• Title/Summary/Keyword: Amphiphiles

검색결과 31건 처리시간 0.028초

Considerations for Making Liposomes by Thin Film-Hydration Method

  • Gyeong-Tak Byeon;Ji-Yoon Son;Jeongsoo Yoo
    • 대한방사성의약품학회지
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    • 제8권2호
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    • pp.151-156
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    • 2022
  • Liposomes are bilayered particles that are surrounded by an aqueous solvent with amphiphilic substances such as phospholipids. Liposomes have the potential to overcome the limitations of physiochemical properties of existing drugs, and are therefore widely used in research for the treatment of many diseases, especially cancer. Currently, there are many liposome manufacturing methods that use various lipids and amphiphiles. Among them, the thin film-hydration method is a traditional and very simple method to prepare liposomes by hydrating a dry lipid film in an aqueous solvent, which has been widely used in the laboratory until recently. Recently, approaches to new nuclear imaging agents and radiotherapy by loading radioactive isotopes inside liposomes have been actively studied. In this review, we would like to discuss considerations for preparing liposomes using the thin film-hydration method.

Preparation of a Hydrophobized Chitosan Oligosaccharide for Application as an Efficient Gene Carrier

  • Son Sohee;Chae Su Young;Choi Changyong;Kim Myung-Yul;Ngugen Vu Giang;Jang Mi-Kyeong;Nah Jae-Woon;Kweon Jung Keoo
    • Macromolecular Research
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    • 제12권6호
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    • pp.573-580
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    • 2004
  • To prepare chitosan-based polymeric amphiphiles that can form nanosized core-shell structures (nanopar­ticles) in aqueous milieu, chitosan oligosaccharides (COSs) were modified chemically with hydrophobic cholesterol groups. The physicochemical properties of the hydrophobized COSs (COSCs) were investigated by using dynamic light scattering and fluorescence spectroscopy. The feasibility of applying the COSCs to biomedical applications was investigated by introducing them into a gene delivery system. The COSCs formed nanosized self-aggregates in aqueous environments. Furthermore, the physicochemical properties of the COSC nanoparticles were closely related to the molecular weights of the COSs and the number of hydrophobic groups per COS chain. The critical aggregation concentration values decreased upon increasing the hydrophobicity of the COSCs. The COSCs effi­ciently condensed plasmid DNA into nanosized ion-complexes, in contrast to the effect of the unmodified COSs. An investigation of gene condensation, performed using a gel retardation assay, revealed that $COS6(M_n=6,040 Da)$ containing $5\%$ of cholesteryl chloroformate (COS6C5) formed a stable DNA complex at a COS6C5/DNA weight ratio of 2. In contrast, COS6, the unmodified COS, failed to form a stable COS/DNA complex even at an elevated weight ratio of 8. Furthermore, the COS6C5/DNA complex enhanced the in vitro transfection efficiency on Human embryonic kidney 293 cells by over 100 and 3 times those of COS6 and poly(L-lysine), respectively. Therefore, hydrophobized chitosan oligosaccharide can be considered as an efficient gene carrier for gene delivery systems.

Synthesis and Optimization of Cholesterol-Based Diquaternary Ammonium Gemini Surfactant (Chol-GS) as a New Gene Delivery Vector

  • Kim, Bieong-Kil;Doh, Kyung-Oh;Bae, Yun-Ui;Seu, Young-Bae
    • Journal of Microbiology and Biotechnology
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    • 제21권1호
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    • pp.93-99
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    • 2011
  • Amongst a number of potential nonviral vectors, cationic liposomes have been actively researched, with both gemini surfactants and bola amphiphiles reported as being in possession of good structures in terms of cell viability and in vitro transfection. In this study, a cholesterol-based diquaternary ammonium gemini surfactant (Chol-GS) was synthesized and assessed as a novel nonviral gene vector. Chol-GS was synthesized from cholesterol by way of four reaction steps. The optimal efficiency was found to be at a weight ratio of 1:4 of lipid:DOPE (1,2-dioleoyl-L-${\alpha}$- glycero-3-phosphatidylethanolamine), and at a ratio of between 10:1~15:1 of liposome:DNA. The transfection efficiency was compared with commercial liposomes and with Lipofectamine, 1,2-dimyristyloxypropyl-3-dimethylhydroxyethylammonium bromide (DMRIE-C), and N-[1-(2,3-dioleoyloxy)propyl]-N,N,N-trimethylammonium chloride (DOTAP). The results indicate that the efficiency of Chol-GS is greater than that of all the tested commercial liposomes in COS7 and Huh7 cells, and higher than DOTAP and Lipofectamine in A549 cells. Confirmation of these findings was observed through the use of green fluorescent protein expression. Chol-GS exhibited a moderate level of cytotoxicity, at optimum concentrations for efficient transfection, indicating cell viability. Hence, the newly synthesized Chol-GS liposome has the potential of being an excellent nonviral vector for gene delivery.

Self-Organization of Dendron-Poly(ethylene glycol) Conjugates in an Aqueous Phase

  • Kim, Kyoung-Taek;Lee, Im-Hae;Park, Chiyoung;Song, Yu-Mi;Kim, Chul-Hee
    • Macromolecular Research
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    • 제12권5호
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    • pp.528-533
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    • 2004
  • We have prepared amide dendrons having alkyl peripheral units and various focal moieties through a convergent synthetic approach. The amphiphilic properties, due to hydrophilic amide branches and the hydrophobic peripheral units, provide an opportunity for the amide dendrons to self-organize in water. The dendritic architecture itself is also one of the critical factors in the self-organization of the amide dendrons in water. In particular, function-alization was performed at the focal point to elucidate the relationship between the focal functionality and the self-organized structures of the dendritic building blocks in the aqueous phase. The dendron having a short poly(ethylene glycol) monomethyl ether (MeO-PEG) unit (M$\_$n/ =750) as the focal moiety formed a vesicular organization in water. As the size of the hydrophilic focal MeO-PEG increased to M$\_$n/ =2,000 and 5,000, the self-organized structures became rod-type and spherical micelles, respectively. Our observation of multiple morphologies for amide dendrons is in good agreement with previous reports that indicated that the micellar structures changed from vesicles to rod-types and then to spheres upon increasing the size of the hydrophilic moiety of the amphiphiles.

양수성 물질에 의한 유기오염물질의 수중 용해도 증가에 분자구조가 미치는 영향 (Effect of Molecular Structures on the Solubility Enhancement of Organic Contaminants by Amphiphiles)

  • 조현희;박재우
    • 대한환경공학회지
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    • 제22권4호
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    • pp.755-764
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    • 2000
  • 토양이나 지하환경에서 소수성 유기오염물질은 자연적으로 존재하는 휴믹물질과 오염된 토양을 세척하는데 사용되는 계면활성제에 의해 거동이 결정되어진다. 거대분자인 휴믹물질은 pseudomicelle을 형성하여 소수성 유기오염물질의 용해도를 증가시키고, 계면활성제 역시 CMC 이상의 농도에서 마이셀을 이루어 오염물질을 흡수하게 된다. 이 논문의 연구 목적은 소수성 유기오염물질로서 네 가지 PAHs와 p,p'-DDT를 사용하여 휴믹산과 세 가지 음이온성 계면활성제에 의한 용해도 증가를 비교해보고, 나아가서는 오염물질의 종류에 따라 어떠한 양상을 보이는지를 알아보는 것이다. 휴믹산에 의한 용해도 증가는 PAHs의 경우에서는 나프탈렌에서 퍼릴렌으로 갈수록 증가하지만 p,p'-DDT는 소수성이 가장 큼에도 불구하고 파이렌보다도 용해도 증가 정도가 낮았다. 음이온성 계면활성제의 경우, SDS 와 SDDBS에 의한 다섯 가지 소수성 유기오염물질의 용해도가 선형적으로 증가한 반면, 쌍둥이 머리(twin-head)를 가진 MADS-12에 의한 용해도 증가는 나프탈렌에서 퍼릴렌으로 갈수록 증가하였지만, p,p'-DDT의 용해도 증가 정도는 퍼릴렌 보다 약간 감소하였다.

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염기성 올리고펩티드 유도체를 가진 고분자 리피드의 합성 및 유전자 전달 효과 연구 (Synthesis of Polymerizable Amphiphiles with Basic Oligopeptides for Gene Delivery Application)

  • 배선주;최혜;최준식
    • 폴리머
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    • 제37권1호
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    • pp.94-99
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    • 2013
  • 폴리디아세틸렌(polydiacetylene, PDA)은 자기조립된 디아세틸렌(diacetylene) 단량체의 광중합에 의해 만들어진다. 디아세틸렌 단량체들이 조직적으로 배열되면 254 nm의 자외선 노광에 의해 1,4-첨가 중합이 일어나 고분자 주사슬에 이중결합과 삼중결합이 교대로 존재하는 폴리디아세틸렌이 만들어진다. 폴리디아세틸렌 수용액은 일반적으로 약 640 nm에서 최대흡수파장을 지니는 청색을 띠게 되며 여기에 온도나 pH의 변화, 다른 물질의 결합 등 외부 자극에 의해 약 550 nm의 최대 흡수 파장을 띠는 적색으로 색 전이가 일어나게 된다. 본 연구에서, 우리는 고체상 펩티드 합성을 이용하여 PCDA(10,12-pentacosadyinoic acid) 리포좀의 표면에 양이온성 올리고펩티드를 도입하였다. 또한 다양한 몰 비율로 리포좀 수용액을 제조하여 동물 세포에 트랜스펙션한 결과, 향상된 유전자 전달 효율과 낮은 독성을 보이는 것을 확인하였고, PCDA의 특성을 이용하여 세포에 처리 후 세포 관련 비표지 형광을 관찰하였다.

Wet Foam Stability from Colloidal Suspension to Porous Ceramics: A Review

  • Kim, Ik Jin;Park, Jung Gyu;Han, Young Han;Kim, Suk Young;Shackelford, James F.
    • 한국세라믹학회지
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    • 제56권3호
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    • pp.211-232
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    • 2019
  • Porous ceramics are promising materials for a number of functional and structural applications that include thermal insulation, filters, bio-scaffolds for tissue engineering, and preforms for composite fabrication. These applications take advantage of the special characteristics of porous ceramics, such as low thermal mass, low thermal conductivity, high surface area, controlled permeability, and low density. In this review, we emphasize the direct foaming method, a simple and versatile approach that allows the fabrication of porous ceramics with tailored microstructure, along with distinctive properties. The wet foam stability is achieved under the controlled addition of amphiphiles to the colloidal suspension, which induce in situ hydrophobization, allowing the wet foam to resist coarsening and Ostwald ripening upon drying and sintering. Different components, like contact angle, adsorption free energy, air content, bubble size, and Laplace pressure, play vital roles in the stabilization of the particle stabilized wet foam to the porous ceramics. The mechanical behavior of the load-displacements curves of sintered samples was investigated using Herzian indentations testes. From the collected results, we found that microporous structures with pore sizes from 30 ㎛ to 570 ㎛ and the porosity within the range from 70% to 85%.

Conversion of Gycosylphosphatidylinositol (GPI)-Anchored Alkaline Phosphatase by GPI-PLD

  • Moon, Young-Girl;Lee, Hyun-Jung;Kim, Mee-Ree;Myung, Pyung-Keun;Park, Soo-Young;Sok, Dai-Eun
    • Archives of Pharmacal Research
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    • 제22권3호
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    • pp.249-254
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    • 1999
  • Enzymatic conversion of brain glycosylphosphatidylinositol-linked alkaline phosphatase (GPI-AP), amphiphilic, was examined. When GPI-AP was incubated with glycosylphosphatidylinositol-specific phospholipase D (GPI-PLD), a negligible conversion of GPI-AP to hydrophilic form was observed. The inclusion of monoacylglycerols enhanced the enzymatic conversion, although the action of monoacylglycerols differed greatly according to the size of acyl group; the enzymatic conversion was enhanced considerably in the presence of monoacylglycerols possessing acyl group of longer chain length ($C_{10-}C_{18}$), which monoacylglycerols with acyl moiety of shorter length ($C_{4-}C_{8}$) did fail to augment the enzymatic conversion. Noteworthy, monooleoylglycerol was much more effective than the other monoacylglycerols in promoting the enzymatic conversion, indicating a beneficial role of the unsaturation in acyl chain. Meanwhile, ionic amphiphiles such as monohexadecyllysophosphatidylcholoine and palmitoyl-carnitine decreased the enzymatic conversion of GPI-AP in a concentration-dependent manner, with monohexadecyllysophosphatidylcholine and palmitoyl-carnitine deceased the enzymatic conversion of GPI-AP in a concentration-dependent manner, with monohexadecyllysophosphatidylcholoine being more inhibitory than palmitoylcarnitine. Separately when GPI-AP was exposed to various oxidants prior to the incubation with GPI-PLD, a remarkable decrease of the enzymatic conversion was observed with hypochlorite and peroynitrite generators, but not $H_{2}O_{2}$. In further study, hypochlorite was found to inactivate GPI-PLD at low concentrations ($3~100{\mu}M$). From these results, it is suggested that the enzymatic conversion of GPI-AP by GPI-PLD may be regulated in vivo system.

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Experimental and theoretical investigation of micellization behavior of sodium dodecyl sulfate with cetyltrimethylammonium bromide in aqueous/urea solution at various temperatures

  • Hoque, Md. Anamul;Mahbub, Shamim;Rub, Malik Abdul;Rana, Shahed;Khan, Mohammed Abdullah
    • Korean Journal of Chemical Engineering
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    • 제35권11호
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    • pp.2269-2282
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    • 2018
  • Mixed micelle formation behavior of cationic surfactant-cetyltrimethylammonium bromide (CTAB) and anionic surfactant sodium dodecyl sulfate (SDS) in aqueous as well as in urea medium from 303.15 K to 323.15 K at 5 K interval was carried out by conductometric method. The differences between the experimental values of critical micelle concentrations (cmc) and ideal critical micelle concentrations ($cmc^{id}$) illustrate the interaction between the amphiphiles studied. The values of micellar mole fraction ($X_1^{Rub}$ (Rubingh), $X_1^M$ (Motomura), $X_1^{Rod}$ (Rodenas) and $X_1^{id}$(ideal) of surfactant CTAB determined by different proposed models and outcome indicate high involvement of CTAB in SDS-CTAB mixed micellization, which enhance by means of the augment of mole fraction of CTAB. The negative value of interaction parameter (${\beta}$) showed an attractive interaction involving CTAB and SDS. Activity coefficients were less than unity in all case, which also reveals the presence of interaction between CTAB & SDS. The negative ${\Delta}G^0_m$ values imply the spontaneous mixed micellization phenomenon. The attained values of ${\Delta}H^0_m$ were positive at inferior temperature, while negative at superior temperature. The negative ${\Delta}H^0_m$ values in urea ($NH_2CONH_2$) medium illustrate exothermic micellization process. The magnitudes of ${\Delta}S^0_m$ were positive in almost all cases. The excess free energy of mixed micelle formation (${\Delta}G_{ex}$) was found to be negative, which indicates the stability of mixed micelle as compared to the individual's components micelles.

pH 감응형 나노입자를 이용한 멜라닌 합성저해 연구 (Inhibition of Melanin Synthesis by Enhanced Cytosolic Delivery of N-glycosylation Inhibitors Using pH-Sensitive Nano-carrier)

  • Park, Ju-Young;Park, Hyun-Jung;Shim, Jong-Won;Ahn, Soo-Mi;Kim, Junoh;Chang, Ih-Seop
    • 대한화장품학회지
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    • 제30권1호
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    • pp.29-32
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    • 2004
  • 내형질 세망 조직에서 N-글리코실레이션 과정의 초기 단계를 차단하면 멜라닌 생 합성의 주 효소인 티로시나제의 활성이 저해된다. 본 연구에서는 in vitro 환경에서 N-글리코실레이션 저해제의 활성을 증가시키고자 전달체로 pH 감응성을 갖는 나노크기의 지질구조체를 제조하고 이를 평가하였다. 이 pH 감응성 지질구조체 Melexsome은 일반적인 지질성분인 포스포리피드와 콜레스테롤 기반의 지질안정 성분으로 구성되며, 통상적인 리포좀 제조법에 따라 제조되었다. 글리코실레이션 저해 성분물질을 포집시킨 Melel[some의 효과는 EndoH & PNGaseF 분해와 western blotting 방법에 의해 평가하였고, 멜라닌 합성량 또한 측정 되었다. 이 결과, pH 감응성을 갖도록 제조된 Melexsome이 N-글리코실레이션 저해제의 효능을 효과적으로 증진시킴을 알 수 있었다. 또한, 공초점 주사 현미경에 의한 세포관찰 결과에 따르면 Melexsome은 여타의 전달체에 비하여 세포질 내에 보다 효과적으로 전달되는 것으로 보여지며, 따라서 이같은 양친성 지실성분 기반의 pH 감응성 나노 전달체는 N-글리코실레이션 저해제의 전달 시스템으로서 미백 화장료 제품이 가져야 하는 침착된 색소에 의해 어두워진 피부톤의 개선 효과를 극대화 시키는데 적합하다고 여겨진다.