keyword
https://read.qxmd.com/read/38463831/fabrication-and-properties-of-hydroxyapatite-chitosan-composite-scaffolds-loaded-with-periostin-for-bone-regeneration
#21
JOURNAL ARTICLE
Huachun Wang, Ruixue Sun, Shengyun Huang, Haiwei Wu, Dongsheng Zhang
This paper reports a facile fabrication method of hydroxyapatite/chitosan (HAp/CS) composite scaffold with 3D porous structure without using any chemical cross-linkers. The HAp particles had an urchin-like hollow microstructure and high surface area, which was uniformly dispersed into the pore walls of the HAp/CS scaffold. The addition of HAp can efficiently enhance the mechanical properties and bioactivity of the HAp/CS scaffold. Moreover, periostin was successfully loaded onto the HAp/CS scaffold. When applied to the repair of bone defect in a rat mandibular model, the HAp/CS scaffold loaded with periostin can enhance osteointegration and accelerate bone regeneration...
March 15, 2024: Heliyon
https://read.qxmd.com/read/38461138/an-innovative-3d-hydroxyapatite-patient-specific-implant-for-maxillofacial-bone-reconstruction-a-case-series-of-13-patients
#22
JOURNAL ARTICLE
Simon Systermans, Elisabeth Cobraiville, Séverine Camby, Christophe Meyer, Aurélien Louvrier, Suen An Lie, Thomas Schouman, Sergio Siciliano, Olivier Beckers, Vinciane Poulet, Nicolas Ullmann, Grégory Nolens, Vincent Biscaccianti, Jean-Luc Nizet, Jean-Yves Hascoët, Yves Gilon, Luciano Vidal
The study aimed to evaluate and discuss the use of an innovative PSI made of porous hydroxyapatite, with interconnected porosity promoting osteointegration, called MyBone Custom® implant (MBCI), for maxillofacial bone reconstruction. A multicentric cohort of 13 patients underwent maxillofacial bone reconstruction surgery using MBCIs for various applications, from genioplasty to orbital floor reconstruction, including zygomatic and mandibular bone reconstruction, both for segmental defects and bone augmentation...
February 28, 2024: Journal of Cranio-maxillo-facial Surgery
https://read.qxmd.com/read/38456490/peptide-based-self-assembled-monolayers-sams-what-peptides-can-do-for-sams-and-vice-versa
#23
REVIEW
Carlos Redondo-Gómez, Paula Parreira, M Cristina L Martins, Helena S Azevedo
Self-assembled monolayers (SAMs) represent highly ordered molecular materials with versatile biochemical features and multidisciplinary applications. Research on SAMs has made much progress since the early begginings of Au substrates and alkanethiols, and numerous examples of peptide-displaying SAMs can be found in the literature. Peptides, presenting increasing structural complexity, stimuli-responsiveness, and biological relevance, represent versatile functional components in SAMs-based platforms. This review examines the major findings and progress made on the use of peptide building blocks displayed as part of SAMs with specific functions, such as selective cell adhesion, migration and differentiation, biomolecular binding, advanced biosensing, molecular electronics, antimicrobial, osteointegrative and antifouling surfaces, among others...
March 8, 2024: Chemical Society Reviews
https://read.qxmd.com/read/38440454/comparative-evaluation-of-different-alveolar-ridge-width-measurement-techniques-in-dental-implant-treatment-planning-an-in-vivo-observational-non-interventional-study
#24
JOURNAL ARTICLE
Vivek Sunil Nair, Nishita Bhosale, Vikrant Sane, Rajesh Kshirsagar, Samir Joshi, Rucha Davalbhakta
In todays era dental implant has become the dependable therapeutic treatment for the replacement of missing teeth. The success of dental implants depends not only on osteointegration of the implant but also on the surrounding hard and soft tissue. Presurgical evaluation of alveolar ridge width and height is of paramount important for implant placement. There are several methods to evaluate the alveolar ridge width and height such as ridge mapping and CBCT. This study included 30 sites from 8 patients in the age ranging from 30 to 65 years...
February 2024: Indian Journal of Otolaryngology and Head and Neck Surgery
https://read.qxmd.com/read/38425992/inhibition-of-pten-promotes-osteointegration-of-titanium-implants-in-type-2-diabetes-by-enhancing-anti-inflammation-and-osteogenic-capacity-of-adipose-derived-stem-cells
#25
JOURNAL ARTICLE
Guanhua Zhang, Shuang Song, Zijun Chen, Xiangdong Liu, Jian Zheng, Yuxi Wang, Xutao Chen, Yingliang Song
Background: The low osteogenic differentiation potential and attenuated anti-inflammatory effect of adipose-derived stem cells (ADSCs) from animals with type 2 diabetes mellitus (T2DM) limits osseointegration of the implant. However, the underlying mechanisms are not fully understood. Methods: Western blotting and qRT-PCR analyses were performed to investigate the effects of PTEN on the osteogenic capacity of ADSCs of T2DM rats (TADSCs). We conducted animal experiments in T2DM-Sprague Dawley (SD) rats to evaluate the osteogenic capacity of modified TADSC sheets in vivo ...
2024: Frontiers in Bioengineering and Biotechnology
https://read.qxmd.com/read/38422666/enhancing-immune-modulation-and-bone-regeneration-on-titanium-implants-by-alleviating-the-hypoxic-microenvironment-and-releasing-bioactive-ions
#26
JOURNAL ARTICLE
Dongdong Zhang, Han Liu, Xiaodong Xue, Feihong Liu, Jun Wu, Feng Peng, Donghui Wang, Haobo Pan, Mei Li
Bone implantation inevitably causes damage to surrounding vasculature, resulting in a hypoxic microenvironment that hinders bone regeneration. Although titanium (Ti)-based devices are widely used as bone implants, their inherent bioinert surface leads to poor osteointegration. Herein, a strontium peroxide (SrO2 )-decorated Ti implant, Ti_P@SrO2 , was constructed through coating with poly-L-lactic acid (PLLA) to alleviate the hypoxic microenvironment and transform the bioinert surface of the implant into a bioactive surface...
February 17, 2024: Colloids and Surfaces. B, Biointerfaces
https://read.qxmd.com/read/38420709/free-flap-jaw-reconstruction-with-dental-implantation-a-single-institution-experience
#27
JOURNAL ARTICLE
Benjamin T Ostrander, Leo Meller, Matthew Harmon, Katya Archambault, Thanos Kristallis, Daniel Hammer, Ryan K Orosco
BACKGROUND: We sought to review our institution's experience with dental implant placement in free flap jaw reconstruction to determine factors impacting restoration of dental occlusion. METHODS: Exactly 48 patients underwent free flap jaw reconstruction with or without dental restoration from 2017 to 2022. Primary outcome was achievement of restored dental occlusion after jaw free flap reconstruction. RESULTS: A total of 48 patients with a mean age of 59...
February 29, 2024: Head & Neck
https://read.qxmd.com/read/38401481/honeycomb-inspired-zif-sealed-interface-enhances-osseointegration-via-anti-infection-and-osteoimmunomodulation
#28
JOURNAL ARTICLE
Jiale Dong, Wei Zhou, Xianli Hu, Jiaxiang Bai, Siming Zhang, Xianzuo Zhang, Lei Yu, Peng Yang, Lingtong Kong, Mingkai Liu, Xifu Shang, Zheng Su, Dechun Geng, Chen Zhu
Implant-associated infections (IAIs) pose a significant threat to orthopedic surgeries. Bacteria colonizing the surface of implants disrupt bone formation-related cells and interfere with the osteoimmune system, resulting in an impaired immune microenvironment and osteogenesis disorders. Inspired by nature, a zeolitic imidazolate framework (ZIF)-sealed smart drug delivery system on Ti substrates (ZSTG) was developed for the "natural-artificial dual-enzyme intervention (NADEI)" strategy to address these challenges...
February 21, 2024: Biomaterials
https://read.qxmd.com/read/38391895/femtosecond-laser-irradiation-to-zirconia-prior-to-calcium-phosphate-coating-enhances-osteointegration-of-zirconia-in-rabbits
#29
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/38376065/influence-of-offset-on-osseointegration-in-cementless-total-hip-arthroplasty-a-finite-element-study
#30
JOURNAL ARTICLE
Michel Meisterhans, Dimitris Dimitriou, Marie-Rosa Fasser, Armando Hoch, Lukas Jud, Patrick O Zingg
Early aseptic loosening is caused by deficient osteointegration of the femoral stem due to increased micromotions and represents a common mode of failure in uncemented total hip arthroplasty (THA). This study hypothesized that a higher femoral offset, a smaller stem size and obesity increase femoral micromotion, potentially resulting in early aseptic loosening. A finite element analysis was conducted based on computed tomography segmented model of four patients who received a THA with a triple-tapered straight stem (Size 1, 3, 6)...
February 20, 2024: Journal of Orthopaedic Research: Official Publication of the Orthopaedic Research Society
https://read.qxmd.com/read/38360291/tio2-nanotube-topography-enhances-osteogenesis-through-filamentous-actin-and-xb130-protein-mediated-mechanotransduction
#31
JOURNAL ARTICLE
Yongyun Chang, Keyu Kong, Zhicheng Tong, Hua Qiao, Minghao Jin, Xinru Wu, Zhengxiao Ouyang, Jingwei Zhang, Zanjing Zhai, Huiwu Li
TiO2 nanotube topography, as nanomechanical stimulation, can significantly promote osteogenesis and improve the osteointegration on the interface of implants and bone tissue. However, the underlying mechanism has not been fully elucidated. XB130 is a member of the actin filament-associated protein family and is involved in the regulation of cytoskeleton and tyrosine kinase-mediated signalling as an adaptor protein. Whether XB130 is involved in TiO2 nanotubes-induced osteogenic differentiation and how it functions in mechano-biochemical signalling transduction remain to be elucidated...
February 13, 2024: Acta Biomaterialia
https://read.qxmd.com/read/38323196/clinical-and-radiographic-outcomes-of-the-modified-mclaughlin-procedure-for-locked-posterior-dislocation-of-the-shoulder-a%C3%A2-systematic-review
#32
REVIEW
Alexander N Berk, Allison J Rao, Alexander A Hysong, Anna M Ifarraguerri, David P Trofa, Shadley C Schiffern, Patrick M Connor, Nady Hamid, Bryan M Saltzman
BACKGROUND: Multiple treatment options for locked posterior dislocation of the shoulder (LPDS) have been described, including the modified McLaughlin procedure. The purpose of this review, therefore, was to perform a systematic review of the literature to synthesize the available data reporting on the clinical and radiographic outcomes of patients undergoing the modified McLaughlin procedure for the treatment of LPDS. METHODS: A systematic review of the PubMed Central, MEDLINE, Embase, Scopus, Web of Science, and Cochrane Library databases from inception through January 2023 was performed...
February 2024: JSES Rev Rep Tech
https://read.qxmd.com/read/38317041/the-investigation-of-bone-implant-connection-and-new-bone-formation-in-fasting-and-high-fatty-diet-rats
#33
JOURNAL ARTICLE
M C Yavuz, R Guler, E C Ozcan, A Bozoglan, M Kirtay, C A Kaya, S Dundar
BACKGROUND: Hyperlipidemia caused by a high-fat diet (HFD) has many adverse effects on the cardiovascular system, including vascular problems. In addition, a HFD also has significant adverse effects on bone health. AIM: The aim of this study is to examine bone-implant osteointegration and new bone formation in peri-implant defects in fasting and high-fatty diet applied rats. MATERIALS AND METHODS: In this study, 28 female Sprague Dawley rats were used...
January 1, 2024: Nigerian Journal of Clinical Practice
https://read.qxmd.com/read/38314615/enhanced-osteogenic-and-antibacterial-properties-of-titanium-implant-surface-modified-with-zn-incorporated-nanowires-preclinical-in%C3%A2-vitro-and-in%C3%A2-vivo-investigations
#34
JOURNAL ARTICLE
Zhe Shen, Yan Xu, Xin-Na Qian, Yi-Heng Zhou, You Zhou, Jie-Yi Zhou, Yao Liu, Song-Mei Zhang, Jing Qiu
OBJECTIVE: This study aimed to synthesize zinc-incorporated nanowires structure modified titanium implant surface (Zn-NW-Ti) and explore its superior osteogenic and antibacterial properties in vitro and in vivo. MATERIALS AND METHODS: Zn-NW-Ti was synthesized via displacement reactions between zinc sulfate solutions and the titanium (Ti) surface, which was pretreated by hydrofluoric acid etching and hyperthermal alkalinization. The physicochemical properties of the Zn-NW-Ti surface were examined...
February 5, 2024: Clinical Oral Implants Research
https://read.qxmd.com/read/38312870/periosteum-augmented-soft-tissue-graft-for-anterior-cruciate-ligament-reconstruction
#35
JOURNAL ARTICLE
Tarun Desai, Surendra Babu S, Kaushik Y S, Mevin Mathew Nedumparampil, Akhshay John George, Padmanaban Sekaran, Anoop Pilar, Rajkumar S Amaravathi
Soft-tissue grafts are an option for anterior cruciate ligament reconstruction. One of the major drawbacks of soft-tissue grafts is the delay in the osteointegration and ligamentization of the implanted graft. Enveloping the ends of the graft with periosteum sleeves can hasten the osteointegration process and help in quicker rehabilitation of the patient. This article describes a simple and unique way to augment the soft-tissue graft with periosteum for anterior cruciate ligament reconstruction.
January 2024: Arthroscopy Techniques
https://read.qxmd.com/read/38308976/gaussian-random-field-based-characterization-and-reconstruction-of-cancellous-bone-microstructure-considering-the-constraint-of-correlation-structure
#36
JOURNAL ARTICLE
Lei He, Moxin Zhao, Jason Pui Yin Cheung, Teng Zhang, Xiaodan Ren
The macro scale physical properties of cancellous bone materials are governed by the microstructural features, which is of great significance for the multi-scale research of cancellous bone and the inverse design of bone-mimicking materials. Therefore, it is essential to characterize the natural cancellous bone samples, and reconstruct the microstructures with the biomimetic osteointegration and mechanical properties. In this research, a novel approach for the characterization and reconstruction of cancellous bone was proposed, based on the medical image analysis and anisotropic three-dimensional Gaussian random field (GRF)...
January 29, 2024: Journal of the Mechanical Behavior of Biomedical Materials
https://read.qxmd.com/read/38297240/calcium-phosphate-coating-enhances-osteointegration-of-melt-electrowritten-scaffold-by-regulating-macrophage-polarization
#37
JOURNAL ARTICLE
Yubo Shi, Weidong Tao, Wenjing Yang, Lei Wang, Zhennan Qiu, Xiaoli Qu, Jingyi Dang, Jiankang He, Hongbin Fan
The osteoimmune microenvironment induced by implants plays a significant role in bone regeneration. It is essential to efficiently and timely switch the macrophage phenotype from M1 to M2 for optimal bone healing. This study examined the impact of a calcium phosphate (CaP) coating on the physiochemical properties of highly ordered polycaprolactone (PCL) scaffolds fabricated using melt electrowritten (MEW). Additionally, it investigated the influence of these scaffolds on macrophage polarization and their immunomodulation on osteogenesis...
January 31, 2024: Journal of Nanobiotechnology
https://read.qxmd.com/read/38296795/3d-printed-personalized-lattice-implant-as-an-innovative-strategy-to-reconstruct-geographic-defects-in-load-bearing-bones
#38
JOURNAL ARTICLE
Zhuangzhuang Li, Minxun Lu, Yuqi Zhang, Jie Wang, Yitian Wang, Taojun Gong, Xuanhong He, Yi Luo, Yong Zhou, Li Min, Chongqi Tu
OBJECTIVE: Geographic defect reconstruction in load-bearing bones presents formidable challenges for orthopaedic surgeon. The use of 3D-printed personalized implants presents a compelling opportunity to address this issue. This study aims to design, manufacture, and evaluate 3D-printed personalized implants with irregular lattice porous structures for geographic defect reconstruction in load-bearing bones, focusing on feasibility, osseointegration, and patient outcomes. METHODS: This retrospective study involved seven patients who received 3D-printed personalized lattice implants for the reconstruction of geographic defects in load-bearing bones...
January 31, 2024: Orthopaedic Surgery
https://read.qxmd.com/read/38296142/tough-physically-crosslinked-poly-vinyl-alcohol-based-hydrogels-loaded-with-collagen-type-i-to-promote-bone-regeneration-in-vitro-and-in-vivo
#39
JOURNAL ARTICLE
Changxin Xiang, Zehua Wang, Qing Zhang, Zijian Guo, Xiaona Li, Weiyi Chen, Xiaochun Wei, Pengcui Li
Poly(vinyl alcohol) (PVA) hydrogels exhibit great potential as ideal biomaterials for tissue engineering, owing to their non-toxicity, high water content, and strong biocompatibility. However, limited mechanical strength and low bioactivity have constrained their application in bone tissue engineering. In this study, we have developed a tough PVA-based hydrogel using a facile physical crosslinking method, comprising of PVA, tannic acid (TA), and hydroxyapatite (HA). Systematic experiments were conducted to examine the physicochemical properties of PVA/HA/TA hydrogels, including their compositions, microstructures, and mechanical and rheological properties...
January 29, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38284510/characterization-of-atio-2-surfaces-functionalized-with-cap-p15-peptide
#40
JOURNAL ARTICLE
Guadalupe Ureiro-Cueto, Sandra E Rodil, Maricela Santana-Vázquez, Lia Hoz-Rodriguez, Higinio Arzate, Gonzalo Montoya-Ayala
Functionalization of Titanium implants using adequate organic molecules is a proposed method to accelerate the osteointegration process, which relates to topographical, chemical, mechanical, and physical features. This study aimed to assess the potential of a peptide derived from cementum attachment protein (CAP-p15) adsorbed onto aTiO2 surfaces to promote the deposition of calcium phosphate (CaP) minerals and its impact on the adhesion and viability of human periodontal ligament cells (hPDLCs). aTiO2 surfaces were synthesized by magnetron sputtering technique...
January 29, 2024: Journal of Biomedical Materials Research. Part A
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