By The People, For The People Open Science Institute™ Donate

Open Science Institute™ is a 501(c)3 project of the International Center for Integrative Systems. Open Science Institute™ provides the solution to address the existing inefficient research and development environment in the biological sciences that is being done in a medieval and corrupt framework. The collusion of Big Academia, Big Pharma, Big Foundations, Big Government has led to relatively minimal innovation and discoveries to advance human life. The Open Science Institute™ built by the people for the people, based on an engineering systems approach, delivers research and development faster, cheaper and better. These are the initiatives in which the public and donors can support, and witness how their support and contributions are leading to real results in a timely and tangible manner.

Research Initiatives

Publications

Stem Cells</br>August 2025
Stem Cells
August 2025
A molecular systems architecture of the mesenchymal stromal cell microenvironment
NATURE Systems Biology and Applications</br>Mar 2025
NATURE Systems Biology and Applications
Mar 2025
A molecular systems architecture of neuromuscular junction in amyotrophic lateral sclerosis
Nutrients</br>August 2023
Nutrients
August 2023
Attenuation of Aging-Related Oxidative Stress Pathways by Phytonutrients: A Computational Systems Biology Analysis
Journal of American Dental Association</br>August 2023
Journal of American Dental Association
August 2023
Molecular systems architecture of host-microbiome interactions in periodontitis
Nutrients</br>February 2023
Nutrients
February 2023
Mechanistic Understanding of D-Glucaric Acid to Support Liver Detoxification Essential to Muscle Health Using a Computational Systems Biology Approach
Applied sciences</br>October 2022
Applied sciences
October 2022
In Silico Modeling and Quantification of Synergistic Effects of Multi-Combination Compounds: Case Study of the Attenuation of Joint Pain Using a Combination of Phytonutrients
<span style="font-size:12px;">European Society for Clinical Nutrition and Metabolism</span></br>March 2022
European Society for Clinical Nutrition and Metabolism
March 2022
Attenuation of low-grade chronic inflammation by phytonutrients: A computational systems biology analysis
Cancers</br>February 2022
Cancers
February 2022
Molecular Systems Architecture of Interactome in the Acute Myeloid Leukemia Microenvironment
Clinical Nutrition ESPEN</br>September 2021
Clinical Nutrition ESPEN
September 2021
Bioactive compounds in green tea may improve transplant tolerance: A computational systems biology analysis
Journal of Dietary Supplements<br>April 2020
Journal of Dietary Supplements
April 2020
Multi-Criteria Decision Analysis Model for Assessing the Risk from Multi-Ingredient Dietary Supplements (MIDS)
American Journal of Plant Sciences</br>August 2016
American Journal of Plant Sciences
August 2016
In-Silico Analysis & In-Vivo Results Concur on Glutathione Depletion in Glyphosate Resistant GMO Soy, Advancing a Systems Biology Framework for Safety Assessment of GMOs
NATURE Neuroscience</br>May 2016
NATURE Neuroscience
May 2016
Pericytes of the neurovascular unit: key functions and signaling pathways
Agricultural Sciences</br>July 2015
Agricultural Sciences
July 2015
Do GMOs Accumulate Formaldehyde and Disrupt Molecular Systems Equilibria? Systems Biology May Provide Answers
American Journal of Plant Sciences</br>June 2015
American Journal of Plant Sciences
June 2015
Integrative Modeling of Oxidative Stress and C1 Metabolism Reveals Upregulation of Formaldehyde and Downregulation of Glutathione
American Journal of Plant Sciences</br>June 2015
American Journal of Plant Sciences
June 2015
In Silico Modeling of C1 Metabolism
Agricultural Sciences</br>May 2015
Agricultural Sciences
May 2015
Discovery of Key Molecular Pathways of C1 Metabolism and Formaldehyde Detoxification in Maize through a Systematic Bioinformatics Literature Review
CELL's Biophysical Journal</br>May 2013
CELL's Biophysical Journal
May 2013
In Silico Modeling of Shear-Stress-Induced Nitric Oxide Production in Endothelial Cells through Systems Biology
BMC BioInformatics</br>Mar 2012
BMC BioInformatics
Mar 2012
OREMPdb: a semantic dictionary of computational pathway models
<span style="font-size:12px;">IEEE Transactions On Biomedical Engineering</span></br>October 2011
IEEE Transactions On Biomedical Engineering
October 2011
Multiscale Mathematical Modeling to Support Drug Development
<span style="font-size:12px;">Communications in Medical and Care Compunetics</span></br>November 2010
Communications in Medical and Care Compunetics
November 2010
Services-Based Systems Architecture for Modeling the Whole Cell: A Distributed Collaborative Engineering Systems Approach
Cellular and Molecular Bioengineering</br>October 2010
Cellular and Molecular Bioengineering
October 2010
CytoSolve: A Scalable Computational Method for Dynamic Integration of Multiple Molecular Pathway Models

Faculty

Dr. Shiva Ayyadurai

Institute Professor

Dr. Prabhakar Deonikar

Professor

Dr. Kris See

Visiting Professor

Dr. Raveendhara Bannuru

Visiting Professor

Dr. Hauke L. Kite-Powell

Visiting Professor

Dr. Yamuna Ajay

Associate Professor

Dr. Kai Blumberg

Associate Professor

Dr. Rajha Viknesh

Associate Professor

Mrs. Vishvatha Radhakrishnan

Assistant Professor

Ms. Jasmin Banu

Research Fellow

Administration

Crystal Ellis

Co-Executive Director

Jill Jones

Co-Executive Director

Thomas Murray

Resource Development

Manjula Balaji

Finance

Emily Cross

Program Management

Board Of Directors

Dr. Shiva Ayyadurai

Chairman

Dr. Prabhakar Deonikar

Board Member

Dr. Kris See

Board Member

Mr. Arvind Gupta

Board Member

Dr. Hauke L. Kite-Powell

Board Member

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