1.Study of a CADASIL family with migraine as the presenting symptom.
Xiaoxia HOU ; Hong CHENG ; Qingwen JIN ; Qi NIU ; Feifei SHEN ; Juan YAO ; Xinsheng DING
Chinese Journal of Medical Genetics 2016;33(4):511-514
OBJECTIVETo analyze the clinical features and genetic cause for a family affected with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL).
METHODSClinical manifestations, neuroimaging, and genetic analysis were performed.
RESULTSThe main clinical features have included stroke, emotional disturbance and history of migraine without progressive memory impairment. A positive family history was confirmed. Cranial MRI has revealed multi-infarct lesions and white matter hyperintensity involving bilateral basal ganglia, subcortex and brain stem. All such features were in keeping with the diagnosis of CADASIL. A rare 2182C>T mutation in exon 14 of the NOTCH3 gene was identified in all available cases.
CONCLUSIONBoth clinical and molecular features suggested that the family has been affected with CADASIL.
Adult ; Aged ; Female ; Humans ; Male ; Middle Aged ; Migraine Disorders ; genetics ; Receptor, Notch3 ; Receptors, Notch ; genetics
2.Relationship between Notch receptors and hyperoxia-induced lung injury in newborn rats.
Qianshen, ZHANG ; Liwen, CHANG ; Hanchu, LIU ; Zhihu, RONG ; Hongbing, CHEN
Journal of Huazhong University of Science and Technology (Medical Sciences) 2005;25(2):155-8
To investigate role of Notch1 - 3 in hyperoxia-induced lung injury in newborn rat exposed to 85% O2, SD rat litters born on the 22th day were randomly divided into two groups: room air group and hyperoxia group. The animals were sacrificed 1, 4, 7, 10, 14 and 21 days after continued exposure to oxygen (n = 40, oxygen > 0.85) or room air (n = 40). 6 rats each group were used to assess lung histological changes by HE staining and expression of Notch in lungs by immunohistochemistry. Total RNA was extracted by Trizol reagent from frozen lung tissues. Notch mRNA were measured by reverse transcription polymerase chain reaction (RT-PCR). Our results showed that 7, 14 and 21 days after O2 exposure, hyperoxia group showed lung injury characterized by pulmonary edema, hemorrhage and lung development arrest. Positive staining for Notch1, Notch 2 in hyperoxia group was much lower than those in room air group at all time points (P < 0. 01, P < 0.05), but compared with the controls, the hyperoxia group showed higher expression of Notch3 (P > 0.05). Immunostained cells were typically airways epithelia, alveolar epithelial and inflammatory cells, and fibroblasts in hyperoxia group (P < 0.01). Notch mRNA levels showed similar change as protein level (P < 0.01). It is concluded that the prolonged exposure to 85% O2 resulted in abnormal expression of Notch receptors, which might contribute to the pathogenesis of hyperoxia-induced lung injury in newborn rats. The decreased inhibition of Notch1 might be one of the protective reaction and major mechanisms for proliferation/differentiation of type II alveolar epithelial cells. The up-regulation of Notch3 activity might result in the lung development arrest of the newborn rats.
Aerobiosis
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Animals, Newborn
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Lung/*pathology
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Lung Diseases/etiology
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Lung Diseases/*metabolism
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Lung Diseases/pathology
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RNA, Messenger/biosynthesis
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RNA, Messenger/genetics
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Random Allocation
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Rats, Sprague-Dawley
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Receptors, Notch/*biosynthesis
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Receptors, Notch/genetics
3.Temporal expression of Notch in preterm rat lungs exposed to hyperoxia.
Hong, WANG ; Liwen, CHANG ; Wenbin, LI
Journal of Huazhong University of Science and Technology (Medical Sciences) 2005;25(2):159-61, 165
To explore the mechanism of Notch in hyperoxia-induced preterm rat lung injury, 2-days-old preterm SD rats were randomized into control and hyperoxia group (FiO2 > or = 0.85). On day 1, 7, 14 and 21, 8 rat pups of each time point were used to assess histopathological changes of lung with HE staining and to evaluate the expression of Notch1 and Notch3 with immunohistochemistry. Notch1, Notch3, Aquaprin5 (AQP5) and surfactant protein C (SP-C) mRNA were measured by reverse transcription polymerase chain reaction (RT-PCR). The results showed that the lung injury in the hyperoxia group was characterized by retarded lung alveolization and differentiation of alveolar epithelial type II cells (AEC II). Positive staining of Notch1 in hyperoxia group was weaker than controls at every time point (except for day 7), while positive staining of Notch3 was much stronger (P < 0.05, P < 0.01). Notch1, Notch3 mRNA level showed similar change as protein level. AQP5, SP-C mRNA decreased significantly as compared with that of the controls (P < 0.01). We are led to conclude that hyperoxia results in abnormal expression of Notch, which is likely to contribute to the pathogenesis of lung injury through regulating proliferation and transdifferentiation of alveolar epithelial cells.
Aerobiosis
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Animals, Newborn
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Lung/*pathology
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Lung Diseases/etiology
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Lung Diseases/*metabolism
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Lung Diseases/pathology
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RNA, Messenger/biosynthesis
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RNA, Messenger/genetics
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Random Allocation
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Rats, Sprague-Dawley
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Receptors, Notch/*biosynthesis
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Receptors, Notch/genetics
4.Mechanism of the Notch signaling pathway in enhancing the efficacy of chemotherapy drugs in osteosarcoma.
Journal of Central South University(Medical Sciences) 2020;45(10):1234-1240
Osteosarcoma is the most common malignant tumors of bone. Since 1970s, researchers had used chemotherapy drugs to treat osteosarcoma. However, multidrug resistance is a major adverse reaction that affects the efficacy of chemotherapy drugs, leading to the reduced survival rate of osteosarcoma patients. The Notch signaling pathway plays an important role in osteosarcoma proliferation, which affects tumor resistance by reducing intracellular drug accumulation, regulating epithelial-mesenchymal transition, dysregulating microRNA, disrupting the expression of apoptosis genes, and regulating tumor stem cells.
Bone Neoplasms/drug therapy*
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Cell Line, Tumor
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Cell Proliferation
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Humans
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Osteosarcoma/drug therapy*
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Pharmaceutical Preparations
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Receptors, Notch/genetics*
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Signal Transduction
5.Notch signaling in bone formation and related skeletal diseases.
Hongwei MA ; Yaqiong WU ; Haifeng ZHANG
Chinese Journal of Medical Genetics 2015;32(2):274-279
Notch signaling is highly conserved in evolution and regarded as a key factor in cell fate determination. It mediates cell-to-cell interactions that are critical for embryonic development and tissue renewal, and is involved in the occurrence and metastasis of neoplasm. Recent researches have found that such signaling plays an important role in modulating the differentiation of chondrocytes, osteoblasts and osteoclasts. Dysfunction of Notch signaling can result in many skeletal diseases such as bone tumor, disorders of bone development or bone metabolism.
Animals
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Bone Development
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Bone Diseases
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genetics
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metabolism
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Bone and Bones
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metabolism
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Humans
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Osteoblasts
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cytology
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metabolism
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Osteogenesis
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Receptors, Notch
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genetics
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metabolism
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Signal Transduction
6.Antioxidant proteins TSA and PAG interact synergistically with Presenilin to modulate Notch signaling in Drosophila.
Michael F WANGLER ; Lawrence T REITER ; Georgianna ZIMM ; Jennifer TRIMBLE-MORGAN ; Jane WU ; Ethan BIER
Protein & Cell 2011;2(7):554-563
Alzheimer's disease (AD) pathogenesis is characterized by senile plaques in the brain and evidence of oxidative damage. Oxidative stress may precede plaque formation in AD; however, the link between oxidative damage and plaque formation remains unknown. Presenilins are transmembrane proteins in which mutations lead to accelerated plaque formation and early-onset familial Alzheimer's disease. Presenilins physically interact with two antioxidant enzymes thiol-specific antioxidant (TSA) and proliferation-associated gene (PAG) of the peroxiredoxin family. The functional consequences of these interactions are unclear. In the current study we expressed a presenilin transgene in Drosophila wing and sensory organ precursors of the fly. This caused phenotypes typical of Notch signaling loss-of-function mutations. We found that while expression of TSA or PAG alone produced no phenotype, co-expression of TSA and PAG with presenilin led to an enhanced Notch loss-of-function phenotype. This phenotype was more severe and more penetrant than that caused by the expression of Psn alone. In order to determine whether these phenotypes were indeed affecting Notch signaling, this experiment was performed in a genetic background carrying an activated Notch (Abruptex) allele. The phenotypes were almost completely rescued by this activated Notch allele. These results link peroxiredoxins with the in vivo function of Presenilin, which ultimately connects two key pathogenetic mechanisms in AD, namely, antioxidant activity and plaque formation, and raises the possibility of a role for peroxiredoxin family members in Alzheimer's pathogenesis.
Amino Acid Sequence
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Animals
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Drosophila
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metabolism
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physiology
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Drosophila Proteins
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metabolism
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Molecular Sequence Data
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Peroxiredoxins
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chemistry
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genetics
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metabolism
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Presenilins
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chemistry
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metabolism
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Receptors, Notch
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metabolism
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Sequence Alignment
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Signal Transduction
7.Characterization of Notch gene involved in genetic regulatory networks in dental pulp stem cells.
Qun LU ; Bu-ling WU ; Ji-shu WANG ; Hua HAN ; Xue-dong ZHOU
West China Journal of Stomatology 2004;22(1):54-56
OBJECTIVETo investigate the characterization of Notch gene involved in genetic regulatory networks in dental pulp stem cells.
METHODSThe pulp tissue was separated from mouse teeth and digested by collagenase type I. Single-cell suspensions of dental pulp were seeded into 6-well plates with alpha modification of Eagle's medium supplemented with ES cell qualified Fetal Bovine Serum. Colony-forming efficiency was assessed in 14ds culture. Transcripts for Notch were detected by reverse transcription-PCR by using total RNA isolated from cells.
RESULTSThere were clonogenic cells in dental pulp cell and the incidence of colony-forming cells derived from mouse dental pulp cells was 1.6-2.5 colonies/10(4) plate. Mouse-specific Notch mRNA expressed in colony-forming cells.
CONCLUSIONNotch mRNA expressing in colony-forming cells provided a more detailed understanding of mouse dental pulp stem cell biology.
Animals ; Cell Differentiation ; Cells, Cultured ; Dental Pulp ; cytology ; metabolism ; Membrane Proteins ; biosynthesis ; genetics ; Mice ; Mice, Inbred BALB C ; RNA, Messenger ; biosynthesis ; genetics ; Receptors, Cell Surface ; biosynthesis ; genetics ; Receptors, Notch ; Reverse Transcriptase Polymerase Chain Reaction ; Signal Transduction ; Stem Cells ; metabolism
8.Molecular pathology of inflammatory breast cancer.
Chinese Journal of Pathology 2010;39(1):59-62
Cadherins
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metabolism
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Female
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Gene Expression Profiling
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Humans
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Inflammatory Breast Neoplasms
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genetics
;
metabolism
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pathology
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NF-kappa B
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metabolism
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Receptor, ErbB-2
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metabolism
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Receptor, Notch3
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Receptors, CCR7
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metabolism
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Receptors, CXCR4
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metabolism
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Receptors, Notch
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metabolism
9.Brain Tumor Stem Cells as Therapeutic Targets in Models of Glioma.
Dan Richard LAKS ; Koppany VISNYEI ; Harley Ian KORNBLUM
Yonsei Medical Journal 2010;51(5):633-640
At this time, brain tumor stem cells remain a controversial hypothesis while malignant brain tumors continue to present a dire prognosis of severe morbidity and mortality. Yet, brain tumor stem cells may represent an essential cellular target for glioma therapy as they are postulated to be the tumorigenic cells responsible for recurrence. Targeting oncogenic pathways that are essential to the survival and growth of brain tumor stem cells represents a promising area for developing therapeutics. However, due to the multiple oncogenic pathways involved in glioma, it is necessary to determine which pathways are the essential targets for therapy. Furthermore, research still needs to comprehend the morphogenic processes of cell populations involved in tumor formation. Here, we review research and discuss perspectives on models of glioma in order to delineate the current issues in defining brain tumor stem cells as therapeutic targets in models of glioma.
1-Phosphatidylinositol 3-Kinase/genetics/metabolism
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Animals
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Brain Neoplasms/genetics/*metabolism/*pathology/therapy
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Glioma/genetics/*metabolism/*pathology/therapy
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Humans
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Neoplastic Stem Cells/*metabolism/*pathology
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Receptors, Notch/genetics/metabolism
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Signal Transduction/genetics/physiology
10.Effect of Acupuncture on the Notch Signaling Pathway in Rats with Brain Injury.
Yi-Min ZHANG ; Sheng-Xin CHEN ; Qiu-Fu DAI ; Shu-Ting JIANG ; Ai-Lian CHEN ; Chun-Zhi TANG ; Yu-Qing ZHANG
Chinese journal of integrative medicine 2018;24(7):537-544
OBJECTIVETo observe the effect of acupuncture on the Notch signaling pathway in rats with traumatic brain injury and to explore the pathogenesis of acupuncture intervention on traumatic brain injury.
METHODSFeeney's freefall epidural impact method was used to establish a traumatic brain injury model in rats; the rats were randomly divided into a normal group, sham operation group, model group and acupuncture group. Acupuncture was performed in the Baihui (DU 20), Shuigou (DU 26), Fengfu (DU 16), Yamen (DU 15) and Hegu (LI 4) acupoints in the rat, and Yamen was punctured via Fengfu. Then, the rats in each group were randomly divided into three subgroups, namely the day 3 subgroup, day 7 subgroup and day 14 subgroup according to treatment duration. The modified neurological severity scores (mNss) method was used to perform neurobehavioral scoring for evaluating the degree of injury in the rats. The hematoxylin-eosin (HE) staining method was used to observe the pathological change in the brain tissue of rats in each group. Real-time fluorescent quantitative polymerase chain reaction (Q-PCR) technology was used to detect changes in the Notch1, Hes1 and Hes5 gene expression levels in the cortex on the injured side. Western blot was used to detect the protein expression changes.
RESULTSOne day after modeling, the mNss scores in the model group and in the acupuncture group were significantly higher than those in the normal and sham operation groups (P<0.01) ; there was no statistically significant difference between the normal group and the sham operation group. The scores decreased with increased treatment time, and the scores in the acupuncture group decreased more significantly than those in the model group (P<0.01). The pathological examination by the HE staining method demonstrated that the brain tissue of the rats in the acupuncture and model groups relatively significantly changed. The Notch1 gene expression level in the acupuncture group was significantly higher than the level in all of the other groups (P<0.01) ; the Hes1 and Hes5 gene expression levels were also higher in the acupuncture group. The expression changes of the Notch1 and Hes1 protein were consistent with that of mRNA. In each experimental group, the mNss score and the pathological results by the HE staining method were consistent with the mRNA results.
CONCLUSIONAcupuncture could significantly promote high expression levels of Notch1, Hes1 and Hes5 in the brain tissue of traumatic brain injury rats. Therefore, acupuncture might be an important intervention for inducing endogenous stem cell proliferation and for promoting nerve repair.
Acupuncture Points ; Acupuncture Therapy ; Animals ; Brain Injuries ; genetics ; pathology ; therapy ; Brain Ischemia ; pathology ; therapy ; Male ; Nerve Regeneration ; genetics ; Rats ; Rats, Sprague-Dawley ; Receptors, Notch ; genetics ; metabolism ; Reperfusion Injury ; genetics ; therapy ; Signal Transduction ; genetics