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Friday, 10 December 2010

In the lab, engineer’s novel liquid provides a solid fix for broken bones

Posted on 10:18 by Unknown
A bone-healing fluid that can be injected into breaks with a syringe shows such strong promise in lab testing, that it has been licensed from Brown by a Massachusetts biotech startup for further development.

By David Orenstein
A nonmetalic solutionNanomaterials engineer Thomas Webster is
developing alternatives to metals,which do not
occur naturally in the body and can cause
problems with surrounding tissue.
Credit: Webster Lab/Brown University

Here’s the vision: an elderly woman comes into the emergency room after a fall. She has broken her hip. The orthopaedic surgeon doesn’t come with metal plates or screws or shiny titanium ball joints. Instead, she pulls out a syringe filled with a new kind of liquid that will solidify in seconds and injects into the break. Over time, new bone tissue will take its place, encouraged by natural growth factors embedded in the synthetic molecules of the material.

Although still early in its development, the liquid is real. In the Brown engineering lab of professor Thomas Webster it’s called TBL, for the novel DNA-like “twin-base linker” molecules that give it seemingly ideal properties. The biotech company Audax Medical Inc., based in Littleton, Mass., has just announced an exclusive license of the technology from Brown. It brands the technology as Arxis and sees similar potential for repairing broken vertebrae.

“The reason we’re excited about this material is because it gets us away from metals,” Webster said. “Metals are not in us naturally and they can have a lot of problems with surrounding tissues.”

In some of his work, Webster employs nanotechnology to try to bridge metals to bone better than traditional bone cement. But TBL is an entirely new material, co-developed with longtime colleague and chemist Hicham Fenniri at the University of Alberta. Fenniri synthesized the molecules, while Webster’s research has focused on ensuring that TBL becomes viable material for medical use.

Buttressing bonesTwin-based linker molecules, top left, self-assemble
into six-molecule rings. Stacked in a tube shape, the
 rings of molecules not only provide a new scaffold
for bone growth, but can also store growth factors
and helpful drugs inside.

    Credit: Webster Lab/Brown University
The molecules are artificial, but made from elements that are no strangers to the body: carbon, nitrogen, and oxygen. At room temperature their aggregate form is a liquid, but the material they form solidifies at body temperature. The molecules look like nanoscale tubes (billionths of a meter wide), and when they come together, it is in a spiraling ladder-shaped arrangement reminiscent of DNA or collagen. That natural structure makes it easy to integrate with bone tissue.

In the space within the nanotubes, the team, which includes graduate student Linlin Sun, has managed to stuff in various drugs including antibiotics, anti-inflammatory agents, and bone growth factors, which the tubes release over the course of months. Even better, different recipes of TBL, or Arxis, can be chemically tuned to become as hard as bone or as soft as cartilage, and can solidify in seconds or minutes, as needed. Once it is injected, nothing else is needed.

“We really like the fact that it doesn’t need anything other than temperature to solidify,” Webster said. Other compounds that people have developed require exposure to ultraviolet light and cannot therefore be injected through a tiny syringe hole. They require larger openings to be created.


Liquid provides a solid fix for broken bones from Brown PAUR on Vimeo.


For all of TBL’s apparent benefits, they have only been demonstrated in cow bone fragments in incubators on the lab bench top, Webster said. TBL still needs to be proven in vivo and, ultimately, in human trials. Part of the agreement with Audax will include support to continue the material’s clinical development. Audax research and development director Whitney Sharp, a Brown alumna (Sc.B., 2008; Sc.M., 2009), is now working with Webster’s group.

“They see the future where hopefully we will get to the point where we won’t be implanting these huge pieces of metal into people,” Webster said. “Instead we’ll be implanting things through a needle that could be used to heal a hip that’s more natural.”
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Posted in audax, nano, sharp, tissue, webster | No comments

Thursday, 9 December 2010

Rachel Decker Accepted into Entrepreneurial Fellows Program at Slater Technology Fund

Posted on 12:51 by Unknown
Rachel Decker ScM '11, a current Program in Innovation Management and Entrepreneurship (PRIME) master's degree student, was just accepted into the Rhode Island National Science Foundation’s Experimental Program to Stimulate Competitive Research (NSF EPSCoR) Entrepreneurial Fellows Program at the Slater Technology Fund.

A collaboration initiated in 2008 between Slater and the Rhode Island NSF EPSCoR, the program is designed to encourage entrepreneurship in the life sciences and biotechnology industries in Rhode Island by formally engaging local university students in the venture development process.

The Entrepreneurial Fellows Program is designed to attract and support a next generation of entrepreneurs in the life sciences industry by drawing students from the state’s colleges and universities into active participation in the process of venture development. Fellows engage in venture development by working with both academic researchers and industry professionals to understand the process of start-up formation, the development of business plans, the recruitment of entrepreneurial teams, the raising of early-stage capital, and the implementation of commercialization strategies. A goal of the program is to better inform students of the career development options available within the life sciences industry and to help integrate them into the knowledge-based economy in Rhode Island

The Entrepreneurial Fellows Program was launched in 2008-2009 with a group of seven students from Brown University and the University of Rhode Island. The pilot-scale program was continued in 2009-2010 with another six students from Brown and the University of Rhode Island.


About Rhode Island NSF EPSCoR
The Rhode Island National Science Foundation Experimental Program to Stimulate Competitive Research (Rhode Island NSF EPSCoR) builds partnerships between state government, institutions of higher education, and industry to effect lasting improvements in Rhode Island’s research infrastructure and national R&D competitiveness. Rhode Island NSF EPSCoR began in 2004, receiving federal funding commitments in excess of $26.75 million. For more information, visit www.riepscor.org.


About Slater Technology Fund
The Slater Technology Fund is a state-backed venture capital fund that invests in new ventures committed to basing and building their businesses in Rhode Island. Slater focuses its resources on the support of entrepreneurs who have the vision, leadership, and commitment to build substantial commercial enterprises. Slater typically invests at the inception stage in the development of a new venture, often based upon ideas and technologies originating in academic institutions and/or government research laboratories located within the region. In most cases, investments are premised upon the possibility of raising substantial follow-on financing, from venture capital investors or from strategic partners, with a view toward accelerating the generation of significant numbers of high-value, high-wage jobs over the intermediate to longer-term. For more information, visit www.slaterfund.com.
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Posted in decker, entrepreneurship, prime | No comments

Brown Students Perform Well at Elevator Pitch Contest

Posted on 11:39 by Unknown
Professor Eric Suuberg reports that students from his ENGN 1930G Entrepreneurship course performed well in the Rhode Island Business Plan Competition’s Elevator Pitch Contest this week. The event took place at the new R.I. Center for Innovation and Entrepreneurship and is considered a preview to the 2011 Rhode Island Business Plan Competition.

The winner, Theresa Raimondo '11, a chemical engineering concentrator, pitched an idea for a container that can quickly heat and cool beverages and won $300. The winning idea, called HnC (hot and cold), grew out of Suuberg's entrepreneurship class in which Raimondo and six other undergraduates have been working on a way to improve the taste of food eaten by astronauts, who don’t have access to refrigeration in space. Using compact thermoelectric technology, the beverage container they’re designing will heat or cool any drink between 50 and 150 degrees Fahrenheit within 90 seconds. The team is proposing to commercialize the product, which, it says, has the potential to redefine the beverage market. Raimondo made her 90-second pitch to a panel of judges and more than 200 audience members, and finished first in a field of 48 aspiring entrepreneurs.

In addition, students and alumni from the Program in Innovation Management and Entrepreneurship (PRIME) were presenting, and Joseph Ramos ScM'10 finished second. Ramos, of Axena Technologies in Providence, won $200 for his idea for a start-up company to combat health-care associated infections. Axena Technologies was founded by four graduates of Brown University's PRIME master's degree program. The biomedical engineering company utilizes a novel antibacterial technology to coat medical devices in order to mitigate healthcare-associated infections.

Dan Aziz '05, of PriWater in Providence, received $200 for his pitch for a drink to help pregnant women decrease the chance of certain birth defects.

Each of these teams is expected to do well in the actual business plan competition next semester.

RI Business Plan Competition Press Release:
http://www.ri-bizplan.com/News/Dec2010ElevatorPitchResults/tabid/231/Default.aspx

Providence Business New online edition that described the outcome of the competition: See http://www.pbn.com/Revolutionary-beverage-container-garners-top-prize-at-elevator-pitch-competition,54251
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Posted in Aziz, competition, elevator pitch, ENGN 1930G, entrepreneurship, HnC, prime, Raimondo, Ramos, suuberg | No comments

Lorin Jakubek and Nitin Jadhav Win 2010 Archambault Teaching Awards

Posted on 05:59 by Unknown
The Office of Continuing Education has announced 2010 Archambault Teaching Awards, and two of the recipients are from the School of Engineering, Lorin Jakubek and Nitin Jadhav. Engineering was the only school or department with more than one honoree.

Stella Aslibekyan, a graduate student in Bio-Med, is the recipient of the 2010 Reginald D. Archambault Award for Teaching Excellence. Honorable mentions were awarded to Lorin Jakubek, School of Engineering; Daniel Block, Department of English; Erica Moretti, Italian Studies; and to Nitin Jadhav, School of Engineering.

The Reginald D. Archambault Award for Teaching Excellence recognizes, rewards, and promotes excellence in teaching in the Brown University summer programs. The award is named in recognition of Reginald D. Archambault, Professor of Education emeritus, and the inaugural Dean of Summer Studies, 1984 - 1992. Prof. Archambault served as Chair of Brown’s Education Department from 1967 through the early eighties, contributing greatly to the M.A.T. program and developing the Brown Summer High School as a teaching laboratory. He remains dedicated to advancing the craft of pedagogy.

Award recipients are selected based on their ability to influence, motivate and inspire students to learn, as well as their creativity and innovation in the development of curriculum and resources that promote student learning.

Award recipients will be recognized at an Office of Continuing Education Event in spring 2011.
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Posted in archambault, award, jadhav, jakubek | No comments

Monday, 6 December 2010

Extreme Gingerbread Competition a Success

Posted on 13:31 by Unknown
The Brown University Society for Women Engineers in collaboration with the University's Engineers Without Borders student organization held its fourth annual "Extreme Gingerbread House Competition" on Friday, December 3. Twenty-one teams of three to five students and professors participated, and the event raised more than $125 for Engineers without Borders. This year, Engineers Without Borders is focusing on helping a Haitian orphanage that was damaged during the earthquake in January, 2010. The designs ranged from the traditional to the modern, and included circular houses, and a replica of Frank Lloyld Wright’s Fallingwater.


This year, the teams were challenged to build earthquake resistant gingerbread houses out of graham crackers, icing, candy canes, pretzels, gummy bears and other supplied materials in a one-hour time period. Houses were required to be hollow with a maximum wall thickness of one inch, and had to exceed 6” x 6” x6”. The houses were judged both for aesthetics, and amount of time without breaking on a shake table.

Team eight, the bleeding gumdrops (Kelly Schryver ’11, Ben Howard ’11, Katie Delaney ’11, Adam Maynard ’11) won the competition with a score of 66.67 (16.67 appearance score and 50 structure score), while team 21 (Nick Ragosta ‘12, Ben Freudberg ‘12, Nattie Cooper ‘12, Aris Nakos ‘12) was close behind with a total score of 66.33 (16.33 for appearance plus 50 for structure). Team 16, known as team Barus & Holly (Kristie Chin ’11, Camile Rodriguez ’11, Katrina Wilson ’11, Kelsi Hirai ’11--with advising help from Professor Daniels), finished in third with a score of 65.67 (15.67 for appearance and 50 for structure). In all, seven of the 21 teams survived the maximum time of one minute.
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Posted in competition, ewb, gingerbread, swe | No comments

Friday, 3 December 2010

Nanotechnology and nanomaterials: Promises for improved tissue regeneration is top article in NanoToday

Posted on 10:21 by Unknown
A paper written by Dr. Lijie Zhang ScM'07 PhD'09, now an assistant professor at George Washington University, and Brown University associate professor Dr. Thomas Webster, is currently the most downloaded article from the journal NanoToday.

The article is entitled "Nanotechnology and nanomaterials: Promises for improved tissue regeneration" NanoToday 4(1):66-80, 2009 and covers recent advancements in the use of nanotechnology to improve tissue growth for numerous implant applications.

Summary
Tissue engineering and regenerative medicine aim to develop biological substitutes that restore, maintain, or improve damaged tissue and organ functionality. While tissue engineering and regenerative medicine have hinted at much promise in the last several decades, significant research is still required to provide exciting alternative materials to finally solve the numerous problems associated with traditional implants. Nanotechnology, or the use of nanomaterials (defined as those materials with constituent dimensions less than 100 nm), may have the answers since only these materials can mimic surface properties (including topography, energy, etc.) of natural tissues. For these reasons, over the last decade, nanomaterials have been highlighted as promising candidates for improving traditional tissue engineering materials. Importantly, these efforts have highlighted that nanomaterials exhibit superior cytocompatible, mechanical, electrical, optical, catalytic and magnetic properties compared to conventional (or micron structured) materials. These unique properties of nanomaterials have helped to improve various tissue growth over what is achievable today. In this review paper, the promise of nanomaterials for bone, cartilage, vascular, neural and bladder tissue engineering applications will be reviewed. Moreover, as an important future area of research, the potential risk and toxicity of nanomaterial synthesis and use related to human health are emphasized.

Link to NanoToday:
http://journals.elsevier.com/17480132/nano-today/

Link to full article:
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B82X8-4TVY5PJ-2&_user=489286&_coverDate=02/28/2009&_rdoc=1&_fmt=high&_orig=search&_origin=search&_sort=d&_docanchor=&view=c&_acct=C000022678&_version=1&_urlVersion=0&_userid=489286&md5=0590ae25
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Posted in article, nano, webster, zhang | No comments

Wednesday, 1 December 2010

Grant gives new life to the virtual reality Cave

Posted on 10:57 by Unknown
The Center for Computation and Visualization is home to the University’s Cave, a virtual reality cube. One minute it's showing the surface of Mars, and the next there is three-dimensional poetry wrapping its walls. It's called the Cave, but it's really just a cube — a virtual reality universe. And it's currently undergoing a $2 million renovation.

The National Science Foundation awarded the Center for Computation and Visualization, home to the University's Cave, a grant for renovations in Sept. 2009. The system — an eight-foot cube with images projected on walls in front, to the left and right of the user and on the floor — is now 11 years old.

Cave users wear LCD-shutter glasses that allow them to view data from a variety of angles. The Cave is equipped with tracking devices that move the projections to wherever the user is looking or touching.

The grant will allow the implementation of 70 new high-definition projectors, as well as wireless glasses and a bigger space to move around in, said John Huffman, graphics systems analyst for the CCV.

These renovations will give users "the ability to completely immerse yourself in ... scientific data," said David Laidlaw, professor of computer science.

"It's sort of like going from the very first telephone ... to the iPhone 4," Laidlaw said.

Many different departments use the Cave, including a "Cave Writing" class, which uses the system as a way of interacting with poetry, Huffman said. The Department of Geological Sciences uses the Cave to recreate the surface of Mars and other planetary objects, giving students the opportunity to use skills and techniques they have acquired in class, he added.

"It's a new way of seeing the planets that you can't really do any other way," said Caleb Fassett, postdoctoral research associate in the Department of Geological Sciences. According to Fassett, most of his students enjoy the experience of using the Cave as a visual component of their education.

When the upgrades are complete, the system will have better color representation, higher contrast and "the same resolution as your eyes are capable of," Huffman said.

Laidlaw said the CCV hopes to have the new Cave ready next October, when the Institute of Electrical and Electronics Engineers will host a week-long forum in Providence.

(Article by Joseph Rosales/Brown Daily Herald)
(Photo by: Stephanie London/Brown Daily Herald)
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Posted in cave, grant | No comments
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