keyword
https://read.qxmd.com/read/38581425/application-of-artificial-intelligence-in-tissue-engineering
#21
JOURNAL ARTICLE
Reza Bagherpour, Ghasem Bagherpour, Parvin Mohamadi
Tissue engineering, a crucial approach in medical research and clinical applications, aims to regenerate damaged organs. Combining stem cells, biochemical factors, and biomaterials, it encounters challenges in designing complex 3D structures. Artificial intelligence (AI) enhances tissue engineering through computational modeling, biomaterial design, cell culture optimization, and personalized medicine. This review explores AI applications in organ tissue engineering (bone, heart, nerve, skin, cartilage), employing various machine learning (ML) algorithms for data analysis, prediction, and optimization...
April 6, 2024: Tissue Engineering. Part B, Reviews
https://read.qxmd.com/read/38581019/mesenchymal-stromal-cell-chondrogenesis-under-alk1-2-3-specific-bmp-inhibition-a-revision-of-the-prohypertrophic-signalling-network-concept
#22
JOURNAL ARTICLE
Solvig Diederichs, Simon I Dreher, Sarah Anna Nüesch, Sven Schmidt, Christian Merle, Wiltrud Richter
BACKGROUND: In vitro chondrogenesis of mesenchymal stromal cells (MSCs) driven by the essential chondro-inducer transforming growth factor (TGF)-β is instable and yields undesired hypertrophic cartilage predisposed to bone formation in vivo. TGF-β can non-canonically activate bone morphogenetic protein-associated ALK1/2/3 receptors. These have been accused of driving hypertrophic MSC misdifferentiation, but data remained conflicting. We here tested the antihypertrophic capacity of two highly specific ALK1/2/3 inhibitors - compound A (CompA) and LDN-212854 (LDN21) - in order to reveal potential prohypertrophic contributions of these BMP/non-canonical TGF-β receptors during MSC in vitro chondrogenesis...
April 5, 2024: Stem Cell Research & Therapy
https://read.qxmd.com/read/38569492/wet-3d-printing-of-biodegradable-porous-scaffolds-to-enable-room-temperature-deposition-modeling-of-polymeric-solutions-for-regeneration-of-articular-cartilage
#23
JOURNAL ARTICLE
Xiaoye Yu, Peng Wang, Jingming Gao, Ye Fu, Qunsong Wang, Jun Chen, Shiyi Chen, Jiandong Ding
Tissue engineering has emerged as an advanced strategy to regenerate various tissues using different raw materials, and thus it is desired to develop more approaches to fabricate tissue engineering scaffolds to fit specific yet very useful raw materials such as biodegradable aliphatic polyester like poly(lactide-co-glycolide) (PLGA). Herein, a technique of "wet 3D printing" was developed based on a pneumatic extrusion 3D printer after we introduced a solidification bath into a 3D printing system to fabricate porous scaffolds...
April 3, 2024: Biofabrication
https://read.qxmd.com/read/38567084/natural-based-hydrogels-promote-chondrogenic-differentiation-of-human-mesenchymal-stem-cells
#24
JOURNAL ARTICLE
Tina Zahedi Tehrani, Shiva Irani, Abdolreza Ardeshirylajimi, Ehsan Seyedjafari
Background: The cartilage tissue lacks blood vessels, which is composed of chondrocytes and ECM. Due to this vessel-less structure, it is difficult to repair cartilage tissue damages. One of the new methods to repair cartilage damage is to use tissue engineering. In the present study, it was attempted to simulate a three-dimensional environment similar to the natural ECM of cartilage tissue by using hydrogels made of natural materials, including Chitosan and different ratios of Alginate. Material and methods: Chitosan, alginate and Chitosan/Alginate hydrogels were fabricated...
2024: Frontiers in Bioengineering and Biotechnology
https://read.qxmd.com/read/38563479/induced-pluripotent-stem-cells-in-cartilage-tissue-engineering-a-literature-review
#25
JOURNAL ARTICLE
Amani Yousef Owaidah
UNLABELLED: Osteoarthritis (OA) is a long-term, persistent joint disorder characterized by bone and cartilage degradation, resulting in tightness, pain, and restricted movement. Current attempts in cartilage regeneration are cell-based therapies using stem cells. Multipotent stem cells, such as mesenchymal stem cells (MSCs), and pluripotent stem cells, such as embryonic stem cells (ESCs), have been used to regenerate cartilage. However, since the discovery of human induced pluripotent stem cells (hiPSCs) in 2007, it was seen as a potential source for regenerative chondrogenic therapy as it overcomes the ethical issues surrounding the use of  ESCs and the immunological and differentiation limitations of MSCs...
April 2, 2024: Bioscience Reports
https://read.qxmd.com/read/38562117/a-hybrid-scaffold-induces-chondrogenic-differentiation-and-enhances-in-vivo-cartilage-regeneration
#26
JOURNAL ARTICLE
Jiaming Zhao, Zexing Yan, Yufei Ding, Yike Dai, Ziyang Feng, Zhiyao Li, Lifeng Ma, Naicheng Diao, Ai Guo, Heyong Yin
Extensively researched tissue engineering strategies involve incorporating cells into suitable biomaterials, offering promising alternatives to boost tissue repair. In this study, a hybrid scaffold Gel-DCM which integrated a photoreactive gelatin-hyaluronic acid hydrogel (Gel) with an oriented porous decellularized cartilage matrix (DCM) was designed for facilitating chondrogenic differentiation and cartilage repair. The Gel-DCM exhibited excellent biocompatibility in vitro, promoting favorable survival and growth of human adipose-derived stem cells (hADSCs) and articular chondrocytes (hACs)...
April 2, 2024: Tissue Engineering. Part A
https://read.qxmd.com/read/38561728/specific-lipid-magnetic-sphere-sorted-cd146-positive-bone-marrow-mesenchymal-stem-cells-can-better-promote-articular-cartilage-damage-repair
#27
JOURNAL ARTICLE
Hanru Ren, Lele Zhang, Xu Zhang, Chengqing Yi, Lianghao Wu
BACKGROUND: The characteristics and therapeutic potential of subtypes of bone marrow mesenchymal stem cells (BMSCs) are largely unknown. Also, the application of subpopulations of BMSCs in cartilage regeneration remains poorly characterized. The aim of this study was to explore the regenerative capacity of CD146-positive subpopulations of BMSCs for repairing cartilage defects. METHODS: CD146-positive BMSCs (CD146 + BMSCs) were sorted by self-developed CD146-specific lipid magnetic spheres (CD146-LMS)...
April 1, 2024: BMC Musculoskeletal Disorders
https://read.qxmd.com/read/38561335/comparison-studies-identify-mesenchymal-stromal-cells-with-potent-regenerative-activity-in-osteoarthritis-treatment
#28
JOURNAL ARTICLE
Hongshang Chu, Shaoyang Zhang, Zhenlin Zhang, Hua Yue, Huijuan Liu, Baojie Li, Feng Yin
Osteoarthritis affects 15% of people over 65 years of age. It is characterized by articular cartilage degradation and inflammation, leading to joint pain and disability. Osteoarthritis is incurable and the patients may eventually need joint replacement. An emerging treatment is mesenchymal stromal cells (MSCs), with over two hundred clinical trials being registered. However, the outcomes of these trials have fallen short of the expectation, due to heterogeneity of MSCs and uncertain mechanisms of action. It is generally believed that MSCs exert their function mainly by secreting immunomodulatory and trophic factors...
April 1, 2024: NPJ Regenerative Medicine
https://read.qxmd.com/read/38561072/bioengineering-autologous-cartilage-grafts-for-functional-posterior-lamellar-eyelid-reconstruction-a-preliminary-study-in-rabbits
#29
JOURNAL ARTICLE
Yuxin Yan, Qiumei Ji, Jing Yang, Xiya Yin, Shengnan Liu, Pavel A Karalkin, Igor V Reshetov, Dong Han, Qingfeng Li, Ru-Lin Huang
The reconstruction of posterior lamellar eyelid defects remains a significant challenge in clinical practice due to anatomical complexity, specialized function, and aesthetic concerns. The ideal substitute for the posterior lamellar should replicate the native tarsoconjunctival tissue, providing both mechanical support for the eyelids and a smooth surface for the globe after implantation. In this study, we present an innovative approach utilizing tissue-engineered cartilage (TEC) grafts generated from rabbit auricular chondrocytes and a commercialized type I collagen sponge to reconstruct critical-sized posterior lamellar defects in rabbits...
March 30, 2024: Acta Biomaterialia
https://read.qxmd.com/read/38559900/engineering-a-functional-acl-reconstruction-graft-containing-a-triphasic-enthesis-like-structure-in-bone-tunnel-for-the-enhancement-of-graft-to-bone-integration
#30
JOURNAL ARTICLE
Qiang Shi, Yang Chen, Yan Xu, Can Chen, Hongbin Lu
BACKGROUND: Anterior cruciate ligament (ACL) rupture is a common sports injury, which causes knee instability and abnormal joint kinematics. The current ACL graft was single-phasic, and not convenient for the formation of enthesis-like tissue in the bone tunnel, resulting in poor integration of graft-to-bone. METHODS: A band-shaped acellular tendon (BAT) was prepared as the core component of the ACL reconstruction graft at first, while sleeve-shaped acellular cartilage (SAC) or sleeve-shaped acellular bone (SAB) was fabricated using a vacuum aspiration system (VAS)-based decellularization protocol...
March 2024: Journal of Orthopaedic Translation
https://read.qxmd.com/read/38559899/enhanced-articular-cartilage-regeneration-using-costal-chondrocyte-derived-scaffold-free-tissue-engineered-constructs-with-ascorbic-acid-treatment
#31
JOURNAL ARTICLE
Kaiwen Zheng, Yiyang Ma, Cheng Chiu, Mengxin Xue, Changqing Zhang, Dajiang Du
BACKGROUND: Cartilage tissue engineering faces challenges related to the use of scaffolds and limited seed cells. This study aims to propose a cost-effective and straightforward approach using costal chondrocytes (CCs) as an alternative cell source to overcome these challenges, eliminating the need for special culture equipment or scaffolds. METHODS: CCs were cultured at a high cell density with and without ascorbic acid treatment, serving as the experimental and control groups, respectively...
March 2024: Journal of Orthopaedic Translation
https://read.qxmd.com/read/38558791/orbital-shaking-conditions-augment-human-nasoseptal-cartilage-formation-in-3d-culture
#32
JOURNAL ARTICLE
Thomas Harry Jovic, Feihu Zhao, Henry Jia, Shareen Heather Doak, Iain Stuart Whitaker
Introduction: This study aimed to determine whether a dynamic orbital shaking culture system could enhance the cartilage production and viability of bioengineered nasoseptal cartilage. Methods: Human nasal chondrocytes were seeded onto nanocellulose-alginate biomaterials and cultured in static or dynamic conditions for 14 days. Quantitative polymerase chain reaction for chondrogenic gene expression (type 2 collagen, aggrecan and SOX9 ) was performed, demonstrating a transient rise in SOX9 expression at 1 and 7 days of culture, followed by a rise at 7 and 14 days in Aggrecan (184...
2024: Frontiers in Bioengineering and Biotechnology
https://read.qxmd.com/read/38556223/collagen-short-nanofiber-embedded-chondroitin-sulfate-hyaluronic-acid-nanocomposite-a-cartilage-mimicking-in-situ-forming-hydrogel-with-fine-tuned-properties
#33
JOURNAL ARTICLE
Ayoob Karimizade, Elham Hasanzadeh, Mozhgan Abasi, Seyed Ehsan Enderami, Esmaeil Mirzaei, Nasim Annabi, Amir Mellati
In situ-forming hydrogels that possess the ability to be injected in a less invasive manner and mimic the biochemical composition and microarchitecture of the native cartilage extracellular matrix are desired for cartilage tissue engineering. Besides, gelation time and stiffness of the hydrogel are two interdependent factors that affect cells' distribution and fate and hence need to be optimized. This study presented a bioinspired in situ-forming hydrogel composite of hyaluronic acid (HA), chondroitin sulfate (CS), and collagen short nanofiber (CSNF)...
March 29, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38554890/injectable-microspheres-adhering-to-the-cartilage-matrix-promote-rapid-reconstruction-of-partial-thickness-cartilage-defects
#34
JOURNAL ARTICLE
Xiaoyu Zhang, Lang Bai, Jing Zhou, Hua Gao, Qi Chen, Wenguo Cui, Xing Yang, Yuefeng Hao
An effective treatment for the irregular partial-thickness cartilage defect in the early stages of osteoarthritis (OA) is lacking. Cartilage tissue engineering is effective for treating full-thickness cartilage defects with limited area. In this study, we designed an injectable multifunctional poly(lactic-co-glycolic acid) (PLGA) microsphere to repair partial-thickness cartilage defects. The microsphere was grafted with an E7 peptide after loading the microsphere with kartogenin (KGN) and modifying the outer layer through dopamine self-polymerization...
March 28, 2024: Acta Biomaterialia
https://read.qxmd.com/read/38553201/recent-advances-on-biomedical-applications-of-gellan-gum-a-review
#35
REVIEW
Farnaz Lalebeigi, Amirmohamad Alimohamadi, Shahin Afarin, Hooman Aghamirza Moghim Aliabadi, Mohammad Mahdavi, Fatemeh Farahbakhshpour, Neginsadat Hashemiaval, Kimia Kalantari Khandani, Reza Eivazzadeh-Keihan, Ali Maleki
Gellan gum (GG) has attracted considerable attention as a versatile biopolymer with numerous potential biological applications, especially in the fields of tissue engineering, wound healing, and cargo delivery. Due to its distinctive characteristics like biocompatibility, biodegradability, nontoxicity, and gel-forming ability, GG is well-suited for these applications. This review focuses on recent research on GG-based hydrogels and biocomposites and their biomedical applications. It discusses the incorporation of GG into hydrogels for controlled drug release, its role in promoting wound healing processes, and its potential in tissue engineering for various tissues including bone, retina, cartilage, vascular, adipose, and cardiac tissue...
June 15, 2024: Carbohydrate Polymers
https://read.qxmd.com/read/38548296/an-encapsulation-free-and-hierarchical-porous-triboelectric-scaffold-with-dynamic-hydrophilicity-for-efficient-cartilage-regeneration
#36
JOURNAL ARTICLE
Bin Luo, Sinan Wang, Xingqi Song, Shuo Chen, Qiaoyu Qi, Wenyi Chen, Xiaoyuan Deng, Yufeng Ni, Chengzhen Chu, Guangdong Zhou, Xiaohong Qin, Dong Lei, Zhengwei You
Tissue engineering and electrotherapy are two promising methods to promote tissue repair. However, their integration remains an underexplored area, because their requirements on devices are usually distinct. Triboelectric nanogenerators (TENGs) have shown great potential to develop self-powered devices. However, due to their susceptibility to moisture, TENGs have to be encapsulated in vivo. Therefore, existing TENGs cannot be employed as tissue engineering scaffolds, which require direct interaction with surrounding cells...
March 28, 2024: Advanced Materials
https://read.qxmd.com/read/38545904/chondrocyte-targeted-delivery-system-of-sortase-a-engineered-extracellular-vesicles-silencing-mmp13-for-osteoarthritis-therapy
#37
JOURNAL ARTICLE
Wenjing Yan, Ying Li, Shuqian Xie, W Andy, Jing Hu, Haohan Liu, Guiyuan Zhang, Fengying Liu, Yamei Nie, Xue Chen, Xing Zhang, Yufeng Liu, Dong Wei, Changyan Ma, Hao Zhang, Hongtao Xu, Shizhi Wang
Targeted drug delivery and the reduction of off-target effects are crucial for the promising clinical application of nucleic acid drugs. To address this challenge, we developed a new approach for treating osteoarthritis (OA) that accurately delivers antisense oligonucleotides (ASO) targeting matrix metalloproteinase-13 (ASO-MMP13) to chondrocytes. Small extracellular vesicles (exos) were ligated with chondrocyte affinity peptide (CAP) using Sortase A and subsequently incubated with cholesterol-modified ASO-MMP13 to construct a chondrocyte-targeted drug delivery exo (CAP-exoASO)...
March 28, 2024: Advanced Healthcare Materials
https://read.qxmd.com/read/38540278/high-hopes-for-the-biofabrication-of-articular-cartilage-what-lies-beyond-the-horizon-of-tissue-engineering-and-3d-bioprinting
#38
REVIEW
Yordan Sbirkov, Murad Redzheb, Nico Forraz, Colin McGuckin, Victoria Sarafian
Technologies and biomaterials for 3D bioprinting have been developing extremely quickly in the past decade as they hold great potential in tissue engineering. This, together with the possibility to differentiate stem cells of different origin into any cell type, raises the hopes in regenerative medicine once again after the initial breakthrough with stem cells in the 1980s. Nevertheless, three decades of 3D bioprinting experiments have shown that the production of functional tissues would take a longer time than anticipated...
March 15, 2024: Biomedicines
https://read.qxmd.com/read/38540155/equine-models-of-temporomandibular-joint-osteoarthritis-a-review-of-feasibility-biomarkers-and-molecular-signaling
#39
REVIEW
Tomasz Jasiński, Bernard Turek, Michał Kaczorowski, Walter Brehm, Katarzyna Skierbiszewska, Joanna Bonecka, Małgorzata Domino
Osteoarthritis (OA) of the temporomandibular joint (TMJ) occurs spontaneously in humans and various animal species, including horses. In humans, obtaining tissue samples is challenging and clinical symptoms appear late in the disease progression. Therefore, genetically modified, induced, and naturally occurring animal models play a crucial role in understanding the pathogenesis and evaluating potential therapeutic interventions for TMJ OA. Among the naturally occurring models, the equine TMJ OA model is characterized by slow, age-related progression, a wide range of clinical examinations, and imaging modalities that can be performed on horses, as well as easy tissue and synovial fluid collection...
February 28, 2024: Biomedicines
https://read.qxmd.com/read/38534854/review-of-spider-silk-applications-in-biomedical-and-tissue-engineering
#40
REVIEW
Marija Branković, Fatima Zivic, Nenad Grujovic, Ivan Stojadinovic, Strahinja Milenkovic, Nikola Kotorcevic
This review will present the latest research related to the production and application of spider silk and silk-based materials in reconstructive and regenerative medicine and tissue engineering, with a focus on musculoskeletal tissues, and including skin regeneration and tissue repair of bone and cartilage, ligaments, muscle tissue, peripheral nerves, and artificial blood vessels. Natural spider silk synthesis is reviewed, and the further recombinant production of spider silk proteins. Research insights into possible spider silk structures, like fibers (1D), coatings (2D), and 3D constructs, including porous structures, hydrogels, and organ-on-chip designs, have been reviewed considering a design of bioactive materials for smart medical implants and drug delivery systems...
March 11, 2024: Biomimetics
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