , Outcome Assessment, Health Care/methods , Rats, Sprague-Dawley/physiology , Xenon/pharmacology , Xenon/therapeutic use
18.
Plants (Basel) ; 9(6)2020 Jun 17.
Article in English | MEDLINE | ID: mdl-32560502

ABSTRACT

Several olive cultivars, characterized by high-quality olive oil show agronomical issues such as excessive vigor, high susceptibility to biotic and abiotic stresses, and low propagation ability. They are strong candidates for breeding based on new technologies to improve their performance in a short period of time. For this reason, the first step is developing efficient somatic embryogenesis (SE) protocols. Somatic embryogenesis in olive is highly genotype-dependent for both adult tissues and mature embryos as initial explants, requiring the development of specific protocols for each genotype. Trials using cotyledons and radicles as initial explants, isolated from ripe seeds from the Portuguese olive cv. 'Galega vulgar', gave more than 95% calli development. Radicles proved to be the most responsive tissue for SE induction, with an average of 2 embryos per callus after callus transfer to expression medium, and 14 embryos per callus after subculture on the olive cyclic embryogenesis medium (ECO). Embryogenic competence could be recovered after several subcultures on ECO medium that maintained cyclic embryogenesis for an indeterminate period of time. Embryo conversion and plant acclimatization were also attained with high success rates. Media management for cyclic embryogenesis maintenance is of general importance for SE protocols in any olive genotype. Somatic embryogenesis was thus attained for the first time in embryo-derived explants of cv. 'Galega vulgar'.

19.
Antioxidants (Basel) ; 9(2)2020 Feb 03.
Article in English | MEDLINE | ID: mdl-32028640

ABSTRACT

: Ovarian cancer is a highly lethal disease, mainly due to chemoresistance. Our previous studies on metabolic remodeling in ovarian cancer have supported that the reliance on glutathione (GSH) bioavailability is a main adaptive metabolic mechanism, also accounting for chemoresistance to conventional therapy based on platinum salts. In this study, we tested the effects of the in vitro inhibition of GSH synthesis on the restoration of ovarian cancer cells sensitivity to carboplatin. GSH synthesis was inhibited by exposing cells to l-buthionine sulfoximine (l-BSO), an inhibitor of -glutamylcysteine ligase (GCL). Given the systemic toxicity of l-BSO, we developed a new formulation using polyurea (PURE) dendrimers nanoparticles (l-BSO@PUREG4-FA2), targeting l-BSO delivery in a folate functionalized nanoparticle.

20.
Rev. Rol enferm ; 43(1,supl): 458-463, ene. 2020. graf
Article in Portuguese | IBECS | ID: ibc-193421

ABSTRACT

Cancer in the child affects the whole family, which experiences the uncertainty of the prognosis, projecting itself into an unpredictable future. Parents come to live with the disease, the treatments and their effects, in a sinuous path lined by the uncertainty of the next day. The aim was to identify parents' perceptions regarding the future of children / adolescents with cancer undergoing chemotherapy. A qualitative, exploratory, descriptive and transversal study was developed. Eleven parents of children with cancer who underwent chemotherapy after their homecare were enrolled. Data were collected by semi-structured interview and analyzed according to Bardin. From the content analysis emerged the domain "Future Uncertain", which integrates the category "Syndrome of Damocles" and the subcategories "Fear" and "Unpredictability of the Future". Fear is a negative emotion experienced by parents of children with cancer, from the time of diagnosis and throughout the course of the disease. The unpredictability of the future is a constant in the life of parents, generating a continuous concern, so they resort to the strategy of thinking and living only in the present. However, uncertainty can catalyze psychological growth, leading them to value small moments, and to incorporate uncertainty as an integral part of life. Nurses must carry out interventions aimed at better management of uncertainty, as they help in the process of adaptation and management of stress. These interventions should lead to a "new normality" in family life, in which confrontation with adversity leads to a whole new meaning of existence


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Subject(s)
Humans , Child , Neoplasms/psychology , Child Care/organization & administration , Child Rearing/psychology , Oncology Nursing/methods , Nursing Care/methods , Home Nursing/organization & administration , Life Expectancy , Parent-Child Relations , Parents/psychology , Child, Hospitalized/psychology , Attitude to Health , Cross-Sectional Studies , Mortality, Premature
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