Skip to content
Save 5% on your next order with code PREMIUM5!
100,000+ Products for Home, Medical, Office & Classroom Needs
Search
Skip to product information
1 of 1

Choroid Plexus Pharmacology - Paperback

$91.76 USD
$91.76 USD
Sale Sold out
Shipping calculated at checkout.
In stock (100 units), ready to be shipped

Available Offers

Fast delivery available on most orders

Multiple secure payment options accepted

Secure checkout with
  • American Express
  • Apple Pay
  • Diners Club
  • Discover
  • Google Pay
  • Mastercard
  • PayPal
  • Shop Pay
  • Visa

Flight Range: Up to 1,000 meters (3,280 feet)

Maximum Speed: 45 kilometers per hour (28 miles per hour)

For all orders exceeding a value of 100USD shipping is offered for free.

Returns will be accepted for up to 10 days of Customer’s receipt or tracking number on unworn items. You, as a Customer, are obliged to inform us via email before you return the item.

Otherwise, standard shipping charges apply. Check out our delivery Terms & Conditions for more details.

View Product Details
Shopping cart
Product Product subtotal Quantity Price Product subtotal
Choroid Plexus Pharmacology - Paperback
Choroid Plexus Pharmacology - Paperback
Choroid Plexus Pharmacology - Paperback
$91.76/ea
$0.00
$91.76/ea $0.00

Product Description

by Carsten H. Baehr (Author)

The choroid plexus (CP) epithelium forms the blood-cerebrospinal fluid (CSF) barrier and, along with the blood-brain barrier, maintains the fluid environment of the brain. The CP not only secretes CSF, but also transports potentially toxic xenobiotics and waste products of neural metabolism to the blood for eventual clearance in kidney and liver. However, studying CP is difficult, due to complex morphology, ana-tomical location and small size of the tissue and little is known about the molecular mechanisms, functional complexity and hormonal regu-lation of organic anion secretion. To further elucidate the underlying mechanisms of organic anion transport across CP epithelium, a pri-mary porcine CP cell culture model was established and characterized. Organic anion transport was studied in a mammalian (rat), a comparative elasmobranch and in an in vitro porcine cell culture mo-del, using model compound fluorescein-methotrexate. Organic anion transport was shown to be a specific and concentrative, Na-ion dependent and metabolism-dependent two-step process. Finally, for the first time, the studies demonstrated that organic anion transport is regulated by protein kinase (PK) C and PKA.

Number of Pages: 148
Dimensions: 0.32 x 9 x 6 IN
Publication Date: July 11, 2008
you might like