Publications by authors named "Y Anraku"

The structure of many native tissues consists of aligned collagen (Col) fibrils, some of which are further composited with dispersed hydroxyapatite (HAp) nanocrystals. Accurately mimicking this inherent structure is a promising approach to enhance scaffold biocompatibility in tissue engineering. In this study, biomimetic sheets composed of highly aligned Col fibrils were fabricated using a plastic compression and tension method, followed by the deposition of HAp nanocrystals on the surface via an alternate soaking method.

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Article Synopsis
  • Since 2019, SARS-CoV-2 has mutated, leading to various pandemic and epidemic waves that involve changes in its spike protein, which is key for the virus's entry into cells.
  • Researchers studied the spike proteins from variants BA.2.86 and JN.1, discovering structures where ACE2 receptor binds to the spike protein in both up and down conformations.
  • Their findings suggest that the down-conformation of the receptor-binding domain (RBD) is an important intermediate state that helps facilitate the virus's entry, with specific mutations like K356T impacting infectivity and resistance to neutralizing antibodies.
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Recently, bottom-up technologies, in particular the utilization of self-assembly of functional polymers to form nanostructures in solutions have been collecting attention. These technologies are being explored for various applications, especially for usage in therapeutics. One of the goals of such studies is to develop a drug delivery system (DDS) that delivers bioactive substances to specific targets within our body, eliciting the desired functionality.

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Objectives: This study was conducted to verify the effectiveness of Anterior Support Screw (AS2) for unstable femoral trochanteric fractures.

Design: A multicenter, prospective, randomized controlled trial SETTING: This study was conducted across 15 academic medical centers in Japan PATIENTS/PARTICIPANTS: We enrolled 240 cases of femoral trochanteric fractures with posterior crushing and intramedullary displacement of proximal bone fragments across 15 institutions in Japan.

Intervention: All patients were subjected to a reduction in which the anterior cortex was brought into contact.

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Nanocarriers based on cationic materials play a central role in the success of mRNA-based therapies. Traditionally, amine-bearing lipids and polymers have been successfully employed for creating mRNA-loaded nanocarriers, though they still present challenges, such as physical and biological instability, limiting both delivery efficiency and therapeutic potential. Non-amine cations could be a promising avenue in addressing these limitations.

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