1.Analysis and Prospects of the Rapid Antidepressant Mechanism of Nasal Administration Based on the Theory of Opening Orifices with Aromatic Medicinals
You LI ; Haiyu ZHANG ; Xiaowen ZHANG ; Xunjia ZHANG ; Aoxuan ZHANG ; Hao ZHANG
Journal of Traditional Chinese Medicine 2026;67(18):2020-2026
Addressing the current clinical problems of conventional antidepressants, such as delayed onset of action and prominent adverse reactions, this paper explores the theoretical basis, mechanism of action, and application prospects of nasal administration as a novel rapid antidepressant strategy. By clarifying the conceptual connotation of rapid antidepressants, elucidating their clinical demands and application advantages, and explaining the physiological basis of nasal-to-brain delivery, it is proposed that the olfactory and trigeminal nerve pathways can bypass the blood-brain barrier to achieve rapid targeted delivery of drugs to brain tissue. On this basis, combined with the theory of opening orifices with aromatic medicinals in traditional Chinese medicine (TCM) as well as related research in modern aromatherapy, the ancient and modern clinical evidence of nasal administration in regulating emotions was systematically reviewed. Furthermore, this article discusses the application advantages of nasal administration in special populations such as the elderly, children, and pregnant women, and analyzes the practical bottlenecks such as mucosal clearance, limited formulation volume, and safety evaluation. Nasal administration is expected to become an important supplementary means for rapid antidepressants, and the integrated model of "TCM aromatic medicinals plus nanopreparations plus nasal administration" can provide new ideas for research on the integration of TCM and western medicine in treating depression.
2.Analysis of nasal soft tissue deformation and optimization of mechanical stretch therapy for nasal contracture deformity based on three-dimensional finite element model
Yiming WANG ; Yang AN ; Lian LIU ; Chong ZHANG ; Aoxuan ZHU ; Wei LIANG ; Meng HAN ; Guanhuier WANG ; Yonghuan ZHEN
Chinese Journal of Plastic Surgery 2024;40(8):819-828
Objective:To establish a three-dimensional finite element model of the nose, simulate and analyze the deformation of nasal tissue caused by different focal points, traction directions, and modes, provide the theoretical basis for the effectiveness of physical traction therapy, and guide the clinical selection of more efficient physical traction therapy methods.Methods:A finite element model of the nose was established by ANSYS Workbench 19.2 software based on image data obtained from CT scans of a 29-year-old male volunteer with normal nasal appearance in Peking University Third Hospital. Two focal points, the nasal tip, and the nasal columella, were selected, and three force directions, parallel to the forward, forward and down 30°, forward and down 60°, were applied. The deformation caused by different traction conditions on the skin, lining, and soft bone parts, as well as the four anatomical landmarks of the nasal tip, nasal root, the midpoint of the nasal columella, and the nasal base, were compared. The deformation produced by 10 minutes of continuous pulling and 10 times 1-minute pulse pulling were compared under the same pulling conditions. The deformations generated by two types of pulling modes within a 24-hour cycle: a single 1-hour cycle and 6 intermittent 10-minute cycles, were compared.Results:All traction conditions resulted in deformation of the nasal model, with the maximum deformation of the nasal tissue obtained by pulling forward and downward at 60° (4.632 9 mm) which was greater than other traction conditions (0.825 0-3.105 0 mm). The maximum deformation value was located near the nasion of the model’s skin layer. The deformation obtained by 10 minutes of continuous pulling (0.176 6 mm) was slightly greater than that obtained by 10 times of 1-minute pulse pulling (0.176 5 mm). Within 24 hours, the final deformation of multiple intermittent pulling modes (0.019 0 mm) was greater than that of a single pulling mode (0.004 3 mm).Conclusion:Physical traction can effectively deform the skin and soft tissue of the nose, and the most efficient operation is to continuously pinch the tip of the nose for a short period and apply tension parallel to the back of the nose downwards, repeating every a few hours.
3.Analysis of nasal soft tissue deformation and optimization of mechanical stretch therapy for nasal contracture deformity based on three-dimensional finite element model
Yiming WANG ; Yang AN ; Lian LIU ; Chong ZHANG ; Aoxuan ZHU ; Wei LIANG ; Meng HAN ; Guanhuier WANG ; Yonghuan ZHEN
Chinese Journal of Plastic Surgery 2024;40(8):819-828
Objective:To establish a three-dimensional finite element model of the nose, simulate and analyze the deformation of nasal tissue caused by different focal points, traction directions, and modes, provide the theoretical basis for the effectiveness of physical traction therapy, and guide the clinical selection of more efficient physical traction therapy methods.Methods:A finite element model of the nose was established by ANSYS Workbench 19.2 software based on image data obtained from CT scans of a 29-year-old male volunteer with normal nasal appearance in Peking University Third Hospital. Two focal points, the nasal tip, and the nasal columella, were selected, and three force directions, parallel to the forward, forward and down 30°, forward and down 60°, were applied. The deformation caused by different traction conditions on the skin, lining, and soft bone parts, as well as the four anatomical landmarks of the nasal tip, nasal root, the midpoint of the nasal columella, and the nasal base, were compared. The deformation produced by 10 minutes of continuous pulling and 10 times 1-minute pulse pulling were compared under the same pulling conditions. The deformations generated by two types of pulling modes within a 24-hour cycle: a single 1-hour cycle and 6 intermittent 10-minute cycles, were compared.Results:All traction conditions resulted in deformation of the nasal model, with the maximum deformation of the nasal tissue obtained by pulling forward and downward at 60° (4.632 9 mm) which was greater than other traction conditions (0.825 0-3.105 0 mm). The maximum deformation value was located near the nasion of the model’s skin layer. The deformation obtained by 10 minutes of continuous pulling (0.176 6 mm) was slightly greater than that obtained by 10 times of 1-minute pulse pulling (0.176 5 mm). Within 24 hours, the final deformation of multiple intermittent pulling modes (0.019 0 mm) was greater than that of a single pulling mode (0.004 3 mm).Conclusion:Physical traction can effectively deform the skin and soft tissue of the nose, and the most efficient operation is to continuously pinch the tip of the nose for a short period and apply tension parallel to the back of the nose downwards, repeating every a few hours.
4.Wogonin induces ferroptosis of rat CIA-FLS cells via NRF2/HO-1 sig-naling pathway
Lingfei HE ; Chaofan ZHANG ; Jie LIAN ; Aoxuan SHEN ; Qiannan DONG ; Xiao KANG ; Hao WU
Chinese Journal of Pathophysiology 2024;40(7):1276-1282
AIM:To investigate the mechanism by which wogonin(WOG)induces ferroptosis in collagen-in-duced arthritis rat fibroblast-like synoviocytes(rat CIA-FLS cells)through the nuclear factor E2-related factor 2(NRF2)/heme oxygenase-1(HO-1)signaling pathway.METHODS:Rat CIA-FLS cells were divided into:control group,low,medium,and high dose of(25,50 and 100 μmol/L)WOG group,ferroptosis inhibitor(LIP-1)group,LIP-1+high dose WOG group,HO-1 agonist cobalt protoporphyrin(COPP)group,and COPP+high dose WOG group.CCK-8 assay was used for cell viability.Crystal violet staining was used for for cell morphology.The levels of oxidative stress markers gluta-thione(GSH),malondialdehyde(MDA),and superoxide dismutase(SOD)were measured.DCFH-DA fluorescent probe was used to detect the intracellular reactive oxygen species(ROS)content as well as Western blot to detect the protein ex-pression levels of Kelch-like ECH-associated protein 1(KEAP-1),NRF2 and HO-1.RESULTS:Compared with the nor-mal control group,administration of WOG treatment resulted in a significant decrease in CIA-FLS cell viability(P<0.01),a significant increase in the level of oxidative stress(P<0.01),a significant increase in the content of ROS(P<0.01),a significant decrease in the level of expression of NRF2 and HO-1 proteins(P<0.01),and a significant increase in the level of KEAP-1(P<0.01)in the rat.Compared with the WOG group,the LIP-1-treated group showed a significant increase in cell viability(P<0.01),a significant decrease in the level of oxidative stress(P<0.01),and a significant de-crease in the content of ROS(P<0.01).Compared with the WOG group,the addition of COPP resulted in a significant in-crease in the protein expression levels of NRF2 and HO-1(P<0.01)and a significant decrease in KEAP-1 levels(P<0.01).CONCLUSION:WOG can induce ferroptosis in rat CIA-FLS cells by promoting oxidative stress through the NRF2/HO-1 signaling pathway.
5.Meta-analysis of the Diagnostic Value of Wideband Tympanometry in Meniere's Disease
Yilin ZHANG ; Aoxuan LIU ; Beier QI
Journal of Audiology and Speech Pathology 2024;32(6):541-545
Objective To study the diagnostic value of wideband tympanometry in Meniere's disease.Meth-ods Literature published from 1999 to 2023 was systematically searched in databases such as PubMed,Medline,Embase,Cochrane Library,China National Knowledge Infrastructure(CNKI)and Wanfang regarding the use of wideband tympanometry in diagnosing Meniere's disease.Two researchers independently screened the literature,ex-tracted data,and conducted bias risk quality assessments based on inclusion and exclusion criteria.Meta-analysis was performed using StataMP for eligible studies,comprehensively assessing the accuracy of wideband tympanome-try in diagnosing Meniere's disease.Results Wideband tympanometry in the diagnosis of Meniere disease showed a pooled specificity of 79%(95%CI:69%~87%),pooled sensitivity of 61%(95%CI:47%~73%),pooled diag-nostic odds ratio of 5.87(95%CI:3.33~10.33),pooled positive likelihood ratio was 2.91(95%CI:2.00~4.24),pooled negative likelihood ratio was 0.50(95%CI:0.36~0.67),and area under the SROC curve of 0.77.Conclu-sion Wideband tympanometry exhibits good accuracy in the diagnosis of Meniere's disease and may serve as one of the standards for future Meniere's disease diagnostics.
6.Study on the Phlorotannins in Ecklonia kurome
Mingli ZHANG ; Yunfei JIANG ; Cao WU ; Aoxuan ZHEN ; Donghua HU ; Yong LI
China Pharmacy 2016;27(15):2111-2113
OBJECTIVE:To study on the phlorotannins in Ecklonia kurome. METHODS:Silica gel column chromatography and Sephadex LH-20 column chromatography were conducted for isolation and identification of phlorotannins,and the compound structures were analyzed and identified based on physicochemical properties and spectral data. RESULTS:Totally 7 phlorotannins were isolated from E. kurome,namely Phloroglucinol(1),Eckol(2),Fucodiphloroethol G(3),Phlorofucofuroeckol A(4),1-(3′, 5′-dihydro-xyphenoxy)-7-(2″,4″,6-trihydro-xyphenoxy)-2,4,9-trihydroxydibenzo-1,4-dioxin(5),Dieckol(6)and 6,6′-bieckol (7). CONCLUSIONS:Compound 5 and 7 are isolated from E. kurome for the first time,and the study has laid a foundation for its quality evaluation.

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