Tuesday, April 16, 2013

Implantable, bioengineered rat kidney: Transplanted organ produces urine, but further refinement is needed

Apr. 14, 2013 ? Bioengineered rat kidneys developed by Massachusetts General Hospital (MGH) investigators successfully produced urine both in a laboratory apparatus and after being transplanted into living animals. In their report, receiving advance online publication in Nature Medicine, the research team describes building functional replacement kidneys on the structure of donor organs from which living cells had been stripped, an approach previously used to create bioartificial hearts, lungs and livers.

"What is unique about this approach is that the native organ's architecture is preserved, so that the resulting graft can be transplanted just like a donor kidney and connected to the recipient's vascular and urinary systems," says Harald Ott, MD, PhD, of the MGH Center for Regenerative Medicine, senior author of the Nature Medicine article. "If this technology can be scaled to human-sized grafts, patients suffering from renal failure who are currently waiting for donor kidneys or who are not transplant candidates could theoretically receive new organs derived from their own cells."

Around 18,000 kidney transplants are performed in the U.S. each year, but 100,000 Americans with end-stage kidney disease are still waiting for a donor organ. Even those fortunate enough to receive a transplant face a lifetime of immunosuppressive drugs, which pose many health risks and cannot totally eliminate the incidence of eventual organ rejection.

The approach used in this study to engineer donor organs, based on a technology that Ott discovered as a research fellow at the University of Minnesota, involves stripping the living cells from a donor organ with a detergent solution and then repopulating the collagen scaffold that remains with the appropriate cell type -- in this instance human endothelial cells to replace the lining of the vascular system and kidney cells from newborn rats. The research team first decellularized rat kidneys to confirm that the organ's complex structures would be preserved. They also showed the technique worked on a larger scale by stripping cells from pig and human kidneys.

Making sure the appropriate cells were seeded into the correct portions of the collagen scaffold required delivering vascular cells through the renal artery and kidney cells through the ureter. Precisely adjusting the pressures of the solutions enabled the cells to be dispersed throughout the whole organs, which were then cultured in a bioreactor for up to 12 days. The researchers first tested the repopulated organs in a device that passed blood through its vascular system and drained off any urine, which revealed evidence of limited filtering of blood, molecular activity and urine production.

Bioengineered kidneys transplanted into living rats from which one kidney had been removed began producing urine as soon as the blood supply was restored, with no evidence of bleeding or clot formation. The overall function of the regenerated organs was significantly reduced compared with that of normal, healthy kidneys, something the researchers believe may be attributed to the immaturity of the neonatal cells used to repopulate the scaffolding.

"Further refinement of the cell types used for seeding and additional maturation in culture may allow us to achieve a more functional organ," says Ott. "Based on this inital proof of principle, we hope that bioengineered kidneys will someday be able to fully replace kidney function just as donor kidneys do. In an ideal world, such grafts could be produced 'on demand" from a patient's own cells, helping us overcome both the organ shortage and the need for chronic immunosuppression. We're now investigating methods of deriving the necessary cell types from patient-derived cells and refining the cell-seeding and organ culture methods to handle human-sized organs."

Ott's team focuses on the regeneration of hearts, lungs, kidneys and grafts made of composite tissues, while other teams -- including one from the MGH Center for Engineering in Medicine -- are using the decellularization technique to develop replacement livers. Lead author of the Nature Medicine paper is Jeremy Song, MGH Center for Regenerative Medicine; additional co-authors are Jacques Guyette, PhD, Sarah Gilpin, PhD, Gabriel Gonzalez, PhD, and Joseph Vacanti, MD, all of the MGH Center for Regenerative Medicine. The study was supported by National Institute of Health Director's New Innovator Award DP2 OD008749-01.

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The above story is reprinted from materials provided by Massachusetts General Hospital, via EurekAlert!, a service of AAAS.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Jeremy J Song, Jacques P Guyette, Sarah E Gilpin, Gabriel Gonzalez, Joseph P Vacanti, Harald C Ott. Regeneration and experimental orthotopic transplantation of a bioengineered kidney. Nature Medicine, 2013; DOI: 10.1038/nm.3154

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/~3/f8_z1bYJGAQ/130414193433.htm

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Monday, April 15, 2013

FAA orders inspection of Boeing 737 tail planes

(Reuters) - The Federal Aviation Administration (FAA) has ordered an inspection of more than 1,000 U.S.-registered Boeing 737 jets to examine the tail planes for a potentially faulty part, which it said could cause pilots to lose control of the aircraft if it failed.

The airworthiness directive (AD) issued by the FAA calls on airlines and other operators to replace tail plane fixing pins with improved pins following concerns over how their protective surface coating was applied.

"We are issuing this AD to prevent premature failure of the attach pins, which could cause reduced structural integrity of the horizontal stabilizer to fuselage attachment, resulting in loss of control of the airplane," the FAA said in the directive issued on Monday.

The airworthiness directive was posted on the website of Federal Register (http://link.reuters.com/pyb47t) and was first reported by the Wall Street Journal late on Sunday.

The FAA said the inspection was "prompted by reports of an incorrect procedure used to apply the wear and corrosion protective surface coating to attach pins of the horizontal stabilizer rear spar."

FAA said its directive affects 1,050 aircraft flown by U.S. carriers and may cost up to $10.1 million across the fleet, or up to $9,627 per aircraft.

The directive applies to models including 737-600, 737-700, 737-700C, 737-800, 737-900, and 737-900ER series aircraft.

Boeing could not immediately be reached for comment by Reuters outside of regular U.S. business hours.

(Reporting by Sakthi Prasad in Bangalore; Editing by Greg Mahlich)

Source: http://news.yahoo.com/faa-orders-inspection-boeing-737-tail-planes-071555623--finance.html

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Dell S2340T


Until recently, Windows 8 certified touch-screen monitors have been relatively scarce, but not anymore. Monitor manufacturers such as Acer, Viewsonic, LG, and Planar have all announced multi-touch monitors that are designed to enhance the Windows 8 user experience. Not to be outdone, Dell has joined the fray with the release of the Dell S2340T, a 23-inch IPS monitor featuring 10-point touch technology and a handful of useful features, including a webcam and USB 3.0 and Ethernet connectivity. More importantly, it delivers good color and grayscale accuracy and responsive touch functionality. However, it's the most expensive 23-inch touch-screen monitors we've reviewed to date, and it only has two video inputs and lacks VESA wall mounting capabilities.

Design and Features
As with the Acer T232HL and Viewsonic TD2340, the S2340T boasts a slick tablet-like design. The 1,920-by-1,080 IPS panel sports a glossy (and reflective) edge-to-edge glass coating over black borders. The requisite Dell logo is positioned along the lower edge of the display and there five buttons on the right side of the cabinet. A two-megapixel webcam and dual microphone array is embedded in the glass above the panel.

The use of edge-mounted LED backlighting allows for a very thin (0.8-inch) cabinet, which is supported by a glossy black square base and a silver dual hinge mechanism. The hinge provides height and tilt adjustability and allows you to lay the panel flat so it is parallel with the desktop surface. Unlike the Acer and Viewsonic model, the S2340T doesn't have VESA-compliant mounting holes. That's because the all of its ports are located in the base.

You only get two video inputs (HDMI and DisplayPort), both of which are located at the rear of the base. They share space with three USB 3.0 ports (one upstream, two downstream), an Ethernet port (a rarity among desktop monitors), and the power jack. On the right side of the base are two more downstream USB 3.0 ports and on the left side are headphone and microphone jacks. The base acts as a docking station for your notebook, delivering Ethernet, USB, and audio connectivity via a single USB cable. It is also home to two relatively loud 5-watt speakers.

Four of the five aforementioned buttons are used to access and navigate the settings menus (the fifth button is the power switch). The S2340T uses the same excellent on-screen labeling system that is used by Dell's UltraSharp U3014 and UltraSharp U2713HM models; touching any button launches a menu that corresponds to each button, making it easy to work your way through the settings menus.

The S2340T gives you seven picture presets including Standard, Multimedia, Game, Movie, Text, Warm, and Cool. There's also a Custom Color preset for users who prefer to create their own color mode. Brightness, Contrast, Hue, and Saturation adjustments are also available, as are Sharpness and Aspect Ratio settings. The Energy Smart option enables dynamic dimming that reacts to the amount of bright areas on the screen, and the Green Mode option helps conserve power by disabling advanced USB features.

Dell covers the S2340T with an extraordinary four year warranty. The monitor ships with HDMI, DisplayPort, and USB (upstream) cables as well as a resource CD and a Quick Start Guide.

Performance
The S2340T's multi-touch screen was a pleasure to use; pinching, tapping, and stretching gestures worked perfectly as did swipe and scroll movements. Entering text using the on-screen keyboard was comfortable, especially when the panel was tilted backward.

Color accuracy was good but not perfect. On the CIE (International Committee on Illumination) chromaticity chart below, the closer each color dot is to its corresponding box, the better the color accuracy. Reds and blues were very accurate but greens were a little off.

This is not uncommon with desktop monitors, and in this case the flaw does not translate to tinting or skewed skin tones. In fact, image quality was superb while watching blu-ray movies; flesh tones in the movie 2012 were natural looking and colors were deep and well defined. That said, if you absolutely must have spot-on color accuracy you can try calibrating the monitor or consider investing in a professional grade monitor such as the NEC MultiSync PA301W or Dell U3014.

The panel did a good job of rendering each shade of gray on the DisplayMate 64-Step Grayscale test, but as was the case with the Viewsonic TD2340, the darkest shade of gray could have been a bit darker. Viewing angles were typical of an IPS panel; colors remained intact from any angle and the picture suffered no significant loss of luminance when viewed from the top, bottom, or side.

The S2340T averaged 26 watts of power usage during testing, which is on par with the 23-inch Acer and Viewsonic touch-screen models. I was able to lower that number to 23 watts by enabling the Energy Smart dynamic dimming option but couldn't get it as low as the Viewsonic's Optimize ECO mode (16-watts) or the Acer's ECO mode (18-watts).

The Dell S2340T is a sharp-looking 23-inch touch-screen monitor that is optimized for Windows 8. It offers robust IPS color quality, solid grayscale performance, and outstanding 10-point projected capacitive touch technology. The addition of a webcam and an Ethernet port are nice touches, but a third video input would be welcome here. Moreover, at $700 it's very expensive for a 23-inch monitor, even one with touch-screen capabilities and a generous feature set. Our Editors' Choice for touch-screen monitors, the Acer T232HL, also offers solid IPS performance, responsive 10-point touch technology, and a USB hub, but it doesn't double as a docking station or have a webcam. However, it's almost $150 cheaper than the S2340T.

Source: http://feedproxy.google.com/~r/ziffdavis/pcmag/~3/CBmfloNA64U/0,2817,2417713,00.asp

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Saturday, April 13, 2013

Cell-destroyer that fights and promotes TB reveals what's behind its split identity

Cell-destroyer that fights and promotes TB reveals what's behind its split identity

Friday, April 12, 2013

Tumor necrosis factor ? normally an infection-fighting substance produced by the body? can actually heighten susceptibility to tuberculosis if its levels are too high.

University of Washington TB researchers unravel this conundrum in a report this week in Cell.

Their study shows how excess production of this disease-cell destroyer at first acts as a TB germ killer. But later the opposite occurs: too much tumor necrosis factor encourages TB pathogens to multiply in the body.

In addition to figuring out some reasons behind this back-pedaling, the scientists learned that certain combinations of drugs already available for other conditions can curtail the shift from anti-TB to pro-TB.

The drug combination revealed in this study, the authors noted, "has the potential to revert some cases of hypersusceptibility to hyperresistance."

The scientists were Francisco Jose Roca Soler, of the UW Department of Microbiology, and Lalita Ramakrishnan, UW professor of microbiology, medicine and immunology. A recipient of the National Institutes of Health Director's Pioneer Award, Ramakrishnan is recognized for her work on how the TB pathogen and its hosts' cells interact to cause disease.

These studies are conducted in zebrafish, an animal model for tuberculosis. The fish's embryos and small fry are transparent. Researchers can see through their skin to observe their organs, tissues and cells and the internal appearance of some infections, for example, the bacterial cording of TB.

Roca and Ramakrishnan explained that TB had traditionally been thought of as a disease of failed immunity. However, more recent studies from their lab and other labs, both in zebrafish and in humans, have suggested that it also can result from too strong of a defensive inflammatory response.

"While tumor necrosis factor is a critical host defense against tuberculosis," Roca and Ramakrishnan noted, "an excess of this factor is also implicated in the development of the disease in zebrafish and in humans."

Variations in a specific location of the zebrafish genome can cause either too much or too little tumor necrosis factor to be produced, depending on the type of variation. In either case, deficiency or overabundance, zebrafish become prone to tuberculosis.

In both cases the scavenger cells, or macrophages, that are trying to clear away the TB pathogens by ingesting them, die and burst open. They are like torn vacuum cleaner bags spilling their dirty contents.

When the TB bacteria escape the confines of the scavenger cells, "they grow exuberantly in the extracellular environment," Roca and Ramakrishnan said.

Researchers needed to work out the differences between TB susceptibility caused by too high or too low tumor necrosis factors because the distinction is vital to treatment decisions. Only patients whose genetics made them launch a pro-inflammatory response, benefited from steroid treatment, previous studies have shown. Steroids can increase the chance of death among TB patients with a weak inflammatory response.

In the present study, Roca and Ramakrishnan elucidated the molecular pathways by which too much tumor necrosis factor at first rapidly promotes macrophages to go after TB bacteria, and then turns around and forces the hard-working macrophages to die and expel their captives.

They found that both the microbiocidal activity, and the death of the macrophages, resulted from upping the production of reactive oxygen species by the mitochondria inside the macrophages. Mitochondria are the energy-generating power plants of living cells.

Tumor necrosis factor inside of infected macrophages induces reactive oxygen species from the mitochondria. These are the chemicals responsible for cell damage from oxidative stress.

Early on, reactive oxygen species can be beneficial. Initially their presence encourages the macrophages to destroy pathogens. As they accumulate, however, they promote self-harm.

Suddenly the macrophage is programmed to self-destruct. The reactive oxygen species carry out the death sentence by modulating a pathway for a substance called cyclophilin D, which sets the stage for the demolition of mitochondria.

Reactive oxygen species also play a role in acid sphingomyelinase-mediated ceramide production. This waxy substance occurs in cell membranes. One of its many roles is regulating signals for cell death.

The researchers were able to convert the high tumor necrosis factor state to become resistant to tuberculosis. They did so by genetically blockading both cyclophilin D and acid sphingomyelinase in previously susceptible zebrafish.

Similarly, they discovered that the drug combination of alisporivir, a cyclophilin D-inhibiting drug, and desipramine, an antidepressant that inactivates acid sphingomyelinase, also reverses susceptibility to TB in zebrafish prone to tumor necrosis factor excess.

Essentially, the experiments suggest that preventing cell death in TB infected macrophages can prolong their capacity to attack TB pathogens.

A longer-living army of macrophages, filled with the microbiocidal reactive oxygen species, will destroy the TB pathogens inside them and make the host highly resistant to tuberculosis.

Because excessive amounts of tumor necrosis factor are implicated in several inflammatory diseases such as rheumatoid arthritis, ankylosing spondylitis, sarcoidosis, and Crohn's, the authors noted, "The findings may be useful for understanding diseases in addition to tuberculosis."

###

University of Washington: http://www.uwnews.org

Thanks to University of Washington for this article.

This press release was posted to serve as a topic for discussion. Please comment below. We try our best to only post press releases that are associated with peer reviewed scientific literature. Critical discussions of the research are appreciated. If you need help finding a link to the original article, please contact us on twitter or via e-mail.

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Source: http://www.labspaces.net/127722/Cell_destroyer_that_fights_and_promotes_TB_reveals_what_s_behind_its_split_identity

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