4.6 Review

Advanced strategies for constructing interfacial tissues of bone and tendon/ligament

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Article Orthopedics

Pulsed electromagnetic field therapy alters early healing in a rat model of rotator cuff injury and repair: Potential mechanisms

Julianne Huegel et al.

Summary: This study found that PEMF treatment can improve the repair process of rat supraspinatus tendon injury through enhancing tendon healing signaling pathways, reducing inflammation, and promoting bone metabolism.

JOURNAL OF ORTHOPAEDIC RESEARCH (2022)

Review Orthopedics

Augmentation of Rotator Cuff Healing With Orthobiologics

David Kovacevic et al.

Summary: The limited regenerative capacity of the tendon-bone enthesis after surgical repair presents a challenge to achieving desired clinical outcomes. Biologic augmentation methods show potential for improving the integrity of the enthesis, but there is currently no reliable method that consistently leads to clinical improvement.

JOURNAL OF THE AMERICAN ACADEMY OF ORTHOPAEDIC SURGEONS (2022)

Article Pharmacology & Pharmacy

Uni-Directionally Oriented Fibro-Porous PLLA/Fibrin Bio-Hybrid Scaffold: Mechano-Morphological and Cell Studies

Andrew F. Uehlin et al.

Summary: In this study, a biohybrid fibrous scaffold based on nanofibers was developed and shown to have improved mechanical properties suitable for ligament-replacement grafts. The use of NaOH treatment and the immobilization of fibrin enhanced the osteogenic differentiation of cells, leading to potential applications in tissue engineering.

PHARMACEUTICS (2022)

Article Engineering, Biomedical

Engineering an enthesis-like graft for rotator cuff repair: An approach to fabricate highly biomimetic scaffold capable of zone-specifically releasing stem cell differentiation inducers

Can Chen et al.

Summary: An optimized decellularization approach was developed to fabricate a book-shaped decellularized enthesis matrix (O-BDEM), which was then combined with recombinant growth factors (CBP-GFs) tethered to the collagen of O-BDEM to create a novel scaffold (CBP-GFs/O-BDEM) for rotator cuff repair. The low immunogenicity of CBP-GEs/O-BDEM was confirmed in a mouse model, and the high regenerative potential of the engineered graft was demonstrated in a canine model. These findings highlight the potential of CBP-GEs/O-BDEM as an excellent scaffold for large/massive rotator cuff tear repair and provide new insights into interfacing tissue fabrication.

BIOACTIVE MATERIALS (2022)

Article Engineering, Biomedical

In situ regeneration of bone-to-tendon structures: Comparisons between costal-cartilage derived stem cells and BMSCs in the rat model

Rui Zuo et al.

Summary: Stem cells from costal cartilage show potential for regeneration at the bone-tendon interface, with better adaptability and differentiation abilities compared to bone-marrow mesenchymal stem cells. These findings are significant for tissue engineering regeneration and clinical treatment of bone-tendon interface injuries.

ACTA BIOMATERIALIA (2022)

Article Engineering, Biomedical

Driving native-like zonal enthesis formation in engineered ligaments using mechanical boundary conditions and β-tricalcium phosphate

M. Ethan Brown et al.

Summary: This study investigates the effect of compressive mechanical boundary conditions and the addition of beta-tricalcium phosphate (beta TCP) on the development of zonal ligament-to-bone entheses. The results show that compressive boundary clamps and beta TCP can guide ligament fibroblasts to produce zonal gradients in collagen organization, mineralization, and matrix composition, closely resembling immature ligament-to-bone attachments. This culture system provides a promising platform for understanding and promoting enthesis regeneration in graft repair and engineered replacements.

ACTA BIOMATERIALIA (2022)

Article Orthopedics

Biomechanical properties of a suture anchor system from human allogenic mineralized cortical bone matrix for rotator cuff repair

Jakob E. Schanda et al.

Summary: This study aimed to investigate the biomechanical properties of an allogenic mineralized suture anchor (AMSA) and compare it with metallic suture anchor (MSA) and bioabsorbable suture anchor (BSA). The study found that AMSA showed promising initial fixation strength and could be considered as an alternative to MSA and BSA.

BMC MUSCULOSKELETAL DISORDERS (2022)

Article Anatomy & Morphology

Effects of selective breeding for voluntary exercise, chronic exercise, and their interaction on muscle attachment site morphology in house mice

Alberto A. Castro et al.

Summary: The study found that chronic exercise can affect muscle attachment site morphology, but there is not always evolutionary coadaptation of muscle attachments with voluntary exercise behavior.

JOURNAL OF ANATOMY (2022)

Article Orthopedics

Rotator cuff repair using a bioresorbable nanofiber interposition scaffold: a biomechanical and histologic analysis in sheep

Anthony Romeo et al.

Summary: This study evaluated the mechanical, structural, and histologic quality of rotator cuff repairs using an interposition nanofiber scaffold composed of polyglycolic acid-poly-L-lactide-co-epsilon-caprolactone in an acute sheep model. The results demonstrated that using the scaffold enhanced the repair strength and facilitated the formation of a tissue structure similar to the natural shoulder cuff attachment.

JOURNAL OF SHOULDER AND ELBOW SURGERY (2022)

Article Cell & Tissue Engineering

Mesenchymal Stem Cell Sheets for Engineering of the Tendon-Bone Interface

Lisa Berntsen et al.

Summary: This study demonstrates the potential of composite cell sheets, fabricated with adipose-derived stem cells, for engineering the tendon-bone interface. By stacking tenogenic and osteogenic cell sheets, the researchers were able to create a composite structure expressing markers of tendon, mineralized fibrocartilage, and bone. This research is an important step towards regenerating the biological gradient of the enthesis and has clinical translation implications.

TISSUE ENGINEERING PART A (2022)

Article Cell & Tissue Engineering

Design-Build-Validate Strategy to 3D Print Bioglass Gradients for Anterior Cruciate Ligament Enthesis Reconstruction

Nilabh S. Kajave et al.

Summary: Rupture of the anterior cruciate ligament (ACL) is a common knee ligament injury. This study used a design-build-validate strategy combining 3D Raman spectral mapping and 3D printing to develop a tissue engineered scaffold that mimics the ACL bone-ligament interface. The scaffold showed potential for promoting interface regeneration and graft to bone integration.

TISSUE ENGINEERING PART C-METHODS (2022)

Review Chemistry, Physical

Exploring the Mechanical Properties and Performance of Type-I Collagen at Various Length Scales: A Progress Report

Shirsha Bose et al.

Summary: This study provides a review of the mechanical properties of collagen, focusing on different hierarchical levels and long-term performance. The study also examines the influence of hydration on collagen mechanics and discusses the discrepancies between collagenous tissues (composed primarily of 20-30% collagen fibers) and pure collagen.

MATERIALS (2022)

Article Cell Biology

Enthesis Healing Is Dependent on Scaffold Interphase Morphology-Results from a Rodent Patellar Model

Carlos J. Peniche Silva et al.

Summary: The study investigates the use of biphasic silk fibroin scaffolds for treating injured tendon-to-bone entheses. The results suggest that the design of the transition zone plays a crucial role in promoting healing of the injured enthesis.
Article Chemistry, Multidisciplinary

A reinforced nanofibrous patch with biomimetic mechanical properties and chondroinductive effect for rotator cuff tissue engineering

C. Chen et al.

Summary: The study developed PEEUU-GEL-KGN nanofibrous patches with biomimetic mechanical properties and enhanced tendon-bone healing effects, demonstrating outstanding biocompatibility and sustained release of KGN in vitro and in vivo.

MATERIALS TODAY CHEMISTRY (2022)

Article Engineering, Biomedical

Shedding light on 3D printing: Printing photo-crosslinkable constructs for tissue engineering

Qiang Zhang et al.

Summary: This article provides an overview of recent advances in the promising development of photo-crosslinkable materials for 3D printing, with a focus on their biomedical applications for repairing damaged organs and developing in vitro tissue models. By selecting appropriate ink combinations or modulating the photo-crosslinking printing parameters, the structures and properties of the printed scaffolds can be finely tailored to meet practical application requirements.

BIOMATERIALS (2022)

Article Biochemistry & Molecular Biology

Superior processability of Antheraea mylitta silk with cryo-milling: Performance in bone tissue regeneration

Nimisha Parekh et al.

Summary: A unique protocol for processing non-mulberry silk fiber has been developed, which reduces the beta sheet content and allows for the formation of completely dissolvable powder. These solutions can be used in conventional processing techniques to fabricate 3D scaffolds. In-vitro and in-vivo studies demonstrate that the processing technique does not affect the biocompatibility of the material and the AM scaffolds promote bone regeneration.

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES (2022)

Article Materials Science, Characterization & Testing

Preparation of a robust silk fibroin scaffold with a reinforced concrete structure constructed with silk nanofibers as the skeleton based on a CaCl2-formic acid solution and freeze-drying method

Fei-Fan Shuang et al.

Summary: This study presents a robust silk fibroin (SF) scaffold with a reinforced concrete structure, where silk nanofibers serve as the skeleton. The scaffold is prepared using a CaCl2-formic acid dissolving system combined with freeze-drying method, ensuring minimal silk loss and shorter preparation time. Additionally, the scaffold retains the nanofibers of silk, preserving their mechanical toughness. The prepared scaffolds exhibit good biocompatibility and biodegradability. The findings provide a new strategy for manufacturing SF scaffolds and hold great potential for the development of silk fibroin materials in tissue engineering.

POLYMER TESTING (2022)

Article Surgery

A prospective comparison of 3 hamstring ACL fixation devices-rigidfix, bioscrew, and intrafix-randomized into 4 groups with a minimum follow-up of 5 years

Leena Metso et al.

Summary: This study investigated the effectiveness of new fixation devices for ACL reconstruction at a five-year follow-up. The results showed no significant differences in clinical outcomes among the groups. However, patients using the Rigidfix cross-pin fixation device had a significantly higher rate of additional procedures compared to the other groups.

BMC SURGERY (2022)

Article Chemistry, Multidisciplinary

ADSCs Promote Tenocyte Proliferation by Reducing the Methylation Level of lncRNA Morf4l1 in Tendon Injury

Haibo Zhao et al.

Summary: This study confirmed that adipose-derived mesenchymal stem cells (ADSCs) promoted tendon wound healing by reducing the methylation level of lncRNA Morf4l1.

FRONTIERS IN CHEMISTRY (2022)

Article Materials Science, Biomaterials

Gradient Biomineralized Silk Fibroin Nanofibrous Scaffold with Osteochondral Inductivity for Integration of Tendon to Bone

Peixing Chen et al.

Summary: The study developed a nanofibrous scaffold based on SF and SBF, successfully mimicking the structure and properties of natural interface tissue, promoting the growth and differentiation of bone marrow mesenchymal stem cells, and improving the ultimate load and fibrocartilage-like tissue formation at the tendon-to-bone interface.

ACS BIOMATERIALS SCIENCE & ENGINEERING (2021)

Article Engineering, Environmental

Gradient composite film with calcium phosphate silicate for improved tendon -to-Bone intergration

Wei Su et al.

Summary: This study fabricated gradient poly(e-caprolactone)/calcium phosphate silicate (G-P/C) composite films with varying P/C ratio, showing that higher levels of calcium phosphate silicate stimulated stronger osteogenic differentiation and mineralized matrix deposition. When interposed between the supraspinatus tendon and humerus bone, the G-P/C composite film group exhibited more tissue cellularity, better collagen alignment, better gradient mineralized cartilage formation, and gradient Ca distribution compared to other groups, suggesting its promising potential as a scaffold for tendon-to-bone interface engineering.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Endocrinology & Metabolism

The role of tendon derived stem/progenitor cells and extracellular matrix components in the bone tendon junction repair

Qin Shengnan et al.

Summary: The regeneration of fibrocartilage enthesis is crucial for the functional restoration of bone tendon junction. Biomimetic approaches, such as using decellularized ECM materials, show promise in providing scaffolds and microenvironments to guide stem cell differentiation towards chondrogenic commitment, thus facilitating fibrocartilage regeneration for better BTJ healing.
Article Biochemistry & Molecular Biology

Light Cross-Linkable Marine Collagen for Coaxial Printing of a 3D Model of Neuromuscular Junction Formation

Borja Sanz et al.

Summary: Marine collagen, as an alternative source, shows potential in tissue engineering. The study revealed that marine collagen could serve as a low-cost, customizable, scalable, and quick-to-print platform for drug screening and researching neuromuscular junction physiology and pathogenesis.

BIOMEDICINES (2021)

Article Orthopedics

Hierarchically Demineralized Cortical Bone Combined With Stem Cell-Derived Extracellular Matrix for Regeneration of the Tendon-Bone Interface

Shu-Kun He et al.

Summary: The study successfully promoted the repair of rotator cuff in a rabbit model by using hierarchically demineralized cortical bone (hDCB) coated with stem cell-derived extracellular matrix (hDCB-ECM), showing potential clinical applications.

AMERICAN JOURNAL OF SPORTS MEDICINE (2021)

Article Orthopedics

Characterization of the distributions of collagen and PGs content in the decellularized book-shaped enthesis scaffolds by SR-FTIR

Qiang Shi et al.

Summary: The study successfully obtained decellularized book-shaped enthesis scaffolds from rabbit rotator cuff, evaluated the effect of decellularization on extracellular matrix structure through histological staining and SEM, and found that the content of collagen and PGs in the decellularized scaffolds decreased significantly. This innovative use of SR-FTIR can provide quantitative mapping of collagen and PGs distribution in enthesis scaffolds.

BMC MUSCULOSKELETAL DISORDERS (2021)

Article Materials Science, Multidisciplinary

Application of a Hyperelastic 3D Printed Scaffold for Mesenchymal Stem Cell-Based Fabrication of a Bizonal Tendon Enthesis-like Construct

Riccardo Gottardi et al.

Summary: The study utilized hyperelastic biphasic 3D printed PLGA scaffolds to mimic the native insertion side, and cultured constructs in dual fluidic bioreactors to achieve regional differentiation towards tenogenic or chondrogenic fate. This system has been validated as a potential platform to form the tendon enthesis and will be further optimized for the fabrication of distinctly biphasic constructs in future studies.

FRONTIERS IN MATERIALS (2021)

Review Biotechnology & Applied Microbiology

Tissue Engineering for the Insertions of Tendons and Ligaments: An Overview of Electrospun Biomaterials and Structures

Alberto Sensini et al.

Summary: The musculoskeletal system is composed of hard and soft tissues with a wide range of mechanical properties. Interfacial tissue engineering aims to produce scaffolds with biomaterial gradients and mechanical properties to guide cell growth and differentiation. Electrospinning technique, due to its extreme versatility, has shown promise in generating polymeric nanofibers similar to musculoskeletal extracellular matrix, for the regeneration of complex tissues like the enthesis and myotendinous junctions.

FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY (2021)

Article Orthopedics

Effect of Exercise Intensity on the Healing of the Bone-Tendon Interface: A Mouse Rotator Cuff Injury Model Study

Huabin Chen et al.

Summary: In a mouse rotator cuff injury model, rehabilitation with increasing-intensity exercise was shown to promote BTI healing, with higher tissue fusion, more subchondral bone quantity, and increased expression of transcription factors.

AMERICAN JOURNAL OF SPORTS MEDICINE (2021)

Article Orthopedics

Combined therapy of platelet-rich plasma and basic fibroblast growth factor using gelatin-hydrogel sheet for rotator cuff healing in rat models

Takeshi Kataoka et al.

Summary: The study showed that the combined therapy of basic fibroblast growth factor and platelet-rich plasma promoted angiogenesis, tendon maturation and fibrocartilage regeneration, enhancing mechanical strength. It was suggested that the combination of basic fibroblast growth factor and platelet-rich plasma might improve healing of both tendon and bone-tendon junction, and have a synergistic effect.

JOURNAL OF ORTHOPAEDIC SURGERY AND RESEARCH (2021)

Review Engineering, Biomedical

Applications of marine collagens in bone tissue engineering

Zhidong Lin et al.

Summary: Marine collagen has shown great promise as a biomaterial in bone tissue engineering, displaying excellent biological effects such as promoting osteogenesis, inhibiting inflammation, inducing cartilage differentiation, and improving bone mineral density. Its biocompatibility, biodegradability, ease of extractability, safety, low immunogenicity, and low production costs have made it a popular choice for researchers.

BIOMEDICAL MATERIALS (2021)

Review Chemistry, Multidisciplinary

Tendon tissue engineering: Cells, growth factors, scaffolds and production techniques

Sandra Ruiz-Alonso et al.

Summary: Tendon injuries are a global health issue that requires complex and long-lasting rehabilitation processes. Tissue engineering, an emerging discipline, offers new approaches to tackle tendon injuries. By analyzing the nature of tendons, traditional treatments, and various tissue engineering methods, personalized regeneration with better outcomes can be achieved.

JOURNAL OF CONTROLLED RELEASE (2021)

Article Materials Science, Multidisciplinary

Multi-functionalized nanofibers with reactive oxygen species scavenging capability and fibrocartilage inductivity for tendon-bone integration

Peixing Chen et al.

Summary: A multifunctional silk fibroin nanofiber modified with polydopamine and kartogenin was designed and fabricated to reduce inflammation and enhance fibrocartilage formation, promoting enthesis healing. In vitro and in vivo studies confirmed the antioxidant capability and fibrochondral inductivity of the functionalized nanofibers, resulting in improved tendon-bone integration and accelerated interface tissue regeneration with excellent biomechanical properties. Incorporating antioxidant and bio-active molecules into extracellular matrix-like biomaterials in interface tissue engineering facilitates damaged tissue regeneration and functional recovery, improving the clinical outcome of engineered tissue.

JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY (2021)

Review Biotechnology & Applied Microbiology

A Systematic Review of Tissue Engineering Scaffold in Tendon Bone Healing in vivo

Zimu Mao et al.

Summary: The use of tissue engineering scaffold, especially biomaterials, has shown significant effectiveness in tendon-bone healing and can be enhanced by biological interventions. Current research is mainly focused on animal models, calling for further clinical trials to explore the full potential of these approaches in clinical practice.

FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY (2021)

Review Astronomy & Astrophysics

Negative impact of disuse and unloading on tendon enthesis structure and function

S. Roffino et al.

Summary: This review focuses on the effects of chronic skeletal muscle disuse and unloading on muscle deconditioning, bone remodeling, and tendon enthesis. It explores the relationship between enthesis structure and mechanical stress, as well as the potential impact of spaceflight-induced enthesis remodeling on compressive strength and the risk of developing enthesopathies.

LIFE SCIENCES IN SPACE RESEARCH (2021)

Article Medicine, General & Internal

Relationship between the suture materials used in extensor tendon injuries and reoperations

Melih Bagir et al.

Summary: The study found that the use of non-absorbable (polypropylene) sutures for extensor tendon repair increased the risk of suture-related reoperation, therefore suggesting that the use of absorbable (polydioxanone) sutures may be more appropriate.

CUKUROVA MEDICAL JOURNAL (2021)

Article Engineering, Biomedical

Xenoextracellular matrix-rosiglitazone complex-mediated immune evasion promotes xenogenic bioengineered root regeneration by altering M1/M2 macrophage polarization

Tingting Lan et al.

Summary: The study demonstrates a robust strategy to load rosiglitazone (RSG) onto naturally sponge-like porous xenogenic extracellular matrix (xECM) scaffolds, activating peroxisome proliferators receptors-gamma (PPAR-gamma) to create an immunosuppressive environment for tissue reconstruction. This results in downregulation of proinflammatory macrophages and suppression of NF-kappa B expression, facilitating the regeneration of enthesis anchoring between the transplanted xenograft and host. The PPAR-gamma-NF-kappa B axis activated by the xECM-RSG complex can lead to conversion towards M2 macrophages with modest immunosuppressive capacity, promoting xECM-based tissue or organ regeneration.

BIOMATERIALS (2021)

Review Clinical Neurology

Longitudinal atlantoaxial dislocation associated with type III odontoid fracture due to high-energy trauma. Case report and literature review

Juan F. Sanchez-Ortega et al.

Summary: Traumatic upper cervical spine injuries, especially involving atlantoaxial joint dislocation, are often caused by high-energy trauma and can result in severe neurological damage. Early immobilization and surgical intervention are crucial for these unstable cervical spine lesions, which have a high mortality rate.

SPINAL CORD SERIES AND CASES (2021)

Review Chemistry, Applied

Extraction Methods, Characterization and Biomedical Applications of Collagen: a Review

Omar El Blidi et al.

Summary: Developing a standard extraction method for all types of collagen from different tissues is challenging due to their extreme diversity. Different methods have their pros and cons, and some have been optimized for easier extraction. Collagen plays a significant role in biomedical applications.

BIOINTERFACE RESEARCH IN APPLIED CHEMISTRY (2021)

Article Cell & Tissue Engineering

Producing Collagen Micro-stripes with Aligned Fibers for Cell Migration Assays

Danahe Mohammed et al.

CELLULAR AND MOLECULAR BIOENGINEERING (2020)

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Tendon and Ligament Healing and Current Approaches to Tendon and Ligament Regeneration

Natalie L. Leong et al.

JOURNAL OF ORTHOPAEDIC RESEARCH (2020)

Article Engineering, Biomedical

In situ tissue engineering of the tendon-to-bone interface by endogenous stem/progenitor cells

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BIOFABRICATION (2020)

Review Biochemistry & Molecular Biology

The application of hyaluronic acid in bone regeneration

Peisong Zhai et al.

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES (2020)

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Robert Tonndorf et al.

MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS (2020)

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Concurrent multi-lineage differentiation of mesenchymal stem cells through spatial presentation of growth factors

Amelia Hurley-Novatny et al.

BIOMEDICAL MATERIALS (2020)

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Tough and tunable scaffold-hydrogel composite biomaterial for soft-to-hard musculoskeletal tissue interfaces

Raul A. Sun Han Chang et al.

SCIENCE ADVANCES (2020)

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Fibroblast Growth Factor 2 Enhances Tendon-to-Bone Healing in a Rat Rotator Cuff Repair of Chronic Tears

Ryuji Yonemitsu et al.

AMERICAN JOURNAL OF SPORTS MEDICINE (2019)

Review Cell & Tissue Engineering

Tuning the biomimetic behavior of scaffolds for regenerative medicine through surface modifications

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FOOT AND ANKLE CLINICS (2019)

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A LbL-Assembled Bioactive Coating Modified Nanofibrous Membrane for Rapid Tendon-Bone Healing in ACL Reconstruction

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ACTA BIOMATERIALIA (2019)

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Woven collagen biotextiles enable mechanically functional rotator cuff tendon regeneration during repair of segmental tendon defects in vivo

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Surface functionalization of 3D printed polymer scaffolds to augment stem cell response

L. R. Jaidev et al.

MATERIALS & DESIGN (2019)

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Pro-chondrogenic and immunomodulatory melatonin-loaded electrospun membranes for tendon-to-bone healing

Wei Song et al.

JOURNAL OF MATERIALS CHEMISTRY B (2019)

Article Radiology, Nuclear Medicine & Medical Imaging

Anterolateral ligament injuries in knees with an anterior cruciate ligament tear: Contribution of ultrasonography and MRI

Marie Faruch Bilfeld et al.

EUROPEAN RADIOLOGY (2018)

Article Nanoscience & Nanotechnology

Biomimetic Silk Scaffolds with an Amorphous Structure for Soft Tissue Engineering

Yonghuan Sang et al.

ACS APPLIED MATERIALS & INTERFACES (2018)

Review Pharmacology & Pharmacy

Rescue plan for Achilles: Therapeutics steering the fate and functions of stem cells in tendon wound healing

Magdalena Schneider et al.

ADVANCED DRUG DELIVERY REVIEWS (2018)

Article Chemistry, Multidisciplinary

Design and Fabrication of a Hierarchically Structured Scaffold for Tendon-to-Bone Repair

Chunlei Zhu et al.

ADVANCED MATERIALS (2018)

Article Cell & Tissue Engineering

Novel engineered tendon-fibrocartilage-bone composite with cyclic tension for rotator cuff repair

Qian Liu et al.

JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE (2018)

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Growth factor-free salt-leached silk scaffolds for differentiating endothelial cells

Liying Xiao et al.

JOURNAL OF MATERIALS CHEMISTRY B (2018)

Review Orthopedics

The roles of inflammatory mediators and immunocytes in tendinopathy

Chenqi Tang et al.

JOURNAL OF ORTHOPAEDIC TRANSLATION (2018)

Article Orthopedics

Bridging Repair of Large Rotator Cuff Tears Using a Multilayer Decellularized Tendon Slices Graft in a Rabbit Model

Guo-Ming Liu et al.

ARTHROSCOPY-THE JOURNAL OF ARTHROSCOPIC AND RELATED SURGERY (2018)

Article Polymer Science

Degradation and related changes in supermolecular structure of poly(caprolactone) in vivo conditions

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POLYMER DEGRADATION AND STABILITY (2018)

Article Sport Sciences

Localized BMP-4 release improves the enthesis of engineered bone-to-bone ligaments

A. Lee-Barthel et al.

TRANSLATIONAL SPORTS MEDICINE (2018)

Article Orthopedics

Rotator cuff repair using cell sheets derived from human rotator cuff in a rat model

Yoshifumi Harada et al.

JOURNAL OF ORTHOPAEDIC RESEARCH (2017)

Article Orthopedics

Pulsed Electromagnetic Field Therapy Improves Tendon-to-Bone Healing in a Rat Rotator Cuff Repair Model

Jennica J. Tucker et al.

JOURNAL OF ORTHOPAEDIC RESEARCH (2017)

Article Materials Science, Biomaterials

Surface biofunctionalization of three-dimensional porous poly(lactic acid) scaffold using chitosan/OGP coating for bone tissue engineering

Sen Zeng et al.

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Article Orthopedics

The biology of rotator cuff healing

M. -A. Zumstein et al.

ORTHOPAEDICS & TRAUMATOLOGY-SURGERY & RESEARCH (2017)

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Collagen Cross-Linking: Biophysical, Biochemical, and Biological Response Analysis

Luis M. Delgado et al.

TISSUE ENGINEERING PART A (2017)

Review Pharmacology & Pharmacy

From Tendon Injury to Collagen-based Tendon Regeneration: Overview and Recent Advances

Clement Rieu et al.

CURRENT PHARMACEUTICAL DESIGN (2017)

Article Orthopedics

Surgical Treatment of Distal Biceps Tendon Ruptures: An Analysis of Complications in 784 Surgical Repairs

Taylor R. Dunphy et al.

AMERICAN JOURNAL OF SPORTS MEDICINE (2017)

Article Orthopedics

Incidence of Anterior Cruciate Ligament Tears and Reconstruction: A 21-Year Population-Based Study

Thomas L. Sanders et al.

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Amorphous Silk Nanofiber Solutions for Fabricating Silk-Based Functional Materials

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Augmentation and repair of tendons using demineralised cortical bone

Sherif Elnikety et al.

BMC MUSCULOSKELETAL DISORDERS (2016)

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Fabrication of duck's feet collagen-silk hybrid biomaterial for tissue engineering

Soo Hyeon Kim et al.

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Association of synovial inflammation and inflammatory mediators with glenohumeral rotator cuff pathology

Geoffrey D. Abrams et al.

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Rare ACL enthesis tears treated by suture in children. A report of 14 cases after a mean 15 years follow-up

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Preferential tendon stem cell response to growth factor supplementation

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Triphasic scaffolds for the regeneration of the bone-ligament interface

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Review Pharmacology & Pharmacy

The past, present and future in scaffold-based tendon treatments

A. J. Lomas et al.

ADVANCED DRUG DELIVERY REVIEWS (2015)

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Biologics for tendon repair

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Evaluation of biodegradable elastic scaffolds made of anionic polyurethane for cartilage tissue engineering

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COLLOIDS AND SURFACES B-BIOINTERFACES (2015)

Review Biochemistry & Molecular Biology

Collagen based polyurethanes-A review of recent advances and perspective

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Cyclic mechanical stimulation rescues achilles tendon from degeneration in a bioreactor system

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Article Polymer Science

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