journal
https://read.qxmd.com/read/38535253/three-dimensional-printing-methods-for-bioceramic-based-scaffold-fabrication-for-craniomaxillofacial-bone-tissue-engineering
#21
REVIEW
Zeeshan Sheikh, Vasudev Vivekanand Nayak, Umer Daood, Anupreet Kaur, Hanan Moussa, Abbas Canteenwala, Pierre-Luc Michaud, Ísis de Fátima Balderrama, Edisa de Oliveira Sousa, Nick Tovar, Andrea Torroni, Michael Glogauer, Huzefa Talib, Paulo G Coelho, Lukasz Witek
Three-dimensional printing (3DP) technology has revolutionized the field of the use of bioceramics for maxillofacial and periodontal applications, offering unprecedented control over the shape, size, and structure of bioceramic implants. In addition, bioceramics have become attractive materials for these applications due to their biocompatibility, biostability, and favorable mechanical properties. However, despite their advantages, bioceramic implants are still associated with inferior biological performance issues after implantation, such as slow osseointegration, inadequate tissue response, and an increased risk of implant failure...
March 1, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535252/injectable-micro-hydrogel-for-dna-delivery-a-promising-therapeutic-platform
#22
JOURNAL ARTICLE
Sunghyun Moon, Jong Bum Lee
Utilizing the immune system as a strategy for disease prevention and treatment is promising, especially with dendritic cells (DCs) playing a central role in adaptive immune responses. The unique properties of DCs drive interest in developing materials for cell-based therapy and immune modulation. Injectable systems require syringe-compatible scaffolds, while hydrogels, like alginate, known for their programmability and biocompatibility, offer a versatile platform for immune medicine enhancement through easy preparation and room-temperature cross-linking...
March 1, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535251/gold-nanoparticle-based-colorimetric-and-fluorescent-dual-mode-lateral-flow-immunoassay-for-sars-cov-2-detection
#23
JOURNAL ARTICLE
Ying Gan, Hefan Zhang, Jing Liu, Fuqin He, Fengheng Li, Ao Li, Man Xing, Dongming Zhou, Shan-Yu Fung, Hong Yang
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection caused the COVID-19 pandemic, impacting the global economy and medical system due to its fast spread and extremely high infectivity. Efficient control of the spread of the disease relies on a fast, accurate, and convenient detection system for the early screening of the infected population. Although reverse transcription-quantitative polymerase chain reaction (RT-qPCR) is the gold-standard method for SARS-CoV-2 RNA analysis, it has complex experimental procedures and relies on expensive instruments and professional operators...
February 27, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535250/characterization-and-in-vitro-evaluation-of-porous-polymer-blended-scaffolds-functionalized-with-tricalcium-phosphate
#24
JOURNAL ARTICLE
Iwona Pudełko-Prażuch, Mareeswari Balasubramanian, Sundara Moorthi Ganesan, Stanisław Marecik, Kamila Walczak, Kinga Pielichowska, Suvro Chatterjee, Ravichandran Kandaswamy, Elżbieta Pamuła
Bone tissue is one of the most transplanted tissues. The ageing population and bone diseases are the main causes of the growing need for novel treatments offered by bone tissue engineering. Three-dimensional (3D) scaffolds, as artificial structures that fulfil certain characteristics, can be used as a temporary matrix for bone regeneration. In this study, we aimed to fabricate 3D porous polymer scaffolds functionalized with tricalcium phosphate (TCP) particles for applications in bone tissue regeneration. Different combinations of poly(lactic acid) (PLA), poly(ethylene glycol) (PEG with molecular weight of 600 or 2000 Da) and poly(ε-caprolactone) (PCL) with TCP were blended by a gel-casting method combined with rapid heating...
February 26, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535249/analysis-of-bone-mineral-density-and-bone-quality-of-cortical-bone-in-the-human-hyoid-body-and-histological-observation-of-the-entheses
#25
JOURNAL ARTICLE
Masaaki Kasahara, Tomoko Someya, Kei Kitamura, Genji Watanabe, Satoru Matsunaga, Shinichi Abe, Masayuki Hattori
The hyoid is the only bone in the human body that is completely independent, not forming a joint with any other bone; its position is maintained by the suprahyoid and infrahyoid muscles, as well as several ligaments. The purpose of this study was to ascertain the effect of the functional pressure arising from these muscles and ligaments on the hyoid body structure from its bone mineral density, bone quality, and histological observations. The area between the mesial-most part of each lesser horn and the center of the hyoid body was divided equally into four measurement regions...
February 22, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535248/generation-of-pearl-calcium-phosphate-composite-particles-and-their-integration-into-porous-chitosan-scaffolds-for-bone-regeneration
#26
JOURNAL ARTICLE
Zhiyi Li, Ihtesham Ur Rehman, Rebecca Shepherd, Timothy E L Douglas
Bone tissue engineering using osteoconductive scaffolds holds promise for regeneration, with pearl powder gaining interest for its bioactive qualities. This study used freeze drying to create chitosan (CS) scaffolds with pearl/calcium phosphate (p/CaP) powders, mimicking bone tissue structurally and compositionally. Characterization included scanning electron microscopy (SEM) and mechanical testing. X-ray diffraction (XRD) Fourier-transform infrared-photoacoustic photo-acoustic sampling (FTIR-PAS), and FTIR- attenuated total reflectance (FTIR-ATR) were used to characterize p/CaP...
February 21, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535247/active-and-passive-mineralization-of-bio-gide-%C3%A2-membranes-in-rat-calvaria-defects
#27
JOURNAL ARTICLE
Karol Ali Apaza Alccayhuaman, Patrick Heimel, Stefan Tangl, Stefan Lettner, Carina Kampleitner, Layla Panahipour, Ulrike Kuchler, Reinhard Gruber
Bio-Gide® is a collagen membrane routinely used in guided bone regeneration. Recent studies have shown that this collagen membrane has osteoconductive properties, meaning that it can support the growth of new bone. However, it has also been observed that the collagen membrane has areas of mineralized fibers which can occur spontaneously and independently of osteoblasts. To better understand how this works, we established a model using minced collagen membranes to reduce the active mineralization of intact collagen membranes in favor of passive mineralization...
February 21, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535246/polycarbonate-based-copolymer-micelles-as-biodegradable-carriers-of-anticancer-podophyllotoxin-or-juniper-extracts
#28
JOURNAL ARTICLE
Radostina G Kalinova, Ivaylo V Dimitrov, Diana I Ivanova, Yana E Ilieva, Alexander N Tashev, Maya M Zaharieva, George Angelov, Hristo M Najdenski
Podophyllotoxin (PPT) is used in the industrial production of efficient anticancer, antiviral and other drugs. Sinopodophyllum hexandrum or Podophyllum peltatum are natural sources of PPT, but at present they are considered as endangered species. Their PPT content is variable, depending on the growing conditions. Searching for new sources of PPT, some representatives of the genus Juniperus were found to exhibit efficient PPT biosynthesis. However, PPT is highly toxic and poorly soluble in water compound, which limits its clinical applications...
February 21, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535245/influence-of-hybrid-surface-modification-on-biocompatibility-and-physicochemical-properties-of-ti-6al-4v-eli-titanium
#29
JOURNAL ARTICLE
Anna Woźniak, Weronika Smok, Janusz Szewczenko, Marcin Staszuk, Grzegorz Chladek
Titanium-based materials are the most widely used materials in biomedical applications. However, according to literature findings, the degradation products of titanium have been associated with potential allergic reactions, inflammation, and bone resorption. The corrosion process of Ti-6Al-4V in the human body environment may be exacerbated by factors such as reduced pH levels and elevated concentrations of chloride compounds. Coatings made of biopolymers are gaining attention as they offer numerous advantages for enhancing implant functionality, including improved biocompatibility, bioactivity, wettability, drug release, and antibacterial activity...
February 20, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535244/toxicity-assessment-of-new-ag-zno-ago-nanocomposites-an-in-vitro-and-in-vivo-approach
#30
JOURNAL ARTICLE
José Rodrigues do Carmo Neto, Pablo Igor Ribeiro Franco, Yarlla Loyane Lira Braga, Jordana Fernandes de Oliveira, Hugo Felix Perini, Luís Fernando Duarte Albuquerque, Danieli Brolo Martins, Fernanda Rodrigues Helmo, Anderson Assunção Andrade, Marina Pacheco Miguel, Mara Rúbia Nunes Celes, Thiago Lopes Rocha, Anielle Christine Almeida Silva, Juliana Reis Machado, Marcos Vinícius da Silva
Zinc oxide nanoparticles (ZnO NPs) are metal oxide nanomaterials, which are important for several applications: antibacterial, anthelmintic, antiprotozoal and antitumoral, among others. These applications are mainly related to the ability to spontaneously produce and induce the production of reactive oxygen species that are important components for the destruction of pathogens and tumor cells. While trying to potentiate ZnO NPs, studies have associated these NPs with silver oxide (AgO) or silver (Ag) NPs. It has already been reported that this combination (Ag-ZnO/AgO NPs) is able to enhance the microbicidal potential...
February 20, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38535243/enhancing-the-antifouling-properties-of-alumina-nanoporous-membranes-by-go-mof-impregnated-polymer-coatings-in-vitro-studies
#31
JOURNAL ARTICLE
Mona Moaness, Sara A M El-Sayed, Hanan H Beherei, Mostafa Mabrouk
Nanoporous membranes (NPMBs) have been the focus of interest of many scientists in the last decade. However, the fouling phenomenon that takes place during the implantation period blocks pores and causes failure in the local implant. In this study, alumina NPMBs were developed using electrochemical anodization through two steps. Furthermore, graphene oxide (GO), free and impregnated with ZIF-8 MOF, was synthesized and loaded in a mixture of PVDF/PVP polymer matrix at different ratios, and was applied to the produced NPMBs using spin-coater...
February 20, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391902/advanced-platelet-lysate-aerogels-biomaterials-for-regenerative-applications
#32
JOURNAL ARTICLE
Fahd Tibourtine, Thibault Canceill, Andrea Marfoglia, Philippe Lavalle, Laure Gibot, Ludovic Pilloux, Clementine Aubry, Claire Medemblik, Dominique Goudouneche, Agnès Dupret-Bories, Sophie Cazalbou
Human platelet lysate (HPL), rich in growth factors, is increasingly recognized for its potential in tissue engineering and regenerative medicine. However, its use in liquid or gel form is constrained by limited stability and handling difficulties. This study aimed to develop dry and porous aerogels from HPL hydrogel using an environmentally friendly supercritical CO2 -based shaping process, specifically tailored for tissue engineering applications. The aerogels produced retained their three-dimensional structure and demonstrated significant mechanical robustness and enhanced manageability...
February 19, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391901/evaluating-glass-ionomer-cement-longevity-in-the-primary-and-permanent-teeth-an-umbrella-review
#33
REVIEW
Alessandro Panetta, Pedro Lopes, Tatiane Fernandes Novaes, Rute Rio, Gustavo Vicentis Oliveira Fernandes, Anna Carolina Volpi Mello-Moura
The aim of this umbrella review was to evaluate the longevity of glass ionomer cement (GIC) as a restorative material for primary and permanent teeth. Research in the literature was conducted in three databases (MedLine/PubMed, Web of Science, and Scopus). The inclusion criteria were: (1) to be a systematic review of clinical trials that (2) evaluated the clinical longevity of GICs as a restorative material in primary and/or permanent teeth; the exclusion criteria were: (1) not being a systematic review of clinical trials; (2) not evaluating longevity/clinical performance of GICs as a restorative material; and (3) studies of dental restorative materials in teeth with enamel alterations, root caries, and non-carious cervical lesions...
February 19, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391900/analysis-of-strain-distribution-in-common-clinical-designs-of-posterior-implant-supported-fixed-partial-restorations-comparison-between-six-configurations
#34
JOURNAL ARTICLE
Oded Gelfan, Joseph Nissan, Asaf Shely, Gil Ben-Izhack, Liat Chaushu, Esi Sharon, Ari Glikman, Eran Zenziper, Ofir Rosner
The configuration of implant-supported prostheses is considered to influence the magnitude of stress concentrations, affecting their survival rate. The purpose of this study is to determine, through strain gauge measurements during load application, the dispersion and magnitude of strain concentrations in different implant-supported prosthesis designs. All designs matched those commonly used in posterior partially edentulous states. Three implants were inserted into an epoxy resin model (PLM-4B Vishay Measurements Group Inc...
February 18, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391899/advanced-ti-nb-ta-alloys-for-bone-implants-with-improved-functionality
#35
JOURNAL ARTICLE
Jan-Oliver Sass, Marie-Luise Sellin, Elisa Kauertz, Jan Johannsen, Markus Weinmann, Melanie Stenzel, Marcus Frank, Danny Vogel, Rainer Bader, Anika Jonitz-Heincke
The additive manufacturing of titanium-niobium-tantalum alloys with nominal chemical compositions Ti-xNb-6Ta (x = 20, 27, 35) by means of laser beam powder bed fusion is reported, and their potential as implant materials is elaborated by mechanical and biological characterization. The properties of dense specimens manufactured in different build orientations and of open porous Ti-20Nb-6Ta specimens are evaluated. Compression tests indicate that strength and elasticity are influenced by the chemical composition and build orientation...
February 17, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391898/surface-functionalization-of-titanium-based-implants-with-a-nanohydroxyapatite-layer-and-its-impact-on-osteoblasts-a-systematic-review
#36
REVIEW
Karolina Homa, Wojciech Zakrzewski, Wojciech Dobrzyński, Paweł J Piszko, Aleksandra Piszko, Jacek Matys, Rafal J Wiglusz, Maciej Dobrzyński
This study aims to evaluate the influence of a nanohydroxyapatite layer applied to the surface of titanium or titanium alloy implants on the intricate process of osseointegration and its effect on osteoblast cell lines, compared to uncoated implants. Additionally, the investigation scrutinizes various modifications of the coating and their consequential effects on bone and cell line biocompatibility. On the specific date of November 2023, an exhaustive electronic search was conducted in esteemed databases such as PubMed, Web of Science, and Scopus, utilizing the meticulously chosen keywords ((titanium) AND ((osteoblasts) and hydroxyapatite))...
February 16, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391897/multidimensional-3d-printed-scaffolds-and-regeneration-of-intrabony-periodontal-defects-a-systematic-review
#37
REVIEW
Sotiria Davidopoulou, Panagiotis Karakostas, Leonidas Batas, Panagiotis Barmpalexis, Andreana Assimopoulou, Christos Angelopoulos, Lazaros Tsalikis
BACKGROUND: The utilization of regenerative techniques in periodontology involves tailoring tissue engineering principles to suit the oral cavity's unique environment. Advancements in computer-assisted technology, specifically utilizing cone beam computed tomography (CBCT), enabled the fabrication of 3D-printed scaffolds. The current review aims to explore whether 3D-printed scaffolds are effective in promoting osteogenesis in patients with periodontal defects. METHODS: A thorough exploration was undertaken across seven electronic databases (PubMed, Scopus, ScienceDirect, Google Scholar, Cochrane, Web of Science, Ovid) to detect pertinent research in accordance with specified eligibility criteria, aligning with the PRISMA guidelines...
February 15, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391896/surface-modification-strategies-for-chrysin-loaded-iron-oxide-nanoparticles-to-boost-their-anti-tumor-efficacy-in-human-colon-carcinoma-cells
#38
JOURNAL ARTICLE
Aynura Karimova, Sabina Hajizada, Habiba Shirinova, Sevinj Nuriyeva, Lala Gahramanli, Mohammed M Yusuf, Stefano Bellucci, Christoph Reissfelder, Vugar Yagublu
Enhancing nanoparticles' anti-cancer capabilities as drug carriers requires the careful adjustment of formulation parameters, including loading efficiency, drug/carrier ratio, and synthesis method. Small adjustments to these parameters can significantly influence the drug-loading efficiency of nanoparticles. Our study explored how chitosan and polyethylene glycol (PEG) coatings affect the structural properties, drug-loading efficiency, and anti-cancer efficacy of Fe3 O4 nanoparticles (NPs). The loading efficiency of the NPs was determined using FTIR spectrometry and XRD...
February 13, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391895/femtosecond-laser-irradiation-to-zirconia-prior-to-calcium-phosphate-coating-enhances-osteointegration-of-zirconia-in-rabbits
#39
JOURNAL ARTICLE
Hirotaka Mutsuzaki, Hidehiko Yashiro, Masayuki Kakehata, Ayako Oyane, Atsuo Ito
Calcium phosphate (CaP) coating of zirconia and zirconia-based implants is challenging, due to their chemical instability and susceptibility to thermal and mechanical impacts. A 3 mol% yttrium-stabilized tetragonal zirconia polycrystal was subjected to femtosecond laser (FsL) irradiation to form micro- and submicron surface architectures, prior to CaP coating using pulsed laser deposition (PLD) and low-temperature solution processing. Untreated zirconia, CaP-coated zirconia, and FsL-irradiated and CaP-coated zirconia were implanted in proximal tibial metaphyses of male Japanese white rabbits for four weeks...
February 11, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38391894/evaluation-of-the-dentinal-shear-bond-strength-and-resin-interface-in-primary-molars-after-pre-treatment-with-various-dentin-bio-modifiers-an-in-vitro-study
#40
JOURNAL ARTICLE
Saima Sultan, Seema Chaudhary, T R Chaitra, Naveen Manuja, Sinha Ashish Amit, Mamata Iranna Hebbal, Alhanoof Aldegheishem, Selma A Saadaldin, Elzahraa Eldwakhly, Amal Ali, Mai Soliman
Dentine adhesives have demonstrated great success with permanent teeth. Though the results in primary teeth are not well documented, some studies have demonstrated lower values of bond strength in primary teeth than those found in permanent teeth. The aim of this study was to compare and evaluate the effect of grape seed extract (6.5%) (Herbal Bio Solutions, Delhi, India), glutaraldehyde (5%) (Loba Chemie PVT. LTD., Mumbai), hesperidin (0.5%) (Herbal Bio Solutions, Delhi, India), and casein phosphopeptide-amorphous calcium phosphate (tooth mousse) (GC Corporation, Alsip, IL, USA) on the shear bond strength of dentine of primary teeth and to evaluate the resin tags at the resin tooth interface...
February 11, 2024: Journal of Functional Biomaterials
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