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Dive into the research topics where Mikk Antsov is active.

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Featured researches published by Mikk Antsov.


Scientific Reports | 2016

The alterations in the extracellular matrix composition guide the repair of damaged liver tissue

Mariliis Klaas; Triin Kangur; Janeli Viil; Kristina Mäemets-Allas; Ave Minajeva; Krista Vadi; Mikk Antsov; Natalia Lapidus; Martin Järvekülg; Viljar Jaks

While the cellular mechanisms of liver regeneration have been thoroughly studied, the role of extracellular matrix (ECM) in liver regeneration is still poorly understood. We utilized a proteomics-based approach to identify the shifts in ECM composition after CCl4 or DDC treatment and studied their effect on the proliferation of liver cells by combining biophysical and cell culture methods. We identified notable alterations in the ECM structural components (eg collagens I, IV, V, fibronectin, elastin) as well as in non-structural proteins (eg olfactomedin-4, thrombospondin-4, armadillo repeat-containing x-linked protein 2 (Armcx2)). Comparable alterations in ECM composition were seen in damaged human livers. The increase in collagen content and decrease in elastic fibers resulted in rearrangement and increased stiffness of damaged liver ECM. Interestingly, the alterations in ECM components were nonhomogenous and differed between periportal and pericentral areas and thus our experiments demonstrated the differential ability of selected ECM components to regulate the proliferation of hepatocytes and biliary cells. We define for the first time the alterations in the ECM composition of livers recovering from damage and present functional evidence for a coordinated ECM remodelling that ensures an efficient restoration of liver tissue.


Nano Letters | 2014

Shape Restoration Effect in Ag–SiO2 Core–Shell Nanowires

Sergei Vlassov; Boris Polyakov; Leonid M. Dorogin; Mikk Vahtrus; Magnus Mets; Mikk Antsov; Rando Saar; A. E. Romanov; Ants Lõhmus; Rünno Lõhmus

The combination of two different materials in a single composite core-shell heterostructure can lead to improved or even completely novel properties. In this work we demonstrate the enhancement of the mechanical properties of silver (Ag) nanowires (NW) achieved by coating them with a silica (SiO2) shell. In situ scanning electron microscope (SEM) nanomechanical tests of Ag-SiO2 core-shell nanowires reveal an improved fracture resistance and an electron-beam induced shape restoration effect. In addition, control experiments are conducted separately on uncoated Ag NWs and on empty SiO2 shells in order to gain deeper insight into the peculiar properties of Ag-SiO2. Test conditions are simulated using finite-element methods; possible mechanisms responsible for the shape restoration and the enhanced fracture resistance are discussed.


Beilstein Journal of Nanotechnology | 2014

Manipulation of nanoparticles of different shapes inside a scanning electron microscope

Boris Polyakov; Sergei Vlassov; Leonid M. Dorogin; Jelena Butikova; Mikk Antsov; Sven Oras; Rünno Lõhmus; Ilmar Kink

Summary In this work polyhedron-like gold and sphere-like silver nanoparticles (NPs) were manipulated on an oxidized Si substrate to study the dependence of the static friction and the contact area on the particle geometry. Measurements were performed inside a scanning electron microscope (SEM) that was equipped with a high-precision XYZ-nanomanipulator. To register the occurring forces a quartz tuning fork (QTF) with a glued sharp probe was used. Contact areas and static friction forces were calculated by using different models and compared with the experimentally measured force. The effect of NP morphology on the nanoscale friction is discussed.


Nanoscale Research Letters | 2014

Some aspects of formation and tribological properties of silver nanodumbbells

Boris Polyakov; Sergei Vlassov; Leonid M. Dorogin; Natalia Novoselska; Jelena Butikova; Mikk Antsov; Sven Oras; Rünno Lõhmus; Ilmar Kink

In this paper, metal nanodumbbells (NDs) formed by laser-induced melting of Ag nanowires (NWs) on an oxidized silicon substrate and their tribological properties are investigated. The mechanism of ND formation is proposed and illustrated with finite element method simulations. Tribological measurements consist in controllable real-time manipulation of NDs inside a scanning electron microscope (SEM) with simultaneous force registration. The geometry of NDs enables to distinguish between different types of motion, i.e. rolling, sliding and rotation. Real contact areas are calculated from the traces left after the displacement of NDs and compared to the contact areas predicted by the contact mechanics and frozen droplet models.PACS81.07.-b; 62.25.-g; 62.23.Hj


Beilstein Journal of Nanotechnology | 2014

Mechanical properties of sol–gel derived SiO2 nanotubes

Boris Polyakov; Mikk Antsov; Sergei Vlassov; Leonid M. Dorogin; Mikk Vahtrus; Roberts Zabels; Sven Lange; Rünno Lõhmus

Summary The mechanical properties of thick-walled SiO2 nanotubes (NTs) prepared by a sol–gel method while using Ag nanowires (NWs) as templates were measured by using different methods. In situ scanning electron microscopy (SEM) cantilever beam bending tests were carried out by using a nanomanipulator equipped with a force sensor in order to investigate plasticity and flexural response of NTs. Nanoindentation and three point bending tests of NTs were performed by atomic force microscopy (AFM) under ambient conditions. Half-suspended and three-point bending tests were processed in the framework of linear elasticity theory. Finite element method simulations were used to extract Young’s modulus values from the nanoindentation data. Finally, the Young’s moduli of SiO2 NTs measured by different methods were compared and discussed.


Nanotechnology | 2017

Enhanced flexibility and electron-beam-controlled shape recovery in alumina-coated Au and Ag core–shell nanowires

Sergei Vlassov; Boris Polyakov; Mikk Vahtrus; Magnus Mets; Mikk Antsov; Sven Oras; Aivar Tarre; Tõnis Arroval; Rünno Lõhmus; Jaan Aarik

The proper choice of coating materials and methods in core-shell nanowire (NW) engineering is crucial to assuring improved characteristics or even new functionalities of the resulting composite structures. In this paper, we have reported electron-beam-induced reversible elastic-to-plastic transition in Ag/Al2O3 and Au/Al2O3 NWs prepared by the coating of Ag and Au NWs with Al2O3 by low-temperature atomic layer deposition. The observed phenomenon enabled freezing the bent core-shell NW at any arbitrary curvature below the yield strength of the materials and later restoring its initially straight profile by irradiating the NW with electrons. In addition, we demonstrated that the coating efficiently protects the core material from fracture and plastic yield, allowing it to withstand significantly higher deformations and stresses in comparison to uncoated NW.


Nanotechnology | 2018

Low-friction Nanojoint Prototype

Sergei Vlassov; Sven Oras; Mikk Antsov; Jelena Butikova; Rünno Lõhmus; Boris Polyakov

High surface energy of individual nanostructures leads to high adhesion and static friction that can completely hinder the operation of nanoscale systems with movable parts. For instance, silver or gold nanowires cannot be moved on silicon substrate without plastic deformation. In this paper, we experimentally demonstrate an operational prototype of a low-friction nanojoint. The movable part of the prototype is made either from a gold or silver nano-pin produced by laser-induced partial melting of silver and gold nanowires resulting in the formation of rounded bulbs on their ends. The nano-pin is then manipulated into the inverted pyramid (i-pyramids) specially etched in a Si wafer. Due to the small contact area, the nano-pin can be repeatedly tilted inside an i-pyramid as a rigid object without noticeable deformation. At the same time in the absence of external force the nanojoint is stable and preserves its position and tilt angle. Experiments are performed inside a scanning electron microscope and are supported by finite element method simulations.


Beilstein Journal of Nanotechnology | 2017

Colorimetric gas detection by the varying thickness of a thin film of ultrasmall PTSA-coated TiO2 nanoparticles on a Si substrate

Urmas Joost; Andris Šutka; Meeri Visnapuu; Aile Tamm; Meeri Lembinen; Mikk Antsov; Kathriin Utt; Krisjanis Smits; Ergo Nõmmiste; Vambola Kisand

Colorimetric gas sensing is demonstrated by thin films based on ultrasmall TiO2 nanoparticles (NPs) on Si substrates. The NPs are bound into the film by p-toluenesulfonic acid (PTSA) and the film is made to absorb volatile organic compounds (VOCs). Since the color of the sensing element depends on the interference of reflected light from the surface of the film and from the film/silicon substrate interface, colorimetric detection is possible by the varying thickness of the NP-based film. Indeed, VOC absorption causes significant swelling of the film. Thus, the optical path length is increased, interference wavelengths are shifted and the refractive index of the film is decreased. This causes a change of color of the sensor element visible by the naked eye. The color response is rapid and changes reversibly within seconds of exposure. The sensing element is extremely simple and cheap, and can be fabricated by common coating processes.


Physica Scripta | 2015

Metal nanodumbbells for nanomanipulations and tribological experiments

Boris Polyakov; Sergei Vlassov; Leonid M. Dorogin; Jelena Butikova; Krisjanis Smits; Mikk Antsov; Sven Oras; R Zabels; R. Lohmus

Nanomanipulation experiments were carried out on nanodumbbells (NDs) to study their kinetic behavior and tribological properties. Ag, Au and Cu NDs were produced by laser-induced melting of corresponding nanowires (NWs). NDs were characterized by transmission electron microscopy (TEM) and scanning electron microscopy (SEM). Manipulation experiments were performed first with atomic force microscope (AFM) at ambient conditions, and then inside SEM at high vacuum conditions. Different regimes of motion were observed. In-plane and out-of-substrate-plane rotation were identified as the most preferred motion types of NDs.


Physica Status Solidi B-basic Solid State Physics | 2013

Real-time manipulation of ZnO nanowires on a flat surface employed for tribological measurements: Experimental methods and modeling

Leonid M. Dorogin; Sergei Vlassov; Boris Polyakov; Mikk Antsov; Rünno Lõhmus; Ilmar Kink; A. E. Romanov

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