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Tri-p-tolylethylphosphonium bromide is a quaternary phosphonium salt with the chemical formula C22H24BrP. It is a colorless, crystalline solid that is soluble in water and organic solvents. tri-p-tolylethylphosphonium bromide is formed by the reaction of tri-p-tolylphosphine with ethyl bromide, resulting in the formation of a positively charged phosphonium ion. Tri-p-tolylethylphosphonium bromide is used as a phase-transfer catalyst in various organic synthesis reactions, particularly in the preparation of organometallic compounds and in the synthesis of pharmaceuticals. Its unique structure allows for efficient transfer of reactants between immiscible phases, enhancing the reaction rate and selectivity.

852-89-1

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852-89-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 852-89-1 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 8,5 and 2 respectively; the second part has 2 digits, 8 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 852-89:
(5*8)+(4*5)+(3*2)+(2*8)+(1*9)=91
91 % 10 = 1
So 852-89-1 is a valid CAS Registry Number.

852-89-1Relevant academic research and scientific papers

Unique Triphenylphosphonium Derivatives for Enhanced Mitochondrial Uptake and Photodynamic Therapy

Hu, Zhang,Sim, Ying,Kon, Oi Lian,Ng, Wai Har,Ribeiro, António J. M.,Ramos, Maria J.,Fernandes, Pedro A.,Ganguly, Rakesh,Xing, Bengang,García, Felipe,Yeow, Edwin K. L.

, p. 590 - 599 (2017)

In this study, unique methyl-functionalized derivatives (T?PP+) of the drug carrier triphenylphosphonium (TPP+) that exhibit significant enhancement of the accumulation of both the cation and its conjugated cargo in cell mitochondria are designed. We show that the presence of methyl group(s) at key positions within the phenyl ring results in an increase in the hydrophobicity and solvent accessible surface area of T?PP+. In particular, when the para position of the phenyl ring in T?PP+ is functionalized with a methyl group, the cation is most exposed to the surrounding environment, leading to a large decrease in water entropy and an increase in the level of van der Waals interaction with and partition into a nonpolar solvent. Therefore, stronger binding between the hydrophobic T?PP+ and mitochondrial membrane occurs. This is exemplified in a (hexachloro-fluorescein)-TPP+ conjugate system, where an ~12 times increase in the rate of mitochondrial uptake and a 2 times increase in photodynamic therapy (PDT) efficacy against HeLa and FU97 cancer cells are achieved when TPP+ is replaced with T?PP+. Importantly, nearly all the FU97 cells treated with the (hexachloro-fluorescein)-T?PP+ conjugate are killed as compared to only half the population of cells in the case of the (hexachloro-fluorescein)-TPP+ conjugate at a similar PDT light dosage. This study thus forms a platform for the healthcare community to explore alternative TPP+ derivatives that can act as optimal drug transporters for enhanced mitochondrially targeted therapies.

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