Turkish
Albanian
Arabic
Armenian
Azerbaijani
Belarusian
Bengali
Bosnian
Catalan
Czech
Danish
Deutsch
Dutch
English
Estonian
Finnish
Français
Greek
Haitian Creole
Hebrew
Hindi
Hungarian
Icelandic
Indonesian
Irish
Italian
Japanese
Korean
Latvian
Lithuanian
Macedonian
Mongolian
Norwegian
Persian
Polish
Portuguese
Romanian
Russian
Serbian
Slovak
Slovenian
Spanish
Swahili
Swedish
Turkish
Ukrainian
Vietnamese
Български
中文(简体)
中文(繁體)
Zhongguo Zhongyao Zazhi 2010-Sep

[Evaluation of brain-targeted trendence of scutellarin nasal administration].

Sadece kayıtlı kullanıcılar makaleleri çevirebilir
Giriş yapmak kayıt olmak
Bağlantı panoya kaydedilir
Senlin Shi
Jinjin Wu
Wenyun Dai
Changyu Li
Weihong Ge

Anahtar kelimeler

Öz

OBJECTIVE

To evaluate the feasibility of developing brain-targeted nasal delivery system of scutellarin by the passage between nase and brain in nasal olfactory area.

METHODS

The samples of cerebrospinal fluid (CSF) and blood were prepared by cranial puncture and femoral artery catheterization methods respectively according to the certain sampling time after drug administered. The scuteIlarin concentration of samples were determined by 125 marked method. Pharmacokinetic parameters were calculated by trapezoidal rule. The brain-targeted trendence were evaluated by the value of the index AUC(brain)/AUC(plasma).

RESULTS

The distribution of scutellarin in brain following intranasal administration was different between tissues. Drug concentration in olfactory bulb achieved to peak at 5-15 min after intranasal administration, while in brain tissue was 30-60 min. Above all, peak concentration in olfactory bulb and olfactory region respectively were (574.8 +/- 205.), (323.4 +/- 128.3) ng x g(-10, both are higher than CSF, which is (123.2 +/- 29.3) ng x g(-1). Moreover, the distribution of scutellarin given by intranasally in brain was: olfactory bulb (OB) >> olfactory region (OR) > cerebrospinal fluid (CSF) > cerebellum(CB) > medulla oblongata (MO) > cerebrum (CR); AUC(0-240) of olfactory bulb, olfactory region and CSF after scutellarin intranasal administration were 5.54, 5.07 and 5.51 times of that after intravenous injection, respectively. And the AUC(0-240) of other brain tissues after intranasal administration were also higher than that after intravenous injection. AUC(brain tissue)/ AUC(plasma) of every brain tissues by intranasally are all higher than that by intravenously remarkably. For instance, 5 min after intranasal administration, the value of AUC(CSF)/ AUC(plasma), AUC(OB)/AUC(plasma), and AUC(CR)/AUC(plasma) were 30.34, 56.93, and 6.14 times of that by intravenously.

CONCLUSIONS

Part of scutellarin could be straightly transported into brain by the intranasal administration. Its absorption pathway was: the molecule of Scutellarin throughed olfactory mucosa in nasal cavity into olfactory bulb in arachno-hypostegal cavity, and then entered into olfactory region, CSF, cerebrum and cerebellum gradually. It showed that olfactory bulb was the only way for drug molecule to go through nasal cavity into brain. It had a significant trendence of brain-targeted when compared to oral administration and intravenous injection, which indicated a certain feasibility to develop a brain-targeted nasal delivery system for scutellarin.

Facebook sayfamıza katılın

Bilim tarafından desteklenen en eksiksiz şifalı otlar veritabanı

  • 55 dilde çalışır
  • Bilim destekli bitkisel kürler
  • Görüntüye göre bitki tanıma
  • Etkileşimli GPS haritası - bölgedeki bitkileri etiketleyin (yakında)
  • Aramanızla ilgili bilimsel yayınları okuyun
  • Şifalı bitkileri etkilerine göre arayın
  • İlgi alanlarınızı düzenleyin ve haber araştırmaları, klinik denemeler ve patentlerle güncel kalın

Bir belirti veya hastalık yazın ve yardımcı olabilecek bitkiler hakkında bilgi edinin, bir bitki yazın ve karşı kullanıldığı hastalıkları ve semptomları görün.
* Tüm bilgiler yayınlanmış bilimsel araştırmalara dayanmaktadır

Google Play badgeApp Store badge