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Advancements in load-bearing tissue repair increasingly demand biomaterials that not only support structural integrity but also interact dynamically with the physiological environment. This review examines the latest progress in smart biomaterials designed for skeletal reconstruction, with emphasis on mechanoresponsive scaffolds, bioactive composites, and integrated microsensors for real-time monitoring. We explore material formulations that enhance osseointegration, resist micromotion-induced loosening, and modulate inflammatory responses at the bone-implant interface. Additionally, we assess novel fabrication methods-such as additive manufacturing and gradient-based material deposition-for tailoring stiffness, porosity, and degradation profiles to match host biomechanics. Special attention is given to sensor-augmented platforms capable of detecting mechanical strain, biofilm formation, and early-stage implant failure. Together, these technologies promise a new class of bioresponsive, diagnostic-capable constructs that extend beyond static support to become active agents in regenerative healing and post-operative monitoring. This multidisciplinary review integrates insights from materials science, mechanobiology, and device engineering to inform the future of implantable systems in skeletal tissue repair.
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http://dx.doi.org/10.3390/jfb16070232 | DOI Listing |
J Vis Exp
August 2025
Institute of Orthopedic Surgery, Xijing Hospital, Air force Medical University;
Bone tissue is an important load-bearing organ of the human body. Moderate exercise enhances bone mass through mechanical loading, while high-intensity exercise may suppress it. Infrared therapy improves circulation, reduces pain/inflammation, and aids tissue repair.
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August 2025
Spinal Surgery, Royal National Orthopaedic Hospital, London, GBR.
Background: Venous thromboembolism (VTE) is a preventable complication following orthopaedic surgery. While most guidelines focus on arthroplasty, a significant number of knee surgeries fall under non-arthroplasty procedures, where post-operative VTE prophylaxis recommendations vary depending on anaesthetic time and weight-bearing status. National guidelines and available literature suggest the use of VTE prophylaxis for these cases, yet adherence in clinical practice remains inconsistent.
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August 2025
Department of Anatomy, Krishna Institute of Medical Sciences, Krishna Vishwa Vidyapeeth (Deemed to Be University), Karad, IND.
Background: Chronic Achilles tendinopathy is characterized by persistent pain, swelling, and functional limitations, particularly in overweight middle-aged women. This demographic is predisposed to tendon degeneration due to biomechanical overload and hormonal fluctuations.
Objective: This study aimed to compare the effectiveness of an aquatic neuromuscular exercise program vs.
J Musculoskelet Neuronal Interact
September 2025
Department of Life Science, The University of Tokyo, Meguro, Tokyo, Japan.
Objectives: This study aimed to determine the effect of external load on the contribution of tendon lengthening during eccentric phase and tendon shortening velocity during concentric phase in stretch-shortening cycle exercises.
Methods: Fifteen men performed no-countermovement jump (noCMJ) and countermovement jump (CMJ) using only ankle joint with three different loads (0, 30, and 70% of 1 repetition maximum (RM)). Mean torque, angular velocity, power, and fascicle length of the medial gastrocnemius muscle were measured during jumping.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi
August 2025
Honghui Hospital, Xi'an Jiaotong University, Xi'an 710054, P. R. China.
The lumbar intervertebral disc exhibits a complex physiological structure with interactions between various segments, and its components are extremely complex. The material properties of different components in the lumbar intervertebral disc, especially the water content (undergoing dynamic change as influenced by age, degeneration, mechanical loading, and proteoglycan content) - critically determine its mechanical properties. When the lumbar intervertebral disc is under continuous pressure, water seeps out, and after the pressure is removed, water re-infiltrates.
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