0.75 mm Compact Multi Gel Cast
- Known as:
- 0.75 millimeter Compact Multi Gel Cast
- Catalog number:
- 2322602
- Category:
- -
- Supplier:
- Ato
- Gene target:
- 0.75 Compact Multi Gel Cast
Ask about this productRelated genes to: 0.75 mm Compact Multi Gel Cast
- Gene:
- ABCC3 NIH gene
- Name:
- ATP binding cassette subfamily C member 3
- Previous symbol:
- -
- Synonyms:
- MRP3, cMOAT2, EST90757, MLP2, MOAT-D
- Chromosome:
- 17q21.33
- Locus Type:
- gene with protein product
- Date approved:
- 1999-10-26
- Date modifiied:
- 2018-05-03
- Gene:
- ADGRF5 NIH gene
- Name:
- adhesion G protein-coupled receptor F5
- Previous symbol:
- GPR116
- Synonyms:
- DKFZp564O1923, KIAA0758
- Chromosome:
- 6p12.3
- Locus Type:
- gene with protein product
- Date approved:
- 2002-11-26
- Date modifiied:
- 2015-03-03
- Gene:
- ANGEL1 NIH gene
- Name:
- angel homolog 1
- Previous symbol:
- KIAA0759
- Synonyms:
- Ccr4e
- Chromosome:
- 14q24.3
- Locus Type:
- gene with protein product
- Date approved:
- 2003-11-21
- Date modifiied:
- 2016-06-29
- Gene:
- ANGEL2 NIH gene
- Name:
- angel homolog 2
- Previous symbol:
- -
- Synonyms:
- KIAA0759L, FLJ12793, Ccr4d
- Chromosome:
- 1q32.3
- Locus Type:
- gene with protein product
- Date approved:
- 2005-08-04
- Date modifiied:
- 2016-06-29
- Gene:
- ASNSD1 NIH gene
- Name:
- asparagine synthetase domain containing 1
- Previous symbol:
- -
- Synonyms:
- NS3TP1, FLJ20752, NBLA00058
- Chromosome:
- 2q32.2
- Locus Type:
- gene with protein product
- Date approved:
- 2006-02-13
- Date modifiied:
- 2015-08-28
Related products to: 0.75 mm Compact Multi Gel Cast
Related articles to: 0.75 mm Compact Multi Gel Cast
- This work presents the development, characterization, and partial analytical method validation of a non-enzymatic electrochemical sensor based on a nanocomposite comprising iron oxide magnetic nanoparticles (MNPs), phosphorylated cellulose nanofibers (pCNF), and graphene oxide (GO) for the determination of chloramphenicol (CAP) by square-wave adsorptive stripping voltammetry. The MNPs@pCNF-GO composite was synthesized and deposited onto a glassy carbon electrode (GCE) by drop-casting, forming an MNPs@pCNF-GO-modified GCE (MNPs@pCNF-GO-GCE). The successful formation and morphological, structural, interfacial, and magnetic properties of the magnetic nanocomposite were investigated using scanning transmission electron microscopy, X-ray diffraction, zeta potential analysis, and vibrating-sample magnetometry. Time-of-flight secondary ion mass spectrometry confirmed extensive coverage of the GCE surface with the MNPs@pCNF-GO layer. The influence of the drop-cast volume () of MNPs@pCNF-GO and dissolved oxygen on the electrochemical signal was investigated. A drop-cast volume of 20 μL of MNPs@pCNF-GO dispersion on the GCE surface suppressed the oxygen reduction signal, eliminating the need for oxygen removal and enabling rapid analysis. The partial method validation was performed in 0.1 M phosphate buffer solution (pH = 6.5) after applying the Savitzky-Golay smoothing procedure. The experimentally determined limit of detection (LOD) and limit of quantification (LOQ) were 39.9 μg L and 79.7 μg L, respectively. The determined linear concentration range was from the LOQ to 2336.4 μg L ( ≥ 0.99). The method was deemed accurate and precise, with average recoveries of 98.8% (at the low concentration level of the linear concentration range) and 99.1% (at the middle concentration level of the linear concentration range) and relative standard deviations (RSD) of 5.3% and 7.9%, respectively. The repeatability and reproducibility of the method were also tested and confirmed, with RSD values of 4.7% and 6.1%, respectively. The applicability of the developed MNPs@pCNF-GO-GCE was successfully demonstrated for the analysis of tap water using the multiple standard addition method, confirming accurate and precise determination. An interference study showed that common cations and anions present in tap water do not significantly affect CAP determination. - Source: PubMed
Publication date: 2026/09/11
Majer DavidPlohl OlivijaGyergyek SašoFinšgar Matjaž - Cubitus varus deformity is a common complication following supracondylar fractures of the humeri in children. Due to the limited capacity of the distal humeral epiphysis to spontaneously correct existing varus deformity, the deformity typically persists into adulthood without improvement. Accurate correction of this deformity is essential to prevent late complications and significantly improve cosmetic appearance. However, achieving precise correction through a limited incision remains technically emanding. - Source: PubMed
Publication date: 2026/08/27
Guo Jiang-LongZeng XiaoGuan Jian-HaoChen Hai-YunZhao KuiZhang Mei-Ren - Bacterial meningitis is a life-threatening neurological disorder frequently caused by a Streptococcus pneumoniae (the pneumococcus) infection of the brain. Standard treatment consists of antibiotics to eliminate bacteria and dexamethasone to reduce inflammation. Despite this, mortality reaches 20% in treated individuals, and half of the survivors suffer long-term neurological sequelae. This is largely due to the poor capacity of antibiotics to reach the brain and the lack of antimicrobial treatment capable of neutralizing the pneumococcal toxin pneumolysin (Ply). To address these limitations, we isolated extracellular vesicles (EVs) derived from human HEK293T cells and evaluated their therapeutic potential in pneumococcal meningitis. Alongside wild-type EVs (WT.EVs), we bioengineered EVs to express RVG peptides (RVG.EV) for targeting neuronal acetylcholine receptors, signal incompetent IL-6 signal transducer (IL-6ST) decoy receptors (IL-6.EV) to block the pro-inflammatory signalling of IL-6, or EVs expressing both RVG peptides and IL-6ST (DB.EV). In vitro, all EVs reduced pneumococcal adhesion to neurons and mitigated cytotoxicity by binding and sequestering Ply. In a bacteremia-derived pneumococcal meningitis model, EV treatment significantly increased the survival of the mice without affecting bacterial load in the brain or the periphery. Among all groups, RVG.EV treatment was most effective in reducing pro-inflammatory cytokine release in the periphery and brain. These findings highlight the therapeutic potential of bioengineered EVs, particularly RVG peptides expressing EVs, as an adjunctive treatment for pneumococcal meningitis thanks to their (i) sequestration and neutralization of Ply, (ii) increased blood-brain barrier crossing, and (iii) dampening of inflammation. - Source: PubMed
Farmen KristineMamand Doste RTofiño-Vian MiguelYfanti GeorgiaLiang XiumingZhou HouzeHou Vicky W QAndaloussi Samir ElWiklander Oscar P BIovino Federico - Charcot Foot (CF) is a neuropathy-induced condition that can lead to fractures and dislocation, warranting long-time offloading in total contact cast (TCC). It is unknown whether CF or its treatment increases the risk of venous thromboembolism (VTE). This study aims to retrospectively investigate the risk of VTE in people with CF during and after treatment. - Source: PubMed
Schoug JohanKatzman PerUddman ErikLöndahl Magnus - The redevelopment of closed landfills exposes cast-in-situ concrete, a key infrastructure material, to complex landfill leachate immediately upon placement. This results in the simultaneous occurrence of hydration and degradation, posing a severe challenge to its long-term durability. To elucidate the degradation mechanisms of plastic-state cast-in-situ concrete under multi-factor coupling conditions, this work compares the erosive effects of clean water and landfill leachate with CODs of 10,000, 20,000, and 30,000 mg/L on early-age formation and long-term performance. The results indicate that elevated COD levels markedly accelerate concrete deterioration. Under high-COD exposure, earlier surface damage was observed. After 360 days, specimens in 30,000 mg/L COD leachate exhibited a 15.9% loss in peak compressive strength and a 3.43% mass change rate. Microstructural analysis reveals deterioration from synergistic interactions of organic acids with Cl, SO, CO, and Mg. High COD levels not only expedite the consumption of Ca(OH) but also initiate intricate physicochemical reactions. The initial corrosion stage is dominated by organic acids and chloride ions, forming soluble calcium and Friedel's salt that compromise matrix integrity. This leads to an intermediate stage dominated by sulfate and carbonate reactions that generate expansive ettringite, which accelerates deterioration. The process culminates in an advanced stage where organic acids persist, Cl revert to Friedel's salt, and Mg facilitate M-S-H gel formation. This coupled multi-stage effect ultimately reduce the microstructural density and accelerate macroscopic property loss of concrete. These insights establish a theoretical basis for developing highly durable, low-carbon construction materials suitable for extreme environments such as landfills. - Source: PubMed
Publication date: 2026/09/10
Gao MengFan GuangdaWan ZhenhuiGuo Keting