Recent advances in the field of mechanobiology have led to the development of methods to characterise single-cell or monolayer mechanical properties and link them to their functional behaviour. However, there remains a strong need to establish this link for three-dimensional (3D) multicellular aggregates, which better mimic tissue function. Here we present a platform to actuate and observe many such aggregates within one deformable micro-device. The platform consists of a single polydimethylsiloxane piece cast on a 3D-printed mould and bonded to a glass slide or coverslip. It consists of a chamber containing cell spheroids, which is adjacent to air cavities that are fluidically independent. Controlling the air pressure in these air cavities leads to a vertical displacement of the chamber's ceiling. The device can be used in static or dynamic modes over time scales of seconds to hours, with displacement amplitudes from a fewm to several tens of microns. Further, we show how the compression protocols can be used to obtain measurements of stiffness heterogeneities within individual co-culture spheroids, by comparing image correlations of spheroids at different levels of compression with finite element simulations. The labelling of the cells and their cytoskeleton is combined with image correlation methods to relate the structure of the co-culture spheroid with its mechanical properties at different locations. The device is compatible with various microscopy techniques, including confocal microscopy, which can be used to observe the displacements and rearrangements of single cells and neighbourhoods within the aggregate. The complete experimental and imaging platform can now be used to provide multi-scale measurements that link single-cell behaviour with the global mechanical response of the aggregates.
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http://dx.doi.org/10.1088/1758-5090/ad30c7 | DOI Listing |
Zhonghua Gan Zang Bing Za Zhi
December 2024
Center of Hepatology and Department of Infectious Disease, Jinling Hospital (General Hospital of Eastern Theater Command) Affiliated to School of Medicine, Nanjing University, Nanjing210002, China.
To systematically evaluate the efficacy of Fuzheng Huayu (FZHY) tablets/capsules on hepatitis B-associated liver fibrosis or cirrhosis based on randomized controlled trials (RCTs) in order to provide more accurate evidence-based medicine for clinical rational drug use. Randomized controlled clinical trial research reports related to the treatment of hepatitis B-associated liver fibrosis or cirrhosis with FZHY published in SCI and statistical source core journals were retrieved from databases such as PubMed, Cochrane Library, and China National Knowledge Infrastructure (CNKI). RevMan 5.
View Article and Find Full Text PDFBackground: Arthritis seriously affects people's quality of life, and there is an urgent clinical need to improve the efficacy of medications as well as to reduce the adverse effects induced by treatment. Combined colchicine therapy is gradually being embraced in clinical care, but the evidence remains insufficient.
Methods: English databases were searched from the establishment to September 4, 2024.
Biomedicines
November 2024
Nephrology and Dialysis Unit, Cannizzaro Hospital, 95100 Catania, Italy.
Renal fibrosis is a leading cause of chronic allograft nephropathy. While renal biopsy remains the gold standard for diagnosing fibrosis, it is an invasive procedure with potential for severe complications. Elastography, an emerging ultrasound imaging technique, appears to be a valuable tool for quantifying tissue stiffness, which correlates with fibrosis.
View Article and Find Full Text PDFBrain Sci
November 2024
The Carrick Institute, Cape Canaveral, FL 32920, USA.
Context: Spastic cerebral palsy (SCP) is a condition characterized by muscle stiffness and involuntary movements, which greatly affect movement abilities and overall well-being. Low-level laser therapy (LLLT) has emerged as a treatment option for managing spasticity, though the current evidence varies.
Objective: This systematic review seeks to assess the efficacy of LLLT on spasticity in children with cerebral palsy.
Tissue Eng Part A
January 2025
Department of Biomedical Engineering, Washington University in St. Louis, St. Louis, Missouri, USA.
The synovium is a loose connective tissue that separates the intra-articular (IA) joint compartments of all diarthrodial joints from the systemic circulation. It can be divided into two layers: the intima, a thin and cell-dense layer atop a more heterogeneous subintima, composed of collagen and various cell types. The subintima contains penetrating capillaries and lymphatic vessels that rapidly clear injected drugs from the joint space which may vary not only with drug size and charge but also with the microstructure and composition of the intima and subintima of the synovium.
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