Health news
Health news top Health news

   Login  |  Register    
Health News Make AMN Your Home PageDiscussion BoardsAdvanced Search ToolMedical RSS/XML News FeedHealth news
  You are here : Health.am > Health Centers > Cancer Health CenterCancer news

The future of personalized cancer treatment: An entirely new direction for RNAi delivery

Cancer newsMay 18, 2009

In technology that promises to one day allow drug delivery to be tailored to an individual patient and a particular cancer tumor, researchers at the University of California, San Diego School of Medicine, have developed an efficient system for delivering siRNA into primary cells. The work will be published in the May 17 in the advance on-line edition of Nature Biotechnology.

“RNAi has an unbelievable potential to manage cancer and treat it,” said Steven Dowdy, PhD, Howard Hughes Medical Institute Investigator and professor of cellular and molecular medicine at UC San Diego School of Medicine. “While there’s still a long way to go, we have successfully developed a technology that allows for siRNA drug delivery into the entire population of cells, both primary and tumor-causing, without being toxic to the cells.”

For many years, Dowdy has studied the cancer therapy potential of RNA inhibition which can be used to silence genes through short interfering, double-stranded RNA fragments called siRNAs. But delivery of siRNAs has proven difficult due to their size and negative electrical charge – which prohibits them from readily entering cells.

A small section of protein called a peptide transduction domain (PTD) has the ability to permeate cell membranes. Dowdy and colleagues saw the potential for PTDs as a delivery mechanism for getting siRNAs into cancer cells. He and his team had previously generated more than 50 “fusion proteins” using PTDs linked to tumor-suppressor proteins.

“Simply adding the siRNAs to a PTD didn’t work, because siRNAs are highly negatively charged, while PTDs are positively charged, which results in aggregation with no cellular delivery,” Dowdy explained. The team solved the problem by making a PTD fusion protein with a double-stranded RNA-binding domain, termed PTD-DRBD, which masks the siRNA’s negative charge. This allows the resultant fusion protein to enter the cell and deliver the siRNA into the cytoplasm where it specifically targets mRNAs from cancer-promoting genes and silences them.

To determine the ability of this PTD-DRBD fusion protein to deliver siRNA, the researchers generated a human lung cancer reporter cell line. Using green and fluorescent protein and analyzing the cells using flow cytometry analysis, they were able to determine the magnitude of RNA inhibitory response and the percentage of cells undergoing this response. They found that the entire cellular population underwent a maximum RNAi response. Similar results were obtained in primary cells and cancer cell lines.

“We were subsequently able to introduce gene silencing proteins into a large percentage of various cell types, including T cells, endothelial cells and human embryonic stem cells,” said Dowdy. “Importantly, we observed no toxicity to the cells or innate immune responses, and a minimal number of transcriptional off-target changes.”

These RNAi methods can be continually tweaked to combat new mutations – a way to overcome a major problem associated with current cancer therapies. “Such therapies can’t be used a second time if a cancer tumor returns, because the tumor has mutated the target gene to avoid the drug binding,” said Dowdy. “But since the synthetic siRNA is designed to bind to a single mutation and only that mutation on the genome, it can be easily and rapidly changed while maintaining the delivery system – the PTD-DRBD fusion protein.”

“Cancer is a complex, genetic disease that is different in every patient,” Dowdy added. “This is still in early stages, but I believe the siRNA-induced RNAi approach to personalized cancer treatment is the only thing on the table.”

###

Additional contributors to the paper include Akiko Eguchi, Bryan R. Meade, Yung-Chi Chang, Craig T. Fredrickson, and Karl Willert of the UC San Diego School of Medicine; and Nitin Puti, Life Technologies, Austin, Texas.

The work was supported by the Howard Hughes Medical Institute, the Leukemia and Lymphoma Society, the Elsa U. Pardee Foundation, and the California Institute for Regenerative Medicine.

Dowdy is the scientific founder of Traversa Therapeutics located in La Jolla, CA, that has licensed the exclusive rights to commercialize this technology.

Contact: Debra Kain

619-543-6163
University of California - San Diego

Provided by ArmMed Media

Email this to a friend Bookmark this! Printable Version

RELATED STORIES:


 Comments [ + Post Your Own

Now you're in the public comment zone. What follows is not Armenian Medical Network's stuff; it comes from other people and we don't vouch for it. A reminder: By using this Web site you agree to accept our Terms of Service. Click here to read the Rules of Engagement.

There are no comments for this entry yet. [ + Comment here + ]




We are pleased to let readers post comments about an article. Please increase the credibility of your post by including your full name and email.

All comments are reviewed by our editors before they are posted on the site. Just keep it clean, kids.

Name:

Email:

Location:

URL:

Remember my personal information

Notify me of follow-up comments?

Please enter the word you see in the image below:


   [advanced search]   
Interactive Quiz:
1. An infant who sits with only minimal support, attempts to attain a toy beyond reach, and rolls over from the supine to the prone position, but does not have a pincer grasp, is at a developmental level of
2 months
4 months
6 months
9 months
1 year



Health Centers

  Head and Neck Cancer

  Esophageal Cancer

  Benign Esophageal Tumors

  Cancer of the larynx

  Salivary Gland Tumors

  Cancer of the Hypopharynx

  Cancer of the Oropharynx

  Cancer of the Oral Cavity

  Cancer of the Nasal Cavity

  Head and Neck Cancer
      (- for profesionals -)


  Gynecologic cancers

  Cervical cancer

  Endometrial Cancer

  Fallopian Tube Cancer

  Ovarian Cancer

  Vaginal cancer

  Vulvar Cancer

  Ureteral & Renal Pelvic
  Cancers


  Uterine Cancer

  Gestational Trophoblastic
  Neoplasia


  Bladder cancer

  Breast cancer

  Colorectal Cancer

  Carcinoma of the Anus

  Anal Cancer Management

  Hodgkin's lymphoma

  Kaposi's sarcoma

  Kidney cancer

  Laryngeal cancer

  Liver cancer

  Lung cancer

  Lung cancer non small cell

  Lung cancer - small cell

  Oral cancer

  Osteosarcoma

  Cancer of the Penis

  Prostate cancer

  Skin cancer

  Stomach cancer

  Testicular cancer

» » »

Health Centers





Diabetes









Health news
  


Health Encyclopedia

Diseases & Conditions

Drugs & Medications

Health Tools

Health Tools



   Health newsletter

  





   Medical Links



   RSS/XML News Feed



   Feedback






Add to Google Reader or Homepage
Cancer: Overview, Causes, Risk Factors, Treatment
Add to My AOL




Ovantra: Put the SEX Drive Back into your marriage