• 제목/요약/키워드: thermosensitive gel

검색결과 12건 처리시간 0.023초

Preparation and Biodegradation of Thermosensitive Chitosan Hydrogel as a Function of pH and Temperature

  • Han, Hee-Dong;Nam, Da-Eun;Seo, Dong-Hoan;Kim, Tae-Woo;Shin, Byung-Cheol;Choi, Ho-Suk
    • Macromolecular Research
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    • 제12권5호
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    • pp.507-511
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    • 2004
  • We have developed an injectable thermosensitive hydrogel for local drug delivery to treat cancers clinically. We selected chitosan as a polymer matrix because of its biocompatibility and biodegradability. Glycerol 2-phosphate disodium salt hydrate (${\beta}$-GP) was used to neutralize the chitosan solution to physiological pH. The chitosan solution displayed a sol-gel phase transition in a pH-and temperature-dependent manner and formed an endothermic hydrogel after subcutaneous injection into mouse in the presence of ${\beta}$-GP. Additionally, we evaluated the biodegradation of chitosan hydrogel in mice by measuring the volume of injected chitosan hydrogel after subcutaneous injection. The injected chitosan hydrogel in mice was sected and stained with hematoxylin-eosin reagent for histological observation to confirm biodegradation of the hydrogel by the infiltrated cells. Chitosan hydrogel systems that possess biocompatibility and biodegradability could be promising thermosensitive injectable materials useful as depot systems for local anti-cancer drug delivery.

리포솜이 함유된 N-이소프로필아크릴아마이드의 공중합체로부터 온도에 따른 약물의 방출 (Temperature-Dependent Release of Drug from Copolymers of N-Isopropylacrylamide Containing Liposome)

  • 박영심;한희동;홍성욱;김승수;신병철
    • 폴리머
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    • 제28권1호
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    • pp.59-66
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    • 2004
  • 온도에 의존하여 졸-젤 전이를 나타내는 온도민감성 리포솜을 함유하는 폴리 N-이소프로필아크릴아마이드 젤을 제조하였다. 온도민감성 리포솜의 표면은 3$0^{\circ}C$에서 하한임계용액온도를 나타내는 N-이소프로필아크릴아마이드와 옥타데실아크릴레이트의 공중합체를 이용하여 변형시켰다. 표면이 변형된 온도민감성 리포솜을 폴리 N-이소프로필아크릴아마이드 수용액에 혼합하였다. 혼합용액을 하한임계용액온도 이상으로 가열했을 때 물리적으로 가교결합이 이루어진 젤의 형태가 이루어지며, 이때 온도 민감성 리포솜이 함유된 폴리 N-이소프로필아크릴아마이드 젤이 만들어진다. 온도민감성 리포솜으로부터 약물의 방출은 형광강도를 측정하여 결정하였다. 폴리 N-이소프로필아크릴아마이드 젤 내부의 온도민감성 리포솜으로부터 약물의 방출은 온도가 증가할수록 지속적인 방출을 나타내었다.

Physicochemical Characterization and In Vivo Evaluation of Thermosensitive Diclofenac Liquid Suppository

  • Yong, Chul-Soon;Choi, Young-Kwon;Kim, Yong-Il;Park, Byung-Joo;Quan, Qi-Zhe;Rhee, Jong-Dal;Kim, Chong-Kook;Choi, Han-Gon
    • Archives of Pharmacal Research
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    • 제26권2호
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    • pp.162-167
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    • 2003
  • Liquid suppository systems composed of poloxamers and bioadhesive polymers were easy to administer to the anus and mucoadhesive to the rectal tissues without leakage after the dose. However, a liquid suppository containing diclofenac sodium could not be developed using bioadhesive polymers. since the drug was precipitated in this preparation. To develop a liquid suppository system using sodium chloride instead of bioadhesive polymers, the physicochemical properties such as gelation temperature, gel strength and bioadhesive force of various formulations composed of diclofenac sodium, poloxamers and sodium chloride were investigated. Furthermore, the pharmacokinetic study of diclofenac sodium delivered by the liquid suppository was performed. Diclofenac sodium significantly increased the gelation temperature and weakened the gel strength and bioadhesive force, while sodium chloride did the opposite. The liquid suppositories with less than 1.0% of sodium chloride, in which the drug was not precipitated, were inserted into the rectum without difficulty and leakage. Furthermore, liquid suppository gave significantly higher initial plasma concentrations and faster Tmax of diclofenac sodium than did solid suppository, indicating that drug from liquid suppository could be absorbed faster than that from solid one in rats. Our results suggested that a thermosensitive liquid suppository system with sodium chloride and poloxamers was a more physically stable, convenient and effective rectal dosage form for diclofenac sodium.

Development of a cell-laden thermosensitive chitosan bioink for 3D bioprinting

  • Ku, Jongbeom;Seonwoo, Hoon;Jang, Kyoung-Je;Park, Sangbae;Chung, Jong Hoon
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2017년도 춘계공동학술대회
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    • pp.107-107
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    • 2017
  • 3D bioprinting is a technology to produce complex tissue constructs through printing living cells with hydrogel in a layer-by-layer process. To produce more stable 3D cell-laden structures, various materials have been developed such as alginate, fibrin and gelatin. However, most of these hydrogels are chemically bound using crosslinkers which can cause some problems in cytotoxicity and cell viability. On the other hand, thermosensitive hydrogels are physically cross-linked by non-covalent interaction without crosslinker, facilitating stable cytotoxicity and cell viability. The examples of currently reported thermosensitive hydrogels are poly(ethylene glycol)/poly(propylene glycol)/poly(ethylene glycol) (PEG-PPG-PEG) and poly(ethylene glycol)/poly(lactic acid-co-glycolic acid) (PEG/PLGA). Chitosan, which have been widely used in tissue engineering due to its biocompatibility and osteoconductivity, can be used as thermosensitive hydrogels. However, despite the many advantages, chitosan hydrogel has not yet been used as a bioink. The purpose of this study was to develop a bioink by chitosan hydrogel for 3D bioprinting and to evaluate the suitability and potential ability of the developed chitosan hydrogel as a bioink. To prepare the chitosan hydrogel solution, ${\beta}-glycerolphosphate$ solution was added to the chitosan solution at the final pH ranged from 6.9 to 7.1. Gelation time decreased exponentially with increasing temperature. Scanning electron microscopy (SEM) image showed that chitosan hydrogel had irregular porous structure. From the water soluble tetrazolium salt (WST) and live and dead assay data, it was proven that there was no significant cytotoxicity and that cells were well dispersed. The chitosan hydrogel was well printed under temperature-controlled condition, and cells were well laden inside gel. The cytotoxicity of laden cells was evaluated by live and dead assay. In conclusion, chitosan bioink can be a candidate for 3D bioprinting.

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Poly(N-isopropylacrylamide-co-N-vinylpyrrolidone) as a Novel Implant Materials : Preparation and Thermo-Gelling Behavior

  • Nam, Irina;Bae, Jin-Woo;Jee, Kyoung-Soo;Lee, Joon-Woo;Park, Ki-Dong
    • Macromolecular Research
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    • 제10권2호
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    • pp.115-121
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    • 2002
  • Synthesis of polymers with controlled thermosensitive properties was carried out by conventional radical copolymerization of N-isopropylacrylamide (NIPAAm) with N-vinylpyrrolidone (NVP) taken as a hydrophilic comonomer. Lower activity of NVP rather than NIPAAm was revealed by gravimetric and $^1$H NMR analysis. Thermosensitive properties of the copolymers were investigated. It was found that aqueous solutions of the copolymers undergo thermo-induced phase transition and become opaque, precipitate or gel with heating. After formation of the gels their significant contraction was observed at storage. Swelling degree and amount of expelled water were measured in dependence on the copolymer composition, temperature and ionic strength of environment medium and concentration of the solution. It was determined that in collapsed state gels exhibit quite high water content. According to physico-chemical properties of the copolymers observed they could be suitable for biomedical application as an injectable implant material.

연조직 증강을 위한 세포치료 시 비계로서 키토산의 온도 감응성 및 섬유모세포의 증식에 미치는 영향에 관한 연구 (STUDY ON THERMOSENSITIVITY OF CHITOSAN SCAFFOLD AND ON ITS EFFECTS ON FIBROBLAST PROLIFERATION IN CELL THERAPY FOR SOFT TISSUE AUGMENTATION)

  • 김정호;최진영
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제35권3호
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    • pp.146-152
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    • 2009
  • Traditional surgical method or injection using filler is performed for soft tissue augmentation. Surgical methods have disadvantage of surgical morbidity. Commercially available injectable materials have the disadvantages such as resorption, short-term effect. repeated application and hypersensitivity. Significant shortcoming of cell therapy using autologous fibroblasts is delay of treatment effect. Chitosan/${\beta}$-glycerol phosphate (GP) solution has thermosensitive property and allows sol-gel transition at physiologic pH and temperature. These properties may resolve the delay of treatment effect. The purposes of this study are to evaluate the viscosity and pH changes of chitosan/${\beta}$-GP solutions and to evaluate the effect of chitosan/${\beta}$-GP solution on fibroblast proliferation and production of collagen. We measured the viscosity and pH as function of temperature, of the solution containing 1:0.7, 1:0.75, 1:0.8 chitosan (1, 10, 100, 700 kDa) /${\beta}$-GP. Fibroblasts from ears of 5 rats were cultured in chitosan/${\beta}$-GP solutions for 3 weeks. Cell proliferation and collagen contents were measured every week with WST (water-soluble tetrazolium salt) assay and Collagen assay respectively. The Results are 1) Chitosan(100 kDa<)/${\beta}$-GP solution (1:0.75) showed sol-gel transition at physiologic pH and body temperature and injectable properties. It will enable to resolve the delay in treatment effect 2) Cell proliferation and total collagen contents of the control group were increased with time. However, these decreased after the 1st week in experimental group 3) Collagen contents in the experimental group are higher than that of control group. Chitosan/${\beta}$-GP solution may provide favorable conditions for cell function

온도감응 및 생분해성 폴리에틸렌 글리콜-폴리카프로락톤과 폴리에틸렌 글리콜-폴리락타이드 공중합체의 합성 (Synthesis of Thermosensitive and Biodegradable Methoxy Poly(ethylene glycol)-Polycaprolactone and Methoxy Poly(ethylene glycol)-Poly(lactic acid) Block Copolymers)

  • 서광수;박종수;김문석;조선행;이해방;강길선
    • 폴리머
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    • 제28권3호
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    • pp.211-217
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    • 2004
  • 메톡시 폴리(에털렌 글러콜)과 생분해성 폴리에스테르 계열의 카프로락톤 그러고 락타이드로 구성된 블록 공중합체를 수용액 상에서 온도에 따른 솔-젤 전이 현상을 연구하였다. 폴러(에틸렌 글리콜)-폴리카프로락톤 (MPEG-PCL)은 HCI${\cdot}Et_{2}O$촉매 존재 하에서 실온에서 반응 용매로서 메틸렌클로라이드를 사용하여 카프로락톤기 개환을 통하여 합성되었다. 또한, 폴리(에틸렌 글리콜)-폴리(락틱 에시드) (MPEG-PLLA)는 촉매로서 stannous octoate를 사용하여 톨루엔에서 115${\circ}C$에서 중합을 실시하였다. 합성된 블록 고분자는 $^1$H-NMR, IR 그리고 GPC 뿐만 아니라 수용액상에서의 온도 감응성 상전이 형상을 관찰함으로써 그 특성을 분석하였다. 소수기의 사슬길이가 증가함에 따라 솔-젤 전이 온도가 증가하였고 상전이 곡선은 낮은 농도로 급격한 기울기의 증가가 일어났다. 인체온도에서 젤 형성을 확인하기 위하여, 각각의 블록 공중합체 MPEG-PCL과 MPEG-PLLA를 수용액에 20 wt% 농도로 준비하여 쥐에 주입한 후 신체에서의 젤 형성을 확인하였다. 본 연구를 통하여 블록 공중합체가 약물과 단백질의 주사형 이식형제제 등의 생체용 재료로서 가능성을 가지고 있음을 확인하였다.

메톡시 폴리(에틸렌 글리콜)-폴리($\varepsilon$-카프로락톤) 공중합체의 온도감응성 솔-젤 전이 거동 (Thermosensitive Sol-gel Phase Transition Behavior of Methoxy poly(ethylene glycol)-b-poly($\varepsilon$-caprolactone) Diblock Copolymers)

  • 서광수;박종수;김문석;조선행;이해방;강길선
    • 폴리머
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    • 제28권4호
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    • pp.344-351
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    • 2004
  • 온도에 반응하는 고분자로서 폴리(에틸렌 글리콜)을 기본으로 다이블록 및 트리블록 폴리에스테르 공중합체들은 비독성과 생체적합성 그러고 생분해성 특징 때문에 주사제형의 약물전달체로서 많은 응용이 이루어지고 있다. 본 연구에서는 다이블록 공중합체를 이용한 새로운 솔-젤 전이 현상을 갖는 고분자를 준비하고자, 평균분자량 750g/mole의 메톡시 폴리(에틸렌 글리콜)과 카프로락톤을 실온에서 HCI $.$ Et$_2$O 존재 하에서 개환중합을 실시하였다. 합성된 고분자는 시차주사열량계와 X-선 회절기를 이용하여 특성을 분석하였고, 수용액상에서의 고분자 용액은 실온에서 신체온도로 온도를 상승시키면 졸에서 겔 상으로의 상변화를 보였다. 신체온도 부근에서의 겔 형성을 확인하기 위하여 20 W% 졸 상태의 고분자용액을 쥐의 피하에 주입한 결과 분산 없이 겔이 잘 형성되었고 2개월 간 겔이 유지됨을 확인하였다. 이러한 연구 결과로, 새로운 솔-젤 상전이 현상을 보이는 다이블록 공중합체를 합성하였고, 주사형 이식 재료로의 가능성을 확인하였다.

온도감응성 키토산 중성용액을 이용한 약물송달시스템 (Temperature-Sensitive Drug Delivery System of Acetaminophen Using Neutral Chitosan Solution)

  • 김호정;이화정;구영순
    • Journal of Pharmaceutical Investigation
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    • 제38권4호
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    • pp.229-234
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    • 2008
  • In the present study, chitosan-glycerophosphate sodium salt solution as a thermosensitive system (TSS) was used to formulate a temperature-sensitive drug delivery system (TSDDS) containing acetaminophen (AAP). The optimized TSS was prepared by measuring gelation temperature, gelation time and rheological properties of TSS. The optimized gelation temperature and time of TSS were $36^{\circ}C$ and 100 seconds, respectively. The viscosity of TSS was also suitable for maintaining gel structure at $37.2^{\circ}C$. The release profiles of TSDDS in PBS/pH 7.4 with various apparatuses and mass loss of TSDDS were investigated. The time required to release 50% of AAP from TSDDS ($t_{50%}$) was 120 min with the formation of pore on the surfaces, which was 2 times longer than that from AAP-chitosan gel. In addition, TSDDS was degraded approximately 80% within 4 hr and then degraded slowly for 20 hrs. In conclusion, AAP-TSS (TSDDS) formulated in this study might be suitable for some specific uses such as subcutaneous injection and rectal formulation.

성장인자/키토산이 담지된 온도감응성 하이드로젤의 유착방지제로서의 응용 (Thermosensitive Chitosan-based Hydrogel with Growth Factor as Adhesion Barrier)

  • 박준규;나재운;최창용
    • 폴리머
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    • 제39권3호
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    • pp.480-486
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    • 2015
  • 조직과 장기 유착은 외과적 수술 후 부작용으로 자주 발생된다. 이러한 조직 유착을 방지하기 위하여 유착부위에 장벽을 형성하여 장기 유착을 방지할 수 있는 온도감응성 하이드로젤 유착방지제를 제조하고자 하였다. 폴록사머, 키토산과 표피성장인자를 가지고 온도감응성 키토산 하이드로젤을 제조하였다. 제조한 키토산 하이드로젤은 인체 내 온도와 유사한 $35^{\circ}C$에서 졸-젤 전이현상을 보였고, 1분 이내에 빠르게 젤화되었다. 키토산 하이드로젤은 표피성장인자를 7일 동안 천천히 방출하였고, 마우스모델에서 평가한 결과 조직 유착 방지를 효과적으로 하는 것을 확인하였다. 온도 감응성과 항균성을 갖는 키토산 하이드로젤이 장기 부착의 증가와 표피성장인자를 천천히 방출하는 유착방지제로서 유용하게 사용될 수 있다.