keyword
https://read.qxmd.com/read/38308872/effect-of-tumor-heterogeneity-on-enhancing-drug-delivery-to-vascularized-tumors-using-thermo-sensitive-liposomes-triggered-by-hyperthermia-a-multi-scale-and-multi-physics-computational-model
#21
JOURNAL ARTICLE
Masoud H H Tehrani, Farshad Moradi Kashkooli, M Soltani
In this study, a novel multi-scale and multi-physics image-based computational model is introduced to assess the delivery of doxorubicin (Dox) loaded temperature-sensitive liposomes (TSLs) in the presence of hyperthermia. Unlike previous methodologies, this approach incorporates capillary network geometry extracted from images, resulting in a more realistic physiological tumor model. This model holds significant promise in advancing personalized medicine by integrating patient-specific tumor properties. The finite element method is employed to solve the equations governing intravascular and interstitial fluid flows, as well as the transport of therapeutic agents within the tissue...
January 29, 2024: Computers in Biology and Medicine
https://read.qxmd.com/read/38299121/elucidating-the-role-of-lignin-type-and-functionality-in-the-development-of-high-performance-biobased-phenolic-thermoset-resins
#22
JOURNAL ARTICLE
Emanuela Bellinetto, Nicholas Fumagalli, Matilde Astorri, Stefano Turri, Gianmarco Griffini
In this work, a series of biobased phenolic resins were developed starting from kraft and soda lignin, suitably functionalized through esterification by means of succinic anhydride. As a result of an extensive optimization study of the functionalization and curing reactions, clear correlations between lignin type and chemical-physical characteristics and the properties of the resulting phenolic resin systems were described. In particular, the esterification reaction through succinic anhydride was found to play a key role in enhancing the chemical reactivity and in facilitating the successful incorporation of lignin into the resin formulations...
January 26, 2024: ACS applied polymer materials
https://read.qxmd.com/read/38297742/effects-of-cavity-nonlinearities-and-linear-losses-on-silicon-microring-based-reservoir-computing
#23
JOURNAL ARTICLE
Bernard J Giron Castro, Christophe Peucheret, Darko Zibar, Francesco Da Ros
Microring resonators (MRRs) are promising devices for time-delay photonic reservoir computing, but the impact of the different physical effects taking place in the MRRs on the reservoir computing performance is yet to be fully understood. We numerically analyze the impact of linear losses as well as thermo-optic and free-carrier effects relaxation times on the prediction error of the time-series task NARMA-10. We demonstrate the existence of three regions, defined by the input power and the frequency detuning between the optical source and the microring resonance, that reveal the cavity transition from linear to nonlinear regimes...
January 15, 2024: Optics Express
https://read.qxmd.com/read/38295752/coupled-thermo-mechanical-interaction-on-a-multi-layered-skin-tissue-with-temperature-dependent-physical-properties-irradiated-by-a-pulse-laser
#24
JOURNAL ARTICLE
Yingze Wang, Zhe Wang, Wenbo Zheng, Xiaoyu Lu
A detailed understanding of the coupled thermo-mechanical interaction on the biological tissue irradiated by a pulse laser is essential for the existed therapeutic methods constructed on the photo-thermal effect, which will contribute to the design, characterization and optimization of strategies for delivering better treatment. The aim of present work is to explore the coupled thermo-mechanical behavior of a multi-layered skin tissue with temperature-dependent physical properties under the pulsed laser irradiation...
January 26, 2024: Journal of Thermal Biology
https://read.qxmd.com/read/38289404/regulation-of-the-p53-tumor-suppressor-gene-and-the-mcl-2-oncogene-expression-by-an-active-herbal-component-delivered-through-a-smart-thermo-ph-sensitive-plga-carrier-to-improve-osteosarcoma-treatment
#25
JOURNAL ARTICLE
Parinaz Akbari, Mohammad Taebpour, Milad Akhlaghi, Shaimaa Hamid Hasan, Shayesteh Shahriyari, Mahdieh Parsaeian, Bibi Fatemeh Haghirosadat, Abbas Rahdar, Sadanand Pandey
Osteosarcoma (OS), a lethal malignancy, has witnessed an escalating incidence rate. Contemporary therapeutic strategies for this cancer have proven to be inadequate, primarily due to their extensive side effects and the lack of specificity in targeting the molecular pathways implicated in this disease. Consequently, this project is aimed to manufacture and characterize Poly (Lactic-co-glycolic acid) embodying curcumin, a phytocompound devoid of adverse effects which not only exerts an anti-neoplastic influence but also significantly modulates the genetic pathways associated with this malignancy...
January 30, 2024: Medical Oncology
https://read.qxmd.com/read/38257025/systematic-investigation-of-the-degradation-properties-of-nitrile-butadiene-rubber-polyamide-elastomer-single-walled-carbon-nanotube-composites-in-thermo-oxidative-and-hot-oil-environments
#26
JOURNAL ARTICLE
Guangyong Liu, Huiyu Wang, Tianli Ren, Yuwei Chen, Susu Liu
The physical blending method was used in order to prepare nitrile-butadiene rubber/polyamide elastomer/single-walled carbon nanotube (NBR/PAE/SWCNT) composites with better thermal-oxidative aging resistance. The interactions between SWCNTs and NBR/PAE were characterized using the Moving Die Rheometer 2000 (MDR 2000), rheological behavior tests, the equilibrium swelling method, and mechanical property tests. The 100% constant tensile stress and hardness of NBR/PAE/SWCNT composites increased from 2.59 MPa to 4...
January 12, 2024: Polymers
https://read.qxmd.com/read/38247743/uv-crosslinked-poly-n-isopropylacrylamide-interpenetrated-into-chitosan-structure-with-enhancement-of-mechanical-properties-implemented-as-anti-fouling-materials
#27
JOURNAL ARTICLE
Isala Dueramae, Fumihiko Tanaka, Naoki Shinyashiki, Shin Yagihara, Rio Kita
High-performance properties of interpenetration polymer network (IPN) hydrogels, based on physically crosslinked chitosan (CS) and chemically crosslinked poly( N -isopropylacrylamide) (PNiPAM), were successfully developed. The IPN of CS/PNiPAM is proposed to overcome the limited mechanical properties of the single CS network. In this study, the viscoelastic behaviors of prepared materials in both solution and gel states were extensively examined, considering the UV exposure time and crosslinker concentration as key factors...
December 25, 2023: Gels
https://read.qxmd.com/read/38246301/potential-of-capparis-decidua-plant-and-eggshell-composite-adsorbent-for-effective-removal-of-anionic-dyes-from-aqueous-medium
#28
JOURNAL ARTICLE
Ghulam Mujtaba, Abdul Hai, Mansoor Ul Hassan Shah, Asad Ullah, Yasir Anwar, Furqan Shah, Muhammad Daud, Afzal Hussain, Faheem Ahmed, Fawzi Banat
The presence of hazardous dyes in wastewater poses significant threats to both ecosystems and the natural environment. Conventional methods for treating dye-contaminated water have several limitations, including high costs and complex operational processes. This study investigated a sustainable bio-sorbent composite derived from the Capparis decidua plant and eggshells, and evaluated its effectiveness in removing anionic dyes namely tartrazine (E-102), methyl orange (MO), and their mixed system. The research examines the influence of initial concentration, contact time, pH, adsorbent dosage, and temperature on the adsorption properties of anionic dyes...
January 19, 2024: Environmental Research
https://read.qxmd.com/read/38237817/surface-modification-of-polydimethylsiloxane-by-the-cataractous-eye-protein-isolate
#29
JOURNAL ARTICLE
Sultana Parveen, Mainak Basu, Prasun Chowdhury, Trina Dhara, Sunando DasGupta, Soumen Das, Swagata Dasgupta
Polydimethylsiloxane (PDMS), even though widely used in microfluidic applications, its hydrophobic nature restricts its utility in some cases. To address this, PDMS may be used in conjunction with a hydrophilic material. Herein, the PDMS surface is modified by plasma treatment followed by cross-linking with the cataractous eye protein isolate (CEPI). CEPI-PDMS composites are prepared at three pH and the effects of CEPI on the chemical, physical, and electrical properties of PDMS are extensively investigated...
January 16, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38201724/sustainable-particleboards-based-on-brewer-s-spent-grains
#30
JOURNAL ARTICLE
Lucia Rossi, Lucia Wechsler, Mercedes A Peltzer, Emiliano M Ciannamea, Roxana A Ruseckaite, Pablo M Stefani
Brewer's spent grain (BSG) is the main solid waste generated in beer production and primarily consists of barley malt husks. Based on the active promotion of circular economy practices aimed at recycling food industry by-products, this study assessed for the first time the production of particleboards based on BSG as the sole source of lignocellulosic material and natural adhesive without the use of additives or other substrates. In order to achieve particleboards from entirely sustainable sources, BSG particles have to self-bind by thermo-compression with water...
December 23, 2023: Polymers
https://read.qxmd.com/read/38158531/advances-in-phase-change-materials-and-nanomaterials-for-applications-in-thermal-energy-storage
#31
REVIEW
Rahul Kumar, Amit Kumar Thakur, Lovi Raj Gupta, Anita Gehlot, Vineet Singh Sikarwar
Phase-changing materials are nowadays getting global attention on account of their ability to store excess energy. Solar thermal energy can be stored in phase changing material (PCM) in the forms of latent and sensible heat. The stored energy can be suitably utilized for other applications such as space heating and cooling, water heating, and further industrial processing where low-temperature heat energy is required. The presented work attempts to evaluate past, present, and future trends in the development of energy storage materials and their encapsulation techniques for efficient utilization of the available energy...
December 29, 2023: Environmental Science and Pollution Research International
https://read.qxmd.com/read/38153413/temperature-transferable-coarse-grained-models-for-volumetric-properties-of-poly-lactic-acid
#32
JOURNAL ARTICLE
Chaofu Wu
A new coarse-grained (CG) model, for which each monomer is mapped as one bead at its center of mass, was developed for simulating the volumetric properties of the polylactide (PLA) bulk. The three bonded CG potentials are first parametrized against the strain energies of the dimer, trimer, and tetramer, and the nonbonded CG potentials are then optimized to match the melt densities of the decamer. With the derived CG potentials, molecular dynamics (MD) simulations are found to reproduce thermal expansion and glass transition...
December 28, 2023: Journal of Physical Chemistry. B
https://read.qxmd.com/read/38139995/genistein-co-amorphous-systems-with-amino-acids-an-investigation-into-enhanced-solubility-and-biological-activity
#33
JOURNAL ARTICLE
Ewa Garbiec, Natalia Rosiak, Przemysław Zalewski, Lidia Tajber, Judyta Cielecka-Piontek
Genistein, an isoflavone known for its antioxidant and antidiabetic effects, suffers from the drawback of low solubility. To overcome this limitation, co-amorphous systems were synthesized by incorporating amino acids that were chosen through computational methods. The confirmation of the amorphous state of lysine and arginine-containing systems was ascertained by X-ray powder diffraction. Subsequently, the characterization of these systems was extended by employing thermo-gravimetry, differential scanning calorimetry, Fourier-transform infrared spectroscopy, and scanning electron microscopy...
November 21, 2023: Pharmaceutics
https://read.qxmd.com/read/38139798/bioactive-loaded-hydrogels-based-on-bacterial-nanocellulose-chitosan-and-poloxamer-for-rebalancing-vaginal-microbiota
#34
JOURNAL ARTICLE
Angela Moraru, Ștefan-Ovidiu Dima, Naomi Tritean, Elena-Iulia Oprița, Ana-Maria Prelipcean, Bogdan Trică, Anca Oancea, Ionuț Moraru, Diana Constantinescu-Aruxandei, Florin Oancea
Biocompatible drug-delivery systems for soft tissue applications are of high interest for the medical and pharmaceutical fields. The subject of this research is the development of hydrogels loaded with bioactive compounds (inulin, thyme essential oil, hydro-glycero-alcoholic extract of Vitis vinifera , Opuntia ficus-indica powder, lactic acid, citric acid) in order to support the vaginal microbiota homeostasis. The nanofibrillar phyto-hydrogel systems developed using the biocompatible polymers chitosan (CS), never-dried bacterial nanocellulose (NDBNC), and Poloxamer 407 (PX) incorporated the water-soluble bioactive components in the NDBNC hydrophilic fraction and the hydrophobic components in the hydrophobic core of the PX fraction...
November 30, 2023: Pharmaceuticals
https://read.qxmd.com/read/38099438/nanotechnologies-in-ceramic-electrochemical-cells
#35
REVIEW
Jiafeng Cao, Yuexia Ji, Zongping Shao
Although they are emerging technologies for achieving high-efficiency and green and eco-friendly energy conversion, ceramic electrochemical cells (CECs), i.e. solid oxide electrolysis cells (SOECs) and fuel cells (SOFCs), are still fundamentally limited by their inferior catalytic activities at low temperature, poor thermo-mechanical stability, high material cost, etc. The materials used in electrolytes and electrodes, which are the most important components in CECs, are highly associated with the cell performances...
December 15, 2023: Chemical Society Reviews
https://read.qxmd.com/read/38088782/photothermal-vortex-interferometer-with-azimuthal-complex-spectra-analysis-for-the-measurement-of-laser-induced-nanoscale-thermal-lens-dynamics
#36
JOURNAL ARTICLE
Jingtao Dong, Tengda Zhang, Lei Yang, Yuzhong Zhang, Rongsheng Lu, Xinglong Xie
A photothermal vortex interferometer (PTVI) is proposed to fill the gap of full-field measurement of the laser-induced nanoscale thermal lens dynamics of optical elements. The PTVI produces a multi-ring petal-like interferogram by the coaxial coherent superposition of the high-order conjugated Laguerre-Gaussian beams. The non-uniform optical path change (OPC) profile resulting from the thermal lens causes the petals of the interferogram at the different radii to shift by the different azimuths. To demodulate such an interferogram, an azimuthal complex spectra analysis is presented by using a camera with a pixelated multi-ring pattern written on its sensor to extract multiple azimuthal intensity profiles synchronously from the interferogram...
December 1, 2023: Review of Scientific Instruments
https://read.qxmd.com/read/38068090/an-analysis-of-the-performance-and-comfort-properties-of-fire-protective-material-by-using-inherently-fire-retardant-fibers-and-knitting-structures
#37
JOURNAL ARTICLE
Awais Ahmad Khan, Hafsa Jamshaid, Rajesh Kumar Mishra, Vijay Chandan, Viktor Kolář, Petr Jirků, Miroslav Müller, Shabnam Nazari, Tatiana Alexiou Ivanova, Tanveer Hussain
This paper investigates the development of fabric materials using several blends of inherently fire-resistant (FR) fibers and various knitted structures. The samples are evaluated with respect to their performance and comfort-related properties. Inherently fire-resistant fibers, e.g., Nomex, Protex, carbon and FR viscose, were used to develop different structures of knitted fabrics. Cross-miss, cross-relief, and vertical tubular structures were knitted by using optimum fiber blend proportions and combinations of stitches...
November 25, 2023: Materials
https://read.qxmd.com/read/38053909/an-experimental-investigation-on-the-nanofluids-in-a-cavity-under-natural-convection-with-and-without-the-rotary-magnetic-field
#38
JOURNAL ARTICLE
Debashis Dey, Sukanta K Dash
This experimental study involves the use of two distinct categories of nanofluids, namely ferromagnetic and non-magnetic, within a square cavity that facilitates natural convection. There are five distinct concentrations associated with each nanofluid. Natural convection arises as a consequence of the thermal gradient between the opposing surfaces of the copper cavity, which has a thickness of 18 gauge. The purpose of utilizing the constructed electro-magnet assembly is to investigate the impact of the rotational magnetic field on the process of heat transfer...
November 2023: Heliyon
https://read.qxmd.com/read/38029899/extraction-and-characterization-of-a-novel-cellulosic-fiber-derived-from-the-bark-of-rosa-hybrida-plant
#39
JOURNAL ARTICLE
Mohammad Abul Hasan Shibly, Ikramul Islam, Nur Hossain Rahat, Muhammad Maruf Billah, Mohammad Mahabubur Rahman, Muhammad Shahriar Bashar, Basit Abdul, Hajer S Alorfi
The current investigation aims to choose an alternate potential replacement for the nonbiodegradable synthetic fibers used in polymer composites. This goal motivated the thorough characterization of Rosa hybrida bark (RHB) fibers. The research explored fiber characterization such as morphological, mechanical, thermal, and physical properties. The suggested fiber features a percentage of cellulose, hemicellulose molecules, and lignin of 52.99 wt%, 18.49 wt%, and 17.34 wt%, respectively according to chemical composition studies, which improves its mechanical properties...
November 27, 2023: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38017790/theoretical-and-experimental-investigations-in-thermo-mechanical-properties-of-fused-silica-with-pulsed-co-2-laser-ablation
#40
JOURNAL ARTICLE
Yichi Han, Xiaocong Peng, Songlin Wan, Chaoyang Wei, Jianda Shao
Laser ablation is widely used as a flexible and non-contact processing technology for the fabrication of fused silica. However, the introduction of thermal stress inevitably leads to crack growth and reduces the lifetime of fused silica. Due to the complicated coupling interaction and properties of fused silica, the unclear thermal stress formation is the bottleneck restricting further development of laser ablation. In this article, a three-dimensional multi-physics thermo-mechanical model was developed to reveal the evolution mechanism, and experiments were performed to validate the simulated results...
October 23, 2023: Optics Express
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