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S. P. Hong et al. / Bioorg. Med. Chem. Lett. 25 (2015) 3501–3506
It is interesting that the effect of a 1-subutituent of adamantane
Acknowledgement
on the 11b-HSD1 inhibitory activity was volatile, although the
molecular modeling studies did not show any particular interac-
tions between 1-substituents of adamantane and 11b-HSD1.
The selectivity, ex vivo 11b-HSD1 activity and metabolic stabil-
ity of compound 3 was tested. As shown in Table 6, compound 3
showed a good selectivity for human 11b-HSD1, with a much
This work was supported by the Incheon National University
Research Grant in 2013.
References and notes
higher IC50 of >10 lM for 11b-HSD2. Moreover, oral administration
of compound 3 inhibited 11b-HSD1 activity by 57% and 38% in
mouse liver and epididymal fat tissues with high metabolic
stability.
The synthetic scheme for compound 21a is depicted in
Scheme 3. An adamantane ester (16) was condensed with hydra-
zine hydrate to give compound 21a.11
The synthesis of compound 21b and 21f were carried out
according to Scheme 4. Adamantane amide (3) was dehydrated
with trifluoroacetic anhydride to give adamantane nitrile (21b),
which was reacted with hydroxylamine hydrochloride to give
compound 21f.12
Compounds 21c, 21e and 21g were prepared following
Scheme 5. Adamantane carboxylate (16) was reduced to adaman-
tane alcohol (21c), substituted with cyanide to produce adaman-
tane nitrile (21e), and finally converted to adamantane amide
(21g).
The synthesis of compound 21h was performed as described in
Scheme 6. Adamantane alcohol (21c) was converted to aldehyde,
which was followed by the Wittig reaction and hydrolysis to give
an unsaturated carboxylic acid (23). This was reduced and con-
verted to adamantane amide (21h).13
In conclusion, the 11b-HSD1 inhibitory activity of N-(adaman-
tanyl-2-yl)- (phenylsulfonamido) alkanamide (1) derivatives is
the most potent in acetic acid linker and greatly dependent on
the hydrophobic interactions of the alkanoic acid linker. Various
substitutions with phenyl derivatives are tolerable for the
11b-HSD1 inhibitory activity. The effect of a 1-substituent of
adamantane on the 11b-HSD1 inhibitory activity needs further
investigation.
8. The water solubility of compound 3 is 0.3 mg/ml, which is five times as much
as that of compound 2. After 3 weeks of daily oral administration, fasting
plasma glucose levels had decreased by 39% and 28% in KKAy mice treated with
30 mg/kg compound 3 and 2, respectively.
9. The binding models of the 11b-HSD1/compound 3 and 5 complexes were
described in Figure 1. In docking studies, the structure of 11b-HSD1 was taken
complex bound to adamantane sulfone inhibitor. Based on the adamantane
amide coordinates, the compound structure was superimposed to an
adamantane amide inhibitor in the X-ray crystal complex. The initial
complex was optimized with 1000 steps of steepest decent and 3000 steps of
conjugate gradient while holding the 11b-HSD1 heavy atoms restrained to
their initial positions by means of
a
harmonic force constant of
1 kcal molÀ1 ÅÀ2 using CHARMm in Accelrys Discovery Studio 4.1.
10. All novel synthetic compounds gave satisfactory analytical and spectral data.
Selected data for 3: 1H NMR (400 MHz, CDCl3) d 8.40 (s, 1H), 7.81 (t, 1H), 7.72–
7.70 (m, 1H), 7.46–7.38 (m, 2H), 7.15 (d, J = 7.6 Hz, 1H), 7.00 (br s, 1H), 6.72 (br
s, 1H), 3.68 (d, J = 6 Hz, 1H), 1.92–1.76 (m, 11H), 1.49 (d, J = 12.0 Hz, 2H), 1.25
(s, 6H); 13C NMR (100 MHz, DMSO-d6) d 178.7, 172.9, 159.3, 156.8, 135.2,
130.7, 129.2, 124.9, 117.2, 59.0, 52.5, 39.3, 38.7, 38.5, 31.0, 30.1, 26.7, 25.1;
HRMS (ESI) m/z: Calcd for C21H29FN3O4S 438.1863; found 438.1857.