| Literature DB >> 24716802 |
Yin-Chu Si1, Qiang Li, Chun-E Xie, Xin Niu, Xiao-Hui Xia, Chang-Yuan Yu.
Abstract
Some Chinese herbs are anti-thrombolysis, and anti-inflammatory, improves brain RNA content, promotes brain protein synthesis, enhances dopamine function, regulates brain hormones, and improves microcirculation in central nervous system that might improve, repair and rehabilitation from the stroke and brain injury. Specific Chinese herbs and their components, such as Acanthopanax, Angelica, could maintain the survival of neural stem cells, and Rhodiola, Ganoderma spore Polygala, Tetramethylpyrazine, Gardenia, Astragaloside and Ginsenoside Rg1 promoted proliferation of neural stem cells, and Rhodiola, Astragaloside promoted differentiation of neural stem cell into neuron and glia in vivo. Astragalus, Safflower, Musk, Baicalin, Geniposide, Ginkgolide B, Cili polysaccharide, Salidroside, Astragaloside, Antler polypeptides, Ginsenoside Rg1, Panax notoginseng saponins promoted proliferation and differentiation of neural stem cells in vitro. Salvia, Astragalus, Ginsenoside Rg1, P. notoginseng saponins, Musk polypeptide, Muscone and Ginkgolide B promoted neural-directed differentiation of MSCs into nerve cells. These findings are encouraging further research into the Chinese herbs for developing drugs in treating patients of stroke and brain injury.Entities:
Year: 2014 PMID: 24716802 PMCID: PMC3991899 DOI: 10.1186/1749-8546-9-13
Source DB: PubMed Journal: Chin Med ISSN: 1749-8546 Impact factor: 5.455
The role of Chinese herbs and its active ingredients on proliferation and differentiation of neural stem cells
| Transient global cerebral ischemia in rats | Hippocampus, ependymal, subependymal region, ischemic area | Nestin positive cells↑ | | |
| The intrauterine hypoxia embryonic rats | Whole brain | Nestin positive cells↑ | | |
| Chronic stress rats | Hippocampus | BrdU positive cells↑ | BrdU/β-tubulin ↑. Neuronal directed differentiation | |
| Ganoderma spore
[ | Spinal cord injury in rats | Central canal ependymal zone | BrdU positive cells↑ | BrdU/NF; BrdU/GFAP; BrdU/Oligo↑ |
| Mouse AD model (D-galactose + sodium nitrite intraperitoneal injection) | SGZ | BrdU positive cells↑ | | |
| Tetramethylpyrazine
[ | Ischemia-reperfusion of cerebral ischemia in rats | SGZ | BrdU positive cells↑ | |
| Chronically stressed mice | SGZ | BrdU positive cells↑ | | |
| Transient forebrain ischemia in rats | CA1 of hippocampus, SGZ | BrdU positive cells↑ | BrdU/MAP-2; BrdU/GFAP; ↑ | |
| Ginsenoside Rg1
[ | MCAO rats | SVZ, SGZ, CA1 of hippocampus | Nestin, BrdU and nestin/BrdU positive cells↑ | |
| MCAO rats | SVZ, Hippocampus and cortex | Nestin positive cells↑ | Nestin/GFAP↑ | |
| Cortical devascularization rats | SVZ | Nestin positive cells↑ |
The role of Chinese herbs and its active ingredients on proliferation and differentiation of neural stem cells
| 14d cortical NSCs of embryonic rats | | NF and GFAP positive cells↑ | | |
| Musk
[ | 14d striatal NSCs of embryonic rats | | Electrotransfer rate of pEGFP-C1↑Glial-like cell directed differentiation | |
| Baicalin
[ | Cortical NSCs of embryonic rats | | β-tubulin and MAP-2 positive cells↑ ↑ | |
| Geniposide
[ | Cortical NSCs of embryonic rats | | β-tubulin positive cells↑ | |
| Baicalin + astragaloside,
[ | Cortical NSCs of embryonic rats | | Expression of Tau↑ (adults neurons) | |
| Ginkgolide B
[ | Hippocampal NSCs of Neonatal rat, E14 SVZ NSCs of embryonic rats | | NF cells (Has nothing to do with the concentration) ↑, GFAP cells (Positively correlated with the concentration) ↑ | |
| SVZ NSCs of adult rats | | MAP-2 cells↑ | | |
| SVZ NSCs of neonatal mice | | β-tubulin and GFAP cells↑ | | |
| Cili polysaccharide
[ | 14d embryonic rat striatal NSCs (glutamic acid damage) | | | Protection. Cell death rate↓; lactate dehydrogenase leakage rate↓ |
| Salidroside
[ | Hippocampal NSCs of neonatal rats | | NSE cells↑ | |
| Quercetin-3-O-celery glucoside (CTN-986)
[ | Hippocampal NSCs of neonatal rats | MTT↑ | | |
| 3H-TdR intake↑ | ||||
| | 14d cortical NSCs of embryonic rats | NSCs↑ | | The expression of Hes5 and Cyclin D1↑ |
| Antler polypeptides
[ | 14d cortical NSCs of embryonic rats | | NSE cells↑ | |
| Ginsenoside Rg1
[ | 14d cortical NSCs of embryonic rats | BrdU cells↑ | | The expression of Hes1 and Mash1↑ |
| TSPG
[ | Human embryonic NSCs | MTT↑ | Directed differentiation of DA neuron | |
| E17 cortical and hippocampal NSCs of neonatal rats | Nestin and PCNA cells↑ | Tuj1, NF, vimentin and GFAP cells↑ | The expression of BDNF and bFGF↑ |
The role of Chinese herbs and its active ingredients to promote bone marrow mesenchymal stem cells differentiate into nerve cells
| MSCs of mouse | Nestin cells↑ | β-tubulin cells↑ | | |
| MSCs of rat | Nestin cells↑ | NSE cells↑ | Expression of Ngn-1 and Mash-1↑ | |
| MSCs of human | Nestin cells↑ | NF cells↑ | | |
| MSCs of rat | | NSE cells↑ | Expression of Ngn-1 and Mash-1↑ | |
| Ginsenoside Rg1
[ | MSCs of rat | | NSE cells↑ | Expression of NGFmRNA↑ |
| MSCs of rat | | NSE cells↑ DA, GABA cells | | |
| Musk polypeptide, Muscone
[ | MSCs of rat | | T NSE and NF cells↑ | |
| Ginkgolide B
[ | MSCs of rat | NSE cells ↑ (Has nothing to do with the concentration). The number of GFAP cells GFAP↑ (Positively correlated with the concentration). |