1.Study on HPLC fingerprint and multi-component determination of Ziziphus jujuba stir-fried with Coptis chinensis juice from Longsha Medical School
Ping QIN ; Yingying LU ; Wenming ZHANG ; Zifang FENG ; Lihong GU ; Chenjie XIA ; Minmin HU ; Xiaowei CHEN ; Tulin LU ; Yiting ZHANG ; Zhenhua BIAN
China Pharmacy 2026;37(15):1974-1978
OBJECTIVE To establish a high-performance liquid chromatography(HPLC) fingerprint and a multi-component content determination method for Ziziphus jujuba stir-fried with Coptis chinensis juice, a characteristic processed product of Longsha Medical School, and to provide a basis for the inheritance and clinical application of this distinctive variety. METHODS HPLC method was employed to establish the fingerprints of 12 batches of Z. jujuba stir-fried with C. chinensis juice. Similarity evaluation and common peak identification were subsequently carried out. Quantitative determination was performed on coclaurine, magnoflorine, coptisine hydrochloride, epiberberine, jatrorrhizine hydrochloride, spinosin, berberine hydrochloride, palmatine hydrochloride, 6"'-feruloylspinosin, and jujuboside A of samples. RESULTS The fingerprint similarities of all 12 batches of samples were higher than 0.960. A total of 17 common peaks were calibrated, among which 9 peaks were identified as coclaurine, magnoflorine, coptisine hydrochloride, epiberberine, jatrorrhizine hydrochloride, spinosin, berberine hydrochloride, palmatine hydrochloride, and 6"'-feruloylspinosin, respectively. The quantitative results showed that the mass fractions of coclaurine, magnoflorine, coptisine hydrochloride, epiberberine, jatrorrhizine hydrochloride, spinosin, berberine hydrochloride, palmatine hydrochloride, 6"'-feruloylspinosin, and jujuboside A in the 12 batches of samples were 0.044-0.091, 0.908-1.698, 0.325-0.549, 0.163-0.287, 0.103-0.172, 0.712-0.952, 1.185-1.843, 0.341-0.598, 0.228-0.405, and 0.050-0.091 mg/g, respectively. CONCLUSIONS The established HPLC fingerprint and multi-component determination method is stable and reliable, and can provide a basis for the quality standard formulation and clinical application of Z. jujuba stir-fried with C. chinensis juice.
2.Progress on standardized nutrition therapy for head and neck cancer during the peri-radiotherapeutic period
Ying GU ; Li ZOU ; Yiting HUANG ; Yuezhen FENG ; Ye TIAN ; Chen FANG
Chinese Journal of Radiation Oncology 2022;31(7):655-659
Malnutrition is a common complication of cancer patients, and solving nutrition problems is still one of the challenging tasks in clinical practice. The incidence of malnutrition in head and neck cancer patients during the peri-radiotherapeutic period is high, which is not only related to disease-mediated metabolic disorders, complications and psychological factors, but also associated with the toxic and side effects induced by radiotherapy. Malnutrition will reduce the tolerance, accuracy, and therapeutic effects of radiotherapy, which in turn lowers the quality of life and even adversely affects the prognosis of disease. Medical nutrition therapy can improve the nutritional status of the body, ensure smooth progress of radiotherapy, and improve the efficacy of comprehensive cancer treatment. It is necessary and urgent to deliver standardized nutrition therapy and management of head and neck cancer patients during the peri-radiotherapeutic period. Nutritional risk screening, nutritional assessment, and acute radiation injury assessment are required to develop an individualized nutrition treatment plan and make dynamic adjustment. In this article, relevant literature of nutrition therapy for head and neck radiotherapy at home and abroad was summarized, and the standardized nutrition therapy for head and neck cancer patients during the peri-radiotherapeutic period was reviewed.
3.Determination of 2, 4-dichlorophenoxyacetic acid in air of workplace by high-performance liquid chromatography.
Yanan WEN ; Zhaohui FU ; Jianning XU ; Shichuan TANG ; Quankai WANG ; Huanhuan LI ; Guangyun XIE ; Yuling ZHU ; Yiting GU ; Feng TAN
Chinese Journal of Industrial Hygiene and Occupational Diseases 2014;32(6):458-459
OBJECTIVETo develop a method for determination of 2, 4-dichlorophenoxyacetic acid (2, 4-D) in the air of workplace by high-performance liquid chromatography.
METHODS2, 4-D was collected by ultrafine glass filters, desorbed by methanol, separated by a C18 column, and detected by a UV detector. Identification and quantification of 2, 4-D were performed by retention time and peak areas, respectively.
RESULTSThe linear range of the test was 2∼200 µg/ml; the elution efficiency was 94.6%- 95.9%; the limit of detection (S/N = 3) was 0.034 µg/ml (injection volume of 20 µl eluant); the lower limit of quantification (S/N = 10) was 0.11 µg/ml; the minimum detectable concentration was 0.011 mg/m(3); the minimum quantifiable concentration was 0.037 mg/m(3) (with sampled air volume of 45 L).
CONCLUSIONThis method is convenient and simple in sample collection and preparation, and satisfies all methodological requirements. Therefore, this method is useful for the determination of 2, 4-D in the air of workplace.
2,4-Dichlorophenoxyacetic Acid ; analysis ; Air ; analysis ; Air Pollutants, Occupational ; analysis ; Chromatography, High Pressure Liquid ; methods ; Workplace

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