218 research outputs found
Spectroscopy of formaldehyde in the 30140-30790cm^-1 range
Room-temperature absorption spectroscopy of formaldehyde has been performed
in the 30140-30790cm^-1 range. Using tunable ultraviolet continuous-wave laser
light, individual rotational lines are well resolved in the Doppler-broadened
spectrum. Making use of genetic algorithms, the main features of the spectrum
are reproduced. Spectral data is made available as Supporting Information
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Percutaneous Cell Delivery Into the Heart Using Hydrogels Polymerizing In Situ
Heart disease is the leading cause of death in the US. Following an acute myocardial infarction, a fibrous, noncontractile scar develops, and results in congestive heart failure in more than 500,000 patients in the US each year. Muscle regeneration and the induction of new vascular growth to treat ischemic disorders of the heart can have significant therapeutic implications. Early studies in patients with chronic ischemic systolic left ventricular dysfunction (SLVD) using skeletal myoblasts or bone marrow-derived cells report improvement in left ventricular ejection function (LVEF) and clinical status, without notable safety issues. Nonetheless, the efficacy of cell transfer for cardiovascular disease is not established, in part due to a lack of control over cell retention, survival, and function following delivery. We studied the use of biocompatible hydrogels polymerizable in situ as a cell delivery vehicle, to improve cell retention, survival, and function following delivery into the ischemic myocardium. The study was conducted using human bone marrow-derived mesenchymal stem cells and fibrin glue, but the methods are applicable to any human stem cells (adult or embryonic) and a wide range of hydrogels. We first evaluated the utility of several commercially available percutaneous catheters for delivery of viscous cell/hydrogel suspensions. Next we characterized the polymerization kinetics of fibrin glue solutions to define the ranges of concentrations compatible with catheter delivery. We then demonstrate the in vivo effectiveness of this preparation and its ability to increase cell retention and survival in a nude rat model of myocardial infarction
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Does the Millennium Challenge Corporation reinforce capitalist power structures or empower citizens?
In development practice, how does ‘mutual benefit’ accrue, and to whom? China criticises America for perpetuating capitalist power relations and claims it can seek a new geo-political order based on South-South cooperation. Meanwhile, there has been an extraordinary shift of emphasis toward the private sector as a driver of development, but this shift is attracting increasing criticism. The Millennium Challenge Corporation (MCC) - the only development agency to grow in influence under the Trump administration - is evaluated in the light of these two key themes. Neither China nor the private sector are successful in achieving ‘mutual benefit’ for ordinary citizens – both replicate existing power inequalities. As with the rise of both China and the private sector, the MCC also enmeshes developing countries further into the existing neoliberal capitalist structures. However, the advantages of the agency should not be dismissed outright, as its Ruling Justly and Investing in People indicators can enhance the capacity of citizens to challenge these power structures themselves
Lineage-Specific Biology Revealed by a Finished Genome Assembly of the Mouse
A finished clone-based assembly of the mouse genome reveals extensive recent sequence duplication during recent evolution and rodent-specific expansion of certain gene families. Newly assembled duplications contain protein-coding genes that are mostly involved in reproductive function
Hydrogen Storage Materials for Mobile and Stationary Applications: Current State of the Art
One of the limitations to the widespread use of hydrogen as an energy carrier is its storage in a safe and compact form. Herein, recent developments in effective high-capacity hydrogen storage materials are reviewed, with a special emphasis on light compounds, including those based on organic porous structures, boron, nitrogen, and aluminum. These elements and their related compounds hold the promise of high, reversible, and practical hydrogen storage capacity for mobile applications, including vehicles and portable power equipment, but also for the large scale and distributed storage of energy for stationary applications. Current understanding of the fundamental principles that govern the interaction of hydrogen with these light compounds is summarized, as well as basic strategies to meet practical targets of hydrogen uptake and release. The limitation of these strategies and current understanding is also discussed and new directions proposed
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