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Dive into the research topics where Julius P. Zodda is active.

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Featured researches published by Julius P. Zodda.


Journal of Pharmaceutical and Biomedical Analysis | 1999

The use of high-performance size exclusion chromatography (HPSEC) as a molecular weight screening technique for polygalacturonic acid for use in pharmaceutical applications

Gregory W White; Thomas Katona; Julius P. Zodda

Polygalacturonic acid is a linear carbohydrate polymer of monomeric galacturonic acid. It is commercially available as apple and citrus pectins comprised of a mixture of partially methoxylated and/or amidated polygalacturonic acids with molecular weights ranging from 25,000 to > 100,000 Da. Pectin can be chemically or enzymatically hydrolyzed to yield polygalacturonic acid fractions of diverse average molecular weight ranges and polydispersities for a variety of uses. Pectin and polygalacturonic acid are used extensively as gelling agents and stabilizers by the food industry, and have applications as therapeutic, and diagnostic pharmaceutical agents such as the magnetic resonance imaging agent LumenHance. A simple high-performance size exclusion chromatography (HPSEC) method, employing commonly available non-specialized HPLC instrumentation, is described for use as a rapid molecular weight screening technique to determine the average molecular weight range and polydispersity of polygalacturonic acid intended for use in pharmaceutical formulations. A TosoHaas G3000PWXL HPLC column, 50 mM phosphate buffer (pH approximately 6.9) mobile phase, and refractive index detection were used. A molecular weight calibration curve was linear for polysaccharide standards of 180-100,000 Da with a coefficient of correlation of 0.999. The method was employed to screen commercially available polygalacturonic acid raw materials for average molecular weight data (Mn, Mw, and Mp) and polydispersity (Mw/Mn).


Archive | 1996

Flexible plastic container for the containment and delivery of diagnostic contrast media and parenteral drug formulations

John J. Niedospial; Rebecca V. Fisher; Lawrence Callan; Irene K. Ropiak; Charles R. Quirico; Fred E. Snyder; Michael N. Eakins; Julius P. Zodda


Archive | 2009

Containers for pharmaceuticals, particularly for use in radioisotope generators

Ernest Balestracci; James A Melchore; Jo Anna Monteferrante; Irene K. Ropiak; Ernst Schramm; Julius P. Zodda; Charles R. Quirico


Archive | 2005

Improved Containers for Pharmaceuticals, Particularly for Use in Radioisotope Generators

Ernest Balestracci; James A Melchore; Jo Anna Monteferrante; Ropiak Irene Kucharewicz; Ernst Schramm; Julius P. Zodda


Archive | 2014

Infusion system with radioisotope detector

Stephen E. Hidem; Aaron M. Fontaine; Janet L. Gelbach; Patrick McDonald; Kathryn M. Hunter; Rolf E. Swenson; Julius P. Zodda


Archive | 2014

Radioisotope generator system including activity measurement and dose calibration

Stephen E. Hidem; Aaron M. Fontaine; Janet L. Gelbach; Patrick McDonald; Kathryn M. Hunter; Rolf E. Swenson; Julius P. Zodda


Archive | 1999

Kit for the preparation of technetium TC 99m teboroxime myocardial perfusion agent

Ernest Schramm; Margaret Newborn; Julius P. Zodda; Thomas Katona; Jo Anna Monteferrante


Archive | 2017

INTEGRATED STRONTIUM-RUBIDIUM RADIOISOTOPE INFUSION SYSTEMS

Stephen E. Hidem; Aaron M. Fontaine; Janet L. Gelbach; Patrick McDonald; Kathryn M. Hunter; Rolf E. Swenson; Julius P. Zodda


Archive | 2009

Infusion systems including computer-facilitated maintenance and/or operation

Julius P. Zodda; Kathryn M. Hunter; Rolf E. Swenson; Aaron M. Fontaine; Stephen E. Hidem; Patrick McDonald; Janet L. Gelbach


Archive | 2009

Infusionssysteme mit computer-gestützter wartung und/oder bedienung

Julius P. Zodda; Kathryn M. Hunter; Rolf E. Swenson; Aaron M. Fontaine; Stephen E. Hidem; Patrick McDonald; Janet L. Gelbach

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Patrick McDonald

Lawrence Berkeley National Laboratory

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