Structure of 81-30-1
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The BI-3802 was designed by Boehringer Ingelheim and could be obtained free of charge through the Boehringer Ingelheim open innovation portal opnMe.com, associated with its negative control.
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Batch number can be found on the product's label following the word 'Batch'.
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CAS No. : | 81-30-1 |
Formula : | C14H4O6 |
M.W : | 268.18 |
SMILES Code : | O=C(C(C1=C2C=CC3=C14)=CC=C4C(OC3=O)=O)OC2=O |
MDL No. : | MFCD00006915 |
InChI Key : | YTVNOVQHSGMMOV-UHFFFAOYSA-N |
Pubchem ID : | 6678 |
GHS Pictogram: |
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Signal Word: | Warning |
Hazard Statements: | H315-H319-H335 |
Precautionary Statements: | P261-P305+P351+P338 |
Num. heavy atoms | 20 |
Num. arom. heavy atoms | 10 |
Fraction Csp3 | 0.0 |
Num. rotatable bonds | 0 |
Num. H-bond acceptors | 6.0 |
Num. H-bond donors | 0.0 |
Molar Refractivity | 63.44 |
TPSA ? Topological Polar Surface Area: Calculated from |
86.74 Ų |
Log Po/w (iLOGP)? iLOGP: in-house physics-based method implemented from |
0.81 |
Log Po/w (XLOGP3)? XLOGP3: Atomistic and knowledge-based method calculated by |
1.91 |
Log Po/w (WLOGP)? WLOGP: Atomistic method implemented from |
1.46 |
Log Po/w (MLOGP)? MLOGP: Topological method implemented from |
2.29 |
Log Po/w (SILICOS-IT)? SILICOS-IT: Hybrid fragmental/topological method calculated by |
2.72 |
Consensus Log Po/w? Consensus Log Po/w: Average of all five predictions |
1.84 |
Log S (ESOL):? ESOL: Topological method implemented from |
-3.08 |
Solubility | 0.225 mg/ml ; 0.000839 mol/l |
Class? Solubility class: Log S scale |
Soluble |
Log S (Ali)? Ali: Topological method implemented from |
-3.35 |
Solubility | 0.118 mg/ml ; 0.000442 mol/l |
Class? Solubility class: Log S scale |
Soluble |
Log S (SILICOS-IT)? SILICOS-IT: Fragmental method calculated by |
-4.21 |
Solubility | 0.0164 mg/ml ; 0.0000612 mol/l |
Class? Solubility class: Log S scale |
Moderately soluble |
GI absorption? Gatrointestinal absorption: according to the white of the BOILED-Egg |
High |
BBB permeant? BBB permeation: according to the yolk of the BOILED-Egg |
No |
P-gp substrate? P-glycoprotein substrate: SVM model built on 1033 molecules (training set) |
No |
CYP1A2 inhibitor? Cytochrome P450 1A2 inhibitor: SVM model built on 9145 molecules (training set) |
Yes |
CYP2C19 inhibitor? Cytochrome P450 2C19 inhibitor: SVM model built on 9272 molecules (training set) |
No |
CYP2C9 inhibitor? Cytochrome P450 2C9 inhibitor: SVM model built on 5940 molecules (training set) |
No |
CYP2D6 inhibitor? Cytochrome P450 2D6 inhibitor: SVM model built on 3664 molecules (training set) |
No |
CYP3A4 inhibitor? Cytochrome P450 3A4 inhibitor: SVM model built on 7518 molecules (training set) |
No |
Log Kp (skin permeation)? Skin permeation: QSPR model implemented from |
-6.58 cm/s |
Lipinski? Lipinski (Pfizer) filter: implemented from |
0.0 |
Ghose? Ghose filter: implemented from |
None |
Veber? Veber (GSK) filter: implemented from |
0.0 |
Egan? Egan (Pharmacia) filter: implemented from |
0.0 |
Muegge? Muegge (Bayer) filter: implemented from |
0.0 |
Bioavailability Score? Abbott Bioavailability Score: Probability of F > 10% in rat |
0.55 |
PAINS? Pan Assay Interference Structures: implemented from |
0.0 alert |
Brenk? Structural Alert: implemented from |
2.0 alert: heavy_metal |
Leadlikeness? Leadlikeness: implemented from |
No; 1 violation:MW<0.0 |
Synthetic accessibility? Synthetic accessibility score: from 1 (very easy) to 10 (very difficult) |
2.14 |
* All experimental methods are cited from the reference, please refer to the original source for details. We do not guarantee the accuracy of the content in the reference.
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
In N,N-dimethyl-formamide; for 6.75h;Heating / reflux; | 26.82 g of a naphthalene-1,4,5,8-tetracarboxylic dianhydride and 250 ml of dehydrated DMF were introduced into a reactor. The reactor was heated to reflux. 19.5 g of <strong>[5397-31-9]3-(2-ethylhexyloxy)propylamine</strong> dissolved in 50 ml of dehydrated DMF was added dropwise into the reactor over 45 minutes while stirring. After the dropwise addition was completed, the resultant was further heated to reflux for 6 hours. After cooling, the resulting mixture was concentrated under a reduced pressure. The residue was diluted with toluene and the insoluble portion was filtered off. The filtrate was purified by silica gel column chromatography to obtain the desired product of a light yellow naphthalene monoimide derivative (12-1). Yield: 28.6 g. |
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
91% | In toluene; for 15h;Reflux; | 10 was synthesized according to the previous report [13],Naphthalene-1,4,5,8-tetracarboxylic dianhydride (4.2 g, 16 mmol) and5 (9.7 g, 40 mmol) were refluxed in toluene (250 mL) for 15 h. Afterevaporation of the solvent under reduced pressure, 300 mL of Milli-Qwater was added, and the resulting precipitate was collected by suctionfiltration and dried under vacuum. Product 10 was obtained as acoral-colored solid (10.3 g, 14 mmol, 91% yield). 1H NMR (500 MHz,CDCl3): δ = 1.42 (18H, s, t-Bu), 1.66 (4H, q, J = 6.4 Hz, CH2CH2CH2NH),1.92 (4H, q, J = 6.9 Hz, CH2CH2CH2N(CH3)), 2.23 (6H, s, CH2N(CH3)CH2), 2.42 (4H, t, J = 6.6 Hz, N(CH3)CH2CH2CH2NH), 2.49 (4H, t, J =6.8 Hz, NCH2CH2CH2N(CH3)), 3.20 (4H, q, J = 5.9 Hz, CH2NHCO), 4.26(4H, quin, J = 6.0 Hz, NCH2CH2CH2N(CH3)), 5.42 (2H, br, NHCO), and8.77 (4H, s, Ar-H) ppm (Fig. S17). HRMS (EI+) m/z [M]+ Calcd forC38H55N6O8 723.40814, found 723.40928. |
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
99% | In toluene; for 4h;Reflux; | Naphthalene-1,4,5,8-tetracarboxylic dianhydride (1.3 g, 5.0 mmol)and 5 (2.7 g, 12 mmol) were refluxed in toluene (200 mL) for 4 h. Afterevaporation of the solvent under reduced pressure, 300 mL of Milli-Qwater was added, and the resulting precipitate was collected by suctionfiltration and dried under vacuum. Product 6 was obtained as acoral-colored solid (3.3 g, 5.0 mmol, 99% yield). MALDI-TOF-MS (positivemode, α-CHCA) m/z = 668.66 (calculated value of C34H46N6O8 +H+ = 667.77) (Fig. S7); 1H NMR (500 MHz, CDCl3): δ = 1.39 (18H, s, t-Bu), 2.31 (6H, s, CH2N(CH3)CH2), 2.60 (4H, br, N(CH3)CH2CH2NHCO),2.74 (4H, t, J = 6.5 Hz, NCH2CH2N(CH3)), 3.19 (4H, d, J = 4.6 Hz, N(CH3)CH2CH2NHCO), 4.33 (4H, t, J = 6.5 Hz, NCH2CH2N(CH3)), 5.07(2H, br, NHCO), and 8.78 (4H, s, Ar-H) ppm (Fig. S8). Calculated forC34H46N6O8: C 61.25, H 6.96, N 12.60; found: C 61.01, H 6.82, N 12.60.HRMS (EI+) m/z [M]+ Calcd for C34H47N6O8 667.34554, found667.34589. |