| Literature DB >> 29125571 |
Yi-Nan Zhang1, Yan-Fang Yang2, Wei Xu3, Xiu-Wei Yang4.
Abstract
Uncariae Ramulus Cum Uncis (URCU) is a widely used traditional Chinese medicine, and is reported to have various central nervous system effects. Alkaloids have been demonstrated to be the predominant pharmacological active components of URCU. In order to evaluate the blood-brain barrier (BBB) permeability and transport mechanism of six typical indole alkaloids from URCU, the MDCK-pHaMDR cell monolayer model was used as an in vitro surrogate model for BBB. The samples were analyzed by high-performance liquid chromatography, and the apparent permeability coefficients (Papp) were calculated. Among the six alkaloids, isorhynchophylline (2), isocorynoxeine (4), hirsutine (5) and hirsuteine (6) showed high permeability, with Papp values at 10-5 cm/s level in bidirectional transport. For rhynchophylline (1) and corynoxeine (3), they showed moderate permeability, with Papp values from the apical (AP) side to the basolateral (BL) side at 10-6 cm/s level and efflux ratio (Papp BL→AP/Papp AP→BL) above 2. The time- and concentration-dependency experiments indicated that the main mechanism for 2, 4, 5 and 6 through BBB was passive diffusion. The efflux mechanism involved in the transports of compounds 1 and 3 could be reduced significantly by verapamil, and molecular docking screening also showed that 1 and 3 had strong bindings to P-glycoprotein. This study provides useful information for predicting the BBB permeability for 1-6, as well as better understanding of their central nervous system pharmacological activities.Entities:
Keywords: Blood-brain barrier; Indole alkaloids; MDCK-pHaMDR cell monolayer model; Permeability; Rubiaceae; Uncariae Ramulus Cum Uncis
Mesh:
Substances:
Year: 2017 PMID: 29125571 PMCID: PMC6150385 DOI: 10.3390/molecules22111944
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Chemical structures of rhynchophylline (1), isorhynchophylline (2), corynoxeine (3), isocorynoxeine (4), hirsutine (5) and hirsuteine (6).
Rh123 transport in the presence and absence of verapamil in MDCK-pHaMDR cell monolayer.
| Analytes | Efflux Ratio | ||
|---|---|---|---|
| Rh123 | 8.43 ± 1.95 | 57.99 ± 2.59 | 6.88 |
| Rh123 + verapamil | 12.70 ± 2.13 * | 17.07 ± 0.99 ** | 1.34 |
Papp AP→BL: transport from apical (AP) to basolateral (BL) side; Papp BL→AP: transport from BL to AP side. Efflux Ratio: Papp BL→AP/Papp AP→BL. Rh123 at 10 μM was transport with 100 μM of verapamil with an incubation time of up to 90 min. Data are the mean ± SD (n = 6). * p < 0.05, ** p < 0.001 vs. Rh123 group).
Figure 2The cell viability of the six alkaloids at 100 μM on MDCK-pHaMDR cells for 6 h.
The standard calibration curves of alkaloids 1–6.
| Analytes | Regression Equation | Linear Range | |
|---|---|---|---|
| 0.9979 | 1–150 µM | ||
| 0.9980 | 1–150 µM | ||
| 0.9989 | 1–150 µM | ||
| 0.9993 | 1–150 µM | ||
| 0.9997 | 1–150 µM | ||
| 0.9961 | 1–150 µM |
HPLC methodological evaluation data of alkaloids 1–6.
| Analytes | Concentration (μM) | Precision (%) | Accuracy (%) | Recovery (%) | Stability (%) | |
|---|---|---|---|---|---|---|
| Intraday | Interday | |||||
| 5 | 0.19 | 6.29 | 107.11 ± 6.23 | 103.65 ± 6.59 | 96.32 ± 3.30 | |
| 60 | 0.56 | 6.41 | 100.94 ± 5.99 | 93.19 ± 5.70 | 96.86 ± 4.64 | |
| 120 | 0.11 | 4.84 | 104.81 ± 5.06 | 99.78 ± 4.89 | 102.59 ± 3.38 | |
| 5 | 0.40 | 10.34 | 111.75 ± 3.75 | 100.83 ± 3.23 | 108.52 ± 1.08 | |
| 60 | 0.08 | 6.53 | 101.71 ± 6.59 | 94.44 ± 6.13 | 100.08 ± 2.26 | |
| 120 | 0.25 | 4.28 | 103.89 ± 4.32 | 95.94 ± 3.40 | 105.21 ± 3.28 | |
| 5 | 0.57 | 7.33 | 113.34 ± 5.49 | 108.14 ± 5.22 | 106.67 ± 5.82 | |
| 60 | 0.07 | 6.66 | 105.42 ± 7.03 | 99.04 ± 6.60 | 102.37 ± 1.65 | |
| 120 | 0.44 | 5.75 | 105.18 ± 6.05 | 101.37 ± 5.83 | 101.52 ± 2.26 | |
| 5 | 0.15 | 5.40 | 106.75 ± 2.56 | 110.07 ± 4.54 | 107.15 ± 5.06 | |
| 60 | 0.26 | 5.70 | 104.25 ± 3.15 | 95.09 ± 2.14 | 102.72 ± 1.97 | |
| 120 | 0.42 | 5.58 | 102.26 ± 2.55 | 95.88 ± 1.50 | 102.02 ± 2.43 | |
| 5 | 4.63 | 12.43 | 110.3 ± 3.79 | 104.9 ± 3.60 | 106.1 ± 3.57 | |
| 60 | 0.21 | 5.68 | 102.2 ± 5.81 | 89.71 ± 5.10 | 101.9 ± 6.51 | |
| 120 | 0.25 | 6.40 | 106.5 ± 6.81 | 100.7 ± 6.44 | 100.5 ± 4.86 | |
| 5 | 1.16 | 3.67 | 112.2 ± 1.91 | 112.7 ± 2.33 | 106.89 ± 3.01 | |
| 60 | 1.64 | 8.87 | 101.6 ± 8.83 | 93.75 ± 8.32 | 103.80 ± 5.92 | |
| 120 | 2.33 | 2.40 | 99.37 ± 2.36 | 96.60 ± 2.31 | 102.23 ± 4.19 | |
The bidirectional Papp values, efflux ratios of alkaloids 1–6 a and verapamil inhibitions.
| Analytes | Efflux Ratio d | MW | Log D e | ||
|---|---|---|---|---|---|
| 4.37 ± 0.37 (1) | 42.33 ± 2.48 (2) | 9.67 | 384.47 | 0.94 | |
| 17.73 ± 1.20 | 27.73 ± 0.93 | 1.56 | 384.47 | 0.94 | |
| 1.21 ± 0.14 (3) | 49.67 ± 4.71 (4) | 40.94 | 382.45 | 1.05 | |
| 11.10 ± 1.49 | 20.66 ± 1.03 | 1.86 | 382.45 | 1.05 | |
| 15.06 ± 1.32 | 14.11 ± 0.73 | 0.94 | 368.47 | 1.59 | |
| 14.87 ± 1.83 | 11.35 ± 1.80 | 0.76 | 366.45 | 1.61 | |
| 22.24 ± 6.41 * | 18.13 ± 1.09 ▲ | 0.82 | |||
| 17.25 ± 2.45 ♦ | 17.54 ± 0.82 △ | 1.02 |
a The alkaloids 1–6 were at 40 μM with an incubation time of up to 90 min. b Transport of assayed alkaloids from AP to BL direction. c Transport of assayed alkaloids from BL to AP direction. d The ratio of Papp BL→AP to Papp AP→BL. e Log D values at pH 7.35 were calculated by Pallas 3.3.2.6 ADEM/Tox Software. Data are the mean ± SD (n = 6). * p < 0.001 vs. (1); ▲ p < 0.001 vs. (2); ♦ p <0.001 vs. (3); △ p < 0.001 vs. (4).
The bidirectional intracellular accumulation rates and total recovery rates in transport of 1–6 on the MDCK-pHaMDR cell monolayer. a
| Analytes | AP→BL | BL→AP | ||
|---|---|---|---|---|
| Intracellular Accumulation (%) | Recovery Rate (%) | Intracellular Accumulation (%) | Recovery Rate (%) | |
| 0.36 ± 0.05 | 99.91 ± 1.15 | 0.40 ± 0.04 | 102.18 ± 0.47 | |
| 0.24 ± 0.04 | 94.32 ± 1.43 | 0.37 ± 0.06 | 100.84 ± 1.89 | |
| n.d. b | 96.36 ± 1.17 | n.d. b | 99.60 ± 1.57 | |
| n.d. b | 92.96 ± 1.40 | n.d. b | 98.47 ± 0.82 | |
| 16.82 ± 0.32 | 89.29 ± 6.15 | 6.19 ± 0.73 | 104.3 ± 1.94 | |
| 19.27 ± 0.52 | 88.89 ± 5.99 | 7.52 ± 0.43 | 104.0 ± 1.17 | |
a Alkaloids 1–6 were at 40 μM with an incubation time of up to 90 min. Data are the mean ± SD (n = 6). b n.d.: detected less than the limit of quantification (LOQ).
Figure 3The bidirectional transport cumulative amounts of six alkaloids in MDCK-pHaMDR cell monolayer as a function of time from 30–180 min. Alkaloids 1–6 were at 40 μM. Data are the mean ± SD (n = 6).
Figure 4The bidirectional transport rates of six alkaloids in MDCK-pHaMDR cell monolayer as a function of concentration. Alkaloids 1–6 were at 20–120 μM for 90 min. Data are the mean ± SD (n = 6).
The log P, PSA and calculated log BB values of compounds 1–6.
| Compounds | 1 | 2 | 3 | 4 | 5 | 6 |
|---|---|---|---|---|---|---|
| log P | 2.18 | 2.18 | 1.73 | 1.73 | 3.22 | 2.62 |
| PSA | 67.87 | 67.87 | 67.87 | 67.87 | 54.56 | 54.56 |
| log BB | −0.53 | −0.53 | −0.60 | −0.60 | −0.18 | −0.27 |
Figure 5Docked complex of P-gp and alkaloids 1–6. Yellow, blue, and green dashed lines represent hydrogen bonds, π-π bond and p-π bond, respectively.