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In BS patients, CL were associated with persistent T2D and lower BMI.
In BS patients, CL were associated with persistent T2D and lower BMI.
The aim of this study was to compare the deviation of the implant position after placement in single maxillary incisor post-extraction sockets between fully and partially guided surgery.
Twenty-four patients with a failing maxillary incisor were randomly allocated into two groups the partially guided surgery (PGS, n = 12) group or fully guided surgery (FGS, n = 12) group. Clinical analyses, intra-oral scans, and computed tomography scans (CT) were initially performed to define the virtual positioning of the implants and fabrication of the 3D printed surgical guides. A narrow, 3.5 × 16 mm implant was placed in each socket. In this moment, the insertion torque (IT) was assessed and resonance frequency analysis (RFA) was performed. All patients received an immediate provisional without occlusal contacts. Another CT scan was performed after the procedures to compare the implant position with the virtually planned position.
Significant deviations occurred at the implant apex, according to the global and facial-palatal analyses, in comparison to its cervical position. The PGS group also presented a larger deviation in the MD position. No statistical differences between the groups were detected, however, there was a tendency of lower angular deviation in the PGS group.
While there was a slight deviation from the virtually planned position of the implant to the actual position and a tendency of lower angular deviation in the PGS group, there was no difference among groups regarding its position and primary stability. (UNT 1111-1214-2812 - http//www.ensaiosclinicos.gov.br/rg/RBR-4tmcrk/).
While there was a slight deviation from the virtually planned position of the implant to the actual position and a tendency of lower angular deviation in the PGS group, there was no difference among groups regarding its position and primary stability. (UNT 1111-1214-2812 - http//www.ensaiosclinicos.gov.br/rg/RBR-4tmcrk/).DNA nanostructures provide a powerful platform for the programmable assembly of nanomaterials. Here this approach is extended to synthesize rod-like gold nanoparticles in a full DNA controlled manner. The approach is based on DNA molds containing elongated cavities. Gold is deposited inside the molds using a seeded-growth procedure. By carefully exploring the growth parameters it is shown that gold nanostructures with aspect ratios of up to 7 can be grown from single seeds. The highly anisotropic growth is in this case controlled only by the rather soft and porous DNA walls. The optimized seeded growth procedure provides a robust and simple routine to achieve continuous gold nanostructures using DNA templating.Aging is associated with redox imbalance according to the redox theory of aging. Consistently, a mouse model of premature aging (LmnaG609G/+ ) showed an increased level of mitochondrial reactive oxygen species (ROS) and a reduced basal antioxidant capacity, including loss of the NADPH-coupled glutathione redox system. LmnaG609G/+ mice also exhibited reduced mitochondrial ATP synthesis secondary to ROS-induced mitochondrial dysfunction. Treatment of LmnaG609G/+ vascular smooth muscle cells with magnesium-enriched medium improved the intracellular ATP level, enhanced the antioxidant capacity, and thereby reduced mitochondrial ROS production. Moreover, treatment of LmnaG609G/+ mice with dietary magnesium improved the proton pumps (complexes I, III, and IV), stimulated extramitochondrial NADH oxidation and enhanced the coupled mitochondrial membrane potential, and thereby increased H+ -coupled mitochondrial NADPH and ATP synthesis, which is necessary for cellular energy supply and survival. Consistently, magnesium treatment reduced calcification of vascular smooth muscle cells in vitro and in vivo, and improved the longevity of mice. selleck products This antioxidant property of magnesium may be beneficial in children with HGPS.
Skeletal muscles are distributed throughout the body, presenting a variety of sizes, shapes and functions. Here, we examined whether muscle regeneration and atrophy occurred homogeneously throughout the body in mouse models.
Acute muscle regeneration was induced by a single intramuscular injection of cardiotoxin in adult mice. Chronic muscle regeneration was assessed in mdx mice. Muscle atrophy in different muscles was evaluated by cancer cachexia, ageing and castration mouse models.
We found that, in the cardiotoxin-injected acute muscle injury model, head muscles slowly regenerated, while limb muscles exhibited a rapid regeneration and even overgrowth. This overgrowth was also observed in limb muscles alone (but not in head muscles) in mdx mice as chronic injury models. We described the body region-specific decline in the muscle mass in muscle atrophy models cancer cachexia-induced, aged and castrated mice. The positional identities, including gene expression profiles and hormone sensitivity, were robustly preserved in the ectopically engrafted satellite cell-derived muscles in the castrated model.
Our results indicate that positional identities in muscles should be considered for the development of efficient regenerative therapies for muscle weakness, such as muscular dystrophy and age-related sarcopenia.
Our results indicate that positional identities in muscles should be considered for the development of efficient regenerative therapies for muscle weakness, such as muscular dystrophy and age-related sarcopenia.Aqueous zinc-ion batteries with low cost and inherent safety are considered to be the next-generation energy storage device. However, they suffer from poor cycling stability and low coulombic efficiency caused by the serious zinc dendrites during the cycling. In this work, a porous water-based filter membrane is first proposed as separator due to its good toughness and uniform pore distribution. The results demonstrate that the symmetrical cell using a filter membrane can cycle over 2600 h with a low voltage hysteresis of 47 mV. Moreover, an aqueous Zn//NaV3 O8 ·1.5H2 O cell based on the filter membrane is constructed, which demonstrates a high capacity retention of 83.8% after 5000 cycles at 5 A g-1 . The mechanism research results reveal that the excellent dendrites inhibiting the ability of the filter membrane should be attributed to its uniform pore distribution rather than its composition. This work proposes a filter membrane separator and reveals the great influence of separator on the zinc stripping/plating process, which will shed light on the development of high-performance aqueous zinc-ion batteries.
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