• Title/Summary/Keyword: oxygen therapy

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A Case of Pulmonary Embolism Patient Contraindicated in the Use of Anticoagulants Improved by Administering Hyulbuchuko-tang (항응고제 사용이 불가능했던 폐색전증 환자에 대한 혈부축어탕 치험 1례)

  • Ha, Won Jung;Lee, Yu Jin;Kim, Geun Young;Cho, Ki-Ho;Moon, Sang-Kwan;Jung, Woo-Sang;Kwon, Seungwon
    • The Journal of Internal Korean Medicine
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    • v.42 no.3
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    • pp.403-411
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    • 2021
  • Background: This case report shows the effect of Hyulbuchuko-tang on a patient with a contraindication to anticoagulants who complained about dyspnea caused by pulmonary embolism (PE). Case report: A PE patient with dyspnea was treated with herbal medication, Hyulbuchuko-tang, for 28 days. Evaluations took place by assessing time for oxygen application time per day, follow-up chest CT, and D-dimer test results. Oxygen application time per day decreased, and oxygen therapy ended on the 14th day of Hyulbuchuko-tang treatment. Follow-up chest CT showed resolution of PE. The D-dimer level decreased on the 24th day and decreased more after 1 month later. Conclusion: This clinical case study suggests that Hyulbuchuko-tang might be effective in the resolution of PE and can be an option as a treatment for PE patients with contraindications to anticoagulants.

Neuroprotective Effects of Stachys sieboldii Miq. Extract Against Ischemia/reperfusion-induced Apoptosis in SH-SY5Y Neuroblastoma Cells (허혈-재관류 유도 신경세포사멸에 대한 초석잠 추출물의 신경보호 효과 연구)

  • Young-Kyung Lee;Chul Hwan Kim;Su Young Shin;Buyng Su Hwang;Min-Jeong Seo;Hye Jin Hwang;Kyung-Min Choi;Jin-Woo Jeong
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2020.08a
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    • pp.76-76
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    • 2020
  • Stachys sieboldii Miq. (chinese artichoke), which has been extensively used in oriental traditional medicine to treat of ischemic stroke; however, the role of Stachys sieboldii Miq. (SSM) in cerebral ischemia/reperfusion (I/R) injury is not yet fully understood. In the current study, the neuroblastoma cell line (SH-SY5Y) were subjected to oxygen-glucose deprivation/reperfusion (OGD/R) to simulate I/R injury in vitro model. The results showed that SSM improved OGD/R-induced inhibitory effect on cell viability of SH-SY5Y Cells. SSM displayed anti-oxidative activity as proved by the decreased levels of reactive oxygen species (ROS) and malondialdehyde (MDA), and increased activities of superoxide dismutase (SOD) and glutathione peroxidase (GPx) in OGD/R-induced SH-SY5Y Cells. In addition, cell apoptosis was markedly decreased after SSM treatment in OGD/R-induced SH-SY5Y Cells. The up-regulation of Bcl-2 and down-regulation of Bax, thus reducing the Bax/Bcl-2 ratio that in turn protected the activation of caspase-9 and -3, and inhibition of poly (ADP-ribose) polymerase cleavage, which was associated with the blocking of cytochrome c release to the cytoplasm. Collectively, SSM protected human neuroblastoma SH-SY5Y cells from OGD/R-induced injury via preventing mitochondrial-dependent pathway through scavenging excessive ROS, suggesting that SSM might be a potential agent for the ischemic stroke therapy.

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Recent Research Trends in Thioredoxin Reductase-targeted Anticancer Therapy (Thioredoxin reductase를 표적으로 하는 항암 최신 연구 동향)

  • Hwangbo, Hyun;Lee, Hyesook;Cheong, JaeHun;Choi, Yung Hyun
    • Journal of Life Science
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    • v.32 no.1
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    • pp.63-69
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    • 2022
  • The thioredoxin reductase (TrxR) system is essential for cell survival and function by playing a pivotal role in maintaining homeostasis of cellular redox and regulating signal transduction pathways. The TrxR system comprises thioredoxin (Trx), TrxR, and nicotinamide adenine dinucleotide phosphate. Trx reduced by the catalytic reaction of the TrxR enzyme reduces downstream proteins, resulting in protection against oxidative stress and regulation of cell differentiation, growth, and death. Cancer cells survive by improving their intracellular antioxidant capacity to eliminate excessively generated reactive oxygen species (ROS) due to infinite cell proliferation and a high metabolic rate. Therefore, cancer cells have high dependence and sensitivity to antioxidant systems, suggesting that focusing on TrxR, a representative antioxidant system, is a potential strategy for cancer therapy. Several studies have revealed that TrxR is expressed at high levels in various types of cancers, and research on anticancer activity targeting the TrxR system is increasing. In this review, we discuss the feasibility and value of the TrxR system as a strategy for anticancer activity research by examining the relationship between the function of the intracellular TrxR system and the development and progression of cancer, considering the anticancer activity and mechanism of TrxR inhibitors.

Photodynamically induced endothelial cell injury and neutrophil-like HL-60 adhesion

  • Takahashi, Miho;Nagao, Tomokazu;Matsuzaki, Kazuki;Nishimura, Toshihiko;Minamitani, Haruyuki
    • Journal of Photoscience
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    • v.9 no.2
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    • pp.518-520
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    • 2002
  • Photodynamic therapy (PDT) is a treatment modality based on photochemical reaction and the resultant cytotoxic reactive oxygen species. The platelet thrombus formation leading to stasis observed in vivo during PDT is called vascular shut down (VSD) effect. To investigate the mechanism of the VSD effect, we observed Human Umblical Vein Endothelial Cell (HUVEC) injury induced by photochemical reaction. We observed cell retraction and blebbing after PDT. It seems that the injury was not fetal and only morphological change. Then, the cytoplasm was stained by Calcein-AM and subendothelial area was evaluated from fluorescence microscopy. The rate of subendothelial area after PDT increased significantly. Second, we investigated interaction between neutrophils and HUVEC. Human promyelocytic leukemia cells (HL-60) were differentiated into neutrophil by incubation with all-trans retinoic acid. Calcein-AM labeled neutrophil adhesion to HUVEC was evaluated from fluorescence microscopy. PDT-induced neutrophil adhesion to HUVEC depended more on the exposure of subendothlial area than on neutrophil activation. This result suggests that there is a certain interaction between neutrophil and HUVEC during PDT.

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Review of Clinical Studies on Korean Medicine and Complementary and Alternative Medicine Treatment for Allergic Rhinitis in the Korean Literature (알레르기성 비염의 한의학 및 보완대체의학적 치료에 대한 국내 임상 연구 동향)

  • Koo, Eun Jin;Han, Jae Kyung;Kim, Yun Hee
    • The Journal of Pediatrics of Korean Medicine
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    • v.29 no.4
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    • pp.77-89
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    • 2015
  • Objectives The purpose of this study is to analyze Korean clinical studies in Korean medicine and complementary and alternative medicine for allergic rhinitis and to propose for better methods of clinical studies and effective treatments on allergic rhinitis. Methods Electronic researches were performed with NDSL, RISS, KISTI, KISS, OASIS by keyword 'Allergic rhinitis'. Results The treatments used in 36 studies were herbal medicines, acupuncture, pharmacopuncture, moxibustion, cupping, inject medicine to nasal cavity, aroma therapy, ointment, nasal cleansing solution, laser treatment, infra-red therapy, oxygen nebulizer, diet treatment, moxa-pellet treatment, mindfulness meditation and space-spine manipulation techniques. The most common acupoints were LI4 and LI20 (Large Intestine Meridian). The most common methods of assessment is subjective nasal symptoms. All studies using subjective nasal symptoms and quality of life as assessment methods to show valid results on the improvement of allergic rhinitis. Conclusions This study shows that Korean medicine and complementary and alternative medicine on allergic rhinitis are effective. It will be expected to use that various methods for allergic rhinitis and more clinical studies for allergic rhinitis and pediatric patients needed in the future.

The Pentose Phosphate Pathway as a Potential Target for Cancer Therapy

  • Cho, Eunae Sandra;Cha, Yong Hoon;Kim, Hyun Sil;Kim, Nam Hee;Yook, Jong In
    • Biomolecules & Therapeutics
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    • v.26 no.1
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    • pp.29-38
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    • 2018
  • During cancer progression, cancer cells are repeatedly exposed to metabolic stress conditions in a resource-limited environment which they must escape. Increasing evidence indicates the importance of nicotinamide adenine dinucleotide phosphate (NADPH) homeostasis in the survival of cancer cells under metabolic stress conditions, such as metabolic resource limitation and therapeutic intervention. NADPH is essential for scavenging of reactive oxygen species (ROS) mainly derived from oxidative phosphorylation required for ATP generation. Thus, metabolic reprogramming of NADPH homeostasis is an important step in cancer progression as well as in combinational therapeutic approaches. In mammalian, the pentose phosphate pathway (PPP) and one-carbon metabolism are major sources of NADPH production. In this review, we focus on the importance of glucose flux control towards PPP regulated by oncogenic pathways and the potential therein for metabolic targeting as a cancer therapy. We also summarize the role of Snail (Snai1), an important regulator of the epithelial mesenchymal transition (EMT), in controlling glucose flux towards PPP and thus potentiating cancer cell survival under oxidative and metabolic stress.

Tricuspid valve dysplasia(TVD) in an American cocker spaniel dog (American cocker spaniel dog에서 발생한 삼첨판 이형성 증례)

  • Park, Chul;Choi, Chi-Bong;Sur, Jung-Hyang;Chung, Byung-Hyun;Park, Hee-Myung
    • Korean Journal of Veterinary Research
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    • v.44 no.1
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    • pp.125-129
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    • 2004
  • A 2-year-old, female, American cocker spaniel dog presented for a 1-year history of severe ascites, exercise intolerance, tachypnea. At that time, she was in an emergency state. First, the dog was stabilized with oxygen therapy. A diagnosis of cardiac problem was made from history, auscultation, radiograph, ECG, and echocardiography. Jugular pulsation was palpated and a harsh, systolic murmur of tricuspid regurgitation was prominent at the right cardiac apex. Tricuspid valve dysplasia (TVD) was confirmed with echocardiography, accompanying enormous myocardial hypertrophy. The clinical signs had been improved for 8 months with careful therapy and periodic abdominocentesis, and ascites was well controlled. The situation, however, became worse quickly in a week because the client did not follow our management schedule. Finally, she died due to dyspnea and shock. After the spontaneous death, necropsy and histopathological examination were performed and when we opened the thorax, a significantly large heart was observed. On histopathological findings, grossly myocardium appeared pale initially, then progressed to yellow and white. Microscopically, there was an extensive hemorrhage along with loss of myocardial striations. Interstitial fibrosis and various degenerative alterations in myocytes were also present.

Stemness and Proliferation of Murine Skin-Derived Precursor Cells under Hypoxic Environment

  • Kim, Hyewon;Park, Sangkyu;Roh, Sangho
    • International Journal of Oral Biology
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    • v.41 no.2
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    • pp.69-74
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    • 2016
  • Skin-derived precursors (SKPs) have potential to differentiate to various cell types including osteoblasts, adipocytes and neurons. SKPs are a candidate for cell-based therapy since they are easily accessible and have multipotency. Most mammalian cells are exposed to a low oxygen environment with 1 to 5% $O_2$ concentration in vivo, while 21% $O_2$ concentration is common in in vitro culture. The difference between in vitro and in vivo $O_2$ concentration may affect to the behavior of cultured cells. In this report, we investigated the effect of hypoxic condition on stemness and proliferation of SKPs. The results indicated that SKPs exposed to hypoxic condition for 5 days showed no change in proliferation. In terms of mRNA expression, hypoxia maintained expression of stemness markers; whereas, oncogenes, such as Klf4 and c-Myc, were downregulated, and the expression of Nestin, related to cancer migration, was also downregulated. Thus, SKPs cultured in hypoxia may reduce the risk of cancer in SKP cell-based therapy.

Emerging Role of NRF2 Signaling in Cancer Stem Cell Phenotype

  • Steffanus P. Hallis;Jin Myung Kim;Mi-Kyoung Kwak
    • Molecules and Cells
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    • v.46 no.3
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    • pp.153-164
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    • 2023
  • Cancer stem cells (CSCs) are a small population of tumor cells characterized by self-renewal and differentiation capacity. CSCs are currently postulated as the driving force that induces intra-tumor heterogeneity leading to tumor initiation, metastasis, and eventually tumor relapse. Notably, CSCs are inherently resistant to environmental stress, chemotherapy, and radiotherapy due to high levels of antioxidant systems and drug efflux transporters. In this context, a therapeutic strategy targeting the CSC-specific pathway holds a promising cure for cancer. NRF2 (nuclear factor erythroid 2-like 2; NFE2L2) is a master transcription factor that regulates an array of genes involved in the detoxification of reactive oxygen species/electrophiles. Accumulating evidence suggests that persistent NRF2 activation, observed in multiple types of cancer, supports tumor growth, aggressive malignancy, and therapy resistance. Herein, we describe the core properties of CSCs, focusing on treatment resistance, and review the evidence that demonstrates the roles of NRF2 signaling in conferring unique properties of CSCs and the associated signaling pathways.

Protective Effects of BCC Against Oxidative Stress in Cardiomyocyte Cells

  • Bong-Geun Shin;Dae-Kwan Kim
    • Biomedical Science Letters
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    • v.30 no.1
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    • pp.10-16
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    • 2024
  • Oxidative stress caused by elevated reactive oxygen species (ROS) in the heart causes various heart diseases. Oxidative stress is known as a factor that causes diseases in various organs as well as the heart. Diseases such as heart failure, myocardial infarction, and cardiomyopathy caused by oxidative stress in the heart can be treated with medication or surgery. Recently, blood cells concentrate (BCC) is used in various treatment areas such as orthopedics, gynecology, and urology. BCC therapy is applied to treatment by concentrating platelets and white blood cells necessary for regeneration through simple centrifugation using autologous blood. As the platelets are activated, many growth factors are released from alpha granules of the platelets. Growth factors such as TGF-β1, PDGF, VEGF, and EGF derived from platelets are involved in various cell signaling pathway. Due to these growth factors, BCC can contribute to tissue regeneration and can treat various diseases. CD34+ cells contained in BCC may also play an important role in tissue regeneration. In this study, we investigated whether BCC has a regenerative effect on heart disease, and if so, what mechanism causes the effect. To observe this, cardiomyocyte cells were treated with H2O2 to induce oxidative stress. And the effect was confirmed in the presence or absence of BCC. As a result, in the presence of BCC, the oxidative stress of cardiomyocyte cells was reduced and cell damage was also reduced. These results suggest that BCC therapy can be a new treatment alternative for heart disease.