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Acridine Orange

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Identification
Molecular formula
C17H19N3
CAS number
494-38-2
IUPAC name
N-acridin-9-yl-N',N'-dimethyl-propane-1,3-diamine
State
State

At room temperature, Acridine Orange is typically a crystalline solid. It is stable but can decompose if exposed to strong light or elevated temperatures.

Melting point (Celsius)
267.00
Melting point (Kelvin)
540.15
Boiling point (Celsius)
0.00
Boiling point (Kelvin)
0.00
General information
Molecular weight
265.36g/mol
Molar mass
265.3500g/mol
Density
1.0000g/cm3
Appearence

Acridine Orange typically presents as an orange to reddish-orange powder. It often appears as fine crystals or crystalline powder and it is known for its vibrant fluorescence under ultraviolet light, appearing green when bound to DNA and red when bound to RNA.

Comment on solubility

Solubility of N-acridin-9-yl-N',N'-dimethyl-propane-1,3-diamine

N-acridin-9-yl-N',N'-dimethyl-propane-1,3-diamine is an intriguing compound whose solubility characteristics can provide valuable insights into its potential applications. Generally, the solubility of a compound like this can be influenced by several factors:

  • Polarity: The presence of polar functional groups can enhance solubility in polar solvents such as water, while non-polar regions may favor solubility in organic solvents.
  • Hydrogen Bonding: It may engage in hydrogen bonding, which can facilitate its solubility in polar solvents.
  • Temperature: Generally, increased temperature can enhance solubility for many organic compounds, leading to a greater dissolution rate.
  • pH Levels: Analyzing how pH affects the solubility can be crucial, especially for amines, as the protonation state may change in different pH environments.

Specific solubility data might be limited; however, understanding its general behavior can be advantageous:

  1. It may show moderate to low solubility in water.
  2. In organic solvents, such as dimethyl sulfoxide (DMSO) or ethanol, it may exhibit better solubility.
  3. Experimental determination is encouraged, as solubility can vary significantly with factors like concentration and the presence of co-solvents.

Ultimately, exploring the solubility of N-acridin-9-yl-N',N'-dimethyl-propane-1,3-diamine in various solvents can facilitate its use in diverse chemical contexts, including its role in drug development and materials science.

Interesting facts

Interesting Facts About N-acridin-9-yl-N',N'-dimethyl-propane-1,3-diamine

N-acridin-9-yl-N',N'-dimethyl-propane-1,3-diamine is a fascinating compound that captivates the attention of chemists and researchers alike. Here are some engaging insights about this chemical:

  • Structure and Function: The compound features an acridine ring fused with a dimethylated propanediamine, which contributes to its unique properties. Acridine moieties are known for their ability to intercalate into DNA, making this compound potentially useful in biochemistry and medicinal chemistry.
  • Potential Applications: N-acridin-9-yl-N',N'-dimethyl-propane-1,3-diamine has been explored for its pharmacological properties. It can act as a *prodrug* or serve as a lead structure in the development of new anti-cancer agents, emphasizing its importance in drug design and molecular pharmacology.
  • Fluorescence Properties: The acridine component can exhibit fluorescence, which is useful for imaging applications in biology. This property allows researchers to visualize cellular processes, making the compound a valuable tool in the fields of biochemistry and cell biology.
  • Research Significance: As researchers delve deeper into the mechanisms of action involving acridine derivatives, this compound stands out due to its *structural diversity* and the potential to modify the acridine nucleus for improved therapeutic outcomes.
  • Biological Activities: Initial studies suggest that the compound might possess antimicrobial and anti-inflammatory properties, which opens the door for further research into its efficacy in treating various diseases.

This compound's intriguing characteristics, combined with its broad potential applications, underscore its growing importance in scientific research. As the exploration of such chemical entities continues, who knows what groundbreaking discoveries await?

Synonyms
9-((3-Dimethylaminopropyl)amino)acridine
13365-37-2
N-acridin-9-yl-N',N'-dimethylpropane-1,3-diamine
C 137
TCMDC-124266
MLS001198528
C9LK54B52H
GNF-PF-2110
MMV000448
SMR000558991
N'-acridin-9-yl-N,N-dimethylpropane-1,3-diamine
N1-(9-Acridinyl)-N3,N3-dimethyl-1,3-propanediamine
CCRIS 1974
9-(3'-Dimethylaminopropylamino)acridine
BRN 0485893
N'-9-Acridinyl-N,N-dimethyl-1,3-propanediamine
1,3-Propanediamine, N'-9-acridinyl-N,N-dimethyl-
9-[3-(dimethylamino)propylamino]acridine
UNII-C9LK54B52H
cid_14169
ACRIDINE, 9-(3-(DIMETHYLAMINO)PROPYLAMINO)-
CHEMBL124006
SCHEMBL4725486
BDBM80560
DTXSID40158291
HMS2884I12
MFCD01084589
NSC766436
STK589099
AKOS001678876
NSC-766436
NCGC00245884-01
3-(acridin-9-ylamino)propyl-dimethyl-amine
C-137
SJ000044378
DIMETHYLAMINOPROPYLAMINO)ACRIDINE, 9-(3'-
SR-01000088074
SR-01000088074-1
N'-(acridin-9-yl)-N,N-dimethylpropane-1,3-diamine
N-acridin-9-yl-N'',N''-dimethylpropane-1,3-diamine
N-(9-acridinyl)-N'',N''-dimethylpropane-1,3-diamine
N-acridin-9-yl-N'',N''-dimethyl-propane-1,3-diamine
1,3-PROPANEDIAMINE, N3-9-ACRIDINYL-N1,N1-DIMETHYL-