Publications by authors named "M T Cassani"

Article Synopsis
  • The extracellular matrix (ECM) and its mechanobiology play a crucial role in tumor growth, making mechanotherapy a promising treatment for cancers by restoring ECM to a healthier state and aiding chemotherapy delivery.
  • Manipulating the ECM, especially using nanoparticles (NPs), shows potential for innovative cancer treatments, although dense ECMs can hinder NP effectiveness.
  • The review discusses the interaction between ECM and NPs, highlights recent advancements in mechanotherapy, and emphasizes the need for better understanding to enhance nanomedicine design for effective clinical applications.
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Article Synopsis
  • T cells are crucial for fighting viral infections and cancer, so effective delivery systems for therapeutics targeting T cells are important, but challenging due to T cells' nonphagocytic behavior.
  • Researchers have found that natural glycogen nanoparticles (nanosugars) can engage T cells and release drugs without the need for complex receptor-targeting antibodies.
  • Among different nanoparticle types, smaller and positively charged glycogen nanoparticles (BG NPs) demonstrate superior internalization and drug release capabilities, proving effective in reactivating latent HIV-1 in T cells and transfecting mRNA.
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In this study, zeolitic imidazolate framework 8 (ZIF-8) was coated on porous Ti6Al4V scaffolds, either bare or previously modified using hydroxyapatite (HA) or HA and gelatin (HAgel), via a growing single-step method in aqueous media using two contact times at 6 h and 24 h. The coated scaffolds termed ZIF-8@Ti, ZIF-8@HA/Ti, and ZIF-8@HAgel/Ti were characterized via scanning electron microscopy (SEM), powder X-ray diffraction (PXRD), attenuated total reflectance-Fourier transform infrared (ATR-FTIR), and molecular plasma-atomic emission spectroscopy (MP-AES). In order to assess the cell proliferation rate, the cytocompatibility of the scaffolds was evaluated in primary osteoblasts (hOBs) using alamarBlue assay, while the osteoconductivity was analyzed in hOBs using a real-time approach, evaluating the expression of secreted phosphoprotein 1 (SPP1).

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This work describes a simple, inexpensive, and robust method to prepare a flexible "all in one" integrated hydrogel supercapacitors (HySCs). Preparing smart hydrogels with high electrical conductivity, ability to stretch significantly, and excellent mechanical properties is the last challenge for tailored wearable devices. In this paper, we employed a physical crosslinking process that involves consecutive freezing and thawing cycles to prepare a polyvinyl alcohol (PVA)-based hydrogel.

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Cardiac fibrosis occurs following insults to the myocardium and is characterized by the abnormal accumulation of non-compliant extracellular matrix (ECM), which compromises cardiomyocyte contractile activity and eventually leads to heart failure. This phenomenon is driven by the activation of cardiac fibroblasts (cFbs) to myofibroblasts and results in changes in ECM biochemical, structural and mechanical properties. The lack of predictive in vitro models of heart fibrosis has so far hampered the search for innovative treatments, as most of the cellular-based in vitro reductionist models do not take into account the leading role of ECM cues in driving the progression of the pathology.

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