大鼠呼吸道給藥裝置,大鼠肺部給藥/大鼠氣管給藥裝置
產品名稱: 大鼠呼吸道給藥裝置,大鼠肺部給藥/大鼠氣管給藥裝置
英文名稱: 大鼠呼吸道給藥裝置,大鼠肺部給藥/大鼠氣管給藥裝置
產品編號: 大鼠呼吸道給藥裝置,大鼠肺部給
產品價格: 0
產品產地: 大鼠呼吸道給藥裝置,
品牌商標: 玉研儀器公司
更新時間: 2024-08-21T15:11:33
使用范圍: null
上海玉研科學儀器有限公司
- 聯系人 : 方經理
- 地址 : 上海市閔行區興梅路485號中環科技園301室
- 郵編 : 200237
- 所在區域 : 上海
- 電話 : 185****9044 點擊查看
- 傳真 : 點擊查看
- 郵箱 : sales@yuyanbio.com
專業研制十三年,權威報告實現精細化粒徑范圍,定量有效到達肺部提高藥量精性,減少藥物浪費。支持氣溶膠或干粉藥物,高分文獻量多。大小鼠氣管內定量給藥裝置可輸送定量的氣溶膠到大鼠、小鼠氣管內和肺內,為定量化給藥提供了更好的方案,給藥快捷、操作方便。
氣管內定量給藥裝置主要包括氣溶膠霧化噴射頭和高壓注射器。
有兩種型號可供選擇:大鼠型氣管內定量給藥套裝,小鼠型氣管內定量給藥套裝
主要優點:
² 定量 QUANTIFIABLE:將定量的氣溶膠給到動物肺部
² 定時 TIMED:可以在一個或多個時間點進行給藥
² 有效 EFFECTIVE:氣溶膠的吸收效果好,給藥快速,效率高,操作方便
² 方便 CONVENIENCE:維護簡單,操作方便

型號:YAN30012 液體氣溶膠肺部給藥

型號:YAN30010 干粉氣溶膠肺部給藥
n 大小鼠肺部、氣管給給藥產品的主要特點
·快速、精確的直接肺部給藥——氣溶膠無浪費
·純機械動力,無外部空氣進入
·不需加熱、推進劑、超聲波或壓縮空氣等,對藥物物影響
·手持式設計的獨特專利,使用非常方便
·噴射頭頂端圓滑的設計,保證安全、溫和的插入氣管內
·可高溫高壓消毒滅菌,可重復使用
·比其它霧化器和吸入設備提供更高濃度發藥物體積或劑量
·比傳統滴注法給藥提供更均勻的藥物分布
n 大小鼠肺部、氣管給給藥產品的使用方法


另外,可選配大小鼠氣管插管喉鏡、大小鼠氣管插管工具包套裝、大小鼠氣管插管等工具,能更便捷的完成手術。
大鼠、小鼠喉鏡

大小鼠氣管插管工具包套裝

氣管插管平臺(多種款式和型號可選)

CG-02M型,適合做小鼠,外尺寸:20*15*20cm
CG-02R型,適合做大鼠,外尺寸:22*21*28cm
適用于大、小鼠的氣管插管手術操作

CG-04M型,小鼠型
配合鐵架臺使用,多角度可調;

型號:CG-06M
多角度可調;
大小鼠通用,尺寸約:20*15*15cm
小動物肺部定量給藥套裝的相關文獻:
Wang J, Hong-Yan L, Hu-Shan W, et al. MicroRNA-485 modulates the TGF-β/Smads signaling pathway in chronic asthmatic mice by targeting Smurf2[J]. Cellular Physiology and Biochemistry, 2018, 51(2): 692-710.
Wu L, Rodríguez-Rodríguez C, Cun D, et al. Quantitative comparison of three widely-used pulmonary administration methods in vivo with radiolabeled inhalable nanoparticles[J]. European Journal of Pharmaceutics and Biopharmaceutics, 2020, 152: 108-115.
Wang P, Zhang L, Liao Y, et al. Effect of intratracheal instillation of ZnO nanoparticles on acute lung inflammation induced by lipopolysaccharides in mice[J]. Toxicological Sciences, 2020, 173(2): 373-386.
Peng J, Cai Z, Wang Q, et al. Carboxymethyl Chitosan Modified Oxymatrine Liposomes for the Alleviation of Emphysema in Mice via Pulmonary Administration[J]. Molecules, 2022, 27(11): 3610.
Tian X, Bera H, Guo X, et al. Pulmonary delivery of reactive oxygen species/glutathione-responsive paclitaxel dimeric nanoparticles improved therapeutic indices against metastatic lung cancer[J]. ACS Applied Materials & Interfaces, 2021, 13(48): 56858-56872.
Gu P, Wang D, Zhang J, et al. Protective function of interleukin‐22 in pulmonary fibrosis[J]. Clinical and Translational Medicine, 2021, 11(8): e509.
Weng C, Li G, Zhang D, et al. Nanoscale porphyrin metal-organic frameworks deliver siRNA for alleviating early pulmonary fibrosis in acute lung injury[J]. Frontiers in Bioengineering and Biotechnology, 2022, 10.
Wang J, Hong-Yan L, Hu-Shan W, et al. MicroRNA-485 modulates the TGF-β/Smads signaling pathway in chronic asthmatic mice by targeting Smurf2[J]. Cellular Physiology and Biochemistry, 2018, 51(2): 692-710.
Wu L, Rodríguez-Rodríguez C, Cun D, et al. Quantitative comparison of three widely-used pulmonary administration methods in vivo with radiolabeled inhalable nanoparticles[J]. European Journal of Pharmaceutics and Biopharmaceutics, 2020, 152: 108-115.
Wang P, Zhang L, Liao Y, et al. Effect of intratracheal instillation of ZnO nanoparticles on acute lung inflammation induced by lipopolysaccharides in mice[J]. Toxicological Sciences, 2020, 173(2): 373-386.
Peng J, Cai Z, Wang Q, et al. Carboxymethyl Chitosan Modified Oxymatrine Liposomes for the Alleviation of Emphysema in Mice via Pulmonary Administration[J]. Molecules, 2022, 27(11): 3610.
Tian X, Bera H, Guo X, et al. Pulmonary delivery of reactive oxygen species/glutathione-responsive paclitaxel dimeric nanoparticles improved therapeutic indices against metastatic lung cancer[J]. ACS Applied Materials & Interfaces, 2021, 13(48): 56858-56872.
Gu P, Wang D, Zhang J, et al. Protective function of interleukin‐22 in pulmonary fibrosis[J]. Clinical and Translational Medicine, 2021, 11(8): e509.
Weng C, Li G, Zhang D, et al. Nanoscale porphyrin metal-organic frameworks deliver siRNA for alleviating early pulmonary fibrosis in acute lung injury[J]. Frontiers in Bioengineering and Biotechnology, 2022, 10.
