• 学术搜索
  • 科研智能体
    • Research Labs
    • AI 阅读
    • AI 文库
    • 深度研究
    • 学者亮点
  • 学术资源
    • AI2000
    • 期刊/会议
    • 学者库
    • 学术API
    • 溯源树
    • 数据集
  • 知识沉淀
    • 学术空间
订阅小程序
旧版功能
aminer vip
开通会员低至0.73元/天
一次搞定AI科研
立即登录
  • English
  • 联系方式
    O

    Oak Forest Hospital of Cook County

    80论文总数
    1,393引用总数

    Oak Forest Hospital of Cook County is a 600+ bed hospital located in south suburban Oak Forest, Illinois. It specializes in long-term care, ventilator care, chronic disease and rehabilitation services. It is part of the Cook County Bureau of Health Services, which also includes the more prominent and newer John H. Stroger, Jr. Hospital of Cook County.Until recently, uninsured patients from other hospitals in Cook County requiring sub-acute, chronic, long term, ventilator care, or rehabilitation were sent to Oak Forest Hospital as an alternative to remaining in acute hospitals such as John H. Stroger, Jr. Hospital of Cook County or Provident Hospital - Chicago or going to nursing homes.Many services and facilities at Oak Forest Hospital have been cut or closed down recently, including long-term care units, some rehabilitation services, and conveniences such as the hospital's cafeteria. As a result, patients who lived in the long-term care units were placed to lower-quality nursing facilities..

    论文量&引用量时间轴

    机构学者

    排序
    In-Hee Lee
    In-Hee Lee
    The Fore
    论文:15引用:0H-index:0
    Dae-Yeon Lee
    Dae-Yeon Lee
    The Fore
    论文:15引用:0H-index:0
    Aldo A. Luisada
    Aldo A. Luisada
    Department of Cardiology, Oak Forest Hospital
    论文:14引用:0H-index:0
    Kyungrae Kang
    Kyungrae Kang
    Forest Hospital
    论文:12引用:0H-index:0
    Tae-Wook Kwon
    Tae-Wook Kwon
    Forest Hospital
    论文:11引用:0H-index:0
    Ho-Sung Lee
    Ho-Sung Lee
    Forest Hosp, Fore
    论文:11引用:0H-index:0
    Sang-In Park
    Sang-In Park
    ForestHeal Hospital
    论文:10引用:0H-index:0
    Seung Gu Yang
    Seung Gu Yang
    Forest Hosp, Seongnam, South Korea
    论文:6引用:0H-index:0
    Ct Henderson
    Ct Henderson
    UNIV ILLINOIS
    论文:5引用:0H-index:0

    论文(80)

    年份
    起
    –
    止
    排序
    1Exploration of the System-Level Mechanisms of the Herbal Drug FDY003 for Pancreatic Cancer Treatment: A Network Pharmacological Investigation
    Ho-Sung Lee,In-Hee Lee,Kyungrae Kang,Sang-In Park,Minho Jung,Seung Gu Yang,Tae-Wook Kwon,Dae-Yeon Lee

    Pancreatic cancer (PC) is the most lethal cancer with the lowest survival rate globally. Although the prescription of herbal drugs against PC is gaining increasing attention, their polypharmacological therapeutic mechanisms are yet to be fully understood. Based on network pharmacology, we explored the anti-PC properties and system-level mechanisms of the herbal drug FDY003. FDY003 decreased the viability of human PC cells and strengthened their chemosensitivity. Network pharmacological analysis of FDY003 indicated the presence of 16 active phytochemical components and 123 PC-related pharmacological targets. Functional enrichment analysis revealed that the PC-related targets of FDY003 participate in the regulation of cell growth and proliferation, cell cycle process, cell survival, and cell death. In addition, FDY003 was shown to target diverse key pathways associated with PC pathophysiology, namely, the PIK3-Akt, MAPK, FoxO, focal adhesion, TNF, p53, HIF-1, and Ras pathways. Our network pharmacological findings advance the mechanistic understanding of the anti-PC properties of FDY003 from a system perspective.

    2022EVIDENCE-BASED COMPLEMENTARY AND ALTERNATIVE MEDICINE(2022)引用:4
    引用
    AI阅读
    加入学术空间
    2A Network Pharmacology Study on the Molecular Mechanisms of FDY003 for Breast Cancer Treatment
    Ho-Sung Lee,In-Hee Lee,Kyungrae Kang,Sang-In Park,Seung-Joon Moon,Chol Hee Lee,Dae-Yeon Lee

    Herbal medicines have drawn considerable attention with regard to their potential applications in breast cancer (BC) treatment, a frequently diagnosed malignant disease, considering their anticancer efficacy with relatively less adverse effects. However, their mechanisms of systemic action have not been understood comprehensively. Based on network pharmacology approaches, we attempted to unveil the mechanisms of FDY003, an herbal drug comprised of Lonicera japonica Thunberg, Artemisia capillaris Thunberg, and Cordyceps militaris, against BC at a systemic level. We found that FDY003 exhibited pharmacological effects on human BC cells. Subsequently, detailed data regarding the biochemical components contained in FDY003 were obtained from comprehensive herbal medicine-related databases, including TCMSP and CancerHSP. By evaluating their pharmacokinetic properties, 18 chemical compounds in FDY003 were shown to be potentially active constituents interacting with 140 BC-associated therapeutic targets to produce the pharmacological activity. Gene ontology enrichment analysis using g:Profiler indicated that the FDY003 targets were involved in the modulation of cellular processes, involving the cell proliferation, cell cycle process, and cell apoptosis. Based on a KEGG pathway enrichment analysis, we further revealed that a variety of oncogenic pathways that play key roles in the pathology of BC were significantly enriched with the therapeutic targets of FDY003; these included PI3K-Akt, MAPK, focal adhesion, FoxO, TNF, and estrogen signaling pathways. Here, we present a network-perspective of the molecular mechanisms via which herbal drugs treat BC.

    2021EVIDENCE-BASED COMPLEMENTARY AND ALTERNATIVE MEDICINE(2021)引用:38
    引用
    AI阅读
    加入学术空间
    3A Comprehensive Understanding of the Anticancer Mechanisms of FDY2004 Against Cervical Cancer Based on Network Pharmacology
    Ho-Sung Lee,In-Hee Lee,Kyungrae Kang,Sang-In Park,Minho Jung,Seung Gu Yang,Tae-Wook Kwon,Dae-Yeon Lee

    Herbal drugs are continuously being developed and used as effective therapeutics for various cancers, such as cervical cancer (CC); however, their mechanisms of action at a systemic level have not been explored fully. To study such mechanisms, we conducted a network pharmacological investigation of the anti-CC mechanisms of FDY2004, an herbal drug consisting of Moutan Radicis Cortex, Persicae Semen , and Rhei Radix et Rhizoma. We found that FDY2004 inhibited the viability of human CC cells. By performing pharmacokinetic evaluation and network analysis of the phytochemical components of FDY2004, we identified 29 bioactive components and their 116 CC-associated pharmacological targets. Gene ontology enrichment analysis showed that the modulation of cellular functions, such as apoptosis, growth, proliferation, and survival, might be mediated through the FDY2004 targets. The therapeutic targets were also key components of CC-associated oncogenic and tumor-suppressive pathways, including PI3K-Akt, human papillomavirus infection, IL-17, MAPK, TNF, focal adhesion, and viral carcinogenesis pathways. In conclusion, our data present a comprehensive insight for the mechanisms of the anti-CC properties of FDY2004.

    2021Natural Product Communications(2021)引用:5
    引用
    AI阅读
    加入学术空间
    4Network Pharmacology-Based Dissection of the Comprehensive Molecular Mechanisms of the Herbal Prescription FDY003 Against Estrogen Receptor-Positive Breast Cancer
    Ho-Sung Lee,In-Hee Lee,Kyungrae Kang,Sang-In Park,Minho Jung,Seung Gu Yang,Tae-Wook Kwon,Dae-Yeon Lee

    Estrogen receptor-positive breast cancer (ERPBC) is the commonest subtype of breast cancer, with a high prevalence, incidence, and mortality. Herbal drugs are increasingly being used to treat ERPBC, although their mechanisms of action are not fully understood. Therefore, in this study, we aimed to analyze the therapeutic properties of FDY003, a herbal anti-ERPBC prescription, using a network pharmacology approach. FDY003 decreased the viability of human ERPBC cells and sensitized them to tamoxifen, an endocrine drug that is widely used in the treatment of ERPBC. The network pharmacology analysis revealed 18 pharmacologically active components in FDY003 that may interact with and regulate 66 therapeutic targets. The enriched gene ontology terms for the FDY003 targets were associated with the modulation of cell survival and death, cell proliferation and growth arrest, and estrogen-associated cellular processes. Analysis of the pathway enrichment of the targets showed that FDY003 may target a variety of ERPBC-associated pathways, including the PIK3-Akt, focal adhesion, MAPK, and estrogen pathways. Overall, these data provide a comprehensive mechanistic insight into the anti-ERPBC activity of FDY003.

    2021NATURAL PRODUCT COMMUNICATIONS(2021)引用:3
    引用
    AI阅读
    加入学术空间
    5Uncovering the Anti-Lung-Cancer Mechanisms of the Herbal Drug FDY2004 by Network Pharmacology
    Ho-Sung Lee,In-Hee Lee,Kyungrae Kang,Sang-In Park,Tae-Wook Kwon,Dae-Yeon Lee

    With growing evidence on the therapeutic efficacy and safety of herbal drugs, there has been a substantial increase in their application in the lung cancer treatment. Meanwhile, their action mechanisms at the system level have not been comprehensively uncovered. To this end, we employed a network pharmacology methodology to elucidate the systematic action mechanisms of FDY2004, an anticancer herbal drug composed of Moutan Radicis Cortex, Persicae Semen, and Rhei Radix et Rhizoma, in lung cancer treatment. By evaluating the pharmacokinetic properties of the chemical compounds present in FDY2004 using herbal medicine-associated databases, we identified its 29 active chemical components interacting with 141 lung cancer-associated therapeutic targets in humans. The functional enrichment analysis of the lung cancer-related targets of FDY2004 revealed the enriched Gene Ontology terms, involving the regulation of cell proliferation and growth, cell survival and death, and oxidative stress responses. Moreover, we identified key FDY2004-targeted oncogenic and tumor-suppressive pathways associated with lung cancer, including the phosphatidylinositol 3-kinase-Akt, mitogen-activated protein kinase, tumor necrosis factor, Ras, focal adhesion, and hypoxia-inducible factor-1 signaling pathways. Overall, our study provides novel evidence and basis for research on the comprehensive anticancer mechanisms of herbal medicines in lung cancer treatment.

    2021EVIDENCE-BASED COMPLEMENTARY AND ALTERNATIVE MEDICINE(2021)引用:2
    引用
    AI阅读
    加入学术空间
    立即登录,查看全部 80 篇论文

    合作机构(6)

    Foundation for Orthopaedic Research and Education合作论文 10
    拉合尔卫生科学大学合作论文 2
    密苏里大学合作论文 1
    WonKwang Health Science University合作论文 1
    韦恩州立大学合作论文 1
    伊利诺伊大学芝加哥分校合作论文 1

    机构统计