Yunjin Bai
9 Papers
Yunjin Bai is an academic researcher. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 1, co-authored 8 publications.
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Papers
Homogeneous Binary Visual and Fluorescence Detection of Tetanus Toxoid in Clinical Samples Based on Enzyme-Free Parallel Hybrid Chain Reaction.
Piaopiao Chen,Yunjin Bai,Shiyuan Tang,Nian Wang,Yaqin He,Ke Huang,Jin Huang,Binwu Ying,Yu Cao +8 more
TL;DR: A simple aptamer-based toxoid test with both fluorescence and binary visual readouts that enabled accurate monitoring of tetanus toxoid levels in patients before and after drug treatment and recommends a cutoff value of 5 fg/mL for tetanus infection.
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Nanoarchitectonics-Assisted Simultaneous Fluorescence Detection of Urinary Dual miRNAs for Noninvasive Diagnosis of Prostate Cancer.
TL;DR: In this article , a fluorescence strategy for the homogeneous and simultaneous analysis of urine miRNA-375 and miRNA148a was proposed, which could trigger cascade enzyme-free amplification.
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The potential impacts of circadian rhythm disturbances on male fertility
TL;DR: As the index of sperm quality was diverse and study designs were non-uniform, the conclusions were temporarily inconsistent and underlying mechanisms remain unclear, suggesting a better understanding of whether and how circadian disturbances regulate male fertility will be meaningful.
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Rapid binary visual detection of oxalate in urine samples of urolithiasis patients via competitive recognition and distance reading test strips.
TL;DR: In this paper , a dual fluorescence and binary visualization analysis system was constructed to diagnose oxalate urolithiasis, which can efficiently reduce Cu2+ to Cu+ and can be selectively recognized by both calcein and cadmium telluride quantum dots (CdTe QDs).
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Three-fluorescence sensor for minute-time scale low-cost analysis of urinary oxalate in urolithiasis metabolic assessment.
Xin Jiang,Yunjin Bai,Qilin Liu,Li Yan,Tingting Long,Mei Li,Jin Huang,Binwu Ying,Piaopiao Chen +8 more
TL;DR: In this article , a three-signal fluorescence strategy for oxalate analysis based on pyrophosphate-cerium coordination polymeric networks (PPi-Ce CPNs), cadmium telluride quantum dots (CdTe QDs), and N-Methyl Mesoporphyrin (NMM) was presented.
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