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Elastin is a highly extensible structural protein network that provides near-elastic resistance to deformation in biological tissues. In ligament, elastin is localized between and along the collagen fibers and fascicles. When ligament is stretched along the primary collagen axis, elastin supports a relatively high percentage of load. We hypothesized that elastin may also provide significant load support under elongation transverse to the primary collagen axis and shear along the collagen axis. Quasi-static transverse tensile and shear material tests were performed to quantify the mechanical contributions of elastin during deformation of porcine medial collateral ligament. Dose response studies were conducted to determine the level of elastase enzymatic degradation required to produce a maximal change in the mechanical response. Maximal changes in peak stress occurred after 3h of treatment with 2U/ml porcine pancreatic elastase. Elastin degradation resulted in a 60-70% reduction in peak stress and a 2-3× reduction in modulus for both test protocols. These results demonstrate that elastin provides significant resistance to elongation transverse to the collagen axis and shear along the collagen axis while only constituting 4% of the tissue dry weight. The magnitudes of the elastin contribution to peak transverse and shear stress were approximately 0.03 MPa, as compared to 2 MPa for axial tensile tests, suggesting that elastin provides a highly anisotropic contribution to the mechanical response of ligament and is the dominant structural protein resisting transverse and shear deformation of the tissue.
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http://dx.doi.org/10.1016/j.actbio.2015.07.011 | DOI Listing |
Cardiol Res Pract
August 2025
School of Medicine, Xiamen University, Xiamen 361102, Fujian, China.
This study investigates the reparative effect of electroacupuncture on myocardial fibrosis (MF) in mice and explores its impact on intestinal flora and metabolism profile. This examines an investigation into the biological mechanisms underlying electroacupuncture's efficacy in treating MF in mice. Twenty-four male Kunming mice (27-34 g) were randomized into three groups: normal control (NC, = 8), MF model (MF, = 8), and electroacupuncture treatment (EA, = 8).
View Article and Find Full Text PDFImmunol Invest
September 2025
Department of Function, Affiliated Wuxi Fifth Hospital of Jiangnan University, Wuxi, China.
Objective: This study aims to elucidate how butyrate, a short-chain fatty acid, regulates the Treg/Th17 balance in ulcerative colitis (UC) via the cAMP-PKA/mTOR signaling pathway, offering novel treatment strategies.
Methods: Dextran sulfate sodium (DSS) was used to induce ulcerative colitis in a mouse model. Various butyrate dosages were administered to the mice.
Int Immunopharmacol
September 2025
Department of Orthopedics, The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou 325000, China; Key Laboratory of Orthopedics of Zhejiang Province, Wenzhou 325000, China; The Second School of Medicine, Wenzhou Medical University, Wenzhou 325000, China.
Peripheral nerve injury (PNI) is notoriously difficult to repair due to impaired axonal regeneration and dysregulated inflammatory microenvironments. This study demonstrates that crocin facilitates peripheral nerve regeneration by modulating the STAT3/Bcl-2/Beclin-1 signaling axis, enhancing autophagy while suppressing NLRP3 inflammasome-mediated pyroptosis. In a rat model of sciatic nerve crush injury, crocin treatment improved axonal regrowth and ultrastructural remyelination, as evidenced by upregulated expression of β3-Tubulin, neurofilament-200 (NF200), and myelin basic protein (MBP), alongside significantly elevated sciatic functional index (SFI) scores, reduced muscle atrophy, and diminished collagen deposition.
View Article and Find Full Text PDFJ Nanobiotechnology
September 2025
Hospital of Stomatology, Guanghua School of Stomatology, Guangdong Provincial Key Laboratory of Stomatology, Sun Yat-sen University, Guangzhou, 510055, Guangdong, China.
Irregular alveolar bone defects pose persistent clinical challenges due to their complex morphology and the lack of biomaterials that simultaneously provide structural integrity, biocompatibility, and dynamic osteoinductive potential. Herein, we report a fiber-reinforced, dual-network hydrogel system (OHADN fiber@Yoda1 hydrogel) engineered to recapitulate mechanobiological cues for enhanced bone regeneration. This injectable hydrogel integrates oxidized hyaluronic acid (OHA) crosslinked with Yoda1-loaded PLGA-collagen fiber fragments and stabilized via catechol-Fe³⁺ coordination, forming a robust and self-healing structure.
View Article and Find Full Text PDFJ Transl Med
September 2025
Department of Thoracic Surgery, The Second Xiangya Hospital of Central South University, Changsha, China.
Background: Pulmonary fibrosis (PF) is a progressive interstitial lung disease marked by extracellular matrix accumulation and epithelial damage, with limited therapeutic options. Alveolar epithelial cell apoptosis is a key pathological hallmark of PF, but the upstream regulators driving this process remain unclear. Caspase-9, a central initiator of the intrinsic apoptotic pathway, has been implicated in fibrotic diseases across multiple organs.
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