Skip to content
Welcome To Our Store.
100,000+ Products for Home, Medical, Office & Classroom Needs
Search
Skip to product information
1 of 1

In Vivo Reprogramming in Regenerative Medicine - Hardcover

$178.18 USD
$178.18 USD
Sale Sold out
Shipping calculated at checkout.
In stock (100 units), ready to be shipped

Available Offers

Fastest Delivery Tomorrow With Vip DealOrder within 1 hr 8 mins.

Instant 10% Discount On HDFC Banks Credit/Debit Cards EMI and CreditCard

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
In Vivo Reprogramming in Regenerative Medicine - Hardcover
In Vivo Reprogramming in Regenerative Medicine - Hardcover
In Vivo Reprogramming in Regenerative Medicine - Hardcover
$178.18/ea
$0.00
$178.18/ea $0.00

Product Description

by Açelya Yilmazer (Editor)

This new volume reviews current progress on different approaches of in vivo reprogramming technology. Leaders in the field discuss how in vivo cell lineage reprogramming can be used for tissue repair and regeneration in different organs, including brain, spinal cord, pancreas, liver and heart. Recent studies on in vivo cell reprogramming towards pluripotency are reviewed; examples are given to show its potential in regenerative medicine. In each chapter, the regenerative potential of different in vivo reprogramming approaches is discussed in detail. More specifically, how different tissue failures or damages can be treated with this technology is explained. Examples from various animal models are given and the regenerative potential of in vivo reprogramming is compared to that of cell transplantation studies. The last chapter discusses current challenges of these preclinical studies and gives suggestions in order to improve the current strategies. Future directions are indicated for the transition of in vivo reprogramming technology to clinical settings. This is among the first books in the literature which specifically focuses on the in vivo reprogramming technology in regenerative medicine and these chapters collectively cover one of the most important and exciting topics of regenerative medicine.

Back Jacket

There have been significant improvements in the development of cell based therapies; however, current treatment strategies still suffer from some problems: the need for long in vitro culture conditions, inefficient delivery of cells by scaffolds and low incorporation and grafting efficiencies. Therefore, in vivo reprogramming has emerged as a novel treatment technology. In the process of in vivo reprogramming, cells switch to another cell type within the living organism. Leaders in the field discuss how in vivo reprogramming can be used for tissue repair and regeneration in different organs, including pancreas, liver and heart. Furthermore, recent studies on in vivo cell reprogramming towards pluripotency are also reviewed. Current challenges of these preclinical studies are discussed and hypothesis and suggestions are given in order to improve the current strategies to achieve translation into clinic.

Author Biography

Dr. Açelya Yilmazer is as an assistant professor at the Biomedical Engineering Department and the vice director of the Stem Cell Institute of Ankara University. After receiving a BSc in Biology from the Middle East Technical University, she completed her MSc degree in Cancer Immunotherapy at the University of Nottingham and obtained her PhD in the Nanomedicine Lab based in the School of Pharmacy, University College London. She has been selected as the Best Young Investigator in Turkey by the Turkish Society of Medical Biology and Genetics. Her research laboratory focuses on cell reprogramming technologies and development of novel nanomaterial systems for directing cell fate. She is a member of the International Society of Stem Cell Research and the Biomaterials and Tissue Engineering Society of Turkey.

Number of Pages: 103
Dimensions: 0.31 x 9.21 x 6.14 IN
Illustrated: Yes
Publication Date: December 01, 2017
you might like