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Altered DNA methylation in kidney disease : useful markers and therapeutic targets

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Altered DNA methylation in kidney disease : useful markers and therapeutic targets

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info:ndljp/pid/12289747
資料種別
記事
著者
Kaori Hayashi
出版者
Springer Nature
出版年
2022-01-13
資料形態
デジタル
掲載誌名
Clinical and experimental nephrology : official publication of the Japanese Society of Nephrology 26(4)
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デジタル

資料種別
記事
著者・編者
Kaori Hayashi
出版年月日等
2022-01-13
出版年(W3CDTF)
2022-01-13
タイトル(掲載誌)
Clinical and experimental nephrology : official publication of the Japanese Society of Nephrology
巻号年月日等(掲載誌)
26(4)
掲載巻
26(4)
ISSN(掲載誌)
1437-7799
ISSN-L(掲載誌)
1437-7799
本文の言語コード
eng
国立国会図書館永続的識別子
info:ndljp/pid/12289747
コレクション(共通)
コレクション(障害者向け資料:レベル1)
コレクション(個別)
国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > その他
収集根拠
オンライン資料収集制度
受理日(W3CDTF)
2022-05-23T15:55:37+09:00
保存日(W3CDTF)
2022-05-16
記録形式(IMT)
application/pdf
オンライン閲覧公開範囲
国立国会図書館内限定公開
デジタル化資料送信
図書館・個人送信対象外
遠隔複写可否(NDL)
掲載誌(国立国会図書館永続的識別子)
info:ndljp/pid/12289746
連携機関・データベース
国立国会図書館 : 国立国会図書館デジタルコレクション

デジタル

要約等
コレクション : 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > その他
オンライン閲覧公開範囲
インターネット公開
参照
Decreased KAT5 Expression Impairs DNA Repair and Induces Altered DNA Methylation in Kidney Podocytes
10-Year Follow-up of Intensive Glucose Control in Type 2 Diabetes
Feasibility of Regression of Hypertension Using Contemporary Antihypertensive Agents
FAN1 mutations cause karyomegalic interstitial nephritis, linking chronic kidney failure to defective DNA damage repair
Podocyte injury and its consequences
Renin-angiotensin blockade resets podocyte epigenome through Kruppel-like Factor 4 and attenuates proteinuria
KLF4-dependent epigenetic remodeling modulates podocyte phenotypes and attenuates proteinuria
Association of glomerular DNA damage and DNA methylation with one-year eGFR decline in IgA nephropathy
Harnessing Expressed Single Nucleotide Variation and Single Cell RNA Sequencing To Define Immune Cell Chimerism in the Rejecting Kidney Transplant
Sox2 and Klf4 as the Functional Core in Pluripotency Induction without Exogenous Oct4
Podocyte-specific KLF4 is required to maintain parietal epithelial cell quiescence in the kidney
Urinary Single-Cell Profiling Captures the Cellular Diversity of the Kidney
KLF4 in Macrophages Attenuates TNFα-Mediated Kidney Injury and Fibrosis
Tumorigenesis: the adaptation of mammalian cells to sustained stress environment by epigenetic alterations and succeeding matched mutations
The central role of DNA damage in the ageing process
Inactivation of Apoptosis Antagonizing Transcription Factor in tubular epithelial cells induces accumulation of DNA damage and nephronophthisis
DNA damage and expression of DNA methylation modulators in urine-derived cells of patients with hypertension and diabetes
Methylation pattern of urinary DNA as a marker of kidney function decline in diabetes
Stability and flexibility of epigenetic gene regulation in mammalian development
Parietal Epithelial Cell Activation Marker in Early Recurrence of FSGS in the Transplant
A KDM6A–KLF10 reinforcing feedback mechanism aggravates diabetic podocyte dysfunction
Extracellular Vesicles in Renal Diseases
DNA repair factor KAT5 prevents ischemic acute kidney injury through glomerular filtration regulation
The promise of single-cell RNA sequencing for kidney disease investigation
Epigenome-wide association studies identify DNA methylation associated with kidney function
Epigenetic regulation of RCAN1 expression in kidney disease and its role in podocyte injury
Renal Arteriolar Injury by Salt Intake Contributes to Salt Memory for the Development of Hypertension
Endothelial Krüppel-Like Factor 4 Mediates the Protective Effect of Statins against Ischemic AKI
Integration of Genetic Testing and Pathology for the Diagnosis of Adults with FSGS
Krüppel-like factor 4 is a negative regulator of STAT3-induced glomerular epithelial cell proliferation
Melanoma epigenetics: novel mechanisms, markers, and medicines
“Pulse” Treatment With High-Dose Angiotensin Blocker Reverses Renal Arteriolar Hypertrophy and Regresses Hypertension
The Mechanism of Double-Strand DNA Break Repair by the Nonhomologous DNA End-Joining Pathway
The Diabetes Control and Complications Trial/Epidemiology of Diabetes Interventions and Complications Study at 30 Years: Overview
DNA methyltransferase 1 may be a therapy target for attenuating diabetic nephropathy and podocyte injury
Recruitment of DNA methyltransferase I to DNA repair sites
Proximal tubule ATR regulates DNA repair to prevent maladaptive renal injury responses
Heterochromatin and the DNA damage response: the need to relaxThis paper is one of a selection of papers in a Special Issue entitled 31st Annual International Asilomar Chromatin and Chromosomes Conference, and has undergone the Journal’s usual peer review process.
DNA methylation mediates development of HbA1c-associated complications in type 1 diabetes
Glomerular Aging and Focal Global Glomerulosclerosis
<scp>DNA</scp> damage in normally and prematurely aged mice
Dnmt1 and Dnmt3a maintain DNA methylation and regulate synaptic function in adult forebrain neurons
DNA methylation profile associated with rapid decline in kidney function: findings from the CRIC Study
Regression of glomerulosclerosis in response to transient treatment with angiotensin II blockers is attenuated by blockade of matrix metalloproteinase-2
Epigenomic profiling reveals an association between persistence of DNA methylation and metabolic memory in the DCCT/EDIC type 1 diabetes cohort
Mechanism and regulation of human non-homologous DNA end-joining
Tip60 functions as a potential corepressor of KLF4 in regulation of HDC promoter activity
Single-cell transcriptomics of the mouse kidney reveals potential cellular targets of kidney disease
Feasibility of Treating Prehypertension with an Angiotensin-Receptor Blocker
Death-associated Protein Kinase 1 Correlates with Podocyte Apoptosis and Renal Damage and Can Be Mediated by miR-361
連携機関・データベース
国立情報学研究所 : CiNii Research
提供元機関・データベース
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書誌ID(NDLBibID)
12289747