Publications by authors named "Mollet J"

Climate changes and environmental contaminants are daunting challenges that require an urgent change from current agricultural practices to sustainable agriculture. Biostimulants are natural solutions that adhere to the principles of organic farming and are believed to have low impacts on the environment and human health. Further, they may contribute to reducing the use of chemical inputs while maintaining productivity in adverse environments.

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Infants born very preterm (below 28 weeks of gestation) are at high risk of developing neurodevelopmental disorders, such as intellectual deficiency, autism spectrum disorders, and attention deficit. Preterm birth often occurs in the context of perinatal systemic inflammation due to chorioamnionitis and postnatal sepsis. In addition, C-section is often performed for very preterm neonates to avoid hypoxia during a vaginal delivery.

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Background: Moderate-to-severe atopic dermatitis (AD) can be difficult to manage in paediatric patients, and there are few licensed treatments available for this age group. Dupilumab is approved for the treatment of AD in children older than 6 months.

Objectives: To assess the effectiveness and safety of dupilumab in a real-world cohort of paediatric patients with AD in Spain.

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Background: Certolizumab is an Fc-free PEGylated tumor necrosis factor-alpha (TNFα) inhibitor recently approved for the treatment of moderate-to-severe plaque psoriasis, although there is limited real-world evidence on the effectiveness and safety in patients with plaque psoriasis treated with certolizumab. The objective of this article is to determine the effectiveness, drug survival, and safety, including pregnancy, childbirth, and lactation, of certolizumab in moderate-to-severe plaque psoriasis under real-world conditions.

Methods: This is a retrospective, multicenter, observational study performed in 15 hospitals in Spain.

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Article Synopsis
  • - The study analyzed the survival rate and interruption risks of adalimumab (ADA) treatment in 539 adult patients with hidradenitis suppurativa (HS), providing insights before and after the COVID-19 pandemic.
  • - Findings revealed that about 39.92% of patients interrupted ADA, with the main reasons being inefficacy (51.69%) and adverse effects (21.35%); ADA showed a median overall drug survival of 56.2 months.
  • - Factors like female gender, prolonged HS diagnosis, and higher HS severity correlated with decreased ADA survival, while post-pandemic trends included younger patients starting treatment at a lower HS stage.
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Purpose: The purpose of this study was to explore the perspectives of self-employed workers with a physically demanding job on work participation.

Methods: We interviewed self-employed workers with a physically demanding job, using semi-structured interviews, which were audio recorded. The main topic addressed was the workers' health in relation with their work participation, work demands, and preventive measures.

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Pollen grains are central to sexual plant reproduction and their viability and longevity/storage are critical for plant physiology, ecology, plant breeding, and many plant product industries. Our goal is to present progress in assessing pollen viability/longevity along with recent advances in our understanding of the intrinsic and environmental factors that determine pollen performance: the capacity of the pollen grain to be stored, germinate, produce a pollen tube, and fertilize the ovule. We review current methods to measure pollen viability, with an eye toward advancing basic research and biotechnological applications.

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Article Synopsis
  • Several plant defense elicitors have been studied for their ability to activate immunity through the recognition of pathogen-associated molecular patterns (PAMPs).
  • Research shows that early gene activation in response to different PAMPs is similar, but it's unclear how this affects later metabolites and proteins produced during immunity.
  • When testing the combined effect of flg22 and chitosan on resistance to a bacterial pathogen, a slight increase in resistance was observed, and the combination impacted more metabolites and metabolic pathways than when the elicitors were used alone.
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Glycan metabolic engineering is a powerful tool for studying the glycosylation in living plant cells. The use of modified monosaccharides such as deoxy or fluorine-containing glycosides has been reported as a powerful pharmacological approach for studying the carbohydrate metabolism. 1,3,4-tri--acetyl-2-fluoro-l-fucose (2F-Fuc) is a potent inhibitor of the plant cell elongation.

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Article Synopsis
  • Sexual selection significantly influences the variation in traits among animals, but it's also relevant for plants, particularly due to their differences in gamete production between males and females.
  • In a study of the dioecious plant Mercurialis annua, researchers examined how traits evolved over three generations in populations experiencing low versus high plant density, which corresponded to varying levels of polyandry.
  • The findings revealed that higher polyandry led to faster-growing pollen tubes, increased expression of certain pollen proteins, and larger stigmas, highlighting the importance of post-pollination processes in the sexual selection of plants.
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Protein tracking in living plant cells has become routine with the emergence of reporter genes encoding fluorescent tags. Unfortunately, this imaging strategy is not applicable to glycans because they are not directly encoded by the genome. Indeed, complex glycans result from sequential additions and/or removals of monosaccharides by the glycosyltransferases and glycosidases of the cell's biosynthetic machinery.

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To date, it is widely accepted by the scientific community that many agricultural regions will experience more extreme temperature fluctuations. These stresses will undoubtedly impact crop production, particularly fruit and seed yields. In fact, pollination is considered as one of the most temperature-sensitive phases of plant development and until now, except for the time-consuming and costly processes of genetic breeding, there is no immediate alternative to address this issue.

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Ethylene modulates plant developmental processes including flower development. Previous studies have suggested ethylene participates in pollen tube (PT) elongation, and both ethylene production and perception seem critical at the time of fertilization. The full gene set regulated by ethylene during PT growth is unknown.

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Sexual selection is known to shape plant traits that affect access to mates during the pollination phase, but it is less well understood to what extent it affects traits relevant to interactions between pollen and pistils after pollination. This is surprising, because both of the two key modes of sexual selection, male-male competition and female choice, could plausibly operate during pollen-pistil interactions where physical male-female contact occurs. Here, we consider how the key processes of sexual selection might affect traits involved in pollen-pistil interactions, including 'Fisherian runaway' and 'good-genes' models.

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Plants are surrounded by a diverse range of microorganisms that causes serious crop losses and requires the use of pesticides. Flax is a major crop in Normandy used for its fibres and is regularly challenged by the pathogenic fungus Fusarium oxysporum (Fo) f. sp.

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In Normandy, flax is a plant of important economic interest because of its fibres. Fusarium oxysporum, a telluric fungus, is responsible for the major losses in crop yield and fibre quality. Several methods are currently used to limit the use of phytochemicals on crops.

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Background: Little has been published on the real-world effectiveness and safety of apremilast in psoriasis.

Objectives: To evaluate the effectiveness, safety and drug survival of apremilast at 52 weeks in patients with moderate to severe plaque psoriasis or palmoplantar psoriasis in routine clinical practice.

Methods: Retrospective, multicentre study of adult patients with moderate to severe plaque psoriasis or palmoplantar psoriasis treated with apremilast from March 2016 to March 2018.

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Plant cell wall remodeling plays a key role in the control of cell elongation and differentiation. In particular, fine-tuning of the degree of methylesterification of pectins was previously reported to control developmental processes as diverse as pollen germination, pollen tube elongation, emergence of primordia or elongation of dark-grown hypocotyls. However, how pectin degradation can modulate plant development has remained elusive.

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During evolution of land plants, the first colonizing species presented leafy-dominant gametophytes, found in non-vascular plants (bryophytes). Today, bryophytes include liverworts, mosses, and hornworts. In the first seedless vascular plants (lycophytes), the sporophytic stage of life started to be predominant.

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Background: During sexual reproduction, pollen grains land on the stigma, rehydrate and produce pollen tubes that grow through the female transmitting-tract tissue allowing the delivery of the two sperm cells to the ovule and the production of healthy seeds. Because pollen tubes are single cells that expand by tip-polarized growth, they represent a good model to study the growth dynamics, cell wall deposition and intracellular machineries. Aiming to understand this complex machinery, we used a low throughput chemical screen approach in order to isolate new tip-growth disruptors.

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Drought-induced dehydration of vegetative tissues in lycopods affects growth and survival. Different species of Selaginella have evolved a series of specialized mechanisms to tolerate desiccation in vegetative tissues in response to water stress. In the present study, we report on the structural characterization of the leaf cell wall of the desiccation-tolerant species S.

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The efficacy and safety of secukinumab in patients with plaque psoriasis (PsO) have been demonstrated in randomized clinical trials (RCTs). However, data regarding its efficacy and safety in real-life settings are scarce. To evaluate the efficacy and safety of secukinumab in clinical practice in patients with PsO attending 10 dermatology centers in Spain.

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O-Acetylated pectins are abundant in the primary cell wall of plants and growing evidence suggests they have important roles in plant cell growth and interaction with the environment. Despite their importance, genes required for O-acetylation of pectins are still largely unknown. In this study, we showed that TRICHOME BIREFRINGENCE LIKE 10 (AT3G06080) is involved in O-acetylation of pectins in Arabidopsis (Arabidopsis thaliana).

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A chemical screen of plant-derived compounds identified holaphyllamine, a steroid, able to trigger defense responses in Arabidopsis thaliana and improve resistance against the pathogenic bacterium Pseudomonas syringae pv tomato DC3000. A chemical screen of 1600 plant-derived compounds was conducted and allowed the identification of a steroid able to activate defense responses in A. thaliana at a concentration of 1 µM without altering growth.

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Background: Morbidity and mortality from cardiovascular diseases have decreased since the 1970s in most Western societies. However, it is unclear if this positive trend can also be found in younger women suffering from acute coronary syndrome (ACS).

Methods: This is a prospective single center registry study including 11.

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