keyword
https://read.qxmd.com/read/38641232/combining-anabolic-loading-and-raloxifene-improves-bone-quantity-and-some-quality-measures-in-a-mouse-model-of-osteogenesis-imperfecta
#21
JOURNAL ARTICLE
Amy Creecy, Dyann Segvich, Corinne Metzger, Rachel Kohler, Joseph M Wallace
Osteogenesis imperfecta (OI) increases fracture risk due to changes in bone quantity and quality caused by mutations in collagen and its processing proteins. Current therapeutics improve bone quantity, but do not treat the underlying quality deficiencies. Male and female G610C+/- mice, a murine model of OI, were treated with a combination of raloxifene and in vivo axial tibial compressive loading starting at 10 weeks of age and continuing for 6 weeks to improve bone quantity and quality. Bone geometry and mechanical properties were measured to determine whole bone and tissue-level material properties...
April 17, 2024: Bone
https://read.qxmd.com/read/38640877/high-strength-double-network-silk-fibroin-based-hydrogel-loaded-with-icariin-and-bmscs-to-inhibit-osteoclasts-and-promote-osteogenic-differentiation-to-enhance-bone-repair
#22
JOURNAL ARTICLE
Huiling Liu, Yang Jiao, T Forouzanfar, Gang Wu, Rui Guo, Haiyan Lin
Large bone defects cause significant clinical challenges due to the lack of optimal grafts for effective regeneration. The tissue engineering way that requires the combination of biomaterials scaffold, stem cells and proper bioactive factors is a prospective method for large bone repair. Here, we synthesized a three-arm host-guest supramolecule (HGSM) to covalently crosslinking with the naturally derived polymer methacrylated silk fibroin (SFMA). The combination of HGSM and SFMA can form a high strength double-crosslinked hydrogel HGSFMA, that serve as the hydrogel scaffold for bone marrow mesenchymal stem cells (BMSCs) growing...
April 12, 2024: Biomater Adv
https://read.qxmd.com/read/38639603/informed-inclusion-model-medical-student-wheelchair-user-in-an-obstetrics-and-gynecology-clerkship
#23
JOURNAL ARTICLE
Diane Brown-Young, Theresa A Papich, Stacie Jhaveri, Craig Nielsen, Marcy Pardee, Rylee Betchkal, Eboni Porter, Lisa Meeks
Students with physical disabilities are underrepresented in medicine, driven in part by ableist beliefs about the ability of individuals with disabilities to complete procedure-based or surgically oriented clerkships, including obstetrics and gynecology (Ob/Gyn). There is a dearth of literature on this topic; however, there is also a growing commitment to disability inclusion by medical and specialty training associations. Nevertheless, published case studies and accommodation protocols for medical student wheelchair users navigating an Ob/Gyn clerkship are absent in the literature...
April 19, 2024: Academic Medicine
https://read.qxmd.com/read/38639453/noninvasive-and-continuous-monitoring-of-on-chip-stem-cell-osteogenesis-using-a-reusable-electrochemical-immunobiosensor
#24
JOURNAL ARTICLE
Zahra Rezaei, Andrea Navarro Torres, David Ge, Ting Wang, Eloísa Carolina Méndez Terán, Stefany Elizabeth García Vera, Nicole Joy Bassous, Oscar Yael Perez Soria, Alan Eduardo Ávila Ramírez, Luis Mario Flores Campos, Diego Arnoldo Azuela Rosas, Shabir Hassan, Danial Khorsandi, Vadim Jucaud, Mohammad Asif Hussain, Abdulhameed Khateeb, Yu Shrike Zhang, HeaYeon Lee, Deok-Ho Kim, Ali Khademhosseini, Mehmet Remzi Dokmeci, Su Ryon Shin
Noninvasive monitoring of biofabricated tissues during the biomanufacturing process is needed to obtain reproducible, healthy, and functional tissues. Measuring the levels of biomarkers secreted from tissues is a promising strategy to understand the status of tissues during biofabrication. Continuous and real-time information from cultivated tissues enables users to achieve scalable manufacturing. Label-free biosensors are promising candidates for detecting cell secretomes since they can be noninvasive and do not require labor-intensive processes such as cell lysing...
April 19, 2024: ACS Sensors
https://read.qxmd.com/read/38639219/novel-peptide-derived-from-gadus-morhua-stimulates-osteoblastic-differentiation-and-mineralization-through-wnt-%C3%AE-catenin-and-bmp-signaling-pathways
#25
JOURNAL ARTICLE
Meilian Yang, Zengli Gao, Shuzhen Cheng, Zhenyu Wang, Hesham Ei-Seedi, Ming Du
Marine biodiversity offers a wide array of active ingredient resources. Gadus morhua peptides (GMPs) showed excellent osteoprotective effects in ovariectomized mice. However, the potential osteogenesis mechanisms of key osteogenic peptides in GMP were seldom reported. In this study, a novel osteogenic peptide (GETNPADSKPGSIR, P-GM-2) was screened from GMP. P-GM-2 has a high stability coefficient and a strong interaction with epidermal growth factor receptor. Cell culture experiments showed that P-GM-2 stimulated the expression of osteogenic differentiation markers to promote osteoblast proliferation, differentiation, and mineralization...
April 19, 2024: Journal of Agricultural and Food Chemistry
https://read.qxmd.com/read/38639047/advances-in-magnetoelectric-composites-for-promoting-bone-regeneration-a-review
#26
REVIEW
Chengyu Li, Andi Zhu, Liqing Yang, Xinyi Wang, Zehong Guo
Repair of large bone defects is one of the clinical problems that have not yet been fully solved. The dynamic balance of bone tissue is regulated by many biological, chemical and physical environmental factors. Simulating the microenvironment of bone tissue in the physiological state through biomimetic materials is an important development direction of tissue engineering in recent years. With the deepening of research, it has been found that when bone tissue is damaged, its surrounding magnetoelectric microenvironment is subsequently destroyed, and providing a magnetoelectric microenvironment in the biomimetic state will be beneficial to promote bone repair...
April 19, 2024: Journal of Materials Chemistry. B, Materials for Biology and Medicine
https://read.qxmd.com/read/38638704/preliminary-study-of-the-homeostatic-regulation-of-osseointegration-by-nanotube-topology
#27
JOURNAL ARTICLE
Tao Chen, MingXing Ren, YuZhou Li, Zheng Jing, XinXin Xu, FengYi Liu, DingQiang Mo, WenXue Zhang, Jie Zeng, He Zhang, Ping Ji, Sheng Yang
The ideal implant surface plays a substantial role in maintaining bone homeostasis by simultaneously promoting osteoblast differentiation and limiting overactive osteoclast activity to a certain extent, which leads to satisfactory dynamic osseointegration. However, the rational search for implant materials with an ideal surface structure is challenging and a hot research topic in the field of tissue engineering. In this study, we constructed titanium dioxide titanium nanotubes (TNTs) by anodic oxidation and found that this structure significantly promoted osteoblast differentiation and inhibited osteoclast formation and function while simultaneously inhibiting the total protein levels of proline-rich tyrosine kinase 2 (PYK2) and focal adhesion kinase (FAK)...
June 2024: Materials today. Bio
https://read.qxmd.com/read/38637824/correction-the-impact-of-osteogenesis-imperfecta-severity-on-oral-health-related-quality-of-life-in-spain-a-cross-sectional-study
#28
Amira Ahmed Elfituri, Manuel Joaquín De Nova, Mohammadamin Najirad
No abstract text is available yet for this article.
April 18, 2024: Orphanet Journal of Rare Diseases
https://read.qxmd.com/read/38637290/construction-of-magnesium-phosphate-chemical-conversion-coatings-with-different-microstructures-on-titanium-to-enhance-osteogenesis-and-angiogenesis
#29
JOURNAL ARTICLE
Yi-Bo Li, Huan-Qing Zhang, Yu-Peng Lu, Xiao-Juan Yang, Guan-Duo Wang, Yu-Ying Wang, Kang-le Tang, Sheng-Yun Huang, Gui-Yong Xiao
Titanium (Ti) and its alloys are widely used as hard tissue substitutes in dentistry and orthopedics, but their low bioactivity leads to undesirable osseointegration defects in the early osteogenic phase. Surface modification is an important approach to overcome these problems. In the present study, novel magnesium phosphate (MgP) coatings with controllable structures were fabricated on the surface of Ti using the phosphate chemical conversion (PCC) method. The effects of the microstructure on the physicochemical and biological properties of the coatings on Ti were researched...
April 18, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38636998/-senolytic-effects-on-dental-pulp-stem-cell-s-proliferation-and-differentiation-during-long-term-expansion
#30
JOURNAL ARTICLE
G Y Wang, L Liao, W D Tian
Objective: To investigate the impact of intermittent senescent cell clearance on the proliferation and differentiation of dental pulp stem cells (DPSC) in long-term, large-scale expansion, and to explore strategies for maintaining the youthful state of DPSC in vitro. Methods: Human-derived dental pulp stem cells were isolated from healthy permanent teeth extracted for orthodontic or impeding eruption reasons, provided by the Department of Oral and Maxillofacial Surgery at West China Hospital of Stomatology, Sichuan University...
April 18, 2024: Zhonghua Kou Qiang Yi Xue za Zhi, Zhonghua Kouqiang Yixue Zazhi, Chinese Journal of Stomatology
https://read.qxmd.com/read/38636434/the-novel-small-molecule-e0924g-dually-regulates-bone-formation-and-bone-resorption-through-activating-the-ppar%C3%AE-signaling-pathway-to-prevent-bone-loss-in-ovariectomized-rats-and-senile-mice
#31
JOURNAL ARTICLE
Yining Li, Chao Liu, Xiaowan Han, Ren Sheng, Li Bao, Lijuan Lei, Yexiang Wu, Quanjie Li, Yuyan Zhang, Jing Zhang, Weizhi Wang, Yuhao Zhang, Shunwang Li, Chenyin Wang, Xinwei Wei, Jingrui Wang, Zonggen Peng, Yanni Xu, Shuyi Si
Osteoporosis is particularly prevalent among postmenopausal women and the elderly. In the present study, we investigated the effect of the novel small molecule E0924G (N-(4-methoxy-pyridine-2-yl)-5-methylfuran-2-formamide) on osteoporosis. E0924G significantly increased the protein expression levels of osteoprotegerin (OPG) and runt-related transcription factor 2 (RUNX2), and thus significantly promoted osteogenesis in MC3T3-E1 cells. E0924G also significantly decreased osteoclast differentiation and inhibited bone resorption and F-actin ring formation in receptor activator of NF-κB ligand (RANKL)-induced osteoclasts from RAW264...
April 11, 2024: Bioorganic Chemistry
https://read.qxmd.com/read/38634615/calcified-cartilage-guided-identification-of-osteogenic-molecules-and-geometries
#32
JOURNAL ARTICLE
Katsuhiro Kawaai, Yukiko Kuroda, Koichi Matsuo
Calcified cartilage digested by chondroclasts provides an excellent scaffold to initiate bone formation. We analyzed bioactive proteins and microarchitecture of calcified cartilage either separately or in combination and evaluated biomimetic osteogenic culture conditions of surface-coated micropatterning. To do so, we prepared a crude extract from porcine femoral growth plates, which enhanced in vitro mineralization when coated on flat-bottom culture dishes, and identified four candidate proteins by fractionation and mass spectrometry...
April 18, 2024: ACS Biomaterials Science & Engineering
https://read.qxmd.com/read/38633867/trilayered-biomimetic-hydrogel-scaffolds-with-dual-differential-microenvironment-for-articular-osteochondral-defect-repair
#33
JOURNAL ARTICLE
Hongying Chen, Jinyi Huang, Xiaomeng Li, Weiwei Zhao, Yujie Hua, Zhenfeng Song, Xianwei Wang, Zhikun Guo, Guangdong Zhou, Wenjie Ren, Yongkun Sun
Commonly, articular osteochondral tissue exists significant differences in physiological architecture, mechanical function, and biological microenvironment. However, the development of biomimetic scaffolds incorporating upper cartilage, middle tidemark-like, and lower subchondral bone layers for precise articular osteochondral repair remains elusive. This study proposed here a novel strategy to construct the trilayered biomimetic hydrogel scaffolds with dual-differential microenvironment of both mechanical and biological factors...
June 2024: Materials today. Bio
https://read.qxmd.com/read/38633665/zinc-energized-dynamic-hydrogel-accelerates-bone-regeneration-via-potentiating-the-coupling-of-angiogenesis-and-osteogenesis
#34
JOURNAL ARTICLE
Nanning Lv, Zhangzhe Zhou, Lihui Hong, Hongye Li, Mingming Liu, Zhonglai Qian
Insufficient initial vascularization plays a pivotal role in the ineffectiveness of bone biomaterials for treating bone defects. Consequently, enhancing the angiogenic properties of bone repair biomaterials holds immense importance in augmenting the efficacy of bone regeneration. In this context, we have successfully engineered a composite hydrogel capable of promoting vascularization in the process of bone regeneration. To achieve this, the researchers first prepared an aminated bioactive glass containing zinc ions (AZnBg), and hyaluronic acid contains aldehyde groups (HA-CHO)...
2024: Frontiers in Bioengineering and Biotechnology
https://read.qxmd.com/read/38633663/inhibiting-the-isolated-island-effect-in-simulated-bone-defect-repair-using-a-hollow-structural-scaffold-design
#35
JOURNAL ARTICLE
Xiao Liu, Jianpeng Gao, Jianheng Liu, Licheng Zhang, Ming Li
The treatment of bone tissue defects remains a complicated clinical challenge. Recently, the bone tissue engineering (BTE) technology has become an important therapeutic approach for bone defect repair. Researchers have improved the scaffolds, cells, and bioactive factors used in BTE through various existing bone repair material preparation strategies. However, due to insufficient vascularization, inadequate degradation, and fibrous wrapping, most BTE scaffolds impede new bone ingrowth and the reconstruction of grid-like connections in the middle and late stages of bone repair...
2024: Frontiers in Bioengineering and Biotechnology
https://read.qxmd.com/read/38633414/absorbable-calcium-and-phosphorus-bioactive-membranes-promote-bone-marrow-mesenchymal-stem-cells-osteogenic-differentiation-for-bone-regeneration
#36
JOURNAL ARTICLE
Lei Huang, Zhuorun Song, Jiayi Wang, Mengxuan Bian, Jiapeng Zou, Yanpei Zou, Jun Ge, Shunyi Lu
Large segmental bone defects are commonly operated with autologous bone grafting, which has limited bone sources and poses additional surgical risks. In this study, we fabricated poly(lactide- co -glycolic acid) (PLGA)/β-tricalcium phosphate (β-TCP) composite membranes by electrostatic spinning and further promoted osteogenesis by regulating the release of β-TCP in the hope of replacing autologous bone grafts in the clinical practice. The addition of β-TCP improved the mechanical strength of PLGA by 2...
2024: Open Life Sciences
https://read.qxmd.com/read/38633381/aucubin-promotes-osteogenic-differentiation-and-facilitates-bone-formation-through-the-lncrna-h19-driven-wnt-%C3%AE-catenin-signaling-regulatory-axis
#37
JOURNAL ARTICLE
Yong-Xin Mai, Zhi-Peng Li, Feng-Xiang Pang, Shu-Ting Zhou, Nan Li, Yu-Yan Wang, Jin-Fang Zhang
OBJECTIVES: Traditional Chinese medicine Cortex Eucommiae has been used to treat bone fracture for hundreds of years, which exerts a significant improvement in fracture healing. Aucubin, a derivative isolated from Cortex Eucommiae , has been demonstrated to possess anti-inflammatory, immunoregulatory, and antioxidative potential. In the present study, our aim was to explore its function in bone regeneration and elucidate the underlying mechanism. MATERIALS AND METHODS: The effects of Aucubin on osteoblast and osteoclast were examined in mouse bone marrow-derived mesenchymal stem cells (BM-MSCs) and RAW 264...
2024: Stem Cells International
https://read.qxmd.com/read/38633042/silver-deposited-titanium-as-a-prophylactic-nano-coat-for-peri-implantitis
#38
JOURNAL ARTICLE
Vaibhav Madiwal, Jyutika Rajwade
Dental implant failures caused by bacterial infections are a significant concern for dental implantologists. We modified the titanium surface by depositing silver (Ti-Ag) using direct current (DC) sputtering and confirmed the formation of a 'nano coat' by X-ray photoelectron spectroscopy (XPS), surface profilometry and energy dispersive spectroscopy (EDS). Scanning electron microscopy (SEM) and atomic force microscopy (AFM) revealed the deposition of a uniform nano Ag thin film. A gradual increase in thickness was observed, and the film thickness (530 nm) at 5 min deposition time (Ti-Ag5 ) resulted in a reduction of the water contact angle (WCA, 15%) and an increase in surface energy (SFE, 22%) in comparison to the uncoated Ti surface...
April 16, 2024: Nanoscale advances
https://read.qxmd.com/read/38632925/developing-a-selection-framework-for-zinc-ion-based-biomaterial-design-guided-by-the-biosafety-assessment-of-zif-8-and-zno
#39
JOURNAL ARTICLE
Yilin Mao, Liang Wang, Zhengyi Xu, Wenjia Xie, Yuting Wang, Wei Qiao, Zhou Zhu, Jian Wang
In recent years, nanomaterials have gained widespread use in the biomedical field, with ZIF-8 and ZnO emerging as promising candidates due to their remarkable performance in osteogenesis, angiogenesis, and antimicrobial therapy. However, before advancing these nanomaterials for clinical applications, it is imperative to evaluate their biocompatibility. In particular, comparing nanomaterials with similar biomedical functions is crucial for identifying the most suitable nanomaterials for further development and market entry...
April 17, 2024: ACS Biomaterials Science & Engineering
https://read.qxmd.com/read/38631220/angiogenesis-related-immune-response-may-be-the-prelude-to-the-syndesmophyte-formation-in-ankylosing-spondylitis
#40
JOURNAL ARTICLE
Chunmei Cai, Yuye Huang, Liyan Li, Kai Kei Miu, Zhangting Wang, Yujie Deng, Yanzhen Cai, Jinxiu Li, Liang Wu, Hepeng Zhu, Yang Gao, Jun Chen, Wende Xiao, Li Lu
BACKGROUND: Ankylosing spondylitis (AS) is a chronic autoimmune arthritis that mainly affects spine joints. To date, the pathogenesis of AS remains unclear, although immune cells and innate immune response cytokines have been suggested to be crucial players. METHODS: By adopting a single-cell RNA sequencing approach in the AS cynomolgus model, we profiled and characterized PBMC proportions along disease progression. RESULTS: Here, our primary focus was on the activation of an immune cascade-initiating lymphocyte subtype known as CD4+ CXCR5+ T follicular helper (Tfh) cells...
April 16, 2024: International Immunopharmacology
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