Search results for " Biochimica"

showing 10 items of 642 documents

Ni(II) and Zn(II) Schiff Base complexes: B-DNA vs G4-DNA binding

2015

Settore CHIM/03 - Chimica Generale E InorganicaSettore BIO/10 - BiochimicaSettore CHIM/08 - Chimica FarmaceuticaNi(II) Schiff bases Zn(II) Schiff bases complexes with B-DNA complexes with G4-DNA
researchProduct

Sintesi, caratterizzazione e attività biologica di complessi di Pt(II) con leganti eterociclici azotati e solforati e legante elilenebis(ditiocarbamm…

2012

Settore CHIM/03 - Chimica Generale E InorganicaSettore BIO/10 - Biochimicacomplessi diPt(II) eterocicli
researchProduct

A MULTI-LAYER MODEL TO STUDY GENOME-SCALE POSITIONS OF NUCLEOSOMES

2007

The positioning of nucleosomes along chromatin has been implicated in the regulation of gene expression in eukaryotic cells, because packaging DNA into nucleosomes affects sequence accessibility. In this paper we propose a new model (called MLM) for the identification of nucleosomes and linker regions across DNA, consisting in a thresholding technique based on cut-set conditions. For this purpose we have defined a method to generate synthetic microarray data fully inspired from the approach that has been used by Yuan et al. Results have shown a good recognition rate on synthetic data, moreover, the $MLM$ shows a good agreement with the recently published method based on Hidden Markov Model …

Settore INF/01 - InformaticaComputer scienceMicroarray analysis techniquesSettore BIO/10 - BiochimicaGenome scaleNucleosomeComputational biologyMulti layerMulti Layer Method Nucleosome PositioningModelling and Simulation in Science
researchProduct

Poly-left-lactic acid tubular scaffolds via diffusion induced phase separation: Control of morphology

2013

n this work, tubular poly-left-lactic acid scaffolds for vascular tissue engineering applications were produced by an innovative two-step method. The scaffolds were obtained by performing a dip-coating around a nylon fiber, followed by a diffusion induced phase separation process. Morphological analysis revealed that the internal lumen of the as-obtained scaffold is equal to the diameter of the fiber utilized; the internal surface is homogeneous with micropores 1–2 μm large. Moreover, a porous open structure was detected across the thickness of the walls of the scaffold. An accurate analysis of the preparation process revealed that it is possible to tune up the morphology of the scaffold (w…

Settore ING-IND/24 - Principi Di Ingegneria ChimicaScaffoldMaterials sciencescaffold poly-lactic acid tissue engineeringDiffusion Induced Phase separationPolymers and PlasticsPhase separation processPoly-left lactic acidvascular tissue engineeringGeneral ChemistryLactic acidchemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryTissue engineeringHomogeneousSettore BIO/10 - BiochimicaMaterials ChemistryComposite materialPorosityWall thicknessIn vitro cell culturePolymer Engineering & Science
researchProduct

Polylactide biodegradable scaffolds for tissue engineering applications phase separation-based techniques

2011

One of the most reliable techniques for the preparation of biodegradable scaffoldssuitable for tissue engineering applications (e.g. regeneration of wounded/damagedtissues) is based on liquid/liquid phase separation of ternary solvent/antisolvent/polymersolutions. In particular, two phase separation protocols are examined here: ThermallyInduced Phase Separation (TIPS) and Diffusion Induces Phase Separation (DIPS). According to the former protocol, a thermodynamically stable polymeric ternarysolution is brought below its metastability/instability point (spinodal/binodal curve) byquench in a cooling medium: under opportune conditions, a foam-like structure is formedby nucleation and 3-D growt…

Settore ING-IND/24 - Principi Di Ingegneria ChimicaSettore BIO/10 - BiochimicaSettore ING-IND/34 - Bioingegneria Industrialebiodegradable scaffolds
researchProduct

Migration of brain capillary endothelial cells inside poly (lactic acid) 3D scaffolds

2017

The brain capillary endothelial cells (BCECs) form the blood brain barrier (BBB) under the effects of the brain microenvironment. BCECs are sealed together by tight junctions (TJs) that are responsible for the barrier phenotype. In these junctions, molecules such as JAM (junctional adhesion molecules), occludin and claudins are present. Threedimensional scaffolds are used to grow cells in order to obtain in vitro engineered tissues. On the base of these considerations, the aim of this work was to understand whether the endothelial cells were able to grow and survive on a new three-dimensional structure. If yes, indeed, this system could be further enriched and used to set a three-dimensiona…

Settore ING-IND/24 - Principi Di Ingegneria ChimicaSettore BIO/13 - Biologia ApplicataPLLA scaffoldbiomedical engineeringSettore BIO/10 - BiochimicaBCEC
researchProduct

Microscopic evidence of the primary astrocytes' morphological differentiation and migration inside porous Poly-L-lactic acid 3D‑scaffolds

2019

Tissue engineering is an emerging multidisciplinary field that aims at reproducing in vitro and/or in vivo tissues with morphological and functional features similar to the biological tissue of the human body [1]. In the attempt to construct suitable tissue models, a critical step is the setting of 3D scaffolds that mimic the supportive structures of a natural extracellular matrix microenvironment into which cells are normally embedded. In this context, the generation of 3D cultures of brain cells is of particular interest. For instance, the poly L‐lactic acid (PLLA) polymer is wildly used because of its biocompatible and biodegradable potential; the PLLA scaffold topography simulates the n…

Settore ING-IND/24 - Principi Di Ingegneria ChimicaSettore BIO/13 - Biologia ApplicataSettore BIO/10 - Biochimicaastrocytesnanomaterials in biology and medicineextracellular vesicles3D cultures
researchProduct

Pre-vascularized PLLA scaffolds: A new approcah to develop deep tissue regeneration

2010

Settore ING-IND/24 - Principi Di Ingegneria ChimicaSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiSettore BIO/10 - Biochimica-
researchProduct

Patent number RM2009A000073: Procedimento di preparazione di scaffold polimerici preangiogenizzati

2009

Classe proposta A61F - Filtri da inserire nei vasi sanguigni; protesi; apparecchi ortopedici e curativi per contraccezione; fomentazione; trattamento o protezione degli occhi e delle orecchie; bendaggi, garze per medicazioni e assorbenti; necessario per il pronto soccorso

Settore ING-IND/24 - Principi Di Ingegneria ChimicaSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiSettore BIO/10 - BiochimicaScaffold Ingegneria tissutale polimeri biodegradabili angiogenesi
researchProduct

Hydroxyapatite/Chitosan/Collagen coatings through galvanic coupling

In this work, the attention was focused on Hydroxyapatite/ Chitosan/Collagen composite as biocoatings for application in orthopaedic devices. Hydroxyapatite was selected for its osteoconductivity due to its chemical structure similar to bones. Collagen has the same function since 90-95% of bone matrix is constituted of collagen fibers. Furthermore, chitosan are largely used yet in medical field (e.g. antibacterial agent or drug deliver) and in this work were used to create a synergic interaction with hydroxyapatite and collagen to increase the strength and bioactivity of coating. Coatings were fabricated by galvanic deposition process that has different advantages an it does not require ext…

Settore ING-IND/24 - Principi Di Ingegneria ChimicaSettore ING-IND/23 - Chimica Fisica ApplicataSettore BIO/10 - BiochimicaSettore ING-IND/34 - Bioingegneria IndustrialeGalvanic deposition hydroxyapatite 304 stainless steel orthopedic implants chitosan collagen corrosion cytocompatibility
researchProduct