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Long-term melatonin treatment delays ovarian aging
Hiroshi Tamura
, Mai Kawamoto
, Shun Sato
, Isao Tamura
, Ryo Maekawa
, Toshiaki Taketani
, Hiromi Aasada
, Eiichi Takaki
, Akira Nakai
,
Russel J. Reiter
, Norihiro Sugino
Department of Cell Systems & Anatomy
Research output
:
Contribution to journal
›
Article
›
peer-review
199
Scopus citations
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Medicine and Dentistry
Melatonin
100%
Aging
80%
Gene
50%
Oocyte
30%
Telomere
30%
Messenger RNA
20%
Antioxidant
20%
Autophagy
20%
Ribosome
20%
Age
20%
Therapeutic Procedure
20%
Water
20%
Ovary
20%
Microarray Analysis
10%
Microarray
10%
Follicle
10%
Chromosome
10%
Therapy Delay
10%
Oviduct
10%
Transcriptome
10%
In Vitro Fertilisation
10%
Fertilization
10%
Antral Follicle
10%
Blastocyst
10%
Primordial Follicle
10%
Sirtuin
10%
Analysis
10%
Female
10%
Biochemistry, Genetics and Molecular Biology
Melatonin
100%
Aging
80%
Nested Gene
50%
Sirtuin1
40%
Mouse
30%
Autophagy
20%
Telomere Length
20%
Age
20%
Messenger RNA
20%
Microarray
20%
Chromosome
10%
Sirtuin
10%
Animal
10%
Transcriptome
10%
Blastocyst
10%
In Vitro Fertilisation
10%
Institute for Cancer Research Mouse
10%
Fertilization
10%
SIRT3
10%
Telomere
10%
Neuroscience
Melatonin
100%
Gene
50%
Antioxidant
20%
Ribosome
20%
Autophagy
20%
Microarray
20%
Sirtuin
10%
Chromosome
10%
Free Radicals
10%
Transcriptome
10%
Telomere
10%
In Vitro Fertilisation
10%
Blastocyst
10%
Pharmacology, Toxicology and Pharmaceutical Science
Melatonin
100%
Mouse
30%
Messenger RNA
20%
Antioxidant
20%
Water
20%
Free Radical
10%
Deterioration
10%
Institute for Cancer Research Mouse
10%
Transcriptome
10%
Animal
10%
Sirtuin
10%