Journal of Jilin University(Medicine Edition) ›› 2021, Vol. 47 ›› Issue (1): 158-167.doi: 10.13481/j.1671-587x.20210122
• Research in basic medicine • Previous Articles Next Articles
Dayong XU(),Yunpeng LI,Jingmei WEI,Ruyin LIU
Received:
2020-07-17
Online:
2021-01-28
Published:
2021-01-27
Contact:
Dayong XU
E-mail:albertgates@sina.com
CLC Number:
Dayong XU,Yunpeng LI,Jingmei WEI,Ruyin LIU. Inhibitory effect of baicalin on inflammation in rats with spinal cord injury by regulating macrophage M2 polarization[J].Journal of Jilin University(Medicine Edition), 2021, 47(1): 158-167.
Tab.2
Levels of IL-12, TNF-α, IL-4, and IL-10 in spinal cord tissue of rats in various groups [n=10,x±s,wB/(mg·g-1)]"
Group | IL-12 | TNF-α | IL-4 | IL-10 |
---|---|---|---|---|
Sham operation | 1.00±0.48 | 1.00±0.14 | 1.00±0.40 | 1.00±0.22 |
Model | 6.96±0.34** | 6.35±0.75** | 0.35±0.06* | 0.28±0.07* |
Baicalin Baicalin+DMSO Baicalin+AS1517499 | 1.53±0.25△△ 43.00±6.20 253.00±8.70# | 1.44±0.25△△ 49.00±11.40 238.00±17.30# | 6.75±0.38△△ 238.00±10.30 23.00±8.90# | 4.35±0.15△ 221.00±12.40 21.00±9.60# |
Tab.3
Expression levels of iNOS, CCL-5, Arg1, and MRC1 proteins in spinal cord tissue of rats in various groups"
Group | iNOS | CCL-5 | Arg1 | MRC1 |
---|---|---|---|---|
Sham operation Model Baicalin Baicalin+ DMSO | 1.00±0.09 3.80±0.12** 1.40±0.14△ 1.00±0.10 | 1.00±0.09 2.94±0.2* 1.23±0.11△ 1.00±0.12 | 1.00±0.12 0.32±0.07* 4.53±0.24△△ 1.00±0.05 | 1.00±0.09 0.25±0.08* 2.58±0.14△ 1.00±0.07 |
Baicalin+AS1517499 | 3.76±0.26# | 2.46±0.09# | 0.21±0.04# | 0.09±0.05## |
Tab.4
Expression levels of p-JAK1, p-STAT1, and p-STAT6 proteins in spinal cord tissue of rats in various groups (n=10,x±s)"
Group | p-JAK1/ JAK1 | p-STAT1/STAT1 | p-STAT6/STAT6 |
---|---|---|---|
Sham operation | 1.00±0.13 | 1.00±0.09 | 1.00±0.05 |
Model | 0.97±0.29 | 2.63±0.15* | 1.05±0.19 |
Baicalin | 2.87±0.35△ | 0.41±0.07△△ | 2.21±0.28△ |
Baicalin+ DMSO | 1.00±0.13 | 1.00±0.09 | 1.00±0.05 |
Baicalin+AS1517499 | 0.98±0.03 | 1.03±0.04 | 0.29±0.02# |
Tab.5
Expression levels of iNOS and CCL-5 proteins in RAW264.7 cells in various groups"
Group | iNOS | CCL-5 |
---|---|---|
Control | 1.00±0.07 | 1.00±0.08 |
M1 type polarization | 2.63±0.11* | 2.76±0.09* |
M1 type polarization +baicalin | 1.09±0.06△ | 1.15±0.12△ |
M1 type polarization + baicalin+DMSO | 1.00±0.06 | 1.00±0.13 |
M1 type polarization + baicalin +AS1517499 | 2.90±0.08# | 2.21±0.09# |
Tab.6
Expression levels of Arg1 and MRC1 proteins in RAW264.7 cells in various groups"
Group | Arg1 | MRC1 |
---|---|---|
Control | 1.00±0.06 | 1.00±0.08 |
M2 type polarization | 1.89±0.23* | 2.01±0.27* |
M2 type polarization +baicalin | 2.59±0.18△ | 2.53±0.34△ |
M1 type polarization + baicalin+DMSO | 1.00±0.07 | 1.00±0.05 |
M1 type polarization + baicalin +AS1517499 | 0.23±0.02# | 0.12±0.01## |
Tab. 7
Expression levels of p-JAK1,p-STAT1,and p-STAT6 proteins in RAW264.7 cells in various gorups"
Group | p-JAK1/JAK1 | p-STAT1/STAT1 | p-STAT6/STAT6 |
---|---|---|---|
Control | 1.00±0.11 | 1.00±0.12 | 1.00±0.06 0.96±0.07 |
M1 type polarization | 0.98±0.19 | 2.52±0.13* | |
M1 type polarization + baicalin M1 type polarization + baicalin+ DMSO M1 type polarization+ baicalin+AS1517499 | 2.57±0.23△ 1.00±0.09 2.26±0.73# | 1.04±0.09△ 1.00±0.08 0.97±0.05 | 2.16±0.11△ 1.00±0.17 0.24±0.03# |
Tab.8
Levels of IL-12, TNF-α, IL-4, and IL-10 in RAW264.7 cells in various groups after pre-treatment of AS1517499 [n=3,x±s,wB/(mg·g-1)]"
Group | IL-12 | TNF-α | IL-4 | IL-10 |
---|---|---|---|---|
M1 type polarization+baicalin+DMSO | 53.6±11.2 | 44.1±13.4 | 253.0±16.3 | 237.0±11.5 |
M1 type polarization+baicalin+AS1517499 | 223.0±27.4* | 241.0±15.3* | 53.0±9.3* | 42.0±8.6* |
1 | CUI L, FENG L, ZHANG Z H, et al. The anti-inflammation effect of baicalin on experimental colitis through inhibiting TLR4/NF-κB pathway activation[J]. Int Immunopharmacol, 2014, 23(1): 294-303. |
2 | HUANG X, LI Y, FU M G, et al. Polarizing macrophages in vitro[J]. Methods Mol Biol, 2018, 1784: 119-126. |
3 | WANG L, WU J P,HE X J. Butylphthalide has an anti-inflammatory role in spinal cord injury by promoting macrophage/microglia M2 polarization via p38 phosphorylation[J]. Spine (Phila Pa 1976), 2020, 45(17): E1066-E1076. |
4 | ZHU W, JIN Z S, YU J B, et al. Baicalin ameliorates experimental inflammatory bowel disease through polarization of macrophages to an M2 phenotype[J]. Int Immunopharmacol, 2016, 35: 119-126. |
5 | WANG G, LIANG J, GAO L, et al. Baicalin administration attenuates hyperglycemia-induced malformation of cardiovascular system[J]. Cell Death Dis, 2018, 9(2): 234. |
6 | JI W L, LIANG K, AN R, et al. Baicalin protects against ethanol-induced chronic gastritis in rats by inhibiting Akt/NF-κB pathway[J]. Life Sci, 2019, 239: 117064. |
7 | PENG L Y, YUAN M, WU Z M, et al. Anti-bacterial activity of baicalin against APEC through inhibition of quorum sensing and inflammatory responses[J]. Sci Rep, 2019, 9(1):4063. |
8 | SHI H F, REN K, LV B, et al. Baicalin from Scutellaria baicalensis blocks respiratory syncytial virus (RSV) infection and reduces inflammatory cell infiltration and lung injury in mice[J]. Sci Rep, 2016, 6: 35851. |
9 | HUANG L J, JIA S S, SUN X H, et al. Baicalin relieves neuropathic pain by regulating α2-adrenoceptor levels in rats following spinal nerve injury[J]. Exp Ther Med, 2020, 20(3): 2684-2690. |
10 | KANG S F,LIU S Z,LI H Z, et al. Baicalin effects on rats with spinal cord injury by anti‐inflammatory and regulating the serum metabolic disorder[J]. J Cell Biochem, 2018,119(9):7767-7779. |
11 | HE Y, GAO Y, ZHANG Q, et al. IL-4 switches microglia/macrophage M1/M2 polarization and alleviates neurological damage by modulating the JAKI/STAT6 pathway following ICH[J]. NEUROENCE, 2020, 437: 161-171. |
12 | MUNISWAMI D M, KANTHAKUMAR P, KANAKASABAPATHY I, et al. Motor recovery after transplantation of bone marrow mesenchymal stem cells in rat models of spinal cord injury[J]. Ann Neurosci, 2019, 25(3): 126-140. |
13 | FAN B Y, WEI Z J, YAO X, et al. Microenvironment imbalance of spinal cord injury[J]. Cell Transplant, 2018, 27(6): 853-866. |
14 | GAUDET A D, FONKEN L K. Glial cells shape pathology and repair after spinal cord injury[J]. Neurotherapeutics, 2018, 15(3): 554-577. |
15 | GENSEL J C, ZHANG B. Macrophage activation and its role in repair and pathology after spinal cord injury[J]. Brain Res, 2015, 1619: 1-11. |
16 | KWIECIEN J M, DABROWSKI W, DABROWSKA-BOUTA B, et al. Prolonged inflammation leads to ongoing damage after spinal cord injury[J]. PLoS One, 2020, 15(3): e0226584. |
17 | ZHANG Y, LIU Z J, ZHANG W X, et al. Melatonin improves functional recovery in female rats after acute spinal cord injury by modulating polarization of spinal microglial/macrophages[J].J Neurosci Res, 2019, 97(7): 733-743. |
18 | FAN H, TANG H B, SHAN L Q, et al. Quercetin prevents necroptosis of oligodendrocytes by inhibiting macrophages/microglia polarization to M1 phenotype after spinal cord injury in rats[J]. J Neuroinflammation, 2019, 16(1): 206. |
19 | SANCHEZ S, LEMMENS S, BAETEN P, et al. HDAC3 inhibition promotes alternative activation of macrophages but does not affect functional recovery after spinal cord injury[J]. Exp Neurobiol, 2018, 27(5): 437-452. |
20 | LIU X Y, WANG S L, ZHAO G A. Baicalin relieves lipopolysaccharide-evoked inflammatory injury through regulation of miR-21 in H9c2 cells[J]. Phytother Res, 2020, 34(5):1134-1141. |
21 | YU F Y, XU N, ZHOU Y, et al. Anti-inflammatory effect of paeoniflorin combined with baicalin in oral inflammatory diseases[J]. Oral Dis, 2019, 25(8): 1945-1953. |
22 | WU Y L, WANG F, FAN L H, et al. Baicalin alleviates atherosclerosis by relieving oxidative stress and inflammatory responses via inactivating the NF-κB and p38 MAPK signaling pathways[J]. Biomedecine Pharmacother, 2018, 97: 1673-1679. |
23 | REGIS G, PENSA S, BOSELLI D, et al. Ups and Downs: the STAT1:STAT3 seesaw of Interferon and gp130 receptor signalling[J]. Semin Cell Dev Biol, 2008, 19(4): 351-359. |
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