Research To Be Presented At The 2009 American Association Of Pharmaceutical Scientists Annual Meeting And Exposition

Main Category: Respiratory / Asthma
Also Included In: IT / Internet / E-mail;  Conferences;  Pharmacy / Pharmacist
Article Date: 23 Oct 2009 - 0:00 PDT

email icon email to a friend   printer icon printer friendly   write icon opinions  

Current Article Ratings:

Patient / Public:5 stars

5 (1 votes)

Healthcare Prof:not yet rated


Researchers have developed an optimized mouthpiece design to aid efficient drug delivery to the lungs by reducing the amount of medication wasted as it passes through the mouthpiece of an aerosol inhaler. With current inhaler designs, only approximately 10 to 20 percent of asthma medications are delivered to the lungs. And, because the lungs provide a direct and effective route of entry for medications into the bloodstream, an optimized mouthpiece design will reduce medication waste and may provide reproducible delivery of future inhaled medications.

"Through a process of computational and experimental analysis and design for a new inhaler, we were able to optimize a prototype mouthpiece that allowed for more medication to pass through the mouthpiece and be available to reach the lungs," said Michael Hindle, Ph.D., research associate professor at Virginia Commonwealth University (VCU) School of Pharmacy and presenter at the 2009 American Association of Pharmaceutical Scientists (AAPS) Annual Meeting and Exposition. "By optimizing the design, it will help ensure delivery efficiency so less medication will be wasted and more will be effectively delivered to the lungs for relief from symptoms."

Dr. Hindle adds that this rational computational inhaler analysis and design approach, which was developed with Worth Longest, Ph.D. from the School of Engineering at VCU, may be applicable for other inhalers and medications that require reproducible delivery. "Insulin is an example of a drug that requires a reproducible delivery strategy that can be administered painlessly and as effectively through aerosol inhalers."

Further research at this year's AAPS Annual Meeting and Exposition will address computational and experimental design methods to improve inhaler performance and how they affect the future of aerosol drug delivery.

More than 8,500 individuals from the field of pharmaceutical research are expected to attend the event, Nov. 8-12 at the Los Angeles Convention Center. During the meeting, scientists from around the world will have the opportunity to present new research, methods and technologies as they relate to the field of pharmaceutical sciences.

Source:
Alyssa Gold
American Association of Pharmaceutical Scientists

Article adapted by Medical News Today from original press release.
Visit our respiratory / asthma section for the latest news on this subject.
There are no references listed for this article.
Please use one of the following formats to cite this article in your essay, paper or report:

MLA
Alyssa Gold. "Research To Be Presented At The 2009 American Association Of Pharmaceutical Scientists Annual Meeting And Exposition." Medical News Today. MediLexicon, Intl., 23 Oct. 2009. Web.
15 Feb. 2012. <http://www.medicalnewstoday.com/releases/168349.php>

APA
Alyssa Gold. (2009, October 23). "Research To Be Presented At The 2009 American Association Of Pharmaceutical Scientists Annual Meeting And Exposition." Medical News Today. Retrieved from
http://www.medicalnewstoday.com/releases/168349.php.

Please note: If no author information is provided, the source is cited instead.


Respiratory / Asthma

What is Asthma?

Asthma is a disease affecting the airways that carry air to and from your lungs. People who suffer from this chronic condition (long-lasting or recurrent) are said to be asthmatic. Read more...

Most Popular Articles



Follow Our Respiratory News On Twitter

Follow Us On Twitter
Get the latest news for this category delivered straight to your Twitter account. Simply visit our Respiratory / Asthma Twitter account and select the 'follow' option.



View list of all 'What Is...' articles »