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1.
Phys Rev Lett ; 109(24): 247203, 2012 Dec 14.
Article in English | MEDLINE | ID: mdl-23368371

ABSTRACT

Magnetic properties of Au nanoparticles deposited on an archaeal S layer are reported. X-ray magnetic circular dichroism and superconducting quantum interference device magnetometries demonstrate that the particles are strongly paramagnetic, without any indication of magnetic blocking down to 16 mK. The average magnetic moment per particle is M(part)=2.36(7) µ(B). This contribution originates at the particle's Au 5d band, in which an increased number of holes with respect to the bulk value is observed. The magnetic moment per Au atom is 25 times larger than any measured in other Au nanoparticles or any other configurations up to date.

2.
Hosp Mater Manage Q ; 15(2): 32-7, 1993 Nov.
Article in English | MEDLINE | ID: mdl-10129708

ABSTRACT

External customers are those who come to the institution to use the services. If these people are not satisfied, the institution will not be accredited, patients will not return, and the institution will receive bad press--thus hurting the institution's image--and physicians will go to other institutions. Patients certainly are looking for value for their dollar in receiving quality services. Third party payors measure and set prices on services rendered. Conservation of resources is the focal point of the modern health care industry. TQI is a vehicle that will bring major departments together to focus on these issues. When department heads are given the power to make decisions and the ability to negotiate with other departments, much headway will be made. Coordination of goals and the understanding of other departmental issues will allow for multidisciplinary decision making that will affect the institution's future.


Subject(s)
Consumer Behavior , Operating Rooms/standards , Purchasing, Hospital/organization & administration , Total Quality Management , Hospital Departments/organization & administration , Interdepartmental Relations , Management Quality Circles , New York City , Operating Rooms/organization & administration , United States
3.
Phys Rev D Part Fields ; 42(5): 1661-1672, 1990 Sep 01.
Article in English | MEDLINE | ID: mdl-10013008
4.
J Med Chem ; 29(10): 1972-82, 1986 Oct.
Article in English | MEDLINE | ID: mdl-3761316

ABSTRACT

In order to determine the active site binding orientation of norepinephrine, a series of conformationally defined analogues of the tyramines, in which the ethylamine side chain is held fixed by incorporation into a benzonorbornene skeleton, were prepared and evaluated for phenylethanolamine N-methyltransferase (PNMT) activity. While exo-2-amino-5- and exo-2-amino-8-hydroxybenzonorbornene (7 and 10, respectively) were prepared from 5-methoxybenzonorbornadiene by azidomercuration/demercuration and reduction, it was necessary to employ both normal (inversion of configuration) and abnormal (retention of configuration) Mitsunobu reactions to prepare, stereoselectively, exo-2-amino-6- and exo-2-amino-7-hydroxybenzonorbornene (8 and 9, respectively) from 6- and 7-methoxybenzonorbornen-2-ol. None of the six analogues were substrates. However, exo-2-amino-6-hydroxybenzonorbornene (8) and anti-9-amino-6-hydroxybenzonorbornene (12) displayed significant activity as inhibitors toward PNMT. The greater potency of 8 and 12, as compared to the parent unsubstituted analogues exo-2-amino- and anti-9-amino-benzonorbornene (4 and 5, respectively), indicates the presence of a spatially compact hydrophilic pocket within the aromatic ring binding region of the active site of the enzyme. Furthermore, the greater activity of 12, relative to 8, is consistent with an active site binding preference for molecules in which a more coplanar relationship exists between the aromatic ring and the amine nitrogen. From the findings of this study, it appears that norepinephrine has a different active site binding orientation than most known substrates and competitive inhibitors of PNMT.


Subject(s)
Phenylethanolamine N-Methyltransferase/antagonists & inhibitors , Tyramine/analogs & derivatives , Binding Sites , Molecular Conformation , Norepinephrine/pharmacology , Solubility , Structure-Activity Relationship , Tyramine/chemical synthesis , Tyramine/pharmacology
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