1.Curcumin extraction and preparation and optimization of curcumin nanoparticles
Yuhang WANG ; Han ZHANG ; Chaojing ZHANG ; Xurong KOU ; Tongtong JING ; Rimei LIN ; Xinyu LIU ; Shilei LOU ; Hui YAN ; Cong SUN
Chinese Journal of Tissue Engineering Research 2026;30(2):362-374
BACKGROUND:Curcumin is the main active ingredient of turmeric and has significant medicinal value in anti-tumor,anti-inflammatory,antioxidant and other aspects.However,its poor water solubility,unstable chemical properties and easy decomposition lead to difficulty in extracting curcumin and low extraction yield.Therefore,it is particularly important to optimize the curcumin extraction method.OBJECTIVE:To enhance the extraction yield and utilization value of curcumin and optimize the curcumin extraction process and curcumin nanoparticle preparation process.METHODS:Curcumin was extracted from turmeric by ethanol extraction,ultrasonic extraction,ionic liquid extraction,enzyme extraction,and ionic liquid combined with ultrasonic assisted enzyme extraction.The curcumin extraction yield was detected by high performance liquid chromatography;the best extraction method was determined,and subsequent process optimization experiments were carried out.The curcumin extraction yield was the response value with the type of ionic liquid,reaction temperature,ultrasonic time,liquid-to-solid ratio,ionic liquid concentration,and enzyme-drug mass ratio as parameters.The optimal production process of ionic liquid combined with ultrasonic assisted enzyme extraction was determined by single factor combined response surface experiment.The optimal process for preparing curcumin nanoparticles by ionic crosslinking method was determined by single factor combined response surface experiment with acetic acid concentration,chitosan to sodium tripolyphosphate mass ratio,stirring rate,curcumin mass concentration,sodium tripolyphosphate mass concentration,and chitosan mass concentration as parameters,and drug encapsulation efficiency as response value.Curcumin nanoparticles were prepared under the optimal process,and the particle size,polydispersity index,Zata potential value,drug loading,stability,hemolysis rate,and antioxidant capacity in vivo and in vitro of the nanoparticles were detected.RESULTS AND CONCLUSION:(1)Among the five extraction methods,the curcumin yield of ionic liquid combined with ultrasound-assisted enzyme extraction was the highest,and this method was selected as the curcumin extraction method for subsequent experiments.The results of single factor combined response surface experiment showed that the optimal process for curcumin extraction was:ionic liquid selected 1-hexyl-3-methylimidazolium chloride,reaction temperature 55 ℃,liquid-to-solid ratio 40 mL/g,ultrasound time 57 minutes,ionic liquid concentration 57%,enzyme-drug mass ratio 3.5:10,and the obtained turmeric extraction yield was 3.10%.The optimal preparation process of curcumin nanoparticles was:glacial acetic acid concentration 0.5%,chitosan and sodium tripolyphosphate mass ratio 5.0:1,stirring speed 150 r/min,curcumin mass concentration 2.23 mg/mL,sodium tripolyphosphate mass concentration 1.45 mg/mL,chitosan mass concentration 3.63 mg/mL,and the obtained drug encapsulation efficiency was 90.61%.(2)The drug loading of curcumin nanoparticles was(14.49±0.23)%,the average particle size was(76.95±1.65)nm,the polydispersity coefficient was 0.15±0.02,and the Zata potential value was(32.37±1.46)mV.The curcumin nanoparticles had good stability and blood compatibility,did not induce hemolysis,and had stronger antioxidant capacity in vivo and in vitro than free curcumin.(3)The results show that the process optimization not only solves the problems of low extraction yield,poor solubility,and low bioavailability of curcumin,but also enhances its antioxidant activity in vivo and in vitro.
2.Herbal Textual Research on Inulae Flos in Famous Classical Formulas
Caixia LIU ; Yue HAN ; Yanzhu MA ; Lei GAO ; Sheng WANG ; Yan YANG ; Wenchuan LUO ; Ling JIN ; Jing SHAO ; Zhijia CUI ; Zhilai ZHAN
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(3):210-221
In this paper, by referring to ancient and modern literature, the textual research of Inulae Flos has been conducted to clarify the name, origin, production area, quality evaluation, harvesting, processing and others, so as to provide reference and basis for the development and utilization of famous classical formulas containing this herb. After textual research, it could be verified that the medicinal use of Inulae Flos was first recorded in Shennong Bencaojing of the Han dynasty. In successive dynasties, Xuanfuhua has been taken as the official name, and it also has other alternative names such as Jinfeicao, Daogeng and Jinqianhua. The period before the Song and Yuan dynasties, the main origin of Inulae Flos was the Asteraceae plant Inula japonica, and from the Ming and Qing dynasties to the present, I. japonica and I. britannica are the primary source. In addition to the dominant basal species, there are also regional species such as I. linariifolia, I. helianthus-aquatili, and I. hupehensis. The earliest recorded production areas in ancient times were Henan, Hubei and other places, and the literature records that it has been distributed throughout the country since modern times. The medicinal part is its flower, the harvesting and processing method recorded in the past dynasties is mainly harvested in the fifth and ninth lunar months, and dried in the sun, and the modern harvesting is mostly harvested in summer and autumn when the flowers bloom, in order to remove impurities, dry in the shade or dry in the sun. In addition, the roots, whole herbs and aerial parts are used as medicinal materials. In ancient times, there were no records about the quality of Inulae Flos, and in modern times, it is generally believed that the quality of complete flower structure, small receptacles, large blooms, yellow petals, long filaments, many fluffs, no fragments, and no branches is better. Ancient processing methods primarily involved cleaning, steaming, and sun-drying, supplemented by techniques such as boiling, roasting, burning, simmering, stir-frying, and honey-processing. Modern processing focuses mainly on cleaning the stems and leaves before use. Regarding the medicinal properties, ancient texts describe it as salty and sweet in taste, slightly warm in nature, and mildly toxic. Modern studies characterize it as bitter, pungent, and salty in taste, with a slightly warm nature. Its therapeutic effects remain consistent across eras, including descending Qi, resolving phlegm, promoting diuresis, and stopping vomiting. Based on the research results, it is recommended that when developing famous classical formulas containing Inulae Flos, either I. japonica or I. britannica should be used as the medicinal source. Processing methods should follow formula requirements, where no processing instructions are specified, the raw products may be used after cleaning.
3.Herbal Textual Research on Inulae Flos in Famous Classical Formulas
Caixia LIU ; Yue HAN ; Yanzhu MA ; Lei GAO ; Sheng WANG ; Yan YANG ; Wenchuan LUO ; Ling JIN ; Jing SHAO ; Zhijia CUI ; Zhilai ZHAN
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(3):210-221
In this paper, by referring to ancient and modern literature, the textual research of Inulae Flos has been conducted to clarify the name, origin, production area, quality evaluation, harvesting, processing and others, so as to provide reference and basis for the development and utilization of famous classical formulas containing this herb. After textual research, it could be verified that the medicinal use of Inulae Flos was first recorded in Shennong Bencaojing of the Han dynasty. In successive dynasties, Xuanfuhua has been taken as the official name, and it also has other alternative names such as Jinfeicao, Daogeng and Jinqianhua. The period before the Song and Yuan dynasties, the main origin of Inulae Flos was the Asteraceae plant Inula japonica, and from the Ming and Qing dynasties to the present, I. japonica and I. britannica are the primary source. In addition to the dominant basal species, there are also regional species such as I. linariifolia, I. helianthus-aquatili, and I. hupehensis. The earliest recorded production areas in ancient times were Henan, Hubei and other places, and the literature records that it has been distributed throughout the country since modern times. The medicinal part is its flower, the harvesting and processing method recorded in the past dynasties is mainly harvested in the fifth and ninth lunar months, and dried in the sun, and the modern harvesting is mostly harvested in summer and autumn when the flowers bloom, in order to remove impurities, dry in the shade or dry in the sun. In addition, the roots, whole herbs and aerial parts are used as medicinal materials. In ancient times, there were no records about the quality of Inulae Flos, and in modern times, it is generally believed that the quality of complete flower structure, small receptacles, large blooms, yellow petals, long filaments, many fluffs, no fragments, and no branches is better. Ancient processing methods primarily involved cleaning, steaming, and sun-drying, supplemented by techniques such as boiling, roasting, burning, simmering, stir-frying, and honey-processing. Modern processing focuses mainly on cleaning the stems and leaves before use. Regarding the medicinal properties, ancient texts describe it as salty and sweet in taste, slightly warm in nature, and mildly toxic. Modern studies characterize it as bitter, pungent, and salty in taste, with a slightly warm nature. Its therapeutic effects remain consistent across eras, including descending Qi, resolving phlegm, promoting diuresis, and stopping vomiting. Based on the research results, it is recommended that when developing famous classical formulas containing Inulae Flos, either I. japonica or I. britannica should be used as the medicinal source. Processing methods should follow formula requirements, where no processing instructions are specified, the raw products may be used after cleaning.
4.Exploring the pathogenesis and treatment methods of irritable bowel syndrome from the
Yan XU ; Fang YANG ; Rongshi SHAO ; Huili SUN ; Juan LI ; Xin CHEN ; Jing HAN
Journal of Beijing University of Traditional Chinese Medicine 2026;49(1):10-15
This article adopts Professor CHEN Chaozu′s " sanjiao composed by membrane-striae" theory as its foundation to explore the relationship between irritable bowel syndrome and functional/structural abnormalities of the membrane-striae. Sanjiao encompasses both the tangible membrane and the intangible striae. These striae permeate the entire body,and their pathological changes comprehensively reflect qi,body fluids,and fasciae. Based on the physiological function of the membrane-striae in regulating qi and fluids,the pathogenesis of irritable bowel syndrome is characterized by a disharmony of membrane-striae and an imbalance of the qi-fluid interactions. In the early stage,external pathogens,emotional factors,or dietary stimuli often cause membrane-striae constriction and disordered qi-fluid circulation. In the middle stage,stagnant fluids gradually transform into phlegm retention,leading to membrane-striae obstruction. In the late stage,deficiency of vital qi becomes predominant,manifesting as laxity of membrane-striae with impaired control or weakened conduction. The treatment of irritable bowel syndrome should adopt " unblocking" as the guiding principle. In the early stage,therapy should focus on eliminating pathogenic factors and soothing membrane-striae to promptly restore qi-fluid circulation,thereby attaining unblocking through spasm relief. In the middle stage,treatment should focus on resolving tangible obstructions in membrane-striae,achieving unblocking via dredging. In the late stage,the emphasis should shift to reinforcing healthy qi,particularly by strengthening spleen-kidney yang qi,and achieving unblocking through supplementation. Concurrently,throughout the entire treatment process,the regulation of mental state and easing of emotional tension should be integrated to alleviate patient′s anxiety,achieving the goal of holistic treatment of both body and mind.
5.Curcumin extraction and preparation and optimization of curcumin nanoparticles
Yuhang WANG ; Han ZHANG ; Chaojing ZHANG ; Xurong KOU ; Tongtong JING ; Rimei LIN ; Xinyu LIU ; Shilei LOU ; Hui YAN ; Cong SUN
Chinese Journal of Tissue Engineering Research 2026;30(2):362-374
BACKGROUND:Curcumin is the main active ingredient of turmeric and has significant medicinal value in anti-tumor,anti-inflammatory,antioxidant and other aspects.However,its poor water solubility,unstable chemical properties and easy decomposition lead to difficulty in extracting curcumin and low extraction yield.Therefore,it is particularly important to optimize the curcumin extraction method.OBJECTIVE:To enhance the extraction yield and utilization value of curcumin and optimize the curcumin extraction process and curcumin nanoparticle preparation process.METHODS:Curcumin was extracted from turmeric by ethanol extraction,ultrasonic extraction,ionic liquid extraction,enzyme extraction,and ionic liquid combined with ultrasonic assisted enzyme extraction.The curcumin extraction yield was detected by high performance liquid chromatography;the best extraction method was determined,and subsequent process optimization experiments were carried out.The curcumin extraction yield was the response value with the type of ionic liquid,reaction temperature,ultrasonic time,liquid-to-solid ratio,ionic liquid concentration,and enzyme-drug mass ratio as parameters.The optimal production process of ionic liquid combined with ultrasonic assisted enzyme extraction was determined by single factor combined response surface experiment.The optimal process for preparing curcumin nanoparticles by ionic crosslinking method was determined by single factor combined response surface experiment with acetic acid concentration,chitosan to sodium tripolyphosphate mass ratio,stirring rate,curcumin mass concentration,sodium tripolyphosphate mass concentration,and chitosan mass concentration as parameters,and drug encapsulation efficiency as response value.Curcumin nanoparticles were prepared under the optimal process,and the particle size,polydispersity index,Zata potential value,drug loading,stability,hemolysis rate,and antioxidant capacity in vivo and in vitro of the nanoparticles were detected.RESULTS AND CONCLUSION:(1)Among the five extraction methods,the curcumin yield of ionic liquid combined with ultrasound-assisted enzyme extraction was the highest,and this method was selected as the curcumin extraction method for subsequent experiments.The results of single factor combined response surface experiment showed that the optimal process for curcumin extraction was:ionic liquid selected 1-hexyl-3-methylimidazolium chloride,reaction temperature 55 ℃,liquid-to-solid ratio 40 mL/g,ultrasound time 57 minutes,ionic liquid concentration 57%,enzyme-drug mass ratio 3.5:10,and the obtained turmeric extraction yield was 3.10%.The optimal preparation process of curcumin nanoparticles was:glacial acetic acid concentration 0.5%,chitosan and sodium tripolyphosphate mass ratio 5.0:1,stirring speed 150 r/min,curcumin mass concentration 2.23 mg/mL,sodium tripolyphosphate mass concentration 1.45 mg/mL,chitosan mass concentration 3.63 mg/mL,and the obtained drug encapsulation efficiency was 90.61%.(2)The drug loading of curcumin nanoparticles was(14.49±0.23)%,the average particle size was(76.95±1.65)nm,the polydispersity coefficient was 0.15±0.02,and the Zata potential value was(32.37±1.46)mV.The curcumin nanoparticles had good stability and blood compatibility,did not induce hemolysis,and had stronger antioxidant capacity in vivo and in vitro than free curcumin.(3)The results show that the process optimization not only solves the problems of low extraction yield,poor solubility,and low bioavailability of curcumin,but also enhances its antioxidant activity in vivo and in vitro.
6.Detection and genetic evolution analysis of pathogens borne by Pulex irritans in selected areas of Xinjiang
Xinxin HAN ; Jing ZHAO ; Xuefeng LIU ; Yitao LI ; Tingting WU ; Junang DAI ; Mengyang YAN ; Zhihua SUN ; Hui ZHANG
Chinese Journal of Zoonoses 2025;41(8):852-858
This study identified the types and pathogen carrying status of fleas on the surface of sheep in some areas of southern Xinjiang,and analyzed the genetic evolution differences with respect to related pathogens.The aim was to provide a reference for the local prevention and control of fleas and insect borne infectious diseases.A total of 1 586 fleas were collected from agricultural and pas-toral areas of Tumushuke City and Hotan Prefecture.Flea species were identified on the basis of morphology and the Pulex irritans mi-tochondrial COII gene.Flea DNA was extracted,and PCR was conducted to amplify the Bartonella gltA gene;Arsenophonus,Ana-plasma,Ehrlichia,and Wolbachia 16S rRNA genes;RickettsiaOmpA,17kDa,16S rRNA genes,and Yersinia pestis 16S rDNA gene.The amplified products were sequenced,and the homology of the genes of the three detected pathogens(gltA gene of Bartonella,16S rRNA gene of Wolbachia,and Anaplasma phagocytophilum)with respect to known corresponding genes of the same pathogen in Gen-Bank was analyzed.Phylogenetic trees were constructed with the adjacency method in MEGA 11.0.According to morphological and mo-lecular biology identification results,all fleas collected in this study were Pulex irritans.PCR indicated that the target gene fragments had been added to the mitochondrial COII,BartonellagltA,Wolbachia,and autophagosomal 16S rRNA genes of human fleas,all of which were consistent with the expected fragment sizes.Target bands were not amplified from Ehrlichia,Arsenophonus,spotted fever group Rickettsia,and Yersinia pestis.According to homology and genetic evolution analysis of human flea mitochondrial COII and the corresponding genes of the above-described pathogens,the COX2 gene(ON455234.1)of human fleas in Tumushuke city and Iran ob-tained in this study showed the highest homology(99.84%).The COII gene(NC_063709.1)of human fleas in Hetan City and Hunan region showed the highest homology(100%).Our findings further confirmed that the flea species was Pulex irritans.The PCR amplifi-cation results indicated that the collected Pulex irritans carried multiple pathogens,among which Bartonella and Wolbachia had the highest infection rates,and the infection rate with Anaplasma phagocytophilum was relatively low.This study is the first to discover flea species on the surface of sheep in some areas of southern Xinjiang.Our findings preliminarily confirmed that Bartonella,Wolba-chia,and Anaplasma phagocytophilum are the main Pulex irritans pathogens.
7.Analysis for the mortality trend of head and neck cancer in Inner Mongolia Autonomous Region from 2010 to 2020
Yiwei WU ; Jing HAN ; Xue YAN ; Wenrui WANG
Practical Oncology Journal 2025;39(2):86-90
Objective The objective of this study was to analyze the mortality and changing trend of head and neck cancer(nasopharyngeal cancer,laryngeal cancer,thyroid cancer,and oral cancer)in cancer registry areas of Inner Mongolia Autonomous Re-gion from 2010 to 2020,and to provide a scientific basis for the prevention and control of head and neck cancer in Inner Mongolia Au-tonomous Region.Methods The mortality data for head and neck cancers(nasopharyngeal cancer,laryngeal cancer,thyroid cancer,and oral cancers)in the tumor registration database of Inner Mongolia Autonomous Region from 2010 to 2020 were sorted out,and the China standard mortality of head and neck were calculated by gender,urban and rural areas,and cancer types.The average annual per-centage change(AAPC)was analyzed using Joinpoint 4.9.1.0 software to assess the trend of China standard mortality of head and neck cancers and cancer types.Results The China standard mortality of head and neck cancers in cancer registry areas of Inner Mongolia was 2.85/100,000.The China standard mortality of males(4.24/100,000)was higher than that of females(1.53/100,000),and the China standard mortality in rural areas(2.93/100,000)was higher than that in urban areas(2.79/100,000).The China standard mortality of oral cancer was the highest at 1.16/100,000,and the China standard mortality of nasopharyngeal cancer was the lowest at 0.42/100,000.From 2010 to 2020,the mortality of head and neck cancers increased by an average annual rate of 3.79%(95%CI:1.45%-6.17%),and the trend was statistically significant(P=0.005).The mortality of male head and neck canc-er increased by an annual rate of 7.27%(95%CI:3.05%-11.65%),and the trend was statistically significant(P=0.003).The mortality of females decreased by an average annual rate of 1.08%(95%CI:-4.51%-2.47%),and the trend was not statistically significant(P=0.500).The mortality of oral cancer showed an upward trend with an AAPC of 7.35%(P=0.040),and the mortality of laryngeal cancer,thyroid cancer and nasopharyngeal cancer showed no statistically significant trend(AAPC was3.36%,1.38%and-0.36%,respectively,P>0.05).Conclusion The mortality of head and neck cancer in cancer registry areas of Inner Mongolia Au-tonomous Region showed an upward trend from 2010 to 2020.The prevention and treatment of head and neck cancer should be paid to attention,with rural areas and male groups as the key prevention and control targets.The control measures should be strengthened for high-risk behaviors such as occupational exposure and alcohol consumption,oral cancer prevention and control should be focused on,and HPV vaccination and tobacco control policies should be strengthened.
8.Analysis for the mortality trend of head and neck cancer in Inner Mongolia Autonomous Region from 2010 to 2020
Yiwei WU ; Jing HAN ; Xue YAN ; Wenrui WANG
Practical Oncology Journal 2025;39(2):86-90
Objective The objective of this study was to analyze the mortality and changing trend of head and neck cancer(nasopharyngeal cancer,laryngeal cancer,thyroid cancer,and oral cancer)in cancer registry areas of Inner Mongolia Autonomous Re-gion from 2010 to 2020,and to provide a scientific basis for the prevention and control of head and neck cancer in Inner Mongolia Au-tonomous Region.Methods The mortality data for head and neck cancers(nasopharyngeal cancer,laryngeal cancer,thyroid cancer,and oral cancers)in the tumor registration database of Inner Mongolia Autonomous Region from 2010 to 2020 were sorted out,and the China standard mortality of head and neck were calculated by gender,urban and rural areas,and cancer types.The average annual per-centage change(AAPC)was analyzed using Joinpoint 4.9.1.0 software to assess the trend of China standard mortality of head and neck cancers and cancer types.Results The China standard mortality of head and neck cancers in cancer registry areas of Inner Mongolia was 2.85/100,000.The China standard mortality of males(4.24/100,000)was higher than that of females(1.53/100,000),and the China standard mortality in rural areas(2.93/100,000)was higher than that in urban areas(2.79/100,000).The China standard mortality of oral cancer was the highest at 1.16/100,000,and the China standard mortality of nasopharyngeal cancer was the lowest at 0.42/100,000.From 2010 to 2020,the mortality of head and neck cancers increased by an average annual rate of 3.79%(95%CI:1.45%-6.17%),and the trend was statistically significant(P=0.005).The mortality of male head and neck canc-er increased by an annual rate of 7.27%(95%CI:3.05%-11.65%),and the trend was statistically significant(P=0.003).The mortality of females decreased by an average annual rate of 1.08%(95%CI:-4.51%-2.47%),and the trend was not statistically significant(P=0.500).The mortality of oral cancer showed an upward trend with an AAPC of 7.35%(P=0.040),and the mortality of laryngeal cancer,thyroid cancer and nasopharyngeal cancer showed no statistically significant trend(AAPC was3.36%,1.38%and-0.36%,respectively,P>0.05).Conclusion The mortality of head and neck cancer in cancer registry areas of Inner Mongolia Au-tonomous Region showed an upward trend from 2010 to 2020.The prevention and treatment of head and neck cancer should be paid to attention,with rural areas and male groups as the key prevention and control targets.The control measures should be strengthened for high-risk behaviors such as occupational exposure and alcohol consumption,oral cancer prevention and control should be focused on,and HPV vaccination and tobacco control policies should be strengthened.
9.Comparison of chemical constituents in traditional decoction and formula granule decoction of Wendan Decoction
Tan XUE ; Man-wen XU ; Xue-hua FAN ; Feng-yu DONG ; Yan MIAO ; Jia-ning SUN ; Jun-han SHI ; Lu ZHANG ; Jing YAO ; Rui-xin LIU
Chinese Traditional Patent Medicine 2025;47(2):384-394
AIM To compare the chemical constituents in traditional decoction and formula granule decoction of classical famous prescription Wendan Decoction.METHODS The HPLC fingerprints were established,after which the contents of adenosine,synephrine,liquiritin,naringin,hesperidin,6-gingerol and adenosine cyclophosphate were determined,cluster analysis,principal component analysis and multidimensional scaling analysis were adopted in the investigation of component differences,and the equivalent of formula granules was adjusted.RESULTS The similarities of HPLC fingerprints for 10 batches of traditional decoctions were higher than those of HPLC fingerprints for 9 batches of formula granule decoctions(P<0.01).Adenosine,synephrine,liquiritin,hesperidin and cyclic adenosine monophosphate demonstrated higher contents in traditional decoctions than those in formula granule decoctions(P<0.05),6-gingerol displayed lower content than that in the latter produced by manufacturers A,C(P<0.05),which was higher than that in the latter produced by manufacturer B(P<0.01).Various batches of traditional decoctions and formula granule decoctions could be obviously distinguished,adenosine,synephrine and hesperidin exhibited great influences on the classification of principal component analysis,and the quality of formula granule decoctions produced by manufacturer C was closer to that of traditional decoctions.After equivalent correction,the contents of various constituents in formula granule decoctions produced by manufacturers A,C showed no significant differences as compared with those in traditional decoction(P>0.05).CONCLUSION The formula granules of Wendan Decoction from different manufacturers exist quality differences,so the preparation process and extraction process of this preparation should be optimized to improve quality,and equivalent ratio should be adjusted according to actual requirements to ensure its scientific and rational clinical application.
10.Clinical value of transcranial color-coded duplex sonography in elderly patients with acute ischemic stroke after endovascular therapy
Jing TANG ; Juan HAN ; Chenghui LIU ; Bogang YAN ; Qin AO
Chinese Journal of Geriatric Heart Brain and Vessel Diseases 2025;27(3):337-342
Objective To investigate the intracranial hemodynamic parameters with transcranial color-coded duplex sonography(TCCS)in elderly patients with acute ischemic stroke(AIS)after endovascular therapy,and analyze their association with functional outcomes.Methods A total of 360 elderly AIS patients undergoing endovascular therapy in our hospital from March 1,2020 to January 31,2024 were prospectively included,and according to the score of modified Rankin scale(mRS)at 90 d,they were divided into a poor function group(mRS score 3-6,145 cases)and good function group(mRS score≤2,215 cases).TCCS was conducted on all the patients in 12 h after endovascular therapy to evaluate intracranial blood flow status.Peak systolic velocity(PSV),end-diastolic velocity(EDV),mean blood flow velocity(MFV),pulsatility index(PI),MFV ratio and PSV ratio,adjusted PSV ratio and adjusted MFV ratio were recorded in all pa-tients.Receiver operator characteristic(ROC)curve analysis was employed to analyze the value of TCCS parameters in predicting poor functional outcomes,and the AUC values and cut-off values were also analyzed.Results The PSV ratio,MFV ratio,adjusted PSV ratio and adjusted MFV ra-tio were significantly higher in the poor function group than the good function group(P<0.01).The predictive performance of PSV ratio and MFV ratio were not good enough for poor functional outcome in the AIS patients(AUC<0.750),while the adjusted PSV ratio and adjusted MFV ratio showed better predictive performance(P<0.01).Multivariate logistic regression analysis showed that NIHSS score at admission ≥14.00,ASPECT score at admission≥8.00,adjusted PSV ratio>1.39 and adjusted MFV ratio>1.40 were independent risk factors for poor functional outcomes in AIS patients(P<0.01).ROC curve analysis indicated that combined NIHSS score at admission+ASPECT score at admission showed poor value in predicting poor functional outcome in the AIS(AUC=0.780,95%CI:0.734-0.822),the predictive performance of combination of above two scores+adjusted PSV ratio+adjusted MFV ratio was significantly improved(AUC=0.976,95%CI:0.955-0.989),with higher sensitivity and specificity(Z=8.261,P<0.01).Conclusion Early TCCS detection in elderly AIS patients after endovascular treatment is an effective method for identifying poor functional outcomes at 90 d,with the advantages of non invasiveness and easy op-eration.And,better predictive performance is obtained when adjusted PSV ratio and adjusted MFV ratio are combined with conventional predictors.


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