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  • Bentham Science Publishers Ltd.  (54)
  • 1
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2020
    In:  Current Medicinal Chemistry Vol. 28, No. 1 ( 2020-12-29), p. 152-168
    In: Current Medicinal Chemistry, Bentham Science Publishers Ltd., Vol. 28, No. 1 ( 2020-12-29), p. 152-168
    Abstract: Atherosclerosis is a chronic inflammatory vascular disease. Atherosclerotic cardiovascular disease is the main cause of death in both developed and developing countries. Many pathophysiological factors, including abnormal cholesterol metabolism, vascular inflammatory response, endothelial dysfunction and vascular smooth muscle cell proliferation and apoptosis, contribute to the development of atherosclerosis and the molecular mechanisms underlying the development of atherosclerosis are not fully understood. Ubiquitination is a multistep post-translational protein modification that participates in many important cellular processes. Emerging evidence suggests that ubiquitination plays important roles in the pathogenesis of atherosclerosis in many ways, including regulation of vascular inflammation, endothelial cell and vascular smooth muscle cell function, lipid metabolism and atherosclerotic plaque stability. This review summarizes important contributions of various E3 ligases to the development of atherosclerosis. Targeting ubiquitin E3 ligases may provide a novel strategy for the prevention of the progression of atherosclerosis.
    Type of Medium: Online Resource
    ISSN: 0929-8673
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2020
    SSG: 15,3
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  • 2
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2022
    In:  Current Neuropharmacology Vol. 20, No. 4 ( 2022-04), p. 738-750
    In: Current Neuropharmacology, Bentham Science Publishers Ltd., Vol. 20, No. 4 ( 2022-04), p. 738-750
    Abstract: Major depressive disorder is the most common mental disorder with significant economic burden and limited treatments. Acupuncture has emerged as a promising non-pharmacological treatment for reducing depressive symptoms. However, the potential mechanisms and clinical effectiveness of acupuncture are not fully understood. This review aimed to: (1) summarize the available evidence on the mechanisms and clinical effectiveness of acupuncture for depression, and then (2) compare with pharmacological interventions, guiding future studies. Studies with animal models of depression and patients have shown that acupuncture could increase hippocampal and network neuroplasticity and decrease brain inflammation, potentially to alleviating depressive disorders. Overall clinical studies indicated that acupuncture could relieve primary depression, particularly milder cases, and was helpful in the management of post-stroke depression, pain-related depression, and postpartum depression both as an isolated and adjunct treatment. It was emphasized that acupuncture combined with antidepressant pharmacological treatment not only enhanced the improvement of primary and secondary depressive symptoms but also reduced the side effects of the medical treatment, which is the main cause for high dropout rates with drug treatment. In summary, substantial evidence from animal and human researches supported the beneficial effect of acupuncture in depression. However, most clinical trials of acupuncture were small, and it is unclear whether their findings can be generalized, so more studies are needed.
    Type of Medium: Online Resource
    ISSN: 1570-159X
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2022
    detail.hit.zdb_id: 2119376-9
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  • 3
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2021
    In:  Current Medicinal Chemistry Vol. 28, No. 36 ( 2021-11), p. 7446-7460
    In: Current Medicinal Chemistry, Bentham Science Publishers Ltd., Vol. 28, No. 36 ( 2021-11), p. 7446-7460
    Abstract: Proprotein convertase subtilisin/Kexin type 9 (PCSK9) is a secretory serine protease that plays multiple biological functions in the regulation of physiological and pathological processes. PCSK9 inhibitors decrease the circulating LDL-cholesterol level with well-known preventive and therapeutic effects on atherosclerosis (AS). Still, increasing evidence shows that the direct impact of PCSK9 on the vascular wall also plays an important role in atherosclerotic progression. Compared with other vascular cells, a large proportion of PCSK9 is originated from vascular smooth muscle cells (VSMC). Therefore, defining the effect of VSMC-derived PCSK9 on response changes, such as phenotypic switch, apoptosis, autophagy, inflammation, foam cell formation, and calcification of VSMC, helps us better understand the “pleiotropic” effects of VSMC on the atherosclerotic process. In addition, our understanding of the mechanisms of PCSK9 controlling VSMC functions in vivo is far from enough. This review aims to holistically evaluate and analyze the current state of our knowledge regarding PCSK9 actions affecting VSMC functions and its mechanism in atherosclerotic lesion development. A mechanistic understanding of PCSK9 effects on VSMC will further underpin the success of a new therapeutic strategy targeting AS.
    Type of Medium: Online Resource
    ISSN: 0929-8673
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2021
    SSG: 15,3
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  • 4
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2015
    In:  Current Alzheimer Research Vol. 12, No. 3 ( 2015-03-17), p. 228-232
    In: Current Alzheimer Research, Bentham Science Publishers Ltd., Vol. 12, No. 3 ( 2015-03-17), p. 228-232
    Type of Medium: Online Resource
    ISSN: 1567-2050
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2015
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  • 5
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2021
    In:  Current Medicinal Chemistry Vol. 28, No. 18 ( 2021-06), p. 3666-3680
    In: Current Medicinal Chemistry, Bentham Science Publishers Ltd., Vol. 28, No. 18 ( 2021-06), p. 3666-3680
    Abstract: Atherosclerosis is a chronic arterial wall illness that forms atherosclerotic plaques within the arteries. Plaque formation and endothelial dysfunction are atherosclerosis & #039; characteristics. It is believed that the occurrence and development of atherosclerosis mainly include endothelial cell damage, lipoprotein deposition, inflammation and fibrous cap formation, but its molecular mechanism has not been elucidated. Therefore, protecting the vascular endothelium from damage is one of the key factors against atherosclerosis. The factors and processes involved in vascular endothelial injury are complex. Finding out the key factors and mechanisms of atherosclerosis caused by vascular endothelial injury is an important target for reversing and preventing atherosclerosis. Changes in cell adhesion are the early characteristics of EndMT, and cell adhesion is related to vascular endothelial injury and atherosclerosis. Recent researches have exhibited that endothelial-mesenchymal transition (EndMT) can urge atherosclerosis & #039; progress, and it is expected that inhibition of EndMT will be an object for anti-atherosclerosis. We speculate whether inhibition of EndMT can become an effective target for reversing atherosclerosis by improving cell adhesion changes and vascular endothelial injury. Studies have shown that H 〈 sub 〉 2 〈 /sub 〉 S has a strong cardiovascular protective effect. As H 〈 sub 〉 2 〈 /sub 〉 S has anti- inflammatory, anti-oxidant, inhibiting foam cell formation, regulating ion channels and enhancing cell adhesion and endothelial functions, the current research on H 〈 sub 〉 2 〈 /sub 〉 S in cardiovascular aspects is increasing, but anti-atherosclerosis & #039;s molecular mechanism and the function of H2S in EndMT have not been explicit. In order to explore the mechanism of H 〈 sub 〉 2 〈 /sub 〉 S against atherosclerosis, to find an effective target to reverse atherosclerosis, we sum up the progress of EndMT promoting atherosclerosis, and Hydrogen sulfide & #039;s potential anti- EndMT effect is discussed in this review.
    Type of Medium: Online Resource
    ISSN: 0929-8673
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2021
    SSG: 15,3
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  • 6
    In: Current Molecular Medicine, Bentham Science Publishers Ltd., Vol. 20, No. 1 ( 2019-12-13), p. 44-50
    Abstract: Adiponectin and 8-Hydroxy-2′-deoxyguanosine (8-OHdG) are identified as important biomarkers in the pathogenesis process of type 2 diabetes mellitus (T2DM). Whether adiponectin and 8-OHdG have a relation to cognitive decline in the elderly T2DM patients has been poorly understood. The aim of this study was to evaluate the effects of adiponectin and 8-OHdG in the elderly patients with T2DM and to determine the role of adiponectin and 8-OHdG in the cognitive impairment of the elderly patients with T2DM. Methods:: 57 individuals were recruited and analyzed , with 26 cases of T2DM without cognitive impairment and 31 cases of T2DM with cognitive impairment. All of them underwent an examination of diabetes scales and blood glucose at different times. A primary diagnosis of diabetes was in line with the diagnosis criteria set by the American Diabetes Association (ADA). Statistical significance was defined as a P-value of less than 0.05. Results:: The variables of sex, age, body mass index (BMI), hypertension, diabetes, metabolic syndrome, lacunar cerebral infarction, smoking and drinking in T2DM patients without cognitive impairment and with cognitive impairment showed no difference according to the univariate analysis exploring each variable separately (p 〉 0.05). A significant difference was observed in the serum levels of adiponectin and 8-OHdG and the scales of MMSE and MoCA (p 〈 0.05). Therefore, it was inferred that there is no correlation between glucose metabolic value and cognitive outcome of T2DM patients. Serum levels of adiponectin and 8-OHdG could act as biomarkers of cognitive impairment degree in the elderly T2DM patients. Conclusion:: Serum levels of adiponectin and 8-OHdG could act as specific and sensitive biomarkers for the early diagnosis and treatment of cognitive impairment in elderly T2DM patients. Serum levels of adiponectin and 8-OHdG have a close relation to the neurological cognitive outcome of the elderly T2DM patients.
    Type of Medium: Online Resource
    ISSN: 1566-5240
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2019
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  • 7
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2019
    In:  Current Topics in Medicinal Chemistry Vol. 19, No. 25 ( 2019-11-29), p. 2271-2282
    In: Current Topics in Medicinal Chemistry, Bentham Science Publishers Ltd., Vol. 19, No. 25 ( 2019-11-29), p. 2271-2282
    Abstract: Polysialic acid (polySia) is a novel glycan that posttranslationally modifies neural cell adhesion molecules (NCAMs) in mammalian cells. Up-regulation of polySia-NCAM expression or NCAM polysialylation is associated with tumor cell migration and progression in many metastatic cancers and neurocognition. It has been known that two highly homologous mammalian polysialyltransferases (polySTs), ST8Sia II (STX) and ST8Sia IV (PST), can catalyze polysialylation of NCAM, and two polybasic domains, polybasic region (PBR) and polysialyltransferase domain (PSTD) in polySTs play key roles in affecting polyST activity or NCAM polysialylation. However, the molecular mechanisms of NCAM polysialylation and cell migration are still not entirely clear. In this minireview, the recent research results about the intermolecular interactions between the PBR and NCAM, the PSTD and cytidine monophosphate-sialic acid (CMP-Sia), the PSTD and polySia, and as well as the intramolecular interaction between the PBR and the PSTD within the polyST, are summarized. Based on these cooperative interactions, we have built a novel model of NCAM polysialylation and cell migration mechanisms, which may be helpful to design and develop new polysialyltransferase inhibitors.
    Type of Medium: Online Resource
    ISSN: 1568-0266
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2019
    SSG: 15,3
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  • 8
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2017
    In:  CNS & Neurological Disorders - Drug Targets Vol. 16, No. 1 ( 2017-01-11), p. 23-29
    In: CNS & Neurological Disorders - Drug Targets, Bentham Science Publishers Ltd., Vol. 16, No. 1 ( 2017-01-11), p. 23-29
    Type of Medium: Online Resource
    ISSN: 1871-5273
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2017
    SSG: 15,3
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  • 9
    In: Medicinal Chemistry, Bentham Science Publishers Ltd., Vol. 15, No. 5 ( 2019-07-02), p. 510-520
    Abstract: Inhibition of α-amylase activity is an important strategy in the treatment of diabetes mellitus. An important treatment for diabetes mellitus is to reduce the digestion of carbohydrates and blood glucose concentrations. Inhibiting the activity of carbohydrate-degrading enzymes such as α-amylase and glucosidase significantly decreases the blood glucose level. Most inhibitors of α-amylase have serious adverse effects, and the α-amylase inactivation mechanisms for the design of safer inhibitors are yet to be revealed. Objective: In this study, we focused on the inhibitory effect of Zn2+ on the structure and dynamic characteristics of α-amylase from Anoxybacillus sp. GXS-BL (AGXA), which shares the same catalytic residues and similar structures as human pancreatic and salivary α-amylase (HPA and HSA, respectively). Methods: Circular dichroism (CD) spectra of the protein (AGXA) in the absence and presence of Zn2+ were recorded on a Chirascan instrument. The content of different secondary structures of AGXA in the absence and presence of Zn2+ was analyzed using the online SELCON3 program. An AGXA amino acid sequence similarity search was performed on the BLAST online server to find the most similar protein sequence to use as a template for homology modeling. The pocket volume measurer (POVME) program 3.0 was applied to calculate the active site pocket shape and volume, and molecular dynamics simulations were performed with the Amber14 software package. Results: According to circular dichroism experiments, upon Zn2+ binding, the protein secondary structure changed obviously, with the α-helix content decreasing and β-sheet, β-turn and randomcoil content increasing. The structural model of AGXA showed that His217 was near the active site pocket and that Phe178 was at the outer rim of the pocket. Based on the molecular dynamics trajectories, in the free AGXA model, the dihedral angle of C-CA-CB-CG displayed both acute and planar orientations, which corresponded to the open and closed states of the active site pocket, respectively. In the AGXA-Zn model, the dihedral angle of C-CA-CB-CG only showed the planar orientation. As Zn2+ was introduced, the metal center formed a coordination interaction with H217, a cation-π interaction with W244, a coordination interaction with E242 and a cation-π interaction with F178, which prevented F178 from easily rotating to the open state and inhibited the activity of the enzyme. Conclusion: This research may have uncovered a subtle mechanism for inhibiting the activity of α-amylase with transition metal ions, and this finding will help to design more potent and specific inhibitors of α-amylases.
    Type of Medium: Online Resource
    ISSN: 1573-4064
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2019
    SSG: 15,3
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  • 10
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2021
    In:  Anti-Cancer Agents in Medicinal Chemistry Vol. 21, No. 13 ( 2021-07-26), p. 1680-1688
    In: Anti-Cancer Agents in Medicinal Chemistry, Bentham Science Publishers Ltd., Vol. 21, No. 13 ( 2021-07-26), p. 1680-1688
    Abstract: Panax notoginseng Saponins (PNS) is used as a traditional Chinese medicine for ischemic stroke and cardiovascular disease; it has been proven to possess anticancer activity recently. Objective: In this study, we aimed to explore the curative anticancer effect and potential mechanisms of PNS in pancreatic cancer cells. Methods: Pancreatic cancer Miapaca2 and PANC-1 cells were treated with PNS and Gemcitabine (Gem), respectively. Then the cell viability was assessed by CCK-8 assay, cell proliferation was tested by colony formation assay and EdU cell proliferation assay, cell migration and invasiveness were tested by wound healing assay and transwell assay respectively, and cell apoptosis was detected by flow cytometry. Finally, we detected the expression levels of proteins related to migration, apoptosis and autophagy through Western blotting. Results: PNS not only inhibited the proliferation, migration, invasion and autophagy of Miapaca2 and PANC-1 cells, but also induced apoptosis and promoted chemosensitivity of pancreatic cancer cells to Gem. Conclusion: PNS may exhibit cytotoxicity and increase chemosensitivity of pancreatic cancer cells to Gem by inhibiting autophagy and inducing apoptosis, providing a new strategy and potential treatment option for pancreatic cancer.
    Type of Medium: Online Resource
    ISSN: 1871-5206
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2021
    SSG: 15,3
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