• Title/Summary/Keyword: ethylene release

검색결과 96건 처리시간 0.019초

단백질 약물 전달을 위한 마이크로/나노 입자의 전기분무 제조법 (Electrospraying of Micro/Nano Particles for Protein Drug Delivery)

  • 유지연;김민영;이종휘
    • 폴리머
    • /
    • 제31권3호
    • /
    • pp.215-220
    • /
    • 2007
  • 전기분무에서의 전기유체 역학적 힘에 의한 표면 에너지의 조절은 간단한 입자 크기 조절, 단분산성, 높은 회수율, 그리고 약한 가공조건과 같은 이점을 제공할 수 있다. 이러한 이점은 단백질 약물전달체 제조에 적절할 것으로 예상되어, 본 연구에서 전기분무법을 이용하여 단백질 약물의 나노포집을 시도하였다. 모델 단백질인 알부민을 단축 혹은 동축 전기분무로 가공하였고 키토산, 폴리카플로락톤(PCL), 폴리 (에틸렌 글리콜) (PEG) 등이 포집물질로 사용되었다. 효율을 최대로 높이기 위해 분무액의 전기전도도, 유속, 전기포텐셜 구배의 거리 등과 같은 가공변수들이 조사되었다. 키토산 시스템에서 입자크기에 대한 공정 변수의 영향은 유속이 늦어질수록, 노즐과 집적부 사이의 거리가 가까울수록 입자 크기가 감소하는 것을 알 수 있었다. PCL 시스템에서는 단축 전기분무의 경우 유속이 늦어질수록, 동축 전기분무의 경우 내부와 외부 물질의 유속비가 클수록 입자 크기가 증가하는 것을 확인할 수 있었다. 전기분무 노즐에서 생성된 초기 입자들은 좁은 입자 크기 분포를 보였으나, 그것들이 집적부에 도달했을 때 입자들이 응집되는 경향이 있었다. 이러한 전기분무법에서 PCL, PEG, 키토산을 사용한 알부민의 효과적인 나노 포집은 12 kV 이상에서 성공적으로 이루어졌다.

Development of New Materials of Ginseng by Nanoparticles

  • Yang, Deok Chun;Mathiyalagan, Ramya;Yang, Dong Uk;Perez, Zuly Elizabeth Jimenez;Hurh, Joon;Ahn, Jong Chan
    • 한국자원식물학회:학술대회논문집
    • /
    • 한국자원식물학회 2018년도 춘계학술발표회
    • /
    • pp.3-3
    • /
    • 2018
  • For centuries, Panax ginseng Meyer (Korean ginseng) has been widely used as a medicinal herb in Korea, China, and Japan. Ginsenosides are a class of triterpene saponins and recognized as the bioactive components in Korean ginseng. Ginsenosides, which can be classified broadly as protopanaxadiols (PPD), protopanaxatriols (PPT), and oleanolic acids, have been shown to flaunt a vast array of pharmacological activities such as immune-modulatory, anti-inflammatory, anti-tumor, anti-diabetic, and antioxidant effects. In recent years, a number of ginseng and ginsenoside researches have increasingly gained wide attention owing to its unique pharmacological properties. Although good efficacies of ginsenosides have been reported, lack of target specific delivery into tumor sites, low solubility, and low bioavailability due to modifications in gastro-intestinal environments limit their biomedical application in clinical trials. As a result to this major challenge, nanotechnology and drug delivery techniques play a significant role to solve this problematic issue. Thus, we reported the preparation of poly-ethylene glycol (PEG) and glycol chitosan (GC) functionalized to ginsenoside (Compound K and PPD) conjugates via hydrolysable ester bonds with improved aqueous solubility and pH-dependent drug release. In vitro cytotoxicity assays revealed that PEG-CK, and PPD-CK conjugates exhibited lower cytotoxicity compared to bare CK and PPD in HT29 cells. However, GC-CK conjugates exhibited higher and similar cytotoxicity in HT29 and HepG2 cells. Furthermore, GC-CK-treated RAW264.7 cells did not exhibit significant cell death at higher concentration of treatment which supports the biocompatibility of the polymer conjugates. They also inhibited nitric oxide production in lipopolysaccharide (LPS)-induced RAW64.7 cells. In addition to polymer-ginsenoside conjugates, silver (AgNps) and gold nanoparticles (AuNps) have been successfully synthesized by green chemistry using different m. The biosynthesized nanoparticles demonstrated antimicrobial efficacy, anticancer, anti-inflammatory, antioxidant activity, biofilm inhibition, and anticoagulant effect. Special interest on the effective delivery methods of ginsenoside to treatment sites is the focus of metal nanoparticle research.In short, nano-sizing of ginsenoside results in an increased water solubility and bioavailability. The use of nano-sized ginsenoside and P. ginseng mediated metallic nanoparticles is expected to be effective on medical platform against various diseases in the future.

  • PDF

Non-PVC(폴리올레핀) 수액용 튜브 내면에서의 약물흡착 거동 - PVC 및 PU 수액튜브와의 비교 (Drug Adsorption Behavior of Polyolefin Infusion Tube Compared to PVC and PU)

  • 박강훈;박창규;박종;전승호;방사익;김지흥;정동준
    • 폴리머
    • /
    • 제38권3호
    • /
    • pp.333-337
    • /
    • 2014
  • PVC 재질로 만들어진 기존의 수액백과 튜브는 가소제인 DEHP(diethylhexyl phthalate)를 함유하고 있어 정맥 주사 시에 가소제의 용출과 약물 흡착이라는 심각한 취약점을 내재하고 있다. 본 연구에서는 폴리올레핀 재질로 만들어진 non-PVC 수액튜브(가소제 미포함)를 개발하고, 이들 튜브 내면에서의 약물 흡착 거동을 기존의 PVC 및 PU 재질의 수액 튜브와 비교 검토하므로써, 수액 주사 시 약물 흡착으로 인한 약효 감소 효과를 최소화 가능한 방안을 도출하고자 한다. 4가지의 non-PVC 수액튜브는 폴리에틸렌(PE), 폴리프로필렌(PP), syndiotactic 1,2-폴리부타 다이엔(PB)과 스타이렌-에틸렌(SE)의 공중합 탄성체를 사용하여 압출하여 제조하였으며, 이들은 기존의 PVC 수액튜브의 기계적 특성과 동등한 물성을 나타내었다. 아울러 제조된 폴리올레핀 재질의 4가지 수액튜브들은 기존의 PVC 및 PU 재질의 수액튜브 대비 우수한 약물흡착 방지 효과를 나타내었다. 따라서 이들은 약물흡착 방지용 수액튜브뿐 아니라 DEHP의 용출 위험이 배제된 안전한 수액튜브로서 임상 적용 가능할 것이다.

Bio-Derived Poly(${\gamma}$-Glutamic Acid) Nanogels as Controlled Anticancer Drug Delivery Carriers

  • Bae, Hee Ho;Cho, Mi Young;Hong, Ji Hyeon;Poo, Haryoung;Sung, Moon-Hee;Lim, Yong Taik
    • Journal of Microbiology and Biotechnology
    • /
    • 제22권12호
    • /
    • pp.1782-1789
    • /
    • 2012
  • We have developed a novel type of polymer nanogel loaded with anticancer drug based on bio-derived poly(${\gamma}$-glutamic acid) (${\gamma}$-PGA). ${\gamma}$-PGA is a highly anionic polymer that is synthesized naturally by microbial species, most prominently in various bacilli, and has been shown to have excellent biocompatibility. Thiolated ${\gamma}$-PGA was synthesized by covalent coupling between the carboxyl groups of ${\gamma}$-PGA and the primary amine group of cysteamine. Doxorubicin (Dox)-loaded ${\gamma}$-PGA nanogels were fabricated using the following steps: (1) an ionic nanocomplex was formed between thiolated ${\gamma}$-PGA as the negative charge component, and Dox as the positive charge component; (2) addition of poly(ethylene glycol) (PEG) induced hydrogen-bond interactions between thiol groups of thiolated ${\gamma}$-PGA and hydroxyl groups of PEG, resulting in the nanocomplex; and (3) disulfide crosslinked ${\gamma}$-PGA nanogels were fabricated by ultrasonication. The average size and surface charge of Dox-loaded disulfide cross-linked ${\gamma}$-PGA nanogels in aqueous solution were $136.3{\pm}37.6$ nm and $-32.5{\pm}5.3$ mV, respectively. The loading amount of Dox was approximately 38.7 ${\mu}g$ per mg of ${\gamma}$-PGA nanogel. The Dox-loaded disulfide cross-linked ${\gamma}$-PGA nanogels showed controlled drug release behavior in the presence of reducing agents, glutathione (GSH) (1-10 mM). Through fluorescence microscopy and FACS, the cellular uptake of ${\gamma}$-PGA nanogels into breast cancer cells (MCF-7) was analyzed. The cytotoxic effect was evaluated using the MTT assay and was determined to be dependent on both the concentration and treatment time of ${\gamma}$-PGA nanogels. The bio-derived ${\gamma}$-PGA nanogels are expected to be a well-designed delivery carrier for controlled drug delivery applications.

Biogenic fabrication and characterization of silver nanoparticles using aqueous-ethanolic extract of lichen (Usnea longissima) and their antimicrobial activity

  • Siddiqi, Khwaja Salahuddin;Rashid, M.;Rahman, A.;Tajuddin, Tajuddin;Husen, Azamal;Rehman, Sumbul
    • 생체재료학회지
    • /
    • 제22권4호
    • /
    • pp.328-336
    • /
    • 2018
  • Background: Biogenic fabrication of silver nanoparticles from naturally occurring biomaterials provides an alternative, eco-friendly and cost-effective means of obtaining nanoparticles. It is a favourite pursuit of all scientists and has gained popularity because it prevents the environment from pollution. Our main objective to take up this project is to fabricate silver nanoparticles from lichen, Usnea longissima and explore their properties. In the present study, we report a benign method of biosynthesis of silver nanoparticles from aqueous-ethanolic extract of Usnea longissima and their characterization by ultraviolet-visible (UV-vis), Fourier transform infrared (FTIR) spectroscopy, transmission electron microscopy (TEM) and scanning electron microscopy (SEM) analyses. Silver nanoparticles thus obtained were tested for antimicrobial activity against gram positive bacteria and gram negative bacteria. Results: Formation of silver nanoparticles was confirmed by the appearance of an absorption band at 400 nm in the UV-vis spectrum of the colloidal solution containing both the nanoparticles and U. longissima extract. Poly(ethylene glycol) coated silver nanoparticles showed additional absorption peaks at 424 and 450 nm. FTIR spectrum showed the involvement of amines, usnic acids, phenols, aldehydes and ketones in the reduction of silver ions to silver nanoparticles. Morphological studies showed three types of nanoparticles with an abundance of spherical shaped silver nanoparticles of 9.40-11.23 nm. Their average hydrodynamic diameter is 437.1 nm. Results of in vitro antibacterial activity of silver nanoparticles against Staphylococcus aureus, Streptococcus mutans, Streptococcus pyrogenes, Streptococcus viridans, Corynebacterium xerosis, Corynebacterium diphtheriae (gram positive bacteria) and Escherichia coli, Klebsiella pneuomoniae and Pseudomonas aeruginosa (gram negative bacteria) showed that it was effective against tested bacterial strains. However, S. mutans, C. diphtheriae and P. aeruginosa were resistant to silver nanoparticles. Conclusion: Lichens are rarely exploited for the fabrication of silver nanoparticles. In the present work the lichen acts as reducing as well as capping agent. They can therefore, be used to synthesize metal nanoparticles and their size may be controlled by monitoring the concentration of extract and metal ions. Since they are antibacterial they may be used for the treatment of bacterial infections in man and animal. They can also be used in purification of water, in soaps and medicine. Their sustained release may be achieved by coating them with a suitable polymer. Silver nanoparticles fabricated from edible U. longissima are free from toxic chemicals and therefore they can be safely used in medicine and medical devices. These silver nanoparticles were stable for weeks therefore they can be stored for longer duration of time without decomposition.

발전소 폐열을 이용한 농업시설용 히트펌프시스템의 난방 성능 분석 (Heating Performance Analysis of the Heat Pump System for Agricultural Facilities using the Waste Heat of the Thermal Power Plant as Heat Source)

  • 강연구;강석원;백이;김영화;장재경;유영선
    • 생물환경조절학회지
    • /
    • 제26권4호
    • /
    • pp.317-323
    • /
    • 2017
  • 쓰레기 소각장이나 산업체의 폐열을 농업에 활용한 사례는 몇몇 있었다. 그러나 온배수를 농업에 활용한 사례는 전무하였으며, 치어, 종패 등을 양식하는 수산업이 대부분이었다. 본 연구에서는 화력발전소의 온배수(폐열)를 열원으로 이용하는 120 RT 규모의 냉난방시스템을 제주특별자치도 서귀포시 안덕면 소재의 $5,280m^2$ 아열대 작물(망고) 재배온실에 설치, 10월에서 다음해 2월까지 약 5개월 동안 난방을 실시하여 난방에너지 비용 절감 효과 등 분석하였다. 난방에너지 비용 절감효과는 면세경유에 대하여 87%이였으며, 또한 발전소의 온배수를 에너지원으로 재활용함으로서 62%의 이산화탄소 배출 저감 효과를 얻었다. 본 연구를 계기로 2015년에 해수가 수열에너지 분야로 재생에너지에 포함되었다. 해수의 표층의 열을 히트펌프를 사용하여 변환시켜 얻은 에너지라는 수열에너지 분야의 기준과 범위를 볼 때, 이는 온배수가 재생에너지에 포함되었다고 말해도 과언이 아닐 것으로 사료된다. 그 이유는 온배수도 해수임에도 불구하고 온도가 일반 해수보다 $7{\sim}8^{\circ}C$ 높아, 일반 해수를 히트펌프의 열원으로 이용하는 것보다 온배수를 열원으로 이용했을 때 히트펌프의 성능이 높기 때문이다. 또한 같은 해 농식품부의 폐열 재이용 시설 지원 사업이 발표되어, 발전소 온배수뿐만 아니라 산업체와 소각장의 폐열을 농업에 활용하면 지원을 받을 수 있게 되었다. 이 사업에 의하여 2015년 당진시, 하동군, 제주시, 곡성군이 선정되었으며, 2016년 태안군, 서귀포시 등이 선정되어, 2016년 말 곡성군과 제주시가 공사를 완료, 농업에 폐열을 활용하고 있으며(제주시는 발전소, 곡성군은 산업체 폐열을 이용하고 있음), 기타 지역은 추진 중이다.