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Chemistry

D-Index
45
Citations
7653
World Ranking
16415
National Ranking
4089

Overview

Joseph M. Rifkind is affiliated with Johns Hopkins University in the United States. Their research focuses primarily on the field of Medicine, with a particular emphasis on Physiology. This specialization is reflected in their work related to erythrocyte function and pathophysiology.

The main topics of Joseph M. Rifkind's research include:

  • Erythrocyte Function and Pathophysiology

This indicates that their scientific contributions explore aspects of red blood cell biology and the mechanisms involved in related disease processes.

Joseph M. Rifkind does not have any recent papers listed, nor are there records of frequent co-authors or specific publication venues regularly associated with their work. Similarly, there are no available book publications or awards connected to their profile.

Their academic scope remains centered on understanding physiological processes within Medicine, particularly focusing on how erythrocytes operate and what pathophysiological changes affect them. This focus is relevant to a variety of medical conditions where red blood cell function is impacted.

Best Publications

  • Red blood cell oxidative stress impairs oxygen delivery and induces red blood cell aging

    Joy G. Mohanty;Enika Nagababu;Joseph M. Rifkind

  • Active nitric oxide produced in the red cell under hypoxic conditions by deoxyhemoglobin-mediated nitrite reduction.

    Enika Nagababu;Somasundaram Ramasamy;Darrell R. Abernethy;Joseph M. Rifkind

  • Reaction of Hydrogen Peroxide with Ferrylhemoglobin: Superoxide Production and Heme Degradation

    Enika Nagababu;Joseph Moses Rifkind

  • Heme degradation by reactive oxygen species.

    Enika Nagababu;Joseph M. Rifkind

  • Formation of Fluorescent Heme Degradation Products during the Oxidation of Hemoglobin by Hydrogen Peroxide

    Enika Nagababu;Joseph Moses Rifkind

  • Hydrogen-peroxide-induced heme degradation in red blood cells: the protective roles of catalase and glutathione peroxidase

    Enika Nagababu;Francis J. Chrest;Joseph M. Rifkind

  • Assessment of Antioxidant Activity of Eugenol In Vitro and In Vivo

    Enika Nagababu;Joseph M. Rifkind;Sesikeran Boindala;Lakshmaiah Nakka

  • The pathophysiology of extracellular hemoglobin associated with enhanced oxidative reactions

    Joseph M. Rifkind;Joseph M. Rifkind;Joy G. Mohanty;Enika Nagababu

  • Hemoglobin redox reactions and red blood cell aging

    Joseph M. Rifkind;Enika Nagababu

  • Production of superoxide from hemoglobin-bound oxygen under hypoxic conditions.

    Chavali Balagopalakrishna;Periakarupan T. Manoharan;Omoefe O. Abugo;Joseph M. Rifkind

  • Red blood cells induce hypoxic lung inflammation.

    Rainer Kiefmann;Joseph M. Rifkind;Enika Nagababu;Jahar Bhattacharya

  • Detection, formation, and relevance of hemichromes and hemochromes.

    Joseph M. Rifkind;Omoefe Abugo;Abraham Levy;Jane Heim

  • Heme degradation and oxidative stress in murine models for hemoglobinopathies: Thalassemia, sickle cell disease and hemoglobin C disease

    Enika Nagababu;Mary E. Fabry;Ronald L. Nagel;Joseph M. Rifkind

  • Site-Specific Cross-Linking of Human and Bovine Hemoglobins Differentially Alters Oxygen Binding and Redox Side Reactions Producing Rhombic Heme and Heme Degradation†

    Enika Nagababu;Somasundaram Ramasamy;Joseph Moses Rifkind;Yiping Jia

  • Transient Improvement in Cognitive Function and Synaptic Plasticity in Rats Following Cancer Chemotherapy

    Garrick D. Lee;Dan L. Longo;Yue Wang;Joseph M. Rifkind

  • Copper and the autoxidation of hemoglobin.

    Joseph M. Rifkind

  • Nitrite enhances RBC hypoxic ATP synthesis and the release of ATP into the vasculature: a new mechanism for nitrite-induced vasodilation

    Zeling Cao;Jeffrey B. Bell;Joy G. Mohanty;Enika Nagababu

  • Heme degradation during autoxidation of oxyhemoglobin.

    Enika Nagababu;Joseph M. Rifkind

  • Autoxidation of hemoglobin enhanced by dissociation into dimers.

    Lu Zhang;Abraham Levy;Joseph M. Rifkind

  • Hemoglobin redox reactions and oxidative stress

    Joseph M. Rifkind;Enika Nagababu;Somasundaram Ramasamy;Luke Babu Ravi

  • S-nitrosohemoglobin: a mechanism for its formation in conjunction with nitrite reduction by deoxyhemoglobin.

    Enika Nagababu;Somasundaram Ramasamy;Joseph M. Rifkind

Frequent Co-Authors

Donald K. Ingram
Donald K. Ingram Louisiana State University
Edward L. Spangler
Edward L. Spangler National Institutes of Health
Jahar Bhattacharya
Jahar Bhattacharya Columbia University
George S. Roth
George S. Roth National Institutes of Health
Alan B. Zonderman
Alan B. Zonderman National Institutes of Health
Michele K. Evans
Michele K. Evans National Institutes of Health
Lenore J. Launer
Lenore J. Launer National Institutes of Health
Viswanathan Natarajan
Viswanathan Natarajan University of Illinois at Chicago
Mark P. Mattson
Mark P. Mattson Johns Hopkins University
Dan L. Longo
Dan L. Longo Harvard University

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