• 제목/요약/키워드: Cell- and Tissue-Based Therapy

검색결과 63건 처리시간 0.024초

Differentiation of Human Mesenchymal Stem Cells towards Neuronal Lineage: Clinical Trials in Nervous System Disorders

  • Hernandez, Rosa;Jimenez-Luna, Cristina;Perales-Adan, Jesus;Perazzoli, Gloria;Melguizo, Consolacion;Prados, Jose
    • Biomolecules & Therapeutics
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    • 제28권1호
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    • pp.34-44
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    • 2020
  • Mesenchymal stem cells (MSCs) have been proposed as an alternative therapy to be applied into several pathologies of the nervous system. These cells can be obtained from adipose tissue, umbilical cord blood and bone marrow, among other tissues, and have remarkable therapeutic properties. MSCs can be isolated with high yield, which adds to their ability to differentiate into non-mesodermal cell types including neuronal lineage both in vivo and in vitro. They are able to restore damaged neural tissue, thus being suitable for the treatment of neural injuries, and possess immunosuppressive activity, which may be useful for the treatment of neurological disorders of inflammatory etiology. Although the long-term safety of MSC-based therapies remains unclear, a large amount of both pre-clinical and clinical trials have shown functional improvements in animal models of nervous system diseases following transplantation of MSCs. In fact, there are several ongoing clinical trials evaluating the possible benefits this cell-based therapy could provide to patients with neurological damage, as well as their clinical limitations. In this review we focus on the potential of MSCs as a therapeutic tool to treat neurological disorders, summarizing the state of the art of this topic and the most recent clinical studies.

COVID-19 치료 및 진단을 위한 Exosome의 임상적 적용 (Clinical Application of Exosomes for COVID-19 and Diagnosis)

  • 허준석
    • 대한임상검사과학회지
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    • 제56권1호
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    • pp.1-9
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    • 2024
  • 엑소좀은 나노 크기의 세포외 소포체로 핵산, 단백질, 지질 등 다양한 생리활성 물질을 함유하고 있다. 엑소좀의 생리활성 물질들은 주변 세포나 조직으로 전달될 수 있을 뿐만 아니라 기원된 세포의 고유 특정 물질들을 지니고 있기 때문에 엑소좀 유래 물질들은 진단 및 치료를 위한 도구로 광범위하게 사용될 수 있음이 입증되고 있으며, 이러한 이유로 엑소좀은 진단을 위한 바이오마커, 약물 전달을 위한 운반체 및 치료제로 활용될 수 있는 가능성에 많은 연구자들의 관심이 높아지고 있다. 줄기세포 분야에서 엑소좀은 줄기세포를 기반으로 한 비세포 치료제로서 보다 안전한 치료제로 사용될 수 있다는 점에서 매력적인 소재가 되고 있으며, 최근에는 중간엽줄기세포 유래 엑소좀이 항염증 및 면역조절능이 있어 코로나-19 증상 완화 효능에 대한 안전성과 효능이 입증되기도 했다. 이렇게 계속적인 엑소좀에 대한 축적된 연구는 임상 진단 및 치료를 위한 차세대 혁신적 결과물들을 제공할 것으로 생각되며, 이 종설에서는 엑소좀의 다양한 가치에 초점을 두고 미래의학의 강력한 도구로 어떻게 활용될 수 있는지에 대한 엑소좀의 잠재력을 살펴보고자 한다.

Peripheral Blood Immune Cell-based Biomarkers in Anti-PD-1/PD-L1 Therapy

  • Kyung Hwan Kim;Chang Gon Kim;Eui-Cheol Shin
    • IMMUNE NETWORK
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    • 제20권1호
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    • pp.8.1-8.15
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    • 2020
  • Immune checkpoint blockade targeting PD-1 and PD-L1 has resulted in unprecedented clinical benefit for cancer patients. Anti-PD-1/PD-L1 therapy has become the standard treatment for diverse cancer types as monotherapy or in combination with other anticancer therapies, and its indications are expanding. However, many patients do not benefit from anti-PD-1/PD-L1 therapy due to primary and/or acquired resistance, which is a major obstacle to broadening the clinical applicability of anti-PD-1/PD-L1 therapy. In addition, hyperprogressive disease, an acceleration of tumor growth following anti-PD-1/PD-L1 therapy, has been proposed as a new response pattern associated with deleterious prognosis. Anti-PD-1/PD-L1 therapy can also cause a unique pattern of adverse events termed immune-related adverse events, sometimes leading to treatment discontinuation and fatal outcomes. Investigations have been carried out to predict and monitor treatment outcomes using peripheral blood as an alternative to tissue biopsy. This review summarizes recent studies utilizing peripheral blood immune cells to predict various outcomes in cancer patients treated with anti-PD-1/PD-L1 therapy.

Cardiac Regeneration with Human Pluripotent Stem Cell-Derived Cardiomyocytes

  • Park, Misun;Yoon, Young-sup
    • Korean Circulation Journal
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    • 제48권11호
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    • pp.974-988
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    • 2018
  • Embryonic stem cells (ESCs) and induced pluripotent stem cells (iPSCs), which are collectively called pluripotent stem cells (PSCs), have emerged as a promising source for regenerative medicine. Particularly, human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs) have shown robust potential for regenerating injured heart. Over the past two decades, protocols to differentiate hPSCs into CMs at high efficiency have been developed, opening the door for clinical application. Studies further demonstrated therapeutic effects of hPSC-CMs in small and large animal models and the underlying mechanisms of cardiac repair. However, gaps remain in explanations of the therapeutic effects of engrafted hPSC-CMs. In addition, bioengineering technologies improved survival and therapeutic effects of hPSC-CMs in vivo. While most of the original concerns associated with the use of hPSCs have been addressed, several issues remain to be resolved such as immaturity of transplanted cells, lack of electrical integration leading to arrhythmogenic risk, and tumorigenicity. Cell therapy with hPSC-CMs has shown great potential for biological therapy of injured heart; however, more studies are needed to ensure the therapeutic effects, underlying mechanisms, and safety, before this technology can be applied clinically.

중간엽줄기세포유래 엑소좀: 비세포치료제로서의 활용 (Mesenchymal Stem Cell-derived Exosomes: Applications in Cell-free Therapy)

  • 허준석;김진관
    • 대한임상검사과학회지
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    • 제50권4호
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    • pp.391-398
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    • 2018
  • 중간엽줄기세포는 항염증능, 면역조절능 뿐만 아니라 다계통으로의 분화능 때문에 난치성 환자 치료를 위한 매력적인 대안적 치료방법으로 알려져 왔다. 지금까지 중간엽줄기세포의 이식 치료법은 면역질환, 심혈관질환, 암, 간질환 및 뇌졸중을 비롯한 다양한 질병의 전임상 및 임상적용에 긍정적인 결과를 가져왔다. 여러 연구들에 의하면, 중간엽줄기세포를 이용한 치료는 손상된 세포나 조직에 중간엽줄기세포가 이동하여 직접 세포를 대체하거나 분화시키는 작용이 아니라 중간엽줄기세포에서 분비하는 여러 인자들 즉, 주변분비 효과(paracrine effect)에 의한 것으로 확인되고 있다. 최근에 중간엽줄기세포 유래 엑소좀은 핵산, 단백질, 지질 등을 손상된 세포나 조직의 국소 미세환경으로 전달함으로써 세포간 상호작용을 통해 조직재생을 중재할 수 있는 중요한 역할을 하는 것으로 알려졌다. 엑소좀의 이용은 세포이식으로부터 발생할 수 있는 종양형성과 같은 다양한 위험성을 피할 수 있으므로 줄기세포 기반 치료 적용에 유용성이 매우 높다. 이러한 이유에서 중간엽줄기세포 유래 엑소좀은 재생의학 및 조직공학에서 안전하고 효율적인 치료적 도구(tool)가 될 수 있다. 여기에서 우리는 치료제로서의 중간엽줄기세포 유래 엑소좀의 정의와 역할에 대한 최신 지견과 함께 포괄적인 이해를 제공하고자 한다.

Roles of Mesenchymal Stem Cells in Tissue Regeneration and Immunomodulation

  • Ayala-Cuellar, Ana Patricia;Kang, Ji-Houn;Jeung, Eui-Bae;Choi, Kyung-Chul
    • Biomolecules & Therapeutics
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    • 제27권1호
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    • pp.25-33
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    • 2019
  • Mesenchymal stem cells are classified as multipotent stem cells, due to their capability to transdifferentiate into various lineages that develop from mesoderm. Their popular appeal as cell-based therapy was initially based on the idea of their ability to restore tissue because of their differentiation potential in vitro; however, the lack of evidence of their differentiation to target cells in vivo led researchers to focus on their secreted trophic factors and their role as potential powerhouses on regulation of factors under different immunological environments and recover homeostasis. To date there are more than 800 clinical trials on humans related to MSCs as therapy, not to mention that in animals is actively being applied as therapeutic resource, though it has not been officially approved as one. But just as how results from clinical trials are important, so is to reveal the biological mechanisms involved on how these cells exert their healing properties to further enhance the application of MSCs on potential patients. In this review, we describe characteristics of MSCs, evaluate their benefits as tissue regenerative therapy and combination therapy, as well as their immunological properties, activation of MSCs that dictate their secreted factors, interactions with other immune cells, such as T cells and possible mechanisms and pathways involved in these interactions.

Effect of Stem Cell Transplantation on Pain Behavior and Locomotor Function in Spinal Cord Contusion Model

  • Park, Hea-Woon;Kim, Su-Jeong;Cho, Yun-Woo;Hwang, Se-Jin;Lee, Won-Yub;Ahn, Sang-Ho;Jang, Sung-Ho
    • The Journal of Korean Physical Therapy
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    • 제22권3호
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    • pp.79-85
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    • 2010
  • Purpose: Many trials for new therapeutic approaches such as stem cell-based transplantation have been conducted to improve the repair and regeneration of injured cord tissue and to restore functions following spinal cord injury (SCI) in animals and humans. Adipose tissue-derived stromal cells (ATSCs) have multi-lineage potential to differentiate into cells with neuron-like morphology. Most studies of stem cell transplantation therapy after SCI are focused on cellular regeneration and restoration of motor function, but not on unwanted effects after transplantation such as neuropathic pain. This study was focused on whether transplantation of ATSCs could facilitate or attenuate hindpaw pain responses to heat, cold and mechanical stimulation, as well as on improvement of locomotor function in a rat with SCI. Methods: A spinal cord injury rat model was produced using an NYU impactor by dropping a 10 g rod from a height of 25 mm on to the T9 segment. Human ATSCs (hATSCs; approximately $5{\times}10^5$ cells) or DMEM were injected into the perilesional area 9 days after the SCI. After transplantation, hindpaw withdrawal responses to heat, cold and mechanical allodynia were measured over 7 weeks. Motor recovery on the Basso, Beattie, and Bresnahan (BBB) locomotor rating scale and on the inclined plane test were also evaluated. Results: The present study demonstrated that increased hindpaw withdrawal responses to cold allodynia was observed in both groups after transplantation, but the development of cold-induced allodynia in the hATSC transplantation group was significantly larger than in the control group. The difference between the two groups in locomotor functional improvement after SCI was also significant. Conclusion: Careful consideration not only of optimal functional benefits but also of unintended side effects such as neuropathic pain is necessary before stem cell transplantation therapy after SCI.

Isolation of Peripheral Blood-Derived Mesenchymal Stem Cells in Mares and Foals

  • Ye-Eun Oh;Eun-Bee Lee;Jong-Pil Seo
    • 한국임상수의학회지
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    • 제40권5호
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    • pp.323-329
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    • 2023
  • Peripheral blood-derived mesenchymal stem cells (PB-MSCs) have shown promise in cell-based therapy, as they can be harvested with ease through minimally invasive procedures. This study aimed to isolate PB-MSCs from foals and mares and to compare the proliferation and cellular characteristics of the PB-MSCs between the two groups. Six pairs of mares and their foals were used in this study. MSCs were isolated from PB by direct plating in a tissue culture medium, and cell proliferation (population doubling time [PDT], and colony-forming unit-fibroblast assay [CFU-F]), and characterization (morphology, plastic adhesiveness, colony formation, trilineage differentiation) were examined. There was no significant difference in the PB-MSC yield, CFU-F, and PDT between the mares and foals. PB-MSCs from both mares and foals showed typical MSC characteristics in terms of spindle-shaped morphology, plastic adhesive properties, formation of colonies, trilineage differentiation. These results suggest that PB-MSCs isolated from horses, both adult horses, and foals, can be used for equine cell-based therapy.

식도암과 성호르몬 (Esophageal Cancer and Sex Hormones)

  • 김유진
    • Journal of Digestive Cancer Research
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    • 제11권2호
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    • pp.61-65
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    • 2023
  • Globally, esophageal cancer is the seventh most common cancer, and the male-to-female ratio in esophageal adenocarcinoma (EAC) is significantly imbalanced at 4:1 to 8:1. Obesity, reflux, and smoking are known risk factors for this sex difference; however, fully explaining this remains challenging. Studies have investigated the link between exogenous sex hormones and esophageal cancer occurrence. A meta-analysis revealed a lower risk of EAC in female who had undergone hormone replacement therapy. Androgen-deprivation therapy in patients with prostate cancer was associated with a decreased risk of EAC. Tissue-based studies have reported varied results regarding the relationship between estrogen receptor expression and survival in female patients with esophageal squamous cell carcinoma (ESCC). Circulating hormone studies have suggested that higher testosterone and luteinizing hormone levels decreased EAC risk in men, and free testosterone was inversely correlated in female with ESCC. However, a high androgen-estrogen ratio in male patients with EAC was linked to increased odds of EAC. Sex hormones influence carcinogenesis, affecting cell proliferation, differentiation, metabolism, inflammation, and cell death. The studies were limited by the small sample size and varying hormone measurement methods; thus, future studies with definitive conclusions on the association between esophageal cancer and sex hormones are warranted.

Comparative Characteristics of Three Human Embryonic Stem Cell Lines

  • Lee, Jung Bok;Kim, Jin Mee;Kim, Sun Jong;Park, Jong Hyuk;Hong, Seok Ho;Roh, Sung Il;Kim, Moon Kyoo;Yoon, Hyun Soo
    • Molecules and Cells
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    • 제19권1호
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    • pp.31-38
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    • 2005
  • Human embryonic stem (hES) cells have unique features including unlimited growth capacity, expression of specific markers, normal karyotypes and an ability to differentiate. Many investigators have tried to use hES cells for cell-based therapy, but there is little information about the properties of available hES cell lines. We compared the characteristics of three hES cell lines. The expression of SSEA-1, -3, -4, and APase, was examined by immunocytochemistry, and Oct-4 expression was analyzed by RT-PCR. Differentiation of the hES cells in vitro and in vivo led to the formation of embryoid bodies (EBs) or teratomas. We examined the expression of tissue-specific markers in the differentiated cells by semiquantitative RT-PCR, and the ability of each hES cell line to proliferate was measured by flow cytometry of DNA content and ELISA. The three hES cell lines were similar in morphology, marker expression, and teratoma formation. However there were significant differences (P < 0.05) between the differentiated cells formed by the different cell lines in levels of expression of tissue-specific markers such as renin, kallikrein, Glut-2, ${\beta}-$ and ${\delta}-globin$, albumin, and ${\alpha}1-antitrypsin$ (${\alpha}1-AT$). The hES cell lines also differed in proliferative activity. Our observations should be useful in basic and clinical hES cell research.