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121.
Dr. Wadih Ghattas Prof. Jean-Pierre Mahy Dr. Marius Réglier Dr. A. Jalila Simaan 《Chembiochem : a European journal of chemical biology》2021,22(3):443-459
The Diels-Alder (DA) reaction is a cycloaddition of a conjugated diene and an alkene (dienophile) leading to the formation of a cyclohexene derivative through a concerted mechanism. As DA reactions generally proceed with a high degree of regio- and stereoselectivity, they are widely used in synthetic organic chemistry. Considering eco-conscious public and governmental movements, efforts are now directed towards the development of synthetic processes that meet environmental concerns. Artificial enzymes, which can be developed to catalyze abiotic reactions, appear to be important synthetic tools in the synthetic biology field. This review describes the different strategies used to develop protein-based artificial enzymes for DA reactions, including for in cellulo approaches. 相似文献
122.
Artur M. Schweidtmann Erik Esche Asja Fischer Marius Kloft Jens-Uwe Repke Sebastian Sager Alexander Mitsos 《化学,工程师,技术》2021,93(12):2029-2039
The transformation of the chemical industry to renewable energy and feedstock supply requires new paradigms for the design of flexible plants, (bio-)catalysts, and functional materials. Recent breakthroughs in machine learning (ML) provide unique opportunities, but only joint interdisciplinary research between the ML and chemical engineering (CE) communities will unfold the full potential. We identify six challenges that will open new methods for CE and formulate new types of problems for ML: (1) optimal decision making, (2) introducing and enforcing physics in ML, (3) information and knowledge representation, (4) heterogeneity of data, (5) safety and trust in ML applications, and (6) creativity. Under the umbrella of these challenges, we discuss perspectives for future interdisciplinary research that will enable the transformation of CE. 相似文献
123.
P Ader B Grenacher P Langguth E Scharrer S Wolffram 《Canadian Metallurgical Quarterly》1996,81(6):943-955
Due to their ubiquitous occurrence in the plant kingdom, plant phenolics, including monomeric cinnamic acids, are ingested by man and animals in variable amounts with their natural diets. Recently, Na(+)-dependent saturable transport of cinnamic acid across the brush-border membrane of rat jejunum has been described. It was the aim of the present study to characterize this mechanism in more detail. We therefore determined the transport kinetics of mucosal uptake of radioactively labelled cinnamic acid under various conditions using a short-term mucosal uptake technique. In addition, the transfer of cinnamic acid across the jejunal wall was investigated using everted intestinal sacs. Investigations of the kinetics of cinnamic acid uptake by the mid-jejunal mucosa revealed the involvement of two transport components, a diffusive Na(+)-independent mechanism and a saturable Na(+)-dependent mechanism. The results obtained with everted sacs provided further evidence of the existence of an active Na+ gradient-driven transport of cinnamic acid across the intestinal epithelium. In the presence of Na+, a significant accumulation of cinnamate occurred inside the serosal compartment and this was strongly inhibited by serosal ouabain. A decrease in the extracellular pH stimulated mucosal cinnamate uptake by increasing the apparent affinity (1/km). This may be attributable to the involvement of a transmembrane H+ gradient in Na(+)-dependent cinnamate transport because the protonophore FCCP caused a significant reduction of cinnamate uptake only in the presence of Na+. The kinetics of cinnamate transport in the absence or presence of a surplus of either unlabelled cinnamate or unlabelled butyrate indicates a reduction in the apparent affinity of the Na(+)-dependent mechanism involved in cinnamate uptake. These results may be explained by a modification of the mechanism by the intracellular pH. Additionally, competitive inhibition of cinnamate uptake by substances structurally related to cinnamic acid may also be involved. 相似文献
124.
125.
The effects of differential housing (one or four mice/cage) on T-helper (Th) cell markers of cellular and humoral immune responses were examined. Differentially housed male BALB/cJ mice were infected with herpes simplex virus (HSV)-1 (Patton strain), and in vitro cytokine production [interleukin (IL)-2, IL-4, IL-10, and interferon (IFN)-gamma] by splenocytes and popliteal lymph node cells and serum antibody titers (IgM and IgG) were evaluated. Differential housing of male BALB/c mice influenced the magnitude, but not the kinetics, of some, but not all, immune responses to HSV-1. Splenocytes from individually housed mice produced more IL-2, IFN-gamma, IL-4, and IL-10 than splenocytes from group-housed mice; in popliteal lymph node cells, only IFN-gamma and IL-10 production was influenced by housing. Although the social environment influenced cytokine production, there were no concomitant changes in circulating IgM or IgG antibody titers. These results do not support the hypothesis that dominant Th cell responses are the primary targets of this psychosocial manipulation, or that a reciprocal relationship exists between Th1 and Th2 cell-derived cytokines. 相似文献
126.
Marius Gerrit Gelhausen Tim Feuerbach Ansgar Schubert David William Agar 《化学工程与技术》2018,41(3):618-627
The fabrication of milliliter‐scale test structures for chemical process laboratories with a low‐cost 3D printer operating according to the principle of fused filament fabrication is evaluated. Different polymers such as polypropylene and poly(vinylidene fluoride) were used and fabrication guidelines are provided. Furthermore, reversible and irreversible concepts for connecting 3D‐printed parts to peripherals or to other additively manufactured parts are described. After fabrication, the structures were tested for gas tightness, which was limited without subsequent finishing due to the layer‐wise fabrication process. However, gas tightness up to 600 kPa was attained by using tools like sealing tape. Finally, the developed concepts were extended to permit the insertion of thermoelements or other metallic probes. 相似文献
127.
Mihai V. Putz Doru L. Buzatu Marius C. Mirica Ottorio Ori 《Fullerenes, Nanotubes and Carbon Nanostructures》2018,26(5):303-314
Advances in green nano-technologies is the main field under which the present paper series is firstly envisaged; therefore, advanced, research-progressive nano-science is aimed to shorten the distance from fundamental concepts to applications, devices and their implementations. It however would gather both physics and chemistry fundamental and applicative fields in dealing with solar/black body radiation as well as with new materials based on inorganic-organic hybrids, composites and electron quantum features (excitons, bondons, diffusion, electrical circuits, semiconductors, quantum dots, etc.). Such research is therefore equally highly necessary for both communities (physical engineering and chemical engineering) enlightening the dedicated international forums on quantum-dots based solar cells, as well as for giving further impetus to this new field of photovoltaics by gathering active international scientists in solar energy. The present paper offers a review on the progresses regarding the application of defective graphene and other defect-doped carbon nanostructures in the construction of solar cells devices towards introducing the semiconductor based graphenes. Competitiveness and eco-ecological aspects of such projects are also considered in a resumed scientific and innovative research. 相似文献
128.
Chehida Salim Baouya Abdelhakim Bensalem Saddek Bozga Marius 《Software Quality Journal》2022,30(2):367-388
Software Quality Journal - Analyzing the behavior of sensors is becoming one of the key challenges due to their increasing use for decision making in IoT systems. The paper proposes an approach for... 相似文献
129.
130.
Leonardo Scarabelli Marius Schumacher Dorleta Jimenez de Aberasturi Jan‐Philip Merkl Malou Henriksen‐Lacey Thais Milagres de Oliveira Marcus Janschel Christian Schmidtke Sara Bals Horst Weller Luis M. Liz‐Marzn 《Advanced functional materials》2019,29(14)
The implementation of plasmonic nanoparticles in vivo remains hindered by important limitations such as biocompatibility, solubility in biological fluids, and physiological stability. A general and versatile protocol is presented, based on seeded emulsion polymerization, for the controlled encapsulation of gold and silver nanoparticles. This procedure enables the encapsulation of single nanoparticles as well as nanoparticle clusters inside a protecting polymer shell. Specifically, the efficient coating of nanoparticles of both metals is demonstrated, with final dimensions ranging between 50 and 200 nm, i.e., sizes of interest for bio‐applications. Such hybrid nanocomposites display extraordinary stability in high ionic strength and oxidizing environments, along with high cellular uptake, and low cytotoxicity. Overall, the prepared nanostructures are promising candidates for plasmonic applications under biologically relevant conditions. 相似文献