Impact of Curcuma longa extract on the expression level of brain transporters in in vivo model

Author:

Bukowska Marta1,Bogacz Anna12,Wolek Marlena3,Mikołajczak Przemysław Ł.24,Olbromski Piotr5,Kamiński Adam6,Czerny Bogusław37

Affiliation:

1. Department of Histocompatibility with Laboratory of Genetic Diagnostics Regional Blood Center Marcelińska 44 60-354 Poznań , Poland

2. Department of Pharmacology and Phytochemistry Institute of Natural Fibres and Medicinal Plants Kolejowa 2 62-064 Plewiska , Poland

3. Department of Stem Cells and Regenerative Medicine Institute of Natural Fibres and Medicinal Plants Kolejowa 2 62-064 Plewiska , Poland

4. Department of Pharmacology Poznan University of Medical Sciences Rokietnicka 5a 60-806 Poznań , Poland

5. Clinic of Operational Gynecology Poznan University of Medical Sciences Polna 33 60-535 Poznań , Poland

6. Clinic of Pediatric Orthopedics Pomeranian Medical University Unii Lubelskiej 1 62-600 Szczecin , Poland

7. Department of Pharmacology and Pharmacoeconomics Pomeranian Medical University Żołnierska 48 71-230 Szczecin , Poland

Abstract

Summary Introduction: Blood brain barrier and multidrug resistance phenomenon are subjects of many investigations. Mainly, because of their functions in protecting the central nervous system (CNS) by blocking the delivery of toxic substances to the brain. This special function has some disadvantages, like drug delivery to the brain in neurodegenerative diseases Objective: The aim of this study was to examine how natural and synthetic substances affect the expression levels of genes (Mdr1a, Mdr1b, Mrp1, Mrp2, Oatp1a4, Oatp1a5 and Oatp1c1) that encode transporters in the blood-brain barrier. Methods: cDNA was synthesized from total RNA isolated from rat hippocampus. The expression level of genes was determined using real-time PCR (RT-PCR) method. Results: Our findings showed that verapamil, as a synthetic substance, caused the greatest reduction of mRNA level of genes studied. The standardized extract of Curcuma longa reduced the expression level for Mrp1 and Mrp2, whereas the increase of mRNA level was observed for Mdr1b, Oatp1a5 and Oatp1c1. Conclusions: These results suggests that herbal extracts may play an important role in overcoming the blood brain barrier during pharmacotherapy.

Publisher

Walter de Gruyter GmbH

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