Results 141 to 150 of about 355,555 (310)
Cytochrome P450 VvCYP76F14 dominates the production of wine bouquet precursors in wine grapes
Frontiers in Plant ScienceIn wine grape, the multi-functional cytochrome P450 enzyme VvCYP76F14 sequentially catalyzes the formation of linalool-derived compounds, including (E)-8-hydroxylinalool, (E)-8-oxolinalool, and (E)-8-carboxylinalool, which are crucial precursors for the ...Guangli Xia, Matthew Shi, Matthew Shi, Weina Xu, Adeeba Dark, Zhizhong Song, Zhizhong Song +6 moredoaj +1 more sourceMechanically Stable and Tunable Photoactivated Peptide‐Based Hydrogels for Soft Tissue Adhesion
Advanced Functional Materials, EarlyView.A collagen‐like peptide hydrogel platform is developed using supramolecular self‐assembly and light‐triggered crosslinking. It creates mechanically stable, tunable hydrogels with cytocompatibility and biodegradability, making them potential soft tissue adhesives.Alex Ross, Daniel Nguyen, Aidan J. MacAdam, German A. Mercado Salazar, Micaela Gianetti, Ramis Ileri, Marc Ruel, Erik J. Suuronen, Emilio I. Alarcon +8 morewiley +1 more sourceExpression of a bacterial 3-dehydroshikimate dehydratase reduces lignin content and improves biomass saccharification efficiency. [PDF]
, 2015 Lignin confers recalcitrance to plant biomass used as feedstocks in agro-processing industries or as source of renewable sugars for the production of bioproducts. The metabolic steps for the synthesis of lignin building blocks belong to the shikimate and Baidoo, Edward EK, Eudes, Aymerick, George, Anthe, Keasling, Jay D, Liang, Yan, Loqué, Dominique, Sathitsuksanoh, Noppadon, Simmons, Blake A, Singh, Seema, Yang, Fan +9 morecore In Situ 3D Bioprinting: Impact of Cross‐Linking on the Adhesive Properties of Hydrogels
Advanced Functional Materials, EarlyView.In situ 3D bioprinting enables the direct deposition of cell‐laden, adhesive biomaterials for on‐site tissue regeneration. This review provides a comprehensive overview of how cross‐linking influences the bioadhesive properties of hydrogels used in 3D bioprinting, highlighting cross‐linking triggers, bioadhesion mechanisms, polymer interpenetration ...Odile Romero Fernandez, Mulazim Hussain Asim, Shumaila Arshad, Gergely Kali, Andreas Bernkop‐Schnürch +4 morewiley +1 more sourceSensorized Engineered Tissues with Built‐in Thermoregulation and Nutrient Supply
Advanced Functional Materials, EarlyView.This work introduces a granular hydrogel‐based tissue engineering platform that includes a closed‐loop temperature control to maintain 37°C and sustainably releases nutrients, thereby enabling cells to retain a high viability even if stored at room temperature for up to 24 h.Antonia Georgopoulou, Jakob Schreiner, Miriam Filippi, Aiste Balciunaite, Robert K. Katzschmann, Esther Amstad +5 morewiley +1 more sourceSynergistic All‐in‐One Electroceutical Platform Utilizing a Plasma–Photodynamic Hybrid Approach for Enhanced Wound Healing
Advanced Functional Materials, EarlyView.A flexible hybrid patch integrating a robust cold atmospheric plasma (CAP) system with a high‐power, ultrathin bio‐OLED was developed to enable synergistic wound healing. This multimodal therapy, combining plasma and photodynamic treatment, enhanced angiogenesis, cell proliferation, and collagen deposition, demonstrating superior in vivo efficacy and ...Jun‐Yeop Song, Hyun Cheol Bang, Young Hyun Son, Dae‐In Ha, Eun‐Ju Hong, Sun‐Woo Lee, Jeongsook Kim, Doyeong Kim, Sang‐Min Park, Kyu Pil Lee, Hyo‐Jung Kwon, Jeong Hyun Kwon +11 morewiley +1 more sourceEstablishing a Model Precursor System: Over a Decade of Research on Carbon Dots from the Citric Acid‐Urea System
Advanced Functional Materials, EarlyView.The citric acid/urea (CA‐Urea) precursor system offers a versatile, scalable route to carbon dots with tunable luminescence and multifunctionality. Mechanistic insights into precursor chemistry and reaction parameters have enabled doping, surface modification, and hybridization strategies, yielding CDs for luminescent devices, sensing, catalysis ...Yupeng Liu, Zhiqi Cai, Xiangxin Sun, Hanyi Zhang, Yiming Hao, Jun Wu, Zekun Yan, Xue Wu, Yiqi Liang, Liming Wang, Songnan Qu +10 morewiley +1 more sourceMulti‐Scale Interface Engineering of MXenes for Multifunctional Sensory Systems
Advanced Functional Materials, EarlyView.MXenes, as two‐dimensional transition metal carbides and nitrides, demonstrate remarkable capabilities for multifunctional sensing applications. This review systematically examines multi‐scale interface engineering approaches that enhance sensing performance, enable diverse detection functionalities, and improve system‐level compatibility in MXene ...Jiaying Liao, Sin‐Yi Pang, Jianhua Haowiley +1 more sourceMitochondrial protein import [PDF]
, 1989 Ades, Ades, Adrian, Ainger, Allison, Alt, Aquila, Aquila, Arakawa, Arends, Argan, Argan, Baker, Banroques, Basile, Beckmann, Bedwell, Behra, Bellion, Beltzer, Beltzer, Berkhout, Bhasker, Bhat, Blobel, Borst, Bouillaud, Boutry, Brandriss, Braun, Burns, Böhni, Böhni, Cerletti, Chatton, Chen, Chen, Chen, Chen, Chen, Cheng, Chien, Chien, Chirico, Chu, Conboy, Conboy, Coruzzi, Craig, Dahl, Daum, Daum, De Haan, De Jong, De Lange, De Lange, Deshaies, Dickerson, Dieckmann, Dieckmann, Douglas, Duffaud, Dumont, Eilers, Eilers, Eilers, Ellis, Ellis, Emr, Epand, Evans, Farrell, Farrell, Faye, Firgaira, Fisher, Flügge, Foury, Fox, Freeman, Freitag, Fujiki, Fujiki, Gabellini, Gabellini, Gasser, Gasser, Gasser, Gay, Gearing, Geller, Gillespie, Gilmore, Gilmore, Grant, Grossmann, Guiard, Hackenbrock, Hallemayer, Hallermayer, Hallewell, Hampsey, Hansen, Harmey, Harmey, Harmey, Harmey, Harnisch, Hartl, Hartl, Hartl, Hartl, Hase, Hase, Hase, Hatalova, Hauska, Hawlitschek, Hay, Heinrich, Hemmingsen, Hennig, Hennig, Hennig, Henning, Hensgen, Ho, Ho, Horwich, Horwich, Horwich, Horwich, Horwich, Horwich, Hunter, Hurt, Hurt, Hurt, Hurt, Hurt, Hurt, Hurt, Hurt, Imanaka, Ito, Jaussi, Jaussi, Joh, Just, Kanazawa, Kaput, Kellems, Kellems, Kellens, Keng, Kirwin, Kleene, Koerner, Koerner, Koike, Kolansky, Kolarov, Korb, Kraus, Kraus, Kraus, Kraus, Krebs, Kruse, Kryzwicki, Kun, Labouesse, Lazarow, Lederer, Lennart-Nilsson, Lewin, Lewin, Lindquist, Lingelbach, Lomax, Lubben, Lustig, Lustig, Maarse, Maarse, Maccecchini, Maccecchini, Macino, Maher, Marres, Marzuki, Matsubara, Matsuura, McAda, McGraw, McIntyre, Meyer, Meyer, Meyer, Michel, Mihara, Mihara, Mihara, Mihara, Miura, Miura, Mori, Mori, Morita, Morohashi, Morohashi, Morohashi, Mueckler, Mueckler, Mueckler, Myers, Myers, Müller, Müller, Nagata, Nakagawa, Nargang, Natsoulis, Nelson, Nelson, Ness, Neupert, Neupert, Nguyen, Nguyen, Nguyen, Nguyen, Nicholson, Nicholson, Nicholson, Nicholson, Nishikimi, Nyunoya, Oda, Oda, Ohashi, Ohba, Ohba, Ohta, Ohta, Okamura, Okamura, Ono, Ono, Ono, Ono, Ou, Ou, Oudshoorn, Pain, Pain, Pape, Pape, Park, Patterson, Pelham, Perara, Pfaller, Pfaller, Pfaller, Pfaller, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pfanner, Pillar, Pollock, Pratje, Pratje, Randall, Randall, Raymond, Reid, Reid, Richter, Ricquier, Ridley, Rietveld, Riezman, Riezman, Riezman, Robinson, Roise, Roise, Rothblatt, Rothman, Runswick, Rödel, Römisch, Sabatini, Sachs, Sadler, Saraste, Schatz, Schlenstedt, Schleyer, Schleyer, Schleyer, Schmeizer, Schmidt, Schmidt, Schmidt, Schmidt, Schmidt, Schneller, Schwaiger, Schägger, Sebald, Shore, Sidhu, Sierra, Simmaco, Skerjank, Smagula, Stellwagen, Stuart, Suissa, Suissa, Surguchov, Suske, Sztul, Söllner, Takeda, Takeda, Takiguchi, Tamm, Taniuchi, Teintze, Tropschug, Tzagoloff, Tzagoloff, Ueda, Urban-Grimal, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Loon, Van Steeg, Vasarotti, Vasarotti, Veloso, Velours, Verner, Vestweber, Viebrock, Von Heijne, Walter, Walter, Walter, Watanabe, Waters, Watts, Weiss, Werner, Wickner, Wiech, Wielburski, Wierenga, Witte, Wold, Woodrow, Wright, Wright, Wu, Yaffe, Yaffe, Yamane, Yoshida, Yoshida, Young, Zimmermann, Zimmermann, Zimmermann, Zimmermann, Zimmermann, Zimmermann, Zwizinski, Zwizinski, Zwizinski, Zwizinski +395 morecore +1 more source