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Sangon Biotech tbe buffer
Tbe Buffer, supplied by Sangon Biotech, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/tbe+buffer/buffer+tbe/pm42296048-184-17-34
Average 86 stars, based on 1 article reviews
tbe buffer - by Bioz Stars, 2026-09
86/100 stars

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Related Articles

Incubation:

Article Title: The Arabidopsis Transcription Factor TCP4 Controls Seed Size by Repressing the MINI3-SHB1-IKU Pathway.
Article Snippet: 20 As an important agronomic trait that directly determines grain yield, seed size is tightly 21 controlled by the timing of endosperm cellularization and seed coat proliferation.. However, the 22 precise regulatory mechanisms that coordinate the two processes remain elusive.. Here, we 23 demonstrate that in Arabidopsis (Arabidopsis thaliana), CINCINNATA (CIN)-like TEOSINTE 24 BRANCHED 1/CYCLOIDEA/PCF (TCP) transcription factors are crucial for seed size by 25 controlling both endosperm cellularization and seed coat growth.

Electrophoresis:

Article Title: The Arabidopsis Transcription Factor TCP4 Controls Seed Size by Repressing the MINI3-SHB1-IKU Pathway.
Article Snippet: 20 As an important agronomic trait that directly determines grain yield, seed size is tightly 21 controlled by the timing of endosperm cellularization and seed coat proliferation.. However, the 22 precise regulatory mechanisms that coordinate the two processes remain elusive.. Here, we 23 demonstrate that in Arabidopsis (Arabidopsis thaliana), CINCINNATA (CIN)-like TEOSINTE 24 BRANCHED 1/CYCLOIDEA/PCF (TCP) transcription factors are crucial for seed size by 25 controlling both endosperm cellularization and seed coat growth.

Article Title: Efficient purification of extracellular vesicles via circular multicavity electrophoresis coupled with ultrafiltration.
Article Snippet: Extracellular vesicles (EVs), as critical mediators of intercellular communication, have emerged as promising biomarkers for disease diagnosis and therapeutics, making the acquisition of high-purity, high-yield EVs essential.. However, traditional methods such as ultracentrifugation (UC) and magnetic-activated cell sorting (MACS), etc struggles to remove co-existing proteins in complex samples and faces limitations including low yield and high cost, restricting its large-scale clinical application.. Hence, the development of a high-purity EVs preparation method is benefit for maximizing the biological functions of EVs and thereby replace targeted small molecule drugs for clinical applications.

Marker:

Article Title: A well-designed bridge probe with dual functions of recognition and transduction towards a universal LAMP system.
Article Snippet: in molecular diagnostics [12, 13].. Among the above isothermal amplification methods, LAMP requires only DNA polymerase with strand-substitution activity and constant temperature (65 ± 5 °C) to achieve 109–1010-fold amplification of double-stranded DNA within 15 min to 2 h [14–16].. Owing to its high amplification efficiency, operational simplicity, and tolerance to crude samples, LAMP has been widely adopted in nucleic acid detection and molecular diagnostics.

Proximity Ligation Assay:

Article Title: Efficient purification of extracellular vesicles via circular multicavity electrophoresis coupled with ultrafiltration.
Article Snippet: Extracellular vesicles (EVs), as critical mediators of intercellular communication, have emerged as promising biomarkers for disease diagnosis and therapeutics, making the acquisition of high-purity, high-yield EVs essential.. However, traditional methods such as ultracentrifugation (UC) and magnetic-activated cell sorting (MACS), etc struggles to remove co-existing proteins in complex samples and faces limitations including low yield and high cost, restricting its large-scale clinical application.. Hence, the development of a high-purity EVs preparation method is benefit for maximizing the biological functions of EVs and thereby replace targeted small molecule drugs for clinical applications.

other:

Article Title: An Autocatalytic Molecular Sensor Enables Rapid, Sensitive, and One-Pot Detection of Nucleic Acids.
Article Snippet: Circulating nucleic acids are emerging disease markers whose clinical applications are hindered by the lack of rapid, sensitive, convenient, and cost-effective detection assays.. Inspired by the natural replication of virus, here, we developed a biomimetic one-step, one-pot, isothermal detection assay named RAPID to realize rapid and sensitive detection of nucleic acids with minimal reliance on instruments.. The core element of RAPID is an autocatalytic molecular sensor that exploits the viral replication endonuclease of duck circovirus (i.e., DCV) to transform rolling circle amplification (RCA) from linear to exponential.

Saline:

Article Title: Host-guest confinement in post-metallized COFs for enhanced electrochemiluminescence coupled with Y-shaped DNA amplification for microRNA-499 detection.
Article Snippet: An ultrasensitive electrochemiluminescence (ECL) biosensor was developed for the detection of the acute myocardial infarction (AMI) biomarker miRNA-499 by synergistically integrating an iridium-metallized covalent organic framework (Ir@TpBpy) with enzyme-assisted Y-shaped DNA amplification.. The Ir@TpBpy COF was synthesized via post-metallization of a bipyridine-rich TpBpy framework with Ir(III) complexes.. This design significantly enhances the ECL performance not only through material loading but also via a synergistic optimization strategy: (1) the conjugated framework constructs continuous charge transport pathways to accelerate electron transfer; and (2) the porous architecture induces a guest confinement effect that locally enriches the coreactant triethylamine (TEA), facilitating radical kinetics.

Synthesized:

Article Title: Host-guest confinement in post-metallized COFs for enhanced electrochemiluminescence coupled with Y-shaped DNA amplification for microRNA-499 detection.
Article Snippet: An ultrasensitive electrochemiluminescence (ECL) biosensor was developed for the detection of the acute myocardial infarction (AMI) biomarker miRNA-499 by synergistically integrating an iridium-metallized covalent organic framework (Ir@TpBpy) with enzyme-assisted Y-shaped DNA amplification.. The Ir@TpBpy COF was synthesized via post-metallization of a bipyridine-rich TpBpy framework with Ir(III) complexes.. This design significantly enhances the ECL performance not only through material loading but also via a synergistic optimization strategy: (1) the conjugated framework constructs continuous charge transport pathways to accelerate electron transfer; and (2) the porous architecture induces a guest confinement effect that locally enriches the coreactant triethylamine (TEA), facilitating radical kinetics.



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