九州大学 · 材料科学
ムハンマド・シャフィーク教授の研究室では、生体適合性ナノファイバー材料の開発に注力しており、特に組織工学や創傷治療を目的とした機能性ナノファイバー接着材やエアロゲルの設計を進めています。反応性酸素種(ROS)の制御や抗菌・抗炎症作用を持つ多機能的 wound dressingの開発も重要な研究テーマです。また、生体分解性ポリマーとナノ材料を組み合わせたスマートな生体材料の開発を通じて、体内での長期的かつ局所的なバイオマoleculeの放出を実現する技術開発を推進しています。
Figures are computed from collected data and may differ slightly.
Electrospinning is a versatile strategy for creating nanofiber materials with various structures, which has broad application for a myriad of areas ranging from tissue engineering, energy harvesting, filtration and has become one of the most important academic and technical activities in the field of material science in recent years. In addition to playing a significant role in the construction of two-dimensional (2D) nanomaterials, electrospinning holds great promise as a robust method for prod
Reactive oxygen species (ROS), acting as essential mediators in biological system, play important roles in the physiologic and pathologic processes, including cellular signal transductions and cell homeostasis interference. Aberrant expression of ROS in tissue microenvironment can be caused by the internal/external stimuli and tissue injury, which may leads to an elevated level of oxidative stress, inflammatory response, and cellular damage as well as disruption in the tissue repair process. To
This study presents the influence of zinc oxide (ZnO) on the structural, thermal, and antibacterial characteristics of chitosan. The chitosan composites containing different concentrations of ZnO (0.5–2 mass ratio with respect to chitosan) were prepared using sol‐cast transformation method. Fourier‐transform infrared spectra and X‐ray diffraction patterns revealed chemical interactions between the chitosan and ZnO in the composites that became more evident at higher concentrations of filler. The
Abstract Linear low‐density polyethylene (LLDPE)/sepiolite nanocomposites were prepared by melt blending using unmodified and silane‐modified sepiolite. Two methods were used to modify sepiolite: modification before heat mixing ( ex situ ) and modification during heat mixing ( in situ ). The X‐ray diffraction results showed that the position of the main peak of sepiolite remained unchanged during modification step. Infrared spectra showed new peaks confirming the development of new bonds in modi
Excessive scar tissue formation along with bacterial infection, hemorrhage, and oxidative wound microenvironment pose adverse physiological and psychological effects on patients, which necessitate the advent of innovative anti-inflammatory, anti-bacterial, and anti-oxidative multifunctional wound dressings. The overarching objective of this study was to exploit bioactive glass (BG) and a natural anti-bacterial component namely “oregano essential oil (OEO)” to impart multifunctionality to poly(L-
In situ tissue regeneration holds great promise for regenerative medicine and tissue engineering applications. However, to achieve control over long-term and localised presence of biomolecules, certain barriers must be overcome. The aim of this study was to develop electrospun scaffolds for the fabrication of artificial vascular grafts that can be remodelled within a host by endogenous cell recruitment. We fabricated scaffolds by mixing appropriate proportions of linear poly (l-lactide-co-ε-capr
Stem cells have been extensively used in regenerative medicine and tissue engineering; however, they often lose their functionality because of the inflammatory microenvironment. This leads to their poor survival, retention, and engraftment at transplantation sites. Considering the rapid loss of transplanted cells due to poor cell-cell and cell-extracellular matrix (ECM) interactions during transplantation, it has been reasoned that stem cells mainly mediate reparative responses via paracrine mec
SDF-1α and SP grafts can be potential candidates for in situ vascular regeneration and are worthy for future investigations.
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