• 제목/요약/키워드: NIPAAm-MAA

검색결과 4건 처리시간 0.024초

Comparison between Effects of Free Curcumin and Curcumin Loaded NIPAAm-MAA Nanoparticles on Telomerase and PinX1 Gene Expression in Lung Cancer Cells

  • Badrzadeh, Fariba;Akbarzadeh, Abolfazl;Zarghami, Nosratollah;Yamchi, Mohammad Rahmati;Zeighamian, Vahide;Tabatabae, Fateme Sadatem;Taheri, Morteza;Kafil, Hossein Samadi
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권20호
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    • pp.8931-8936
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    • 2014
  • Background: Herbal compounds such as curcumin which decrease telomerase and gene expression have been considered as beneficial tools for lung cancer treatment. In this article, we compared the effects of pure curcumin and curcumin-loaded NIPAAm-MAA nanoparticles on telomerase and PinX1 gene expression in a lung cancer cell line. Materials and Methods: A tetrazolium-based assay was used for determination of cytotoxic effects of curcumin on the Calu-6 lung cancer cell line and telomerase and pinX1 gene expression was measured with real-time PCR. Results: MTT assay showed that Curcumin-loaded NIPAAm-MAA inhibited the growth of the Calu-6 lung cancer cell line in a time and dose-dependent manner. Our q-PCR results showed that the expression of telomerase gene was effectively reduced as the concentration of curcumin-loaded NIPAAm-MAA increased while expression of the PinX1 gene became elevated. Conclusions: The results showed that curcumin-loaded-NIPAAm-MAA exerted cytotoxic effects on the Calu-6 cell line through down-regulation of telomerase and stimulation of pinX1 gene expression. NIPPAm-MAA could be good carrier for such kinds of hydrophobic agent.

Pluronic을 기초로 한 온도와 pH에 민감한 그래프트 공중합체의 합성과 특성 (Synthesis and Characterization of Temperature and pH Sensitive Graft Copolymers Based on Pluronic)

  • 오연정;이기백;박성영
    • 폴리머
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    • 제36권2호
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    • pp.223-228
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    • 2012
  • 온도와 pH 민감성을 갖는 그래프트 공중합체[Pluronic-$g$-poly(NIPAAm-$co$-MMA), Polymer A]와 [Pluronic-$g$-poly(NIPAAm-$co$-MAA), Polymer C]는 $t$-butylperoxybenzoate를 이용하여 Pluronic 공중합체의 주사슬에 $N$-isopropylacrylamide (NIPAAm)/$N,N$-diethylaminoethylmethacrylate (DEAEMA)와 $N$-isopropylacrylamide(NIPAAm)/methacrylic acid (MAA)를 각각 합성하였다. 그래프트 공중합체는 $^1H$ NMR과 젤 투과 크로마토그래피를 통해 공중합체의 화학적 구조와 분자량을 측정하였다. 그래프트 공중합체의 수용액 상에서의 특성은 다른 온도와 pH 조건에서 자외 및 가시선 분광 분석법, 접촉각 측정과 동적 광산란으로 측정되었다. 그래프트 공중합체는 수용액상에서 온도와 pH에 따라 민감한 상 변화를 보인다. 이는 DEAEMA 단량체의 아민 그룹과 MAA 단량체의 카복실 그룹은 각각 Polymer A와 Polymer C에서 하한임계용액온도에 큰 영향을 미친다고 제시한다. 그래프트 공중합체는 온도와 pH 변화에 관련된 다양한 약물 전달과 분자 스위치 적용에 사용될 수 있다.

Physicochemical Characteristics of Fe3O4 Magnetic Nanocomposites Based on Poly(N-isopropylacrylamide) for Anti-cancer Drug Delivery

  • Davaran, Soodabeh;Alimirzalu, Samira;Nejati-Koshki, Kazem;Nasrabadi, Hamid Tayefi;Akbarzadeh, Abolfazl;Khandaghi, Amir Ahmad;Abbasian, Mojtaba;Alimohammadi, Somayeh
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권1호
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    • pp.49-54
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    • 2014
  • Background: Hydrogels are a class of polymers that can absorb water or biological fluids and swell to several times their dry volume, dependent on changes in the external environment. In recent years, hydrogels and hydrogel nanocomposites have found a variety of biomedical applications, including drug delivery and cancer treatment. The incorporation of nanoparticulates into a hydrogel matrix can result in unique material characteristics such as enhanced mechanical properties, swelling response, and capability of remote controlled actuation. Materials and Methods: In this work, synthesis of hydrogel nanocomposites containing magnetic nanoparticles are studied. At first, magnetic nanoparticles ($Fe_3O_4$) with an average size 10 nm were prepared. At second approach, thermo and pH-sensitive poly (N-isopropylacrylamide -co-methacrylic acid-co-vinyl pyrrolidone) (NIPAAm-MAA-VP) were prepared. Swelling behavior of co-polymer was studied in buffer solutions with different pH values (pH=5.8, pH=7.4) at $37^{\circ}C$. Magnetic iron oxide nanoparticles ($Fe_3O_4$) and doxorubicin were incorporated into copolymer and drug loading was studied. The release of drug, carried out at different pH and temperatures. Finally, chemical composition, magnetic properties and morphology of doxorubicin-loaded magnetic hydrogel nanocomposites were analyzed by FT- IR, vibrating sample magnetometry (VSM), scanning electron microscopy (SEM). Results: The results indicated that drug loading efficiency was increased by increasing the drug ratio to polymer. Doxorubicin was released more at $40^{\circ}C$ and in acidic pH compared to that $37^{\circ}C$ and basic pH. Conclusions: This study suggested that the poly (NIPAAm-MAA-VP) magnetic hydrogel nanocomposite could be an effective carrier for targeting drug delivery systems of anti-cancer drugs due to its temperature sensitive properties.

Dependence of Molecular Recognition for a Specific Cation on the Change of the Oxidation State of the Metal Catalyst Component in the Hydrogel Network

  • Basavaraja, Chitragara;Park, Do-Young;Choe, Young-Min;Park, Hyun-Tae;Zhao, Yan Shuang;Yamaguchi, Tomohiko;Huh, Do-Sung
    • Bulletin of the Korean Chemical Society
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    • 제28권5호
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    • pp.805-810
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    • 2007
  • Molecular recognition for a specific cation depending on the change of the oxidation state of the metal catalyst component contained in the hydrogel network has been studied in a self-oscillating hydrogel. The selfoscillating hydrogels are synthesized by the copolymerization of N-isopropylacrylamide (NIPAAm), lead methacrylic acid (Pb(MAA)2), and Ru(bpy)3 2+ monomer as a metal catalyst component. The recognition for a specific cation (in this study, Ca2+ has been used) is characterized by the adsorbed amount of Ca2+ into the gel. The recognition of the gels for Ca2+ is higher at the temperature below the LCST, and also higher at the oxidized state than at reduced state of the metal catalyst component which corresponds to a more swollen state. Moreover, a propagating wave induced by a periodic change of the oxidation state with the diffusion phenomena in the oscillating hydrogel shows a possibility for temporal and site-specific molecular recognition due to the local swelling of the gel.