• 제목/요약/키워드: 세포치료법

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2005 전남대학교 줄기세포 심포지움 개최 후기

  • 한호재
    • Journal of the korean veterinary medical association
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    • v.41 no.10
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    • pp.918-928
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    • 2005
  • 체세포 핵이식을 통한 정상인과 환자 체세포 유래의 다능성 인간배아 줄기세포주 확립 및 응용 - 체세포 핵이식을 통한 다능성 인간 배아 줄기세포주 확립의 기술적 측면 - 인간배아줄기세포의 분화 : 발생생물학적 접근 및 세포치료에 대한 전망 - 마우스 배아줄기세포 기능들의 호르몬 조절 - 간엽줄기세포를 이용한 골조직 공학 - 조혈모세포의 재생 - 제대혈 유래 간엽줄기세포를 이용한 세포치료 - 난치성 혈액종양질환에서 수지상세포를 이용한 세포면역치료법 확립

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Current Update of Cartilage Regeneration Using Stem Cells in Osteoarthritis (골관절염에서 줄기세포를 이용한 연골 재생의 최신 지견)

  • Seon, Jong-Keun;Choi, Ik-Sun;Ko, Jee-Wook
    • Journal of the Korean Orthopaedic Association
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    • v.54 no.6
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    • pp.478-489
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    • 2019
  • Osteoarthritis is a disease characterized by the progression of articular cartilage erosion, that increases pain during joint motion and reduces the ability to withstand mechanical stress, which in turn limits joint mobility and function. Damage to articular cartilage due to trauma or degenerative injury is considered a major cause of arthritis. Numerous studies and attempts have been made to regenerate articular cartilage. In the case of partial degenerative cartilage changes, microfracture and autologous chondrocyte implantation have been proposed as surgical treatment methods, but they have disadvantages such as insufficient mutual binding to the host cells, inaccurate cell delivery, and deterioration of healthy cartilage. Stem cell-based therapies have been developed to compensate for this. This review summarizes the drawbacks and consequences of various cartilage regeneration methods and describes the various attempts to treat cartilage damage. In addition, this review will discuss cartilage regeneration, particularly mesenchymal stem cell engineering-based therapies, and explore how to treat future cartilage regeneration using mesenchymal stem cells.

세포성장 조절물질 탐색

  • 최인성
    • The Microorganisms and Industry
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    • v.19 no.1
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    • pp.33-36
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    • 1993
  • 세포성장 조절물질 탐색기술 개발 분야의 연구는 학문적으로는 세포성장 조절물질의 작용기작 규명에 의한 유전병의 병리기전, 암의 병리학적인 원인규명과 면역현상의 이해를 통한 생명과학의 기초연구 증진을 이룩할 것이며 세포성장 조절인자의 유전자를 분리하여 유전자 치료법(gene therapy)에 이용하거나 이들 유전자를 발현벡타를 이용해 과발현시켜 난치성 유전병의 치료에 이용하는 등의 임상실험에 활용할 수 있다. 산업적으로는 이들 연구결과를 활용한 신규 항암제 및 면역 조절제 개발기술의 수준 향상에 따른 생물 신의약 개발 분야에서 국제경재력을 제고시키는데 큰 역할을 할 것으로 기대된다.

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The convergence effect of medical industry through stem cell implant treatment (줄기 세포 이식 치료를 통한 의료 산업적 융합효과)

  • Lee, Tae-Hoon
    • Journal of Convergence for Information Technology
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    • v.8 no.2
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    • pp.61-65
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    • 2018
  • Our experiment studied that grafted stem cells reduced behavioral deficiency in rodent animal models of clip compressive surgery inducing spinal cord infarction. Our research proved the effect of embryonic stem cells to the spinal cord infarction caused by compressing T9-10 with an aneurysm clip, focusing the application of grafted stem cells for reduction of infarction and regeneration of spinal cord nervous injury. Therefore, our research suggests manifest results that implantation of mouse embryonic stem cell could show behavioral improvement after severe spinal cord damage. Therefore, mouse embryonic stem cell (mESC) could be useful application for the method in neurological injury. Conclusively, stem cell implant therapy may enhance the effectiveness of stem cell implant for central nervous system injury.

Development of low cost module for proliferation control of cancer cells using LED and its therapeutic effects (LED를 활용한 저가의 암세포 증식제어 모듈 개발 및 효과)

  • Cho, Kyoungrae;Choe, Se-woon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.22 no.9
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    • pp.1237-1242
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    • 2018
  • Photodynamic therapy has been suggested as an alternative treatment to current cancer therapy which resulting in a variety of side effects because photodynamic therapy targets specific cancer cells and does not have a significant effect on normal cells. Typically, laser was used as a photodynamic therapy, but this was limited due to high cost and heat reaction. However, compact light emitting diodes that can emit light of various wavelengths have been developed at a low cost, which has a great influence on the low cost development of photodynamic therapy equipment. On the other hand, in the study of photodynamic therapy, the data on the direct effect of visible light are relatively small. Therefore, in this paper, we propose a novel cancer therapeutic module by developing a cancer cell proliferation inhibition module based on an Arduino that is relatively inexpensive, and able to use light of various wavelengths.

조직공학을 이용한 반월판 연골의 재생

  • Son, Seon-Mi;Gang, Seon-Ung;Park, Jeong-Ho;Choe, Cha-Yong;Kim, Byeong-Su
    • 한국생물공학회:학술대회논문집
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    • 2002.04a
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    • pp.59-61
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    • 2002
  • The injury of meniscus, integral components of the knee joint, is a common sports-related problem and the most frequent injurγ to the knee joint.$^1$ This study was aimed to tissue-engineer meniscus in rabbit models. Cells isolated from rabbit meniscus were seeded onto meniscus-shaped, biodegradable polymer matrices and implanted to rabbit knee joints The tissue-engineered meniscus explanted at 6 and 10 weeks showed gross and histologic evidences similar to those of native meniscus. This study may lead to the development of tissue-engineered meniscus appropriate for clinical applications.

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줄기세포를 이용하여 당뇨병을 극복한다?

  • 유순집
    • The Monthly Diabetes
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    • s.166
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    • pp.64-67
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    • 2003
  • 인슐린 치료를 필요로 하는 당뇨병 환자에서는 당뇨병성 합병증의 발생을 예방하거나 합병증이 진행된 경우에는 기존의 고식적인 치료로 만족할 만한 효과를 거두기가 어려워 이상적인 치료 방법에 대한 기대가 높은 상태이다. 특히 췌도이식 대상자는 급증하고 있으나 공급 가능한 췌장은 한정되어 있어 이식에 필요한 췌도는 절대적인 부족 상태로 오직 일부 제 1형 당뇨병 환자에서만 제한적으로 췌도이식이 적용 가능하다. 따라서 충분한 췌도 이식원을 확보할 수 있는 췌도 이식원의 개발은 췌도이식의 가장 큰 목표라 할 수 있다. 본 난에서는 당뇨병 치료에서 시험관내 및 생체실험에서 줄기세포의 현황과 줄기세포를 이용하여 당뇨병을 극복하고자 하는 연구의 성과와 이에 따른 새로운 치료법에 대한 최근 내용을 고찰해 보고자 한다.

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The Prospective of Antigen-presenting Cells in Cancer Immunotherapy (항원제시세포를 이용한 암 치료제 개발전망)

  • Shim Doo-Hee;Lee Jae-Hwa
    • KSBB Journal
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    • v.19 no.6 s.89
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    • pp.415-420
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    • 2004
  • All around the world, the rate of attack of cancer diseases has been going up and the number of cancer patients has been increasing every year. Cancer can be divided into malignant tumor and benign tumor according to its growth appearance. Many studies and experiments have been conducted and the various treatment are being created to find the way to care malignant. Dendritic cells (DCs), which is an agent of cancer treatments by using an immune reaction in our body, plays an important role to present by a tumor antigen to cytotoxic T-cell and help them to attack the tumor cell directly. However there are some defects of this therapy. Soluble human leukocyte antigen-immunoglobulin fusion protein (HLA-Ig) based artificial antigen presenting cell (aAPC) as the antigen presenting cell (APC) which is complement and overcome some of the limitations of dendritic cell-based vaccines and ex vivo expansion of human T cells is new method for cancer therapy. In this article, we are reviewing the role of DCs and the treatment with it, and searching for the possibility of the new development of immunotherapy for cancer.

Basic study on proliferation control of cancer cells using combined ultrasound and LED therapeutic module (초음파와 LED를 이용한 일체형암세포 증식억제 모듈의 기초연구)

  • Cho, Kyung-rae;Choe, Se-woon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.22 no.8
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    • pp.1107-1113
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    • 2018
  • Ultrasonography and photodynamic therapy have been proposed as useful tools as a treatment for inducing necrosis of cells using reactive oxygen species. Apoptosis is an internal mechanism necessary for cells regardless of damage. Ultrasound has the effect of inducing the apoptosis of these cells, and the frequency of 1 MHz is the most applicable area for medical use. The laser which is generally used in photodynamic therapy has a heat reaction and the treatment is limited. However, as a small light emitting diode is developed, it shows possibility to minimize the equipment and reduce heat reaction. On the other hand, there are relatively few researches on direct effects of light compared with studies using photosensitizers, and the area is also limited. Therefore, in this paper, we have developed a cancer cell proliferation control module using ultrasonic and light emitting diodes, which have relatively few side effects, and quantitatively analyze the effect of the module to propose an optimal suppression technique.