1.Feasibility of University of Washington-Quality of Life questionnaire for follow up of laryngeal cancer in China.
Guojian WANG ; Wenyue JI ; Zimin PAN ; Xing GUO
Chinese Journal of Oncology 2002;24(1):53-56
OBJECTIVETo assess the feasibility of University of Washington Quality of Life (UW-QOL) questionnaire in laryngeal cancer patients treated by total or partial laryngectomy and their prognostic factors in China.
METHODSWith UW-QOL questionnaire, a survey was conducted in patients treated by partial (81, Group A) or total (37, Group B) laryngectomy for laryngeal cancer.
RESULTSThe composite QOL scores of group A (692.34 +/- 127.94) were higher than those of group B (636.35 +/- 139.97), with a difference statistically significant (P < 0.05). Group A (74.32 +/- 23.82; 80.86 +/- 20.26) was better than group B (40.27 +/- 25.76; 69.59 +/- 27.09) in speech and appearance (P < 0.001; P < 0.05); but group B (92.57 +/- 13.00) was superior to group A (83.02 +/- 20.47) in pain (P < 0.01). Six factors including stage, operative, modality, complication, postoperative radiotherapy or chemotherapy, with whom to live, chronic disease before or after operation were related to postlaryngectomy QOL.
CONCLUSIONPartial laryngectomy is superior to total laryngectomy in speech, appearance and overall QOL. UW-QOL questionnaire is suitable for QOL research in laryngeal cancer in China.
Aged ; Aged, 80 and over ; Feasibility Studies ; Female ; Follow-Up Studies ; Humans ; Laryngeal Neoplasms ; psychology ; surgery ; Laryngectomy ; Male ; Middle Aged ; Quality of Life ; Surveys and Questionnaires
2.Rapid Determination of Cryptotanshinone in Salvia miltiorrhiza by AOTF-NIDRS
Ting SU ; Wenyue JIANG ; Cheng XING ; Xuhua REN ; Xindong LI ; Xianli CUI ; Lu GAO
China Pharmacy 2018;29(8):1044-1048
OBJECTIVE:To establish rapid method for content determination of cryptotanshinone in Salvia miltiorrhiza. METHODS:The content of cryptotanshinone in sample was determined by HPLC(as reference value). AOTF-NIDRS combined with PLS was used to establish quantitative correction model for the content of cryptotanshinone in S. miltiorrhiza. According to the results of content determination of cryptotanshinone in samples,35 samples of medicinal material were collected. First-order derivative combined with smoothing filter coefficient method was used to pretreat spectrum,and optimal band range for content determination of cryptotanshinone in sample ranged 1 250-2 150 nm. RESULTS:Methodology validation of content determination of cryptotanshinone in sample was in line with the requirements. Correction mean square deviation of quantitative correction model of cryptotanshinone was 0.014 6,and predicted mean square deviation was 0.022 3,coefficient of association was 0.976 6. The internal verification deviation was 2.41% and the external verification deviation was 4.06%. CONCLUSIONS:This method is rapid,accurate,simple and pollution-free.It can be used for rapid content determination of cryptotanshinone in S.miltiorrhiza.
3.Study on Chemical Constituents of Petroleum Ether Part from Whole Herbs of Pteris vittata
Yuanxin HOU ; Shufen HOU ; Rongmin GAO ; Jiayi CHEN ; Wenyue XING ; Xing TU
China Pharmacy 2019;30(6):817-820
OBJECTIVE: To study the chemical constituents from the petroleum ether part from whole herbs of Pteris vittata. METHODS: The petroleum ether part from whole herbs of P. vittata was separated and isolated by silica gel column, gel column, recrystallization and TLC. The structures of the compounds were identified according to physicochemical properties and spectrum data (1H-NMR and 13C-NMR). RESULTS: A total of 11 compounds were isolated and identified from the petroleum ether part from whole herbs of P. vittata, as (2R)-acetyl pterosin B (Ⅰ), palmitic acid (Ⅱ), hop-22(29)-ene (Ⅲ), epifriedelanol (Ⅳ), lupenone (Ⅴ), olean-18-en-3-one (Ⅵ), stigmasterol (Ⅶ), β-sitosterol (Ⅷ), 22-hydroxyhopane (Ⅸ), ergosterol (Ⅹ), β-sitosterol acetate (Ⅺ). CONCLUSIONS: Compounds Ⅰ-Ⅶ and Ⅸ-Ⅺ are isolated from this plant for the first time, and can provide theoretic reference for further studying bioactive pharmacodynamic substances in P. vittata and enriching chemical component data.