• 제목/요약/키워드: three-dimensional cell culture

검색결과 86건 처리시간 0.028초

Induction of Differentiation of the Cultured Rat Mammary Epithelial Cells by Triterpene Acids

  • Paik, Kee-Joo;Jeon, Seong-Sill;Chung, Hae-Young;Lee, Kyung-Hee;Kim, Kyu-Won;Chung, Joon-Ki;Kim, Nam-Deuk
    • Archives of Pharmacal Research
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    • 제21권4호
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    • pp.398-405
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    • 1998
  • We investigated the effects of triterpene acids (TAs), ursolic acid (UA) and oleanolic acid (OA), on the induction of proliferation and differentiation of normal rat mammary epithelial cells (RMEC) or organoids cultured in Matrigel or primary culture system. To elucidate the effects, we tested their differentiation inducing activities with intercellular communication ability, cell cycle patterns, induction of apoptosis, and morphological differentiation in the three dimensional extracellular culture system. To study the changes of RMEC subpopulation in culture, the cultured cells were isolated, immunostained with peanut lectin (PNA) and anti-Thy-1.1 antibody and then analyzed with flow cytometry. Four different subpopulations, such as PNA and Thy-1.1 negative cells (B-), PNA positive cells (PNA+), Thy-1.1 positive cells (Thy-1.1+), PNA and Thy-1.1 positive cells (B+), were obtained and the size of each subpopulation was changed in culture with time in the presence of TAs. Intercellular communication was observed in culture for 7 days in TAs-treated cells, but not in culture for 4 days with scrape-loading dye transfer technique. $G_2$/M phase cells and the number of apoptotic population were increased in TAs-treated groups in cell cycle analyses. S phase fractions were reduced and the change of $G_1$ phase cells was not observed. The colonies with distinct multicelfular structures, such as stellate, ductal, webbed, squamous, lobulo-ductal colonies, were observed in Matrigel culture and the frequencies of each colony were changed in the presence of TAs. These results suggest that UA and OA have differentiation inducing effects on rat mammary epithelial cells in primary or in Matrigel culture.

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Streamlined Shape of Endothelial Cells

  • Chung, Chan-Il;Chang, Jun-Keun;Min, Byoung-Goo;Han, Dong-Chul
    • Journal of Mechanical Science and Technology
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    • 제14권8호
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    • pp.861-866
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    • 2000
  • Flow induced shape change is important for spatial interpretation of vascular response and for understanding of mechanotransduction in a single cell. We investigated the possible shapes of endothelial cell (EC) in a mathematical model and compared these with experimental results. The linearized analytic solution from the sinusoidal wavy wall and Stokes flow was applied with the constraint of EC volume. The three dimensional structure of the human umbilical vein endothelial cell was visualized in static culture or after various durations of shear stress (20 $dyne/cm^2$ for 5, 10, 20, 40, 60, 120min). The shape ratio (width: length: height) of model agreed with that of the experimental result, which represented the drag force minimizing shape of stream-lining. EC would be streamlined in order to accommodate to the shear flow environmented by active reconstruction of cytoskeletons and membranes through a drag force the sensing mechanism.

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Polydioxanone/pluronic F127 담체에 유입된 골막기원세포의 조골활성 (OSTEOGENIC ACTIVITY OF CULTURED HUMAN PERIOSTEAL-DERIVED CELLS IN A THREE DIMENSIONAL POLYDIOXANONE/PLURONIC F127 SCAFFOLD)

  • 이진호;오세행;박봉욱;하영술;김덕룡;김욱규;김종렬;변준호
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제31권6호
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    • pp.478-484
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    • 2009
  • Three-dimensional porous scaffolds play an important role in tissue engineering strategies. They provide a void volume in which vascularization, new tissue formation, and remodeling can occur. Like any grafted materials, the ideal scaffold for bone tissue engineering should be biocompatible without causing an inflammatory response. It should also possess biodegradability, which provides a suitable three-dimensional environment for the cell function together with the capacity for gradual resorption and replacement by host bone tissue. Various scaffolds have already been developed for bone tissue engineering applications, including naturally derived materials, bioceramics, and synthetic polymers. The advantages of biodegradable synthetic polymers include the ability to tailor specific functions. The purpose of this study was to examine the osteogenic activity of periosteal-derived cells in a polydioxanone/pluronic F127 scaffold. Periosteal-derived cells were successfully differentiated into osteoblasts in the polydioxanone/pluronic F127 scaffold. ALP activity showed its peak level at 2 weeks of culture, followed by decreased activity during the culture period. Similar to biochemical data, the level of ALP mRNA in the periosteal-derived cells was also largely elevated at 2 weeks of culture. The level of osteocalcin mRNA was gradually increased during entire culture period. Calcium content was detactable at 1 week and increased in a time-dependent manner up to the entire duration of culture. Our results suggest that polydioxanone/pluronic F127 could be a suitable scaffold of periosteal-derived cells for bone tissue engineering.

Progesterone과 TGF-${\beta}1$에 의해 탈락막화가 유도된 인간 자궁내막세포의 삼차원 공배양이 2-세포기 생쥐배아의 체외발달에 미치는 영향 (Effects of 3-dimensional Co-culture of Human Endometrial Cells Decidualized with Progesterone and TGF-${\beta}1$ on the Development of Mouse 2-cell Embryos In Vitro)

  • 권욱현;김휘곤;이동형;고경래;이규섭
    • Clinical and Experimental Reproductive Medicine
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    • 제35권1호
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    • pp.49-60
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    • 2008
  • 목 적: 자궁내막조직에서 분리한 상피세포와 기질세포를 삼차원 공배양을 통한 탈락막화 유도에서 성호르몬과 TGF-${\beta}1$의 역할을 알아보고 2-세포기 생쥐배아와 탈락막화가 유도된 자궁내막세포와의 공배양을 통하여 포배형성율, 부화율, 포배기배아의 내세포괴와 영양막세포수 및 부착율을 알아보기 위해 시행되었다. 연구방법: 인간 자궁내막조직에서 분리된 기질세포와 상피세포의 표지인자인 cytokeratin과 vimentin에 대한 면역조직 화학염색을 실시하여 분리를 확인하였으며, 성호르몬 우세환경 (progesterone, estrogen)에서 분리된 세포를 단일배양 혹은 3차원 공배양을 통하여 RT-PCR법으로 TGF-${\beta}1$, 수용체-1, -2, integrin-${\beta}3$, prolactin의 발현을 조사하였다. 배양액군을 대조군으로 하여 2-세포기 생쥐배아와 탈락막화 유도와 유도하지 않은 인간 자궁내막세포와의 공배양을 통하여 포배형성율, 부화율, 부착율과 부화된 포배의 영양막세포와 내세포괴수를 비교하였다. 결 과: 상피세포 표지인자인 cytokeratin과 기질세포 표지인자인 vimentin을 이용하여 면역조직화학염색을 한 결과 각각 95% 이상에서 양성반응을 나타내어 자궁내막조직으로부터 상피세포와 기질세포가 성공적으로 분리되었음을 확인하였다. 분리된 상피세포와 기질세포를 단일배양에서는 성호르몬의 조건에 관계없이 TGF-${\beta}1$과 수용체 type-1, type-2, integrin-${\beta}3$, prolactin mRNA가 발현되지 않았다. 공배양에서는 progesterone 우세환경일 경우 TGF-${\beta}1$ 수용체 type-2를 제외한 모든 mRNA가 발현하였으나 estrogen 우세환경에서는 TGF-${\beta}1$ 수용체 type-2와 prolactin이 발현되지 않았다. 2-세포기 생쥐배아를 배양액군, 비탈락막군 및 탈락막군으로 나누어 공배양하였을 때 포배기 발달율은 차이가 없었으나 부화율 (92%)과 부착율 (82%)은 탈락막군이 유의하게 높았으며 (p<0.05), 비탈락막군의 공배양에서 다수의 영양막세포가 투명대를 완전히 빠져나오지 않은 상태로 부착한 비정상형태를 보였다. 부화된 생쥐 포배기배아의 내세포괴수는 탈락막화에 관계없이 공배양한 포배의 내세포괴수가 유의하게 많았으며 (p<0.05), 영양막세포수는 탈락막군에서 배양액군과 비탈락막군보다 유의하게 많았다 (p<0.05). 결 론: 자궁내막조직에서 상피세포와 기질세포를 분리하여 다시 삼차원적 공배양을 통하여 progesterone (100 nM), estrogen (1 nM)과 TGF-${\beta}1$ (10 ng/ml)을 첨가하면 체외에서 탈락막화를 유도할 수 있으며, 탈락막화를 유도한 자궁내막 세포와 2-세포기 생쥐배아를 공배양하였을 때 탈락막화가 부화율, 부착율 및 영양막세포수에 유효한 영향을 미치는 것을 알 수 있었다.

적정 구성 배양 HCT-8 기반 대장암 스페로이드의 암 줄기세포능 및 항암제 내성 평가의 비교 평가 연구 (Comparative Evaluation of Colon Cancer Stemness and Chemoresistance in Optimally Constituted HCT-8 cell-based Spheroids)

  • 이승준;김형갑;이향범;문유석
    • 생명과학회지
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    • 제26권11호
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    • pp.1313-1319
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    • 2016
  • 암은 비균질적으로 구성된 세포집합체로 간질세포 및 세포 외 기질로 구성된 미세환경과 상호작용에 의해 발병, 전이, 심화되는 복잡한 질병이다. 하지만, 기존의 2차원 배양 세포 기반 플랫폼이 3차원적 생체 환경과 암의 비균질성을 대표하기 힘든 한계를 극복하기 위해 스페로이드 배양 세포를 비롯한 다양한 플랫폼 개발이 활발해지고 있다. 본 연구에서는 특히 감염, 염증 및 식이적 환경성 영향력에 민감한 HCT-8 대장암 세포주를 기반으로 하여 3차원 스페로이드 배양법을 보다 효과적인 방법으로 개선하고, 대장암 스페로이드 세포를 기반으로 암의 비균질적인 특질과 항암내성 연구의 간단하고 개선된 플랫폼을 제시고자 하였다. 3차원 배양법 최적화를 위해 물리적 배양환경 조성과 배양배지 구성에 따른 스페로이드 형태형성을 비교 분석하고 암 줄기세포군의 증가 양상을 확인한 결과, 필수요소로 구성된 제한 배지와 균일한 형태의 비부착성 표면 배양접시에서 배양된 스페로이드가 균일한 형태의 구형을 형성하고 암 줄기세포군이 증가함을 확인하였다. 대장암 스페로이드 세포를 기반으로 대장암 치료제인 5-Fluorouracil (5-FU)에 대한 화학적 감응성 변화를 측정한 결과, 암 줄기세포가 5-FU에 대한 화학적 감수성 저해의 원인이 되며, 최적배양 조건에서 암 줄기세포의 약제 내성의 표현이 증대되었다. 이는 암줄기세포의 항암제 내성에 대한 잠재적 위험성을 내포하는 것으로, 이 방법론은 감염, 염증 및 식이적 요인과 연관된 대장암 스페로이드 세포 기반 항암제 약물반응을 검증하기 위해 효과적이면서 간소한 시험법으로 활용될 수 있을 것이다.

Regeneration of a Cartilage Tissue by In Vitro Culture of Chondrocytes on PLGA Microspheres

  • Son, Jeong-Hwa;Park, So-Ra;Kim, Hyeon-Joo;Min, Byoung-Hyun
    • Journal of Microbiology and Biotechnology
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    • 제16권10호
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    • pp.1577-1582
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    • 2006
  • Cartilage tissue engineering has emerged as an alternative approach for reconstruction or repair of injured cartilage tissues. In this study, rabbit chondrocytes were cultured in a three-dimensional environment to fabricate a new cartilaginous tissue with the application of tissue engineering strategies based on biodegradable PLGA microspheres. Chondrocytes were seeded on PLGA microspheres and cultured on a rocking platform for 5 weeks. The PLGA microspheres provided more surface area to adhere chondrocytes compared with PLGA sponge scaffolds. The novel system facilitated uniform distribution of the cells on the whole of the PLGA microspheres, thus forming a new cartilaginous construct at 4 weeks of culture. The histological and immunohistochemical analyses verified that the number of chondrocytes and the amount of extracellular matrix components such as proteoglycans and type II collagen were significantly greater on the PLGA microspheres constructs as compared with those on the PLGA sponge scaffolds. Therefore, PLGA microspheres enhanced the function of chondrocytes compared with PLGA sponge scaffolds, and thus might be useful for formation of cartilage tissue in vitro.

Current technology and industrialization status of cell-cultivated meat

  • Seung Yun Lee;Da Young Lee;Seung Hyeon Yun;Juhyun Lee;Ermie Jr Mariano;Jinmo Park;Yeongwoo Choi;Dahee Han;Jin Soo Kim;Sun Jin Hur
    • Journal of Animal Science and Technology
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    • 제66권1호
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    • pp.1-30
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    • 2024
  • Interest and investment in cultivated meat are increasing because of the realization that it can effectively supply sufficient food resources and reduce the use of livestock. Nevertheless, accurate information on the specific technologies used for cultivated meat production and the characteristics of cultivated meat is lacking. Authorization for the use of cultivated meat is already underway in the United States, Singapore, and Israel, and other major countries are also expected to approve cultivated meat as food once the details of the intricate process of producing cultivated meat, which encompasses stages such as cell proliferation, differentiation, maturation, and assembly, is thoroughly established. The development and standardization of mass production processes and safety evaluations must precede the industrialization and use of cultivated meat as food. However, the technology for the industrialization of cultivated meat is still in its nascent stage, and the mass production process has not yet been established. The mass production process of cultivated meat may not be easy to disclose because it is related to the interests of several companies or research teams. However, the overall research flow shows that equipment development for mass production and cell acquisition, proliferation, and differentiation, as well as for three-dimensional production supports and bioreactors have not yet been completed. Therefore, additional research on the mass production process and safety of cultivated meat is essential. The consumer's trust in the cultivated meat products and production technologies recently disclosed by some companies should also be analyzed and considered for guiding future developments in this industry. Furthermore, close monitoring by academia and the government will be necessary to identify fraud in the cultivated meat industry.

In vitro functional assenssment of bioartificial liver system using immobilized porcine hepatocyte spheroids

  • Lee, Ji-Hyun;Lee, Doo-Hoon;Yoon, Hee-Hoon;Jung, Doo-Hee;Park, Jung-Keug;Kim, Sung-Koo;Lee, Kwang-Woong;Lee, Suk-Koo
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2003년도 생물공학의 동향(XIII)
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    • pp.305-306
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    • 2003
  • To treat fulminant hepatic failure (FHF) patients, various extracorporeal bioartificial liver (BAL) systems have been developed. Several requirements should be met for the development of BAL systems: hepatocytes should be cultured in a sufficiently high density; their metabolic functions should be of a sufficiently high level and duration; and the BAL systems module should permit scaling-up and aseptic handling. Several investigators have found that freshly isolated primary hepatocytes can be cultured into three dimensional, tightly packed, freely suspended, multicellular aggregates, or spheroids. These specialized cell structures exhibited enhanced liver specific functions and a prolonged differentiated state compared to cells maintained in a monolayer culture. Cells in spheroids appear to mimic the morphology and ultrastructure of the in vivo liver lobule. The ability of hepatocytes to organize into three-dimensional structures was hypothesized to contribute to their enhanced liver-specific activities. In this study, the ammonia removal rate and urea secretion rate of pig hepatocytes spheroids encapsulated in Ca-alginate bead were determined. A packed-bed bioreactor with encapsulated pig hepatocytes was devised as BAL support system. The efficacy of the system was evaluated in vitro.

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조직공학을 이용한 각막상피 세포를 접종한 생인공간질층 제조

  • 안재일;장인근;김재찬;송계용;이희구;윤도영;부하령;김기호;박정극
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2002년도 생물공학의 동향 (X)
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    • pp.289-292
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    • 2002
  • The corneal tissue consists of three layers : epithelium, stroma, and endothelium. Central cornea is a highly differentiated tissue whereas the limbus contains the epithelial stem cell. In the present study. we report the engineering of the three-dimensional reconstructed cornea derived from rabbit limbal epithelial and stromal cells. The differentiation degree of corneal stem cells were assessed in serum concentration and inoculation density of stromal cells. Optimal condition differentiation of corneal stem cells is achieved when 5% FBS was supplemented to culture medium and $1-2{\times}10^5$ cells/ml inoculation density of stromal cells.

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하이드로젤 지지체 기반 3차원 환경에서 개 간엽줄기세포의 분화능 분석 (Differentiation potential of canine mesenchymal stem cells on hydrogel scaffold-based three-dimensional environment)

  • 구나연;박미정;이지현;변정수;정다운;조인수;차상호
    • 대한수의학회지
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    • 제58권4호
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    • pp.211-217
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    • 2018
  • Mesenchymal stem cells (MSCs) are useful candidates for tissue engineering and cell therapy. Physiological cell environment not only connects cells to each other, but also connects cells to the extracellular matrix that provide mechanical support, thus exposing the entire cell surface and activating signaling pathways. Hydrogel is a polymeric material that swells in water and maintains a distinct 3-dimensional (3D) network structure by cross linking. In this study, we investigated the optimized cellular function for canine adipose tissue-derived MSCs (cAD-MSCs) using hydrogel. We observed that the expression levels of Ki67 and proliferating cell nuclear antigen, which are involved in cell proliferation and stemness, were increased in transwell-hydrogel (3D-TN) compared to the transwell-normal (TN). Also, transforming growth factor-${\beta}1$ and SOX9, which are typical bone morphogenesis-inducing factors, were increased in 3D-TN compared to the TN. Collagen type II alpha 1, which is a chondrocyte-specific marker, was increased in 3D-TN compared to the TN. Osteocalcin, which is a osteocyte-specific marker, was increased in 3D-TN compared to the TN. Collectively, preconditioning cAD-MSCs via 3D culture systems can enhance inherent secretory properties that may improve the potency and efficacy of MSCs-based therapies for bone regeneration process.