• 제목/요약/키워드: poly(lactic-co-glycolic acid)

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키토산이 코팅된 PLGA 나노입자의 제조 및 특성 (Preparation and Characterization of Chitosan-coated PLGA Nanoparticle)

  • 유수경;나재운;정경원
    • 공업화학
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    • 제32권5호
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    • pp.509-515
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    • 2021
  • 본 연구는 생체적합성 및 생분해성의 특성을 갖는 PLGA (poly lactic-co-glycolic acid)를 이용하여 이중(w/o/w) emlusion과 유화 용매-증발 기법을 통해 PLGA 나노입자(PNP)를 제조하였고, 이에 키토산을 전하 상호작용을 통해 키토산이 코팅된 PLGA 나노입자(CPNP)를 제조하여 입자의 안정성과 생체이용률을 극대화할 수 있는 경구 투여용 약물 전달체로 사용 가능성을 입증하고자 하였다. CPNP의 화학적 구조는 1H-NMR 및 FT-IR을 통해 분석하였으며, 모든 특성 피크가 나타남으로써 성공적으로 제조되었음을 확인하였다. 또한, CPNP의 입자 크기, 제타 전위 및 형태학적 이미지는 DLS와 TEM을 이용하여 각각 분석하였으며, TGA를 통해 CPNP의 열적 분해 거동을 관찰하였다. 또한, CPNP의 세포 독성은 HEK293 및 L929 세포에서 MTT assay를 수행하여 확인하였고, 모든 농도에서 70% 이상의 세포 생존율을 확인함으로써 독성이 없음을 입증하였다. 이러한 결과를 통해 본 연구에서 개발된 CPNP가 경구용 약물 전달체로써 사용 가능성이 있음을 제안한다.

Development of SS-AG20-loaded Polymeric Microparticles by Oil-in-Water (o/w) Emulsion Solvent Evaporation and Spray Drying Methods for Sustained Drug Delivery

  • Choi, Eun-Jung;Bai, Cheng-Zhe;Hong, A-Reum;Park, Jong-Sang
    • Bulletin of the Korean Chemical Society
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    • 제33권10호
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    • pp.3208-3212
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    • 2012
  • Controlled drug delivery systems employing microparticles offer lots of advantages over conventional drug dosage formulations. Microencapsulation technique have been conducted with biodegradable polymers such as poly(lactic-co-glycolic acid) (PLGA) and poly(lactic acid) (PLA) for its adjustable biodegradability and biocompatibility. In this study, we evaluated two techniques, oil-in-water (o/w) emulsion solvent evaporation and spray drying, for preparation of polymeric microparticles encapsulating a newly synthesized drug, SS-AG20, for the long-term drug delivery of this low-molecular-weight drug with a very short half-life. Drug-loaded microparticles prepared by the solvent evaporation method showed a smoother morphology; however, relatively poor encapsulation efficiency and drastic initial burst were discovered as drawbacks. Spray-dried drug-loaded microparticles had an imperfect surface with pores and distorted portions so that its initial burst was critical (70.05-87.16%) when the preparation was carried out with a 5% polymeric solution. By increasing the concentration of the polymer, the morphology was refined and undesirable initial burst was circumvented (burst was reduced to 35.93-74.85%) while retaining high encapsulation efficiency. Moreover, by encapsulating the drug with various biodegradable polymers using the spray drying method, gradual and sustained drug release, for up to 2 weeks, was achieved.

Neuronal Differentiation of PC12 Cells Cultured on Growth Factor-Loaded Nanoparticles Coated on PLGA Microspheres

  • Park, Keun-Hong;Kim, Hye-Min;Na, Kun
    • Journal of Microbiology and Biotechnology
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    • 제19권11호
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    • pp.1490-1495
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    • 2009
  • The development of nanotechnology has penetrated the fields of biology and medicine, resulting in remarkable applications for tissue regeneration. In order to apply this technology to tissue engineering, we have developed nano-scaled 3D scaffolds consisting of growth factor-loaded heparin/poly(l-lysine) nanoparticles (NPs) attached to the surface of polymeric micro spheres via polyionic complex methods. Growth factor-loaded NPs were simply produced as polyelectrolyte complexes with diameters of 100-200 nm. They were then coated onto positively charged poly(lactic-co-glycolic acid) (PLGA) pretreated with polyethyleneimine to enable cell adhesion, proliferation, and stimulation of neurite outgrowth. Propidium iodide staining and $\beta$-tubulin analysis revealed that neuronal PC12 cells proliferated extensively, expressed significant amounts of b-tubulin, and showed well-structured neurite outgrowth on polymeric microspheres by stimulation with growth factors. These results suggest that cellular adhesion and biological functionality on prepared PLGA microspheres enabled terminal differentiation of neuronal cells.

Efficient Anti-Tumor Immunotherapy Using Tumor Epitope-Coated Biodegradable Nanoparticles Combined With Polyinosinic-Polycytidylic Acid and an Anti-PD1 Monoclonal Antibody

  • Sang-Hyun Kim;Ji-Hyun Park;Sun-Jae Lee;Hee-Sung Lee;Jae-Kyung Jung;Young-Ran Lee;Hyun-Il Cho;Jeong-Ki Kim;Kyungjae Kim;Chan-Su Park;Chong-Kil Lee
    • IMMUNE NETWORK
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    • 제22권5호
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    • pp.42.1-42.20
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    • 2022
  • Vaccination with tumor peptide epitopes associated with MHC class I molecules is an attractive approach directed at inducing tumor-specific CTLs. However, challenges remain in improving the therapeutic efficacy of peptide epitope vaccines, including the low immunogenicity of peptide epitopes and insufficient stimulation of innate immune components in vivo. To overcome this, we aimed to develop and test an innovative strategy that elicits potent CTL responses against tumor epitopes. The essential feature of this strategy is vaccination using tumor epitope-loaded nanoparticles (NPs) in combination with polyinosinic-polycytidylic acid (poly-IC) and anti-PD1 mAb. Carboxylated NPs were prepared using poly(lactic-co-glycolic acid) and poly(ethylene/maleic anhydride), covalently conjugated with anti-H-2Kb mAbs, and then attached to H-2Kb molecules isolated from the tumor mass (H-2b). Native peptides associated with the H-2Kb molecules of H-2Kb-attached NPs were exchanged with tumor peptide epitopes. Tumor peptide epitope-loaded NPs efficiently induced tumor-specific CTLs when used to immunize tumor-bearing mice as well as normal mice. This activity of the NPs significantly was increased when co-administered with poly-IC. Accordingly, the NPs exerted significant anti-tumor effects in mice implanted with EG7-OVA thymoma or B16-F10 melanoma, and the anti-tumor activity of the NPs was significantly increased when applied in combination with poly-IC. The most potent anti-tumor activity was observed when the NPs were co-administered with both poly-IC and anti-PD1 mAb. Immunization with tumor epitope-loaded NPs in combination with poly-IC and anti-PD1 mAb in tumor-bearing mice can be a powerful means to induce tumor-specific CTLs with therapeutic anti-tumor activity.

Succinylated Pullulan Acetate Microspheres for Protein Delivery

  • Woo, Young-Rong;Seo, Seog-Jin;Na, Kun
    • Journal of Pharmaceutical Investigation
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    • 제41권6호
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    • pp.323-329
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    • 2011
  • In order to develop new protein carrier replacing poly(DL-lactic acid-co-glycolic acid) (PLGA) microspheres, succinylated pullulan acetate (SPA) was investigated to fabricate a long term protein delivery carrier. SPA microspheres loaded with lysozyme (Lys) as a model protein drug were prepared by a water/oil/water (W/O/W) double emulsion method. An acidity test of SPA copolymers after hydrolysis was performed to estimate the change of protein stability during releasing proteins from the microspheres. There was no pH change of SPA copolymers, but pH of PLGA polymers after hydrolysis was significantly decreased to around pH 2, indicating that the long-term stability of proteins released from SPA microspheres can be guaranteed. Loading efficiency of proteins into SPA microspheres was three times higher than those into conventional PLGA microspheres, indication of inducing stronger charge interaction between proteins and succinyl groups in SPA microspheres. Although initial burst behaviors were monitored in Lys-loaded SPA microspheres due to relatively strong hydrophilic succinyl segments in SPA microspheres, initial burst issues would be circumvented if the ratio of charge density of succinyl moieties and hydrophobic acetate groups is harmonically controlled. Therefore, in this study, a new attempt of protein delivery system was made and functional SPA was successfully confirmed as a new protein carrier.

Effect of Paclitaxel-loaded Nanoparticles on the Viability of Human Hepatocellular Carcinoma HepG2 Cells

  • Hou, Zhi-Hong;Zhao, Wen-Cui;Zhang, Qi;Zheng, Wei
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권5호
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    • pp.1725-1728
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    • 2015
  • Objective: To explore effects of paclitaxel-loaded poly lactic-co-glycolic acid (PLGA) particles on the viability of human hepatocellular carcinoma (HCC) HepG2 cells. Materials and Methods: The viability of HepG2 cells was assessed using MTT under different concentrations of prepared paclitaxel-loaded particles and paclitaxel (6.25, 12.5, 25, 50, and 100 mg/L), and apoptosis was analyzed using Hochest33342/Annexin V-FITC/PI combined with an IN Cell Analyzer 2000. Results: Paxlitaxel-loaded nanoparticles were characterized by narrow particle size distribution (158.6 nm average particle size). The survival rate of HepG2 cells exposed to paclitaxel-loaded PLGA particles decreased with the increase of concentration and time period (P<0.01 or P<0.05), the dose- and time-dependence indicating sustained release (P<0.05). Moreover, apoptosis of HepG2 cells was induced, again with an obvious dose- and time-effect relationship (P<0.05). Conclusions: Paclitaxel-loaded PLGA particles can inhibit the proliferation and induce the apoptosis of HCC HepG2 cells. This new-type of paclitaxel carrier body is easily made and has low cost, good nanoparticle characterization and sustained release. Hence, paclitaxel-loaded PLGA particles deserve to be widely popularized in the clinic.

In vitro and in vivo Application of PLGA Nanofiber for Artificial Blood Vessel

  • Kim, Mi-Jin;Kim, Ji-Heung;Yi, Gi-Jong;Lim, Sang-Hyun;Hong, You-Sun;Chung, Dong-June
    • Macromolecular Research
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    • 제16권4호
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    • pp.345-352
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    • 2008
  • Poly(lactic-co-glycolic acid) (PLGA) tubes (5 mm in diameter) were fabricated using an electro spinning method and used as a scaffold for artificial blood vessels through the hybridization of smooth muscle cells (SMCs) and endothelial cells (ECs) differentiated from canine bone marrow under previously reported conditions. The potential clinical applications of these artificial blood vessels were investigated using a canine model. From the results, the tubular-type PLGA scaffolds for artificial blood vessels showed good mechanical strength, and the dual-layered blood vessels showed acceptable hybridization behavior with ECs and SMCs. The artificial blood vessels were implanted and substituted for an artery in an adult dog over a 3-week period. The hybridized blood vessels showed neointimal formation with good patency. However, the control vessel (unhybridized vessel) was occluded during the early stages of implantation. These results suggest a shortcut for the development of small diameter, tubular-type, nanofiber blood vessels using a biodegradable material (PLGA).

Tranilast-delivery surgical sutures to ameliorate wound healing by reducing scar formation through regulation of TGF-β expression and fibroblast recruitment

  • Choi, Sung Yoon;Kim, Byung Hwi;Huh, Beom Kang;Jeong, Woong;Park, Min;Park, Hyo Jin;Park, Ji-Ho;Heo, Chan Yeong;Choy, Young Bin
    • Journal of Industrial and Engineering Chemistry
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    • 제67권
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    • pp.469-477
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    • 2018
  • We describe surgical sutures enabled with the local, sustained delivery of a TGF-${\beta}$ inhibitory drug, tranilast. To fabricate drug-delivery sutures, we separately prepared a tranilast-loaded strand using poly (lactic-co-glycolic acid), which was then physically braided with a surgical suture already in clinical use. By this method, the drug-delivery sutures maintained the mechanical strength and allowed the modulation of drug release profiles by simply altering the tranilast-loaded strand. The drug-delivery sutures herein released tranilast for up to 14 days. When applied to animal models, scarring was indeed reduced with diminished TGF-${\beta}$ expression and fibroblast numbers during the entire 21 day testing period.

젖산 및 글리콜산에서 합성된 PLGA 멤브레인의 특성과 생분해성에 관한 연구 (Study on the characteristics and biodegradable of synthetic PLGA membrane from lactic acid and glycolic acid)

  • 시에위잉;박종순;강순국
    • 한국산학기술학회논문지
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    • 제16권4호
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    • pp.2958-2965
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    • 2015
  • 공중합체인 PLGA는 생분해성 고분자로서 의료용 이식재료로 사용되고 있으며, 이를 이용한 멤브레인은 양호한 생분해 특성 및 지속적 약물 전달체로서 치조골 유도제로 적용할 수 있다. 본 연구는 락티드, 글리콜리드 합성 및 공중합과정을 거쳐 상전이법을 이용하여 PLGA 멤브레인을 제조하였으며, 멤브레인의 광학적(NMR, IR), 기계적(인장강도), 열적(DSC)특성을 조사하였다. 또한 PLGA 멤브레인의 생분해 특성은 PBS (Phosphate Buffered Solution)이 담긴 항온조($60^{\circ}C$) 내에서 분해시간에 따른 표면분해 정도, 멤브레인의 질량변화 및 용액의 pH 변화로 측정하였다.

Enhancement of Antigen-specific Antibody and $CD8^+$ T Cell Responses by Codelivery of IL-12-encapsulated Microspheres in Protein and Peptide Vaccination

  • Park, Su-Hyung;Chang, Jun;Yang, Se-Hwan;Kim, Hye-Ju;Kwak, Hyun-Hee;Kim, Byong-Moon;Lee, Sung-Hee;Sung, Young-Chul
    • IMMUNE NETWORK
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    • 제7권4호
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    • pp.186-196
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    • 2007
  • Background: Although IL-12 has been widely accepted to playa central role in the control of pathogen infection, the use of recombinant IL-12 (rIL-12) as a vaccine adjuvant has been known to be ineffective because of its rapid clearance in the body. Methods: To investigate the effect of sustained release of IL-12 in vivo in the peptide and protein vaccination models, rIL-12 was encapsulated into poly ($A_{DL}$-lactic-co-glycolic acid) (PLGA). Results: We found that codelivery of IL-12-encapsulated microspheres (IL-12EM) could dramatically increase not only antibody responses, but also antigen-specific $CD4^+\;and\;CD8^+$ T cell responses. Enhanced immune responses were shown to be correlated with protective immunity against influenza and respiratory syncytial virus (RSV) virus challenge. Interestingly, the enhancement of $CD8^+$ T cell response was not detectable when $CD4^+$ T cell knockout mice were subjected to vaccination, indicating that the enhancement of the $CD8^+$ T cell response by IL-12EM is dependent on $CD4^+$ T cell "help". Conclusion: Thus, IL-12EM could be applied as an adjuvant of protein and peptide vaccines to enhance protective immunity against virus infection.