Pages that link to "Q38439681"
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The following pages link to RAKE and LNA-ISH reveal microRNA expression and localization in archival human brain (Q38439681):
Displaying 50 items.
- The fate of miRNA* strand through evolutionary analysis: implication for degradation as merely carrier strand or potential regulatory molecule? (Q21091124) (← links)
- MicroRNAs show mutually exclusive expression patterns in the brain of adult male rats (Q21142742) (← links)
- microRNA expression in the prefrontal cortex of individuals with schizophrenia and schizoaffective disorder (Q21184126) (← links)
- miR-124 and miR-137 inhibit proliferation of glioblastoma multiforme cells and induce differentiation of brain tumor stem cells (Q21245271) (← links)
- Haplotype distribution and evolutionary pattern of miR-17 and miR-124 families based on population analysis (Q21562341) (← links)
- The miR-15/107 group of microRNA genes: evolutionary biology, cellular functions, and roles in human diseases (Q24608620) (← links)
- miRNAs in human cancer (Q24628889) (← links)
- A mammalian microRNA expression atlas based on small RNA library sequencing (Q24644709) (← links)
- Antagonism of microRNA-122 in mice by systemically administered LNA-antimiR leads to up-regulation of a large set of predicted target mRNAs in the liver (Q24649633) (← links)
- Circulating microRNAs as stable blood-based markers for cancer detection (Q24652098) (← links)
- Energizing miRNA research: a review of the role of miRNAs in lipid metabolism, with a prediction that miR-103/107 regulates human metabolic pathways (Q24683796) (← links)
- Genomics, microRNA, epigenetics, and proteomics for future diagnosis, treatment and monitoring response in upper GI cancers (Q26751068) (← links)
- Bioinformatic tools for microRNA dissection (Q27004412) (← links)
- Small RNA Detection by in Situ Hybridization Methods (Q27011992) (← links)
- The miR-15a-miR-16-1 cluster controls prostate cancer by targeting multiple oncogenic activities (Q28297958) (← links)
- miR-17 family miRNAs are expressed during early mammalian development and regulate stem cell differentiation (Q28303576) (← links)
- Retinoic acid downregulates microRNAs to induce abnormal development of spinal cord in spina bifida rat model (Q28579889) (← links)
- miR-124 promotes the neuronal differentiation of mouse inner ear neural stem cells. (Q30372322) (← links)
- MicroRNA miR-124 regulates neurite outgrowth during neuronal differentiation (Q30488466) (← links)
- Inference of miRNA targets using evolutionary conservation and pathway analysis (Q33276269) (← links)
- MicroRNA expression in ileal carcinoid tumors: downregulation of microRNA-133a with tumor progression (Q33520915) (← links)
- Frequent downregulation of miR-34 family in human ovarian cancers (Q33658229) (← links)
- MicroRNA Detection in Bone Marrow Cells by LNA-FISH (Q33688185) (← links)
- MicroRNA in Situ Hybridization in the Human Entorhinal and Transentorhinal Cortex (Q33701433) (← links)
- Loss of MicroRNA-192 promotes fibrogenesis in diabetic nephropathy (Q33702426) (← links)
- The expression of microRNA miR-107 decreases early in Alzheimer's disease and may accelerate disease progression through regulation of beta-site amyloid precursor protein-cleaving enzyme 1. (Q33722837) (← links)
- Strengths and limitations of laboratory procedures for microRNA detection (Q33780712) (← links)
- MicroRNAs in neural cell differentiation (Q33905890) (← links)
- The microRNA miR-124 controls gene expression in the sensory nervous system of Caenorhabditis elegans (Q33922400) (← links)
- miR-107 regulates granulin/progranulin with implications for traumatic brain injury and neurodegenerative disease (Q33947283) (← links)
- Differential expression analysis of balding and nonbalding dermal papilla microRNAs in male pattern baldness with a microRNA amplification profiling method. (Q34038621) (← links)
- MiR-125b promotes proliferation and migration of type II endometrial carcinoma cells through targeting TP53INP1 tumor suppressor in vitro and in vivo (Q34039589) (← links)
- MicroRNA expression in ACTH-producing pituitary tumors: up-regulation of microRNA-122 and -493 in pituitary carcinomas. (Q34144647) (← links)
- Ocular neuroprotection by siRNA targeting caspase-2 (Q34192944) (← links)
- Sizing up the future of microRNA analysis. (Q34249894) (← links)
- LNA probes substantially improve the detection of bacterial endosymbionts in whole mount of insects by fluorescent in-situ hybridization (Q34280455) (← links)
- MicroRNAs in human cancer (Q34325959) (← links)
- Epigenetic control of aging (Q34460981) (← links)
- MicroRNA-148b is frequently down-regulated in gastric cancer and acts as a tumor suppressor by inhibiting cell proliferation (Q34506870) (← links)
- A sensitive array for microRNA expression profiling (miChip) based on locked nucleic acids (LNA) (Q34547664) (← links)
- Multispectral imaging and pathology: seeing and doing more (Q34621288) (← links)
- Identification of differentially expressed microRNAs during the development of Chinese murine mammary gland (Q34718012) (← links)
- Differential expression of miRNAs in papillary thyroid carcinoma compared to multinodular goiter using formalin fixed paraffin embedded tissues (Q34721796) (← links)
- Circulating miRNAs in cancer: from detection to therapy (Q34728385) (← links)
- MiR-124 regulates early neurogenesis in the optic vesicle and forebrain, targeting NeuroD1. (Q34779491) (← links)
- Improved in situ hybridization efficiency with locked-nucleic-acid-incorporated DNA probes. (Q34973941) (← links)
- MicroRNAs as potential clinical biomarkers: emerging approaches for their detection (Q35053672) (← links)
- Translational application of epigenetic alterations: Ovarian cancer as a model (Q35085782) (← links)
- MicroRNA-9a ensures the precise specification of sensory organ precursors in Drosophila (Q35105982) (← links)
- Function and mechanism of tumor suppressor gene LRRC4/NGL-2. (Q35147345) (← links)