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3.5 Molecular biology incl. SiRNA (140)

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Display all abstracts in classification 3.5 Molecular biology incl. SiRNA

Search within classification 3.5 Molecular biology incl. SiRNA
91766 Tryptophan Pathway Abnormalities in a Murine Model of Hereditary Glaucoma
Fiedorowicz M
International journal of molecular sciences 2021; 22:
91854 Differential Lysyl oxidase like 1 expression in pseudoexfoliation glaucoma is orchestrated via DNA methylation
Greene AG
Experimental Eye Research 2020; 201: 108349
90866 Reprogramming to recover youthful epigenetic information and restore vision
Lu Y
Nature 2020; 588: 124-129
91398 Altered Iris Aquaporin Expression and Aqueous Humor Osmolality in Glaucoma
Huang OS
Investigative Ophthalmology and Visual Science 2021; 62: 34
90867 Retinal Degeneration and Alzheimer's Disease: An Evolving Link
Ashok A
International journal of molecular sciences 2020; 21:
91439 Differential miRNA Expression: Signature for Glaucoma in Pseudoexfoliation
Rao A
Clinical Ophthalmology 2020; 14: 3025-3038
91495 Knockdown of FAM225B inhibits the progression of the hypertrophic scar following glaucoma surgery by inhibiting autophagy
Ma X
Molecular medicine reports 2021; 23: 1
91025 Small interfering RNAs (siRNAs) based gene silencing strategies for the treatment of glaucoma: Recent advancements and future perspectives
Naik S
Life Sciences 2021; 264: 118712
91423 Long Non-coding RNA MALAT1 Alleviates the Elevated Intraocular Pressure (Eiop)-induced Glaucoma Progression via Sponging miR-149-5p
Wang L
Current Eye Research 2020; 0: 1-9
91006 Girl Power in Glaucoma: The Role of Estrogen in Primary Open Angle Glaucoma
Fotesko K
Cellular and molecular neurobiology 2020; 0:
91127 Circular RNA Expression Profiling Identifies Glaucoma-Related Circular RNAs in Various Chronic Ocular Hypertension Rat Models
Chen X
Frontiers in genetics 2020; 11: 556712
91649 Complement peptide C3a receptor 1 promotes optic nerve degeneration in DBA/2J mice
Harder JM
Journal of Neuroinflammation 2020; 17: 336
91304 Regulation of distinct caspase-8 functions in retinal ganglion cells and astroglia in experimental glaucoma
Yang X
Neurobiology of Disease 2021; 150: 105258
91854 Differential Lysyl oxidase like 1 expression in pseudoexfoliation glaucoma is orchestrated via DNA methylation
Greene AG
Experimental Eye Research 2020; 201: 108349
90913 MicroRNA-125b overexpression in pseudoexfoliation syndrome
Tomczyk-Socha M
Advances in clinical and experimental medicine : official organ Wroclaw Medical University 2020; 29: 1399-1405
91716 Nox4 Facilitates TGFβ1-Induced Fibrotic Response in Human Tenon's Fibroblasts and Promotes Wound Collagen Accumulation in Murine Model of Glaucoma Filtration Surgery
Shah MH
Antioxidants (Basel, Switzerland) 2020; 9:
90971 Astaxanthin protects retinal ganglion cells from acute glaucoma via the Nrf2/HO-1 pathway
Li Y
Journal of chemical neuroanatomy 2020; 110: 101876
91085 Evaluation of silent information regulator T (SIRT) 1 and Forkhead Box O (FOXO) transcription factor 1 and 3a genes in glaucoma
Yaman D
Molecular Biology Reports 2020; 47: 9337-9344
91385 TET-dependent GDF7 hypomethylation impairs aqueous humor outflow and serves as a potential therapeutic target in glaucoma
Wan P
Molecular Therapy 2021; 0:
91156 Pluripotent epigenetic regulator OBP-801 maintains filtering blebs in glaucoma filtration surgery model
Yamamoto Y
Scientific reports 2020; 10: 20936
90978 miR-21-5p: A viable therapeutic strategy for regulating intraocular pressure
Tan C
Experimental Eye Research 2020; 200: 108197
91021 Intra-Cellular Calcium Signaling Pathways (PKC, RAS/RAF/MAPK, PI3K) in Lamina Cribrosa Cells in Glaucoma
Irnaten M
Journal of clinical medicine 2020; 10:
91398 Altered Iris Aquaporin Expression and Aqueous Humor Osmolality in Glaucoma
Seet LF
Investigative Ophthalmology and Visual Science 2021; 62: 34
91006 Girl Power in Glaucoma: The Role of Estrogen in Primary Open Angle Glaucoma
Thomsen BSV
Cellular and molecular neurobiology 2020; 0:
91439 Differential miRNA Expression: Signature for Glaucoma in Pseudoexfoliation
Chakraborty M
Clinical Ophthalmology 2020; 14: 3025-3038

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