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1.
Chinese Herbal Medicines ; (4): 48-57, 2022.
Artigo em Chinês | WPRIM | ID: wpr-953607

RESUMO

Objective: Plant hormones act as chemical messengers in the regulation of plant development and metabolism. The production of ginsenosides in Panax hybrid is promoted by auxins that are transported and accumulated by PIN-FORMED (PIN) and PIN-LIKES (PILS) auxin transporters. However, genome-wide studies of PIN/PILS of ginseng are still scarce. In current study, identification and transcriptional profiling of PIN/PILS gene families, as well as their potential relationship with ginsenoside biosynthesis in Panax ginseng were investigated. Methods: PIN/PILS genes in P. ginseng was identified via in silico genome-wide analysis, followed by phylogenetic relationships, gene structure, and protein profiles investigation. Moreover, previously reported RNA-sequence data from various tissues and roots after infection were utilized for PIN/PILS genes expression pattern analysis. The Pearson's correlation analysis of specific PIN/PILS genes expression level and main ginsenoside contents were taken to reveal the potential relationship between auxin transports and ginsenoside biosynthesis in P. ginseng. Results: A genome-wide search of P. ginseng genome for homologous auxin transporter genes identified a total of 17 PIN and 11 PILS genes. Sequence alignment, putative motif organization, and sub-cellular localization indicated redundant and complementary biological functions of these PIN/PILS genes. Most PIN/PILS genes were differentially expressed in a tissue-specific manner, and showed significant correlations with ginsenoside content correspondingly. Eight auxin transporter genes, including both PIN and PILS subfamily members, were positively correlated with ginsenoside content (cor > 0.60; P-value <0.05). The expression levels of eleven auxin transporter genes were increased dramatically in the early stage (0–0.5 DPI) after Cylindrocarpon destructans infection, accompanied with various overall expression patterns, implying the dynamic auxin transport in response to biotic stress. Conclusion: Based on the results, we speculate that the accumulation or depletion in temporal or spatial manner of auxin by PIN/PILS transporters involved in the regulation of HMGR activity and subsequent ginsenoside biosynthesis.

2.
Chinese Journal of Rehabilitation Theory and Practice ; (12): 326-329, 2017.
Artigo em Chinês | WPRIM | ID: wpr-510036

RESUMO

Objective To investigate the effects of early core muscles and manual respiratory function training on stroke patients with dysphagia. Methods From June, 2015 to January, 2016, 60 stroke patients with dysphagia were divided equally into control group and obser-vation group randomly. Both groups accepted routine swallowing function training, electrical stimulation and respiratory function training, while the observation group accepted core muscles training and manual respiratory function training, for four weeks. They were evaluated with Standardized Swallowing Assessment (SSA), forced vital capacity (FVC), maximum ventilatory volume (MVV) and the maximum ex-piratory time before and after treatment. Results All the indices improved in both groups after treatment (P<0.001), and improved more in the observation group than in the control group (P<0.001). Conclusion Core muscles and manual respiratory function training at early stage can obviously improve swallowing and respiratory function of stroke patients with dysphagia.

3.
Chinese Journal of Information on Traditional Chinese Medicine ; (12): 68-72, 2017.
Artigo em Chinês | WPRIM | ID: wpr-614180

RESUMO

Objective To investigate the effects of moisture-proof materials and contents on hygroscopicity of Yixinshu Capsules; To improve moisture-proof function of Yixinshu Capsules. Methods The hygroscopicity performance of Yixinshu Capsules was analyzed with the indexes of moisture absorption rate and critical relative humidity (CRH), and effects of soluble starch, maize starch, dextrin, lactose, mannitol, calcium hydrogen phosphate, ethylcellulose, microcrystalline cellulose, hypromellose and low-substituted hydroxypropyl cellulose on hygroscopicity of Yixinshu Capsules were compared. The effects of optimized excipients and capsule contents after granulation on hygroscopicity of Yixinshu Capsules were tested. Results Lactose, microcrystalline cellulose and mannitol were the most appropriate moisture-proof excipients for Yixinshu Capsules with balanced moisture absorption rate of 18.04%, for which the best proportion of Yixinshu Capsules to excipients was 1 to 0.1 (wt%). The balanced moisture absorption rate of the powders were 14.87%, 14.39%, and 15.38%, respectively, whereas the granules were 10.75%, 10.29%, and 11.13%, respectively. Conclusion The selected excipients can effectively reduce the hygroscopic rate of the Yixinshu Capsules, and its granules can promote the moisture resistance of Yixinshu Capsules.

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