keyword
https://read.qxmd.com/read/38619014/reconstructing-critical-sized-mandibular-defects-in-a-rabbit-model-enhancing-angiogenesis-and-facilitating-bone-regeneration-via-a-cell-loaded-3d-printed-hydrogel-ceramic-scaffold-application
#21
JOURNAL ARTICLE
Seyyed Sajad Daneshi, Lobat Tayebi, Tahereh Talaei-Khozani, Saeid Tavanafar, Amir Hossein Hadaegh, Morteza Rasoulianboroujeni, Banafsheh Rastegari, Seyedeh-Leili Asadi-Yousefabad, Pegah Nammian, Shahrokh Zare, Nadiar M Mussin, Asset A Kaliyev, Kulyash R Zhelisbayeva, Nader Tanideh, Amin Tamadon
In this study, we propose a spatially patterned 3D-printed nanohydroxyapatite (nHA)/beta-tricalcium phosphate (β-TCP)/collagen composite scaffold incorporating human dental pulp-derived mesenchymal stem cells (hDP-MSCs) for bone regeneration in critical-sized defects. We investigated angiogenesis and osteogenesis in a rabbit critical-sized mandibular defect model treated with this engineered construct. The critical and synergistic role of collagen coating and incorporation of stem cells in the regeneration process was confirmed by including a cell-free uncoated 3D-printed nHA/β-TCP scaffold, a stem cell-loaded 3D-printed nHA/β-TCP scaffold, and a cell-free collagen-coated 3D-printed nHA/β-TCP scaffold in the experimental design, in addition to an empty defect...
April 15, 2024: ACS Biomaterials Science & Engineering
https://read.qxmd.com/read/38619003/comparison-of-3-different-surgical-techniques-for-rotator-cuff-repair-in-a-rabbit-model-direct-suture-inlay-suture-and-polyether-ether-ketone-peek-suture-anchor
#22
JOURNAL ARTICLE
Cancan Du, Wei Chen, Jingchao Fang, Yarui Zhang, Wenqiang Yan, Wenli Dai, Xiaoqing Hu, Yingfang Ao, Shuang Ren, Zhenlong Liu
BACKGROUND: Rotator cuff tears have been repaired using the transosseous method for decades. The direct suture (DS) technique has been widely used for rotator cuff tears; however, the retear rate is relatively high. Suture anchors are now used frequently for rotator cuff repair (RCR) in accordance with recent developments in materials. However, polyether ether ketone (PEEK) may still cause complications such as the formation of cysts and osteophytes. Some studies have developed the inlay suture (IS) technique for RCR...
April 15, 2024: American Journal of Sports Medicine
https://read.qxmd.com/read/38618108/acemannan-containing-bioactive-resin-modified-glass-ionomer-demonstrates-satisfactory-physical-and-biological-properties
#23
JOURNAL ARTICLE
Thant Aye Aye, Sangvanich Polkit, Inchudech Klaijan, Kuvieng Nachanok, Lalitkanjanakul Salil, Thunyakitpisal Pasutha
BACKGROUND/PURPOSE: Resin-modified glass ionomers (RMGIs) have been recommended as liner and cement to provide the teeth with mechanical support, a chemical barrier, and thermal insulation. Acemannan, the main polysaccharide extracted from Aloe vera, is a promising inductive material in vitro and in vivo . This study aimed to develop acemannan-containing bioactive resin-modified glass ionomers (RMGIs). MATERIALS AND METHODS: Acemannan (3%, 5%, and 10%) was added to the three types of RMGIs (RU-HBM1/Fuji II LC/Vitrebond) to generate 3%, 5%, and 10% aceRMGIs (aceRU/aceFuji/aceVB)...
April 2024: Journal of Dental Sciences
https://read.qxmd.com/read/38618075/effect-of-amoxicillin-and-clindamycin-on-the-gene-expression-of-markers-involved-in-osteoblast-physiology
#24
JOURNAL ARTICLE
Francisco Javier Manzano-Moreno, Anabel Gónzalez-Acedo, Elvira de Luna-Bertos, Enrique García-Recio, Concepción Ruiz, Candela Reyes-Botella
BACKGROUND/PURPOSE: Amoxicillin and clindamycin are the most effective decontaminants for intraoral bone grafts before their application in bone regeneration without cytotoxic effects on osteoblasts, but their effects on the gene expression of markers involved in osteoblast growth and differentiation remain unclear. The study objective was to determine the effects of amoxicillin and clindamycin on the gene expression of markers involved in osteoblast growth and differentiation. MATERIALS AND METHODS: Real-time polymerase chain reaction (RT-PCR) was performed to explore the effect of 150 μg/mL clindamycin or 400 μg/mL amoxicillin on the gene expression by primary human osteoblasts (HOBs) of runt-related transcription factor 2 (Runx-2), osterix (OSX), alkaline phosphatase (ALP), osteocalcin (OSC), osteoprotegerin (OPG), receptor activator for nuclear factor κ B ligand (RANKL), type I collagen (Col-I), bone morphogenetic proteins 2 and 7 (BMP-2 and BMP-7), TGF-β1 and TGF-β receptors (TGF-βR1, TGF-βR2, and TGF-βR3), and vascular endothelial growth factor (VEGF)...
April 2024: Journal of Dental Sciences
https://read.qxmd.com/read/38618071/sinus-floor-augmentation-using-mineralized-freeze-dried-bone-allograft-combined-with-recombinant-human-bone-morphogenetic-protein-2-rhbmp-2-a-long-term-retrospective-study
#25
JOURNAL ARTICLE
Kyeong-Ok Lim, Min-Seok Kim, Keon-Il Yang, Won-Pyo Lee, Byung-Ock Kim, Sang-Joun Yu
BACKGROUND/PURPOSE: The combination of recombinant human bone morphogenetic protein-2 (rhBMP-2) with a carrier material has not been extensively studied. This study aimed to evaluate the clinical, radiological, and histomorphometric outcomes of sinus floor augmentation using a 3:7 mixture of cancellous and cortical freeze-dried bone allografts (mixed AG) combined with rhBMP-2. MATERIALS AND METHODS: Mixed AG was used for sinus floor augmentation in a total of 21 patients with a residual alveolar bone height <5 mm...
April 2024: Journal of Dental Sciences
https://read.qxmd.com/read/38618055/3d-bioprinted-alginate-based-bioink-scaffolds-with-%C3%AE-tricalcium-phosphate-for-bone-regeneration-applications
#26
JOURNAL ARTICLE
Yi-Fan Wu, Ya-Ting Wen, Eisner Salamanca, Lwin Moe Aung, Yan-Qiao Chao, Chih-Yun Chen, Ying-Sui Sun, Wei-Jen Chang
BACKGROUND/PURPOSE: 3D-printed bone tissue engineering is becoming recognized as a key approach in dentistry for creating customized bone regeneration treatments fitting patients bone defects requirements. 3D bioprinting offers an innovative method to fabricate detailed 3D structures, closely emulating the native bone micro-environment and better bone regeneration. This study aimed to develop an 3D-bioprintable scaffold using a combination of alginate and β-tricalcium phosphate (β-TCP) with the Cellink® BioX printer, aiming to advance the field of tissue engineering...
April 2024: Journal of Dental Sciences
https://read.qxmd.com/read/38618008/orthobiologics-in-delayed-union-and-non-union-of-adult-long-bones-fractures-a-systematic-review
#27
REVIEW
Lorenzo Impieri, Andrea Pezzi, Henrique Hadad, Giuseppe M Peretti, Laura Mangiavini, Nicolò Rossi
BACKGROUND: Fracture healing poses a significant challenge in orthopedics. Successful regeneration of bone is provided by mechanical stability and a favorable biological microenvironment. This systematic review aims to explore the clinical application of orthobiologics in treating aseptic delayed union and non-union of long bones in adults. METHODS: A systematic review was conducted following the Preferred Reporting Items for Systematic Review and Meta-Analyses (PRISMA) guidelines...
June 2024: Bone Reports
https://read.qxmd.com/read/38617800/microdroplets-encapsulated-with-nfatc1-sirna-and-exosomes-derived-from-mscs-onto-3d-porous-pla-scaffold-for-regulating-osteoclastogenesis-and-promoting-osteogenesis
#28
JOURNAL ARTICLE
Peng Luo, Yi Zhang, Maodi Huang, Guochen Luo, Yaping Ma, Xin Wang
INTRODUCTION: Osteoporotic-related fractures remains a significant public health concern, thus imposing substantial burdens on our society. Excessive activation of osteoclastic activity is one of the main contributing factors for osteoporosis-related fractures. While polylactic acid (PLA) is frequently employed as a biodegradable scaffold in tissue engineering, it lacks sufficient biological activity. Microdroplets (MDs) have been explored as an ultrasound-responsive drug delivery method, and mesenchymal stem cell (MSC)-derived exosomes have shown therapeutic effects in diverse preclinical investigations...
2024: International Journal of Nanomedicine
https://read.qxmd.com/read/38617462/additively-manufactured-bioceramic-scaffolds-based-on-triply-periodic-minimal-surfaces-for-bone-regeneration
#29
JOURNAL ARTICLE
Hong Zhu, Jinsi Wang, Shengfa Wang, Yue Yang, Meiyi Chen, Qifei Luan, Xiaochuan Liu, Ziheng Lin, Jiaqi Hu, Kenny Man, Jingying Zhang
The study focused on the effects of a triply periodic minimal surface (TPMS) scaffolds, varying in porosity, on the repair of mandibular defects in New Zealand white rabbits. Four TPMS configurations (40%, 50%, 60%, and 70% porosity) were fabricated with β-tricalcium phosphate bioceramic via additive manufacturing. Scaffold properties were assessed through scanning electron microscopy and mechanical testing. For proliferation and adhesion assays, mouse bone marrow stem cells (BMSCs) were cultured on these scaffolds...
2024: Journal of Tissue Engineering
https://read.qxmd.com/read/38617208/cyr61-delivery-promotes-angiogenesis-during-bone-fracture-repair
#30
Annemarie Lang, Emily A Eastburn, Mousa Younesi, Madhura Nijsure, Carly Siciliano, Annapurna Pranatharthi Haran, Christopher J Panebianco, Elizabeth Seidl, Rui Tang, Eben Alsberg, Nick J Willett, Riccardo Gottardi, Dongeun Huh, Joel D Boerckel
Compromised vascular supply and insufficient neovascularization impede bone repair, increasing risk of non-union. Cyr61, Cysteine-rich angiogenic inducer of 61kD (also known as CCN1), is a matricellular growth factor that is regulated by mechanical cues during fracture repair. Here, we map the distribution of endogenous Cyr61 during bone repair and evaluate the effects of recombinant Cyr61 delivery on vascularized bone regeneration. In vitro, Cyr61 treatment did not alter chondrogenesis or osteogenic gene expression, but significantly enhanced angiogenesis...
April 6, 2024: bioRxiv
https://read.qxmd.com/read/38616679/strategies-for-improving-impaired-osseointegration-in-compromised-animal-models
#31
JOURNAL ARTICLE
J Deng, C Van Duyn, D J Cohen, Z Schwartz, B D Boyan
Implant osseointegration is reduced in patients with systemic conditions that compromise bone quality, such as osteoporosis, disuse syndrome, and type 2 diabetes. Studies using rodent models designed to mimic these compromised conditions demonstrated reduced bone-to-implant contact (BIC) or a decline in bone mineral density. These adverse effects are a consequence of disrupted intercellular communication. A variety of approaches have been developed to compensate for the altered microenvironment inherent in compromised conditions, including the use of biologics and implant surface modification...
April 15, 2024: Journal of Dental Research
https://read.qxmd.com/read/38615498/drug-induced-osteoporosis-and-mechanisms-of-bone-tissue-regeneration-through-trace-elements
#32
REVIEW
Nayara de Souza da Costa, Luíza Siqueira Lima, Maria Eduarda Andrade Galiciolli, Deborah Helen Fabiano Ribeiro, Milena Mariano Ribeiro, Gisele de Paula Júlia Garica, Isabela Saragioto Marçal, Juliana Ferreira da Silva, Meire Ellen Pereira, Cláudia Sirlene Oliveira, Izonete Cristina Guiloski
Osteoporosis is associated with an imbalance in bone formation, with certain drugs used in disease treatment being implicated in its development. Supplementation with trace elements may contribute to bone regeneration, offering an alternative approach by enhancing bone mineral density (BMD) and thereby thwarting the onset of osteoporosis. This review aims to assess the mechanisms through which trace elements such as copper (Cu), iron (Fe), selenium (Se), manganese (Mn), and zinc (Zn) are linked to increased bone mass, thus mitigating the effects of pharmaceuticals...
April 4, 2024: Journal of Trace Elements in Medicine and Biology
https://read.qxmd.com/read/38615407/biodegradable-polyvinyl-alcohol-nano-hydroxyapatite-composite-membrane-enhanced-by-mxene-nanosheets-for-guided-bone-regeneration
#33
JOURNAL ARTICLE
Kefan Yang, Siqi Lei, Xiaoli Qin, Xiaoxue Mai, Weibo Xie, Shengrong Yang, Jinqing Wang
MXene, as a new category of two-dimensional nanomaterials, exhibits a promising prospect in biomedical applications due to its ultrathin structure and morphology, as well as a range of remarkable properties such as biological, chemical, electronic, and optical properties. In this work, different concentrations of MXene (M) were added to polyvinyl alcohol (PVA, P)/nano-hydroxyapatite (n-HA, H) mixed solution, and series of PVA/n-HA/MXene (PHM) composite membranes were obtained by combining sol-gel and freeze-drying processes...
April 8, 2024: Journal of the Mechanical Behavior of Biomedical Materials
https://read.qxmd.com/read/38615249/systematic-review-of-surgical-regenerative-treatment-for-apicomarginal-lesions-in-periapical-surgery
#34
JOURNAL ARTICLE
L Attar-Attar, J-C Bernabeu-Mira, J Cervera-Ballester, M Peñarrocha-Diago, M Peñarrocha-Diago
BACKGROUND: Apicomarginal lesions affect the root apex and root surface concurrently and reduce the success rate in periapical surgery. The purpose of this systematic review was to analyze the published literature on the surgical treatment of apicomarginal lesions in periapical surgery. MATERIAL AND METHODS: A systematic review was conducted on PRISMA statement. Three data bases (PubMed-Medline, Scopus, and Embase) were searched up to March 2023. The inclusion criteria for this systematic review encompass studies pertaining to apicomarginal lesions and their surgical treatment, both preclinical and clinical in nature (including randomized trials, prospective, and retrospective observational trials), without any language or time limitations...
April 14, 2024: Medicina Oral, Patología Oral y Cirugía Bucal
https://read.qxmd.com/read/38614878/composite-pcl-scaffold-with-70-%C3%AE-tcp-as-suitable-structure-for-bone-replacement
#35
JOURNAL ARTICLE
Benedetta Ghezzi, Biagio Matera, Matteo Meglioli, Francesca Rossi, Donatella Duraccio, Maria Giulia Faga, Andrea Zappettini, Guido Maria Macaluso, Simone Lumetti
OBJECTIVES: The purpose of this work was to optimise printable polycaprolactone (PCL)/β-tricalcium phosphate (β-TCP) biomaterials with high percentages of β-TCP endowed with balanced mechanical characteristics to resemble human cancellous bone, presumably improving osteogenesis. METHODS: PCL/β-TCP scaffolds were obtained from customised filaments for fused deposition modelling (FDM) 3D printing with increasing amounts of β-TCP. Samples mechanical features, surface topography and wettability were evaluated as well as cytocompatibility assays, cell adhesion and differentiation...
April 13, 2024: International Dental Journal
https://read.qxmd.com/read/38614461/use-of-the-phylobone-database-for-the-annotation-of-bone-extracellular-matrix-proteins-in-reindeer-rangifer-tarandus
#36
JOURNAL ARTICLE
Alba Sánchez-Reverté, Margalida Fontcuberta-Rigo, Miho Nakamura, Pere Puigbò
Bone extracellular matrix (ECM) proteins play a key role in bone formation and regeneration, including structural and regulatory functions. The Phylobone database consists of 255 ECM protein groups from 39 species and can be used to support bone research. Here, we gathered bone ECM proteins from reindeer ( Rangifer tarandus ), a member of the Cervidae family. The importance of reindeer lies in their ability to regenerate their antlers, in both male and female individuals. Protein sequences were extracted from the National Center for Biotechnology Information's repository and selected by homology searches...
2024: Science Progress
https://read.qxmd.com/read/38614237/in-vivo-study-of-porous-niti-cryotweezers-for-bone-tissue-cryotherapy
#37
JOURNAL ARTICLE
Ekaterina S Marchenko, Kirill M Dubovikov, Ivan I Kuzhelivskiy, Maksim O Pleshkov, Evgeniy S Koroluk, Konstantin S Brazovskii, Alex A Volinsky
This study examined the effects of liquid nitrogen vapor on osteogenesis in the rabbit femur. Cryotweezers made of porous nickel titanium alloy (nitinol or NiTi) obtained by self-propagating high temperature synthesis were used in this experiment. The porous structure of the cryotweezers allows them to hold up to 10 g of liquid nitrogen after being immersed for 2 minutes, which completely evaporates after 160 seconds. To study the effects of liquid nitrogen evaporation on osteogenesis, a rabbit femur was perforated...
April 11, 2024: Cryobiology
https://read.qxmd.com/read/38614153/cubic-liquid-crystals-containing-propolis-flavonoids-as-in-situ-thermo-sensitive-hydrogel-depots-for-periodontitis-treatment-preparation-pharmacodynamics-and-therapeutic-mechanisms
#38
JOURNAL ARTICLE
Maomao Tang, Jiaxin Li, Guichun Wang, Yuxiao Wang, Chengjun Peng, Xiangwei Chang, Yaotian Tao, Jian Guo, Shuangying Gui
Propolis has a long ethnopharmacological history for oral periodontal diseases treatment. Propolis flavonoids are main active components for anti-inflammation and tissue protection. However, the intractable dissolution properties of propolis flavonoids and complex oral environment pose great challenges for periodontal delivery. In addition, the therapeutic mechanism as well as the therapeutic correlation of inflammation resolution and tissue regeneration remain unclear for propolis flavonoids. In this study, we constructed an in situ thermosensitive depot systems using total flavonoids from propolis-loaded cubic liquid crystals (TFP-CLC) hydrogel for periodontal delivery...
April 11, 2024: European Journal of Pharmaceutical Sciences
https://read.qxmd.com/read/38613813/pcl-%C3%AE-tcp-composite-scaffolds-with-advanced-geometries-promote-hmscs-osteogenic-differentiation
#39
JOURNAL ARTICLE
Sophia Dalfino, Elena Olaret, Marco Piazzoni, Paolo Savadori, Izabela Stancu, Gianluca Tartaglia, Claudia Dolci, Lorenzo Moroni
Critical-sized mandibular bone defects, arising from e.g. resections after tumor surgeries, are currently treated with autogenous bone grafts. This treatment is considered very invasive and is associated with limitations such as morbidity, and graft resorption. Tissue engineering approaches propose to use 3D scaffolds that combine structural features, biomaterial properties, cells and biomolecules to create biomimetic constructs. However, mimicking the complex anatomy and composition of the mandible poses a challenge in scaffold design...
April 13, 2024: Tissue Engineering. Part A
https://read.qxmd.com/read/38613806/the-effects-of-hypoxia-preconditioned-dental-stem-cell-derived-secretome-on-tissue-regeneration
#40
JOURNAL ARTICLE
Yi Liu, Ling Ren, Mengyao Li, Bowen Zheng, Yi Liu
Mesenchymal stem cells (MSCs) derived from oral tissues are known as dental stem cells (DSCs). Due to their unique therapeutic niche and clinical accessibility, DSCs serve as a promising treatment option for bone defects and oral tissue regeneration. DSCs exist in a hypoxic microenvironment in vivo, which is far lower than the current 20% oxygen concentration utilized in in vitro culture. It has been widely reported that the application of an oxygen concentration less than 5% in the culture of DSCs is beneficial for preserving stemness and promoting proliferation, migration and paracrine activity...
April 13, 2024: Tissue Engineering. Part B, Reviews
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