• 제목/요약/키워드: Biocompatible

검색결과 448건 처리시간 0.023초

One-pot Synthesis of Multifunctional Mn3O4/mesoporous Silica Core/shell Nanoparticles for Biomedical Applications

  • Lee, Dong Jun;Lee, Nohyun;Lee, Ji Eun
    • 공업화학
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    • 제33권1호
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    • pp.113-118
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    • 2022
  • Multifunctional nanomaterials based on mesoporous silica nanoparticles (MSN) and metal oxide nanocrystals are among the most promising materials for theragnosis because of their ease of modification and high biocompatibility. However, the preparation of multifunctional nanoparticles requires time-consuming multistep processes. Herein, we report a simple one-pot synthesis of multifunctional Mn3O4/mesoporous silica core/shell nanoparticles (Mn3O4@mSiO2) involving the temporal separation of core formation and shell growth. This simple procedure greatly reduces the time and effort required to prepare multifunctional nanoparticles. Despite the simplicity of the process, the properties of nanoparticles are not markedly different from those of core/shell nanoparticles synthesized by a previously reported multistep process. The Mn3O4@mSiO2 nanoparticles are biocompatible and have potential for use in optical imaging and magnetic resonance imaging.

Skin-interfaced Wearable Biosensors: A Mini-Review

  • Kim, Taehwan;Park, Inkyu
    • 센서학회지
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    • 제31권2호
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    • pp.71-78
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    • 2022
  • Wearable devices have the potential to revolutionize future medical diagnostics and personal healthcare. The integration of biosensors into scalable form factors allow continuous and noninvasive monitoring of key biomarkers and various physiological indicators. However, conventional wearable devices have critical limitations owing to their rigid and obtrusive interfaces. Recent developments in functional biocompatible materials, micro/nanofabrication methods, multimodal sensor mechanisms, and device integration technologies have provided the foundation for novel skin-interfaced bioelectronics for advanced and user-friendly wearable devices. Nonetheless, it is a great challenge to satisfy a wide range of design parameters in fabricating an authentic skin-interfaced device while maintaining its edge over conventional devices. This review highlights recent advances in skin-compatible materials, biosensor performance, and energy-harvesting methods that shed light on the future of wearable devices for digital health and personalized medicine.

Challenge of 2-dimensional Inorganic Nanoparticles in Nuclear Medicine

  • Sairan Eom;Jin-Ho Choy;Kyo Chul Lee;Yong Jin Lee
    • 대한방사성의약품학회지
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    • 제8권2호
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    • pp.119-128
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    • 2022
  • 2-Dimensional inorganic nanoparticles with high surface area and ion-exchangeable properties have been continuously growing based on nanotechnology in the field of nanomedicine. Among one of the 2-D nanoparticles, layered double hydroxide (LDH) has been intensively explored as drug delivery due to its low toxicity, enhanced cellular permeability, and high drug loading capacity. Moreover, controllable chemical composition makes possible varying isomorphic layered materials for therapy and imaging of diseases. In this review, specific structural characteristics of LDH were introduced, and its potential for application as a biocompatible therapeutic agent and diagnostic one was addressed in nuclear medicine, one of promising fields in nanomedicine.

Sports injury treatment and sports rehabilitation employing the Nanoparticles containing zinc oxide

  • Zhichao Ma;Jie Qi;Weiwei Xun;Yaonan Li
    • Advances in nano research
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    • 제15권1호
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    • pp.67-74
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    • 2023
  • The combination of physical activities and individual skills in sports creates an entertaining and competitive environment governed by a set of rules. In today's world, sports attract significant attention and are approached differently by various groups. Inevitably, injuries occur in sports, significantly impacting an athlete's performance and ability to participate in exercises and competitions. Addressing this issue, one of the crucial measures involves restoring the athlete's ability to engage in sports and compete. Sports rehabilitation serves as a treatment to mitigate the effects of injuries, and when combined with surgery, it can expedite the recovery process. Therefore, the primary objective of this study is to utilize a biocompatible technology for synthesizing zinc oxide (ZnO) nanoparticles in sports rehabilitation, ensuring minimal harm to the environment.

Recent Development in Biocompatible Biosensors

  • Yongju Lee;Swarup Biswas;Minsuk Koo;Hyeok Kim
    • 센서학회지
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    • 제32권6호
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    • pp.403-411
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    • 2023
  • The shift in the medical paradigm from treatment to prevention and diagnosis has underscored the growing significance of biosensors. Notably, the recent COVID-19 pandemic has spurred the widespread adoption of biosensors for the detection of viral genes and antigens. Consequently, there has been a substantial increase in both the demand for biosensors and the industries associated with their production. Furthermore, biosensors find applications not only in healthcare but also in diverse fields such as environmental monitoring, food quality control, military defense, and industrial processes. In this brief review, we delve into the essential attributes of biosensors, namely sensitivity, selectivity, and stability. We provide an overview of the latest research trends aimed at improving these attributes. Additionally, we introduce recent research cases in which these attributes are being applied both in vivo and in vitro.

Screening of the antiparasitic activity of gold nanoparticles on hydatid cysts protoscolices in vitro

  • Sadiya Aziz Anah
    • 대한수의학회지
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    • 제63권4호
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    • pp.33.1-33.5
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    • 2023
  • Many scolicidal agents have been used to destroy fertile protoscolices, but these scolicidal agents have side effects, highlighting the need for research on effective and non-toxic replacement scolicidal agents. Gold nanoparticles (AuNPs) are biocompatible and non-toxic. The current study examined the effects of AuNPs in killing the protoscolices of Echinococcus granulosus in vitro using eosin staining. The protoscolices were treated with 0.2, 0.4, 0.8, or 1.0 mg/mL of AuNPs for 15, 30, 45, or 60 minutes. A concentration of 1.0 mg/mL was the most efficient in killing the protoscolices after 60 minutes exposure, reaching 96%, followed by 0.8 mg/mL (84.5%), whereas 0.4 and 0.2 mg/mL of AuNPs achieved a death rate of 76.8% and 68.5%, respectively. The loss of the protoscolices was lower at shorter exposure times with the same concentration of AuNPs and increased as the AuNP concentration was increased at the same exposure time. Significant differences were found between the different groups compared to the control group.

골이식재의 표면 특성 연구 동향과 유효성 분석 ( Research trends and Efficacy Analysis of Surface Characteristics of Bone Grafts)

  • 정용훈;이계욱;정태곤
    • 한국표면공학회지
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    • 제57권4호
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    • pp.234-253
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    • 2024
  • As the population ages, the importance of effective bone disease treatments is increasing, highlighting the role of bone grafts. Bone grafts are categorized into natural (autografts, allografts, xenografts) and synthetic (ceramics, polymers). Natural grafts have excellent regenerative abilities but pose biological risks, while synthetic grafts are biocompatible but less effective in regeneration. Various studies aim to enhance the safety and efficacy of bone grafts, significantly altering their surface properties. This review examines these studies and the resulting surface changes, aiming to guide future research and clinical applications.

Stem cell behaviors on periodic arrays of nanopillars analyzed by high-resolution scanning electron microscope images

  • Jihun Kang;Eun-Hye Kang;Young-Shik Yun;Seungmuk Ji;In-Sik Yun;Jong-Souk Yeo
    • Applied Microscopy
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    • 제50권
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    • pp.26.1-26.3
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    • 2020
  • The biocompatible polyurethane acrylate (PUA) nanopillars were fabricated by soft lithography using three different sizes of nanobeads (350, 500, and 1000 nm), and the human adipose-derived stem cells (hASCs) were cultured on the nanopillars. The hASCs and their various behaviors, such as cytoplasmic projections, migration, and morphology, were observed by high resolution images using a scanning electron microscope (SEM). With the accurate analysis by SEM for the controlled sizes of nanopillars, the deflections are observed at pillars fabricated with 350- and 500- nm nanobeads. These high-resolution images could offer crucial information to elucidate the complicated correlations between nanopillars and the cells, such as morphology and cytoplasmic projections.

Calcium sulfate와 혈소판 유래성장인자의 혼합사용이 치주인대세포에 미치는 영향 (The effects of a combination of calcium sulfate and platelet-derived growth factor on periodontal ligament cells in vitro)

  • 김준성;최성호;유윤정;채중규;김종관;조규성
    • Journal of Periodontal and Implant Science
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    • 제27권4호
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    • pp.785-804
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    • 1997
  • It was well known that calcium sulfate was biocompatible, resorbed rapidly in the body, had potential as a good barrier membrane. Platelet-derived growth factor(PDGF) was one of polypeptide growth factor that had been reported as a biological mediator which regulates activities of wound healing process including the cell proliferation, migration and metabolism. The purpose of this study was to evaluate the effects of a combination of calcium sulfate and PDGF on periodontal ligament cells in vitro to use as a regeneration promoting agent of periodontal tissue. Human periodontal ligament cells were prepared from the premolar tooth extracted for the orthodontic treatment. Cells were cultured in ${\alpha}-MEM$ contained with 20% FBS, at the $37^{\circ}C$, 100% of humidity, 5% $Co_2$ incubator. Cells were inoculated and cultured into 96 well culture plate with $1{\times}10^4cells/well$ of ${\alpha}-MEM$ for 1 day. After discarding the medium, those cells were cultured in ${\alpha}-MEM$ contained with 10% FBS alone(control group), in calcium sulfate(calcium sulfate group), in calcium sulfate treated with 15ng/ml of PDGF-BB(calcium sulfate+PDGF group), in ${\alpha}-MEM$ contained with 10% FBS treated with 15ng/ml of PDGF-BB(PDGF group) for 1, 2, 3 day respectively. And then each group was characterized by examining of the cell counting, MTT assay, collagen synthesis. The results were as follows. 1. In the analysis of cell proliferation by cell counting, both calcium sulfate group and calcium sulfate plus PDGF group showed no stastically significant difference compared to control group, but there was stastically significant difference between PDGF group and calcium sulfate group at 1, 2 day(P<0.05). 2. In the analysis of cell proliferation by MTT assay in calcium sulfate extracts, both calcium sulfate group and calcium sulfate plus PDGF group showed no stastically significant difference compared to control group, but there was stastically significant difference between PDGF group and calcium sulfate group at 2, 3 day, and between calcium sulfate plus PDGF group and calcium sulfate group at 2 day(P

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Hydroxyapatite의 파우더 표면 복합화를 통한 형태 및 기계적 성질에 관한 연구 (Morphology and Mechanical Properties through Hydroxyapatite Powder Surface Composite)

  • 계성봉;박수남
    • 공업화학
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    • 제27권3호
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    • pp.299-306
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    • 2016
  • 본 연구는 광노화의 원인으로 알려진 자외선을 차단하는 새로운 복합 분체에 관한 것이다. Hydroxyapatite (HAp)는 자체 생체 친화적이고, 피부에 도포 시 백탁 현상 없이 자외선을 차단하는 효과가 우수하다. 그러나 HAp 구조가 단단한 육방정계이어서 피부 도포 시 피부손상과 분체의 재응집 현상이 발생되어 화장 후 뭉치는 현상, 자체 사용감이 매끄럽지 못하는 단점을 가지고 있다. 이러한 문제점을 개선하고자 HAp의 표면 개질을 통한 자외선 차단 증진 및 사용감을 개선한 새로운 복합 분체를 개발하고자 하였다. 본 연구에서 HAp의 표면 개질을 위해 코팅제로 dimethicone, lauroyl lysine, triethoxycaprylylsilane 및 silica를 사용하였다. Dimethicone, lauroyl lysine 및 triethoxycaprylylsilane은 건식 방법으로 각각 표면 복합화 처리하였고, silica는 수열 합성법으로 표면 처리하여 표면 복합체를 제조하였다. 제조된 HAp 복합체의 자외선 차단 효과를 측정하여 실리카가 코팅된 HAp-silica를 최적의 HAp 복합체로 선정하였다. SEM, 입자크기와 분포, 표면 측정, EDS 분석을 통해 HAp-silica의 표면 복합 분체 특성을 조사하였다. 또한 제형 내에서 안정성, BB cream에서 자외선 차단 효과 측정 및 안전성 시험을 실시하였다. 연구 결과, HAp 분체의 표면 개질을 통해 제조한 HAp-silica는 사용감이 우수하였고, 백탁 현상을 개선함으로써 자외선 차단 효과를 증진시키는 복합 분체로서 자외선 차단 화장품의 새로운 기능성 소재로서 응용 가능성이 있음을 확인하였다.