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NLRP3 炎症小体的组装与活化,并增强 caspase-1 对 喘小鼠模型 AP-1、c-Fos 表达的影响[J]. 中华中医药学
[21]
GSDMD 的切割能力,从而推动细胞焦亡进程 。本研 刊,2023,41(2):5-8.
究结果显示,STPC 可显著降低肺组织中 MDA 水平,提 [ 9 ] PAIK S,KIM J K,SHIN H J,et al. Updated insights into
高 SOD 水平,改善大鼠氧化应激状态,从而发挥改善哮 the molecular networks for NLRP3 inflammasome activa‐
tion[J]. Cell Mol Immunol,2025,22(6):563-596.
喘的作用。
[10] WAN P,ZHANG S M,RUAN Z H,et al. AP-1 signaling
综上所述,STPC 可改善哮喘大鼠的气道炎症及肺
pathway promotes pro-IL-1β transcription to facilitate
组织损伤,降低氧化应激水平,减少IL-1β、IL-18等促炎
NLRP3 inflammasome activation upon influenza A virus
性细胞因子的释放;其作用机制可能与抑制NLRP3/cas‐
infection[J]. Virulence,2022,13(1):502-513.
pase-1/GSDMD 信号通路介导的细胞焦亡通路活化有 [11] 陈育宁. 中药药理研究方法学[M]. 2版. 北京:人民卫生
关。然而,本研究仍存在一定局限性:氧化应激指标检 出版社,2006:1167-1170.
测范围较为有限,未来应纳入更多相关指标以全面评估 [12] 赵明哲,王彬,赵晓旻,等. 麻黄-桂枝药对对哮喘寒饮蕴
氧化-抗氧化平衡状态;目前仅通过动物实验验证了 肺证大鼠呼吸功能和气道炎症的影响及机制研究[J]. 中
STPC 对细胞焦亡的干预效果,并未在细胞层面深入探 国药房,2025,36(14):1717-1721.
讨其具体分子机制及焦亡通路调控环节,尚有待后续研 [13] 唐容川 . 血证论[M]. 彭荣琛,齐玲玲,点评 . 北京:中国
究予以完善。 医药科技出版社,2020:115.
参考文献 [14] HAO Y Q,WANG W R,ZHANG L,et al. Pyroptosis in
asthma:inflammatory phenotypes,immune and non-
[ 1 ] FERRARI A J,SANTOMAURO D F,AALI A,et al.
immune cells,and novel treatment approaches[J]. Front
Global incidence,prevalence,years lived with disability
Pharmacol,2024,15:1452845.
(YLDs),disability-adjusted life-years(DALYs),and
[15] ZHANG Z Z,HE Y W,LIU H,et al. NLRP3 regulates fer‐
healthy life expectancy(HALE)for 371 diseases and inju‐
roptosis via the JAK2/STAT3 pathway in asthma inflam‐
ries in 204 countries and territories and 811 subnational lo‐
mation:insights from in vivo and in vitro studies[J]. Int
cations,1990-2021:a systematic analysis for the global
Immunopharmacol,2024,143:113416.
burden of disease study 2021[J]. Lancet,2024,403
[16] ZHUANG J,CUI H Y,ZHUANG L L,et al. Bronchial
(10440):2133-2161.
epithelial pyroptosis promotes airway inflammation in a
[ 2 ] Global Asthma Network. Global asthma report 2025:pa‐
murine model of toluene diisocyanate-induced asthma[J].
tient stories[EB/OL]. [2026-01-10].https://sway.cloud.mi‐
Biomed Pharmacother,2020,125:109925.
crosoft/mFGrHGIgFPFGI8eH ref=email.
[17] ZHOU L,ZHANG H J,LIU L,et al. Intermittent hypoxia
[ 3 ] DHAR R,RHEE C K,PERNG D W,et al. The burden of
aggravates asthma inflammation via NLRP3/IL-1β-depen‐
systemic corticosteroid use in asthma management in Asia
dent pyroptosis mediated by HIF-1α signalling pathway
[J]. Respirology,2023,28(8):744-757.
[J]. Chin Med J,2025,138(14):1714-1729.
[ 4 ] PANGANIBAN R A,NADEAU K C,LU Q. Pyroptosis,
[18] LI Y J,GUO B. GSDMD-mediated pyroptosis:molecular
gasdermins and allergic diseases[J]. Allergy,2024,79(9):
mechanisms,diseases and therapeutic targets[J]. Mol
2380-2395.
Biomed,2025,6(1):11.
[ 5 ] LIU X,XIA S Y,ZHANG Z B,et al. Channelling inflam‐
[19] CHHUNCHHA B,KUBO E,LEHRI D,et al. NLRP3 in‐
mation:gasdermins in physiology and disease[J]. Nat Rev flammasome and inflammatory response in aging disor‐
Drug Discov,2021,20(5):384-405.
ders:the entanglement of redox modulation in different
[ 6 ] LI X,YANG N. Exosome miR-223-3p in the bone outcomes[J]. Cells,2025,14(13):994.
marrow-derived mesenchymal stem cells alleviates the in‐ [20] YANG J,CHEN Z Y,ZHU Y,et al. Mechanisms of
flammation and airway remodeling through NLRP3- Aletris spicata(Thunb.)Franch. extract in asthma therapy:
induced ASC/Caspase-1/GSDMD signaling pathway[J]. oxidative stress,inflammation,and gut microbiota[J].
Int Immunopharmacol,2023,123:110746. Biology,2025,14(6):731.
[ 7 ] DING Y,LUO J,DENG Y J,et al. Wuhu decoction regu‐ [21] GAI Y,BAI C,ZHANG W,et al. Nootkatone attenuates
lates ROS/AMPK/mTOR pathway-mediated dendritic airway inflammation in asthmatic mice through repressing
cells autophagy and pyroptosis for the treatment of respira‐ ROS-induced NLRP3 inflammasome activation[J]. Bio‐
tory syncytial virus-induced asthma[J]. J Thorac Dis, chem Cell Biol,2023,101(6):513-522.
2025,17(10):7810-7825. (收稿日期:2025-11-19 修回日期:2026-04-17)
[ 8 ] 宋桂华,周琼阁,张岩,等. 苏葶平喘汤对激素抵抗型哮 (编辑:张元媛)
中国药房 2026年第37卷第10期 China Pharmacy 2026 Vol. 37 No. 10 · 1257 ·

