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1.
Ned Tijdschr Geneeskd ; 160: D429, 2016.
Article in Dutch | MEDLINE | ID: mdl-27677237

ABSTRACT

BACKGROUND: Cutaneous leishmaniasis is rare in the Netherlands, but it is endemic to Syria. The disease can manifest itself many years after initial exposure. Given the arrival of Syrian refugees in the Netherlands, awareness of this disease entity is warranted. CASE DESCRIPTION: A 5-year-old boy from Syria had investigations for hepatosplenomegaly. As an incidental finding a solitary, moderately demarcated, erythematous plaque was noted on his right cheek. It measured 4 × 2 cm and had a central haemorrhagic, exudative, honey-yellow slough. Due to the hepatosplenomegaly, as well as cutaneous leishmaniasis we also included its visceral form in the differential diagnosis. Additional investigations confirmed the diagnosis of cutaneous leishmaniasis. CONCLUSION: Given the rising incidence of leishmaniasis in Syria, the diagnosis of cutaneous leishmaniasis should be considered in a Syrian refugee who has an ulcerating nodule or plaque. A timely local treatment may improve long-term cosmetic outcome.

3.
J Biomed Mater Res A ; 78(2): 291-7, 2006 Aug.
Article in English | MEDLINE | ID: mdl-16637025

ABSTRACT

The functional capacity of osseointegrated dental implants to bear load is largely dependent on the quality of the interface between the bone and implant. Sandblasted and acid-etched (SLA) surfaces have been previously shown to enhance bone apposition. In this study, the SLA has been compared with a chemically modified SLA (modSLA) surface. The increased wettability of the modSLA surface in a protein solution was verified by dynamic contact angle analysis. Using a well-established animal model with a split-mouth experimental design, implant removal torque testing was performed to determine the biomechanical properties of the bone-implant interface. All implants had an identical cylindrical shape with a standard thread configuration. Removal torque testing was performed after 2, 4, and 8 weeks of bone healing (n = 9 animals per healing period, three implants per surface type per animal) to evaluate the interfacial shear strength of each surface type. Results showed that the modSLA surface was more effective in enhancing the interfacial shear strength of implants in comparison with the conventional SLA surface during early stages of bone healing. Removal torque values of the modSLA-surfaced implants were 8-21% higher than those of the SLA implants (p = 0.003). The mean removal torque values for the modSLA implants were 1.485 N m at 2 weeks, 1.709 N m at 4 weeks, and 1.345 N m at 8 weeks; and correspondingly, 1.231 N m, 1.585 N m, and 1.143 N m for the SLA implants. The bone-implant interfacial stiffness calculated from the torque-rotation curve was on average 9-14% higher for the modSLA implants when compared with the SLA implants (p = 0.038). It can be concluded that the modSLA surface achieves a better bone anchorage during early stages of bone healing than the SLA surface; chemical modification of the standard SLA surface likely enhances bone apposition and this has a beneficial effect on the interfacial shear strength.


Subject(s)
Dental Implants , Titanium/chemistry , Biocompatible Materials , Bone Screws , Shear Strength , Surface Properties , Torque
4.
J Biomed Mater Res A ; 76(2): 323-34, 2006 Feb.
Article in English | MEDLINE | ID: mdl-16270344

ABSTRACT

Roughness-induced hydrophobicity, well-known from natural plant surfaces and intensively studied toward superhydrophobic surfaces, has currently been identified on microstructured titanium implant surfaces. Studies indicate that microstructuring by sandblasting and acid etching (SLA) enhances the osteogenic properties of titanium. The undesired initial hydrophobicity, however, presumably decelerates primary interactions with the aqueous biosystem. To improve the initial wettability and to retain SLA microstructure, a novel surface modification was tested. This modification differs from SLA by its preparation after acid etching, which was done under protective gas conditions following liquid instead of dry storage. We hypothesized that this modification should have increased wettability due to the prevention of contaminations that occurs during air contact. The main outcome of dynamic wettability measurements was that the novel modification shows increased surface free energy (SFE) and increased hydrophilicity with initial water contact angles of 0 degrees compared to 139.9 degrees for SLA. This hydrophilization was kept even after any drying. Reduced hydrocarbon contaminations were identified to play a possible role in altered surface thermodynamics. Such surfaces aim to retain the hydrophilicity and natural high surface energy of the Ti dioxide surface until surgical implants' insertion and are compared in this in vitro study with structural surface variants of titanium to compare roughness and chemically induced wettability.


Subject(s)
Prostheses and Implants , Titanium , Wettability , Acids , Microscopy, Electron, Scanning , Spectrum Analysis , Surface Properties , Thermodynamics , X-Rays
5.
Ann N Y Acad Sci ; 1006: 291-305, 2003 Dec.
Article in English | MEDLINE | ID: mdl-14976025

ABSTRACT

In this review the emerging science of single molecules is discussed in the perspective of nanoscale molecular functions and devices. New methods for the controlled assembly of well-defined molecular nanostructures are presented: self assembly and single molecular positioning. The observation and selective modification of conformation, electronics, and molecular mechanics of individual molecules and molecular assemblies by scanning probes is demonstrated. To complement this scientific review, some of the possible consequences and visions for future developments are discussed, as far as they derive from the presented systems. The prospects of nanoscale science to stimulate technological evolution are exemplified.


Subject(s)
Computers, Molecular , Crystallization/methods , Electrochemistry/methods , Electronics/instrumentation , Electronics/methods , Microelectrodes , Nanotechnology/instrumentation , Nanotechnology/methods , Adsorption , Electric Conductivity , Electrochemistry/instrumentation , Electrochemistry/trends , Electronics/trends , Equipment Design , Molecular Conformation , Nanotechnology/trends
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