Yibin Deng
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View article: Acupuncture for perimenopausal insomnia: a systematic review and meta-analysis
Acupuncture for perimenopausal insomnia: a systematic review and meta-analysis Open
Objective Perimenopausal insomnia (PMI) significantly compromises the quality of life and the physical and mental wellbeing of perimenopausal women. Although many randomized controlled trials (RCTs) indicate that acupuncture alleviates PMI…
View article: A-to-I edited SNHG3 promotes non-small cell lung cancer metastasis by promoting fatty acid oxidation and resisting ferroptosis
A-to-I edited SNHG3 promotes non-small cell lung cancer metastasis by promoting fatty acid oxidation and resisting ferroptosis Open
Adenosine-to-inosine (A-to-I) RNA editing is a critical post-transcriptional modification that enhances tumor genome diversity and contributes to cancer progression. In non-small cell lung cancer (NSCLC), while specific A-to-I editing even…
View article: Acupuncture for Rapid Pain Relief and Restoration of Motor Function in Acute Lateral Ankle Sprains: A Randomized Controlled Trial Protocol Based on Infrared Thermography
Acupuncture for Rapid Pain Relief and Restoration of Motor Function in Acute Lateral Ankle Sprains: A Randomized Controlled Trial Protocol Based on Infrared Thermography Open
The results of this study may provide evidence-based medical evidence for the treatment of ALAS with acupuncture, and it is expected that the findings of this study will provide a simple, rapid, safe and effective treatment option for pati…
View article: Immediate Analgesic Efficacy of Acupuncture in Acute Postoperative Pain Following Internal Fixation of Intertrochanteric Femoral Fractures: Protocol for a Randomized Controlled Trial
Immediate Analgesic Efficacy of Acupuncture in Acute Postoperative Pain Following Internal Fixation of Intertrochanteric Femoral Fractures: Protocol for a Randomized Controlled Trial Open
This study is the first randomized controlled clinical trial to assess the immediate analgesic effects of acupuncture in participants experiencing acute postoperative pain following internal fixation for IFF. This study aims to provide a s…
View article: Clinical Efficacy of Acupuncture in the Treatment of Uterine Contraction Pain Post-Cesarean Section: Protocol of a Randomized Controlled Trial
Clinical Efficacy of Acupuncture in the Treatment of Uterine Contraction Pain Post-Cesarean Section: Protocol of a Randomized Controlled Trial Open
This is the first RCT using non-penetrating sham acupuncture as a control to validate the clinical efficacy of acupuncture for UCPCS. The results of this study are expected to provide an effective therapeutic option for UCPCS, as well as o…
View article: A LncRNA panel within EpCAM-specific exosomes for noninvasive early diagnosing non-small cell lung cancer
A LncRNA panel within EpCAM-specific exosomes for noninvasive early diagnosing non-small cell lung cancer Open
View article: Effect of Acupoint Catgut Embedding on Subjective Appetite in Overweight and Obese Adults with Strong and Moderate Appetite: A Secondary Analysis of a Randomized Clinical Trial
Effect of Acupoint Catgut Embedding on Subjective Appetite in Overweight and Obese Adults with Strong and Moderate Appetite: A Secondary Analysis of a Randomized Clinical Trial Open
This study reveals the stratified effect of ACE on appetite, with greater reduction in those with strong appetite and no significant change in those with moderate appetite. This suggests ACE reduces appetite effectively without excessive s…
View article: Data from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Data from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Clear cell renal cell carcinoma (ccRCC) is the most common subtype of lethal kidney cancer. Reprogramming of fatty acid and glucose metabolism resulting in the accumulation of lipids and glycogen in the cytoplasm is a hallmark of ccRCC. He…
View article: Supplementary Figure 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Figure 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Related information to figure 2, figure 3, and figure 5
View article: Supplementary Materials and Methods from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Materials and Methods from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Supplementary Materials and Methods
View article: Supplementary Figure 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Figure 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Related information to figure 2, figure 3, and figure 5
View article: Supplementary Table 6 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 6 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
The genomic position of the predicted ORFs of the six lncRNAs
View article: Supplementary Figure 1 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Figure 1 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Screening of candidate lncRNAs and biologic characterization of LINC00887
View article: Supplementary Figure 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Figure 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Related information to figure 6
View article: Supplementary Figure 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Figure 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Related information to figure 6
View article: Supplementary Table 6 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 6 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
The genomic position of the predicted ORFs of the six lncRNAs
View article: Supplementary Figure 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Figure 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Related to Figure 2
View article: Supplementary Table 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Antibodies used in this study
View article: Supplementary Table 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Sequences of shRNAs and siRNAs used in this study
View article: Supplementary Figure 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Figure 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Related to Figure 2
View article: Supplementary Table 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 4 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Sequences of shRNAs and siRNAs used in this study
View article: Supplementary Table 1 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 1 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Primary clinical and histological characteristics of 67 study patients
View article: Supplementary Table 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Primers used in this study
View article: Supplementary Table 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 2 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Primers used in this study
View article: Supplementary Materials and Methods from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Materials and Methods from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Supplementary Materials and Methods
View article: Supplementary Table 5 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 5 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Sequences of LINC00887 and ACLY-BP cDNA
View article: Supplementary Table 7 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 7 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Homer Known Motif Enrichment Results (GATA_peaks_on_LINC00887_Promoter_motif)
View article: Supplementary Table 7 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 7 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Homer Known Motif Enrichment Results (GATA_peaks_on_LINC00887_Promoter_motif)
View article: Supplementary Table 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 3 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Antibodies used in this study
View article: Supplementary Table 1 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation
Supplementary Table 1 from LncRNA-encoded Micropeptide ACLY-BP drives lipid deposition and cell proliferation in Clear Cell Renal Cell Carcinoma via maintenance of ACLY acetylation Open
Primary clinical and histological characteristics of 67 study patients