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C34H36BN3O4 is an organic molecule composed of 34 carbon atoms, 36 hydrogen atoms, 1 boron atom, 3 nitrogen atoms, and 4 oxygen atoms. Its unique composition, including the presence of boron and nitrogen, suggests that it may possess distinct chemical properties, such as reactivity or electronic structure. Further investigation is required to explore its specific characteristics and potential applications.

1847485-97-5

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1847485-97-5 Usage

Uses

As the specific uses of C34H36BN3O4 are not provided in the materials, it is not possible to list its applications based on the given information. However, given its organic nature and the presence of boron and nitrogen, it may have potential uses in various industries, such as pharmaceuticals, materials science, or chemical research. Further analysis and research would be necessary to determine its practical applications and benefits in these fields.

Check Digit Verification of cas no

The CAS Registry Mumber 1847485-97-5 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,8,4,7,4,8 and 5 respectively; the second part has 2 digits, 9 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 1847485-97:
(9*1)+(8*8)+(7*4)+(6*7)+(5*4)+(4*8)+(3*5)+(2*9)+(1*7)=235
235 % 10 = 5
So 1847485-97-5 is a valid CAS Registry Number.

1847485-97-5Upstream product

1847485-97-5Downstream Products

1847485-97-5Relevant academic research and scientific papers

A Multisite-Binding Switchable Fluorescent Probe for Monitoring Mitochondrial ATP Level Fluctuation in Live Cells

Wang, Lu,Yuan, Lin,Zeng, Xian,Peng, Juanjuan,Ni, Yong,Er, Jun Cheng,Xu, Wang,Agrawalla, Bikram Keshari,Su, Dongdong,Kim, Beomsue,Chang, Young-Tae

, p. 1773 - 1776 (2016)

Adenosine triphosphate (ATP), commonly produced in mitochondria, is required by almost all the living organisms; thus fluorescent probes for monitoring mitochondrial ATP levels fluctuation are essential and highly desired. Herein, we report a multisite-binding switchable fluorescent probe, ATP-Red 1, which selectively and rapidly responds to intracellular concentrations of ATP. Live-cell imaging indicated that ATP-Red 1 mainly localized to mitochondria with good biocompatibility and membrane penetration. In particular, with the help of ATP-Red 1, we successfully observed not only the decreased mitochondrial ATP levels in the presence of KCN and starvation state, but also the increased mitochondrial ATP levels in the early stage of cell apoptosis. These results indicate that ATP-Red 1 is a useful tool for investigating ATP-relevant biological processes. Illuminating the ATP: A multisite-binding, switchable fluorescent probe can selectively and rapidly respond to ATP at intracellular concentrations. In live-cell imaging, the probe was successfully applied to monitor fluctuations in mitochondrial ATP levels.

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