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Badri N. Pandey

Researcher at Homi Bhabha National Institute

Publications -  110
Citations -  3009

Badri N. Pandey is an academic researcher from Homi Bhabha National Institute. The author has contributed to research in topics: Apoptosis & Cancer. The author has an hindex of 28, co-authored 106 publications receiving 2511 citations. Previous affiliations of Badri N. Pandey include Bhabha Atomic Research Centre & Rutgers University.

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Journal ArticleDOI

Differential roles of ATF-2 in survival and DNA repair contributing to radioresistance induced by autocrine soluble factors in A549 lung cancer cells

TL;DR: This study revealed that, autocrine soluble factors regulate dual but differential role of ATF-2 as a transcription factor or DNA repair protein, which collectively culminate in radioresistance of A549 cells.
Journal ArticleDOI

Receptor tyrosine kinase signaling in cancer radiotherapy and its targeting for tumor radiosensitization.

TL;DR: This review elucidates the effect of IR on various oncogenic RTKs and their mechanisms, downstream signaling, intracellular translocations, their role in the repair of radiation-induced DNA damage and post-irradiation survival, and identifies the radiosensitizing potential of recently developed RTK-targeted nanoformulations.
Journal ArticleDOI

Thorium decorporation efficacy of rationally-selected biocompatible compounds with relevance to human application.

TL;DR: Amongst the chosen biocompatible agents, tiron, SLB, PA and L52 hold promise to enhance Th decorporation for human application.
Book ChapterDOI

Membrane oxidative damage and apoptosis in cervical carcinoma cells of patients after radiation therapy.

TL;DR: Evaluation of plasma membrane fluidity and intracellular SOD with relation to apoptotic death of cervical carcinoma cells after radiation therapy suggests decrease in DPH polarization in membrane, reduction in SOD activity and increased apoptosis in cervical cells of cancer patients treated with radiation may be consequent to oxidative damage induced by reactive oxygen species.

Understanding The Biological Effects of Thorium and Developing Efficient Strategies for Its Decorporation and Mitigation

TL;DR: An overview of research activities in the laboratory on the effects of thorium in human cells and animal models and the importance of multidisciplinary interactions to further understand the cellular and molecular basis of radiobiological effects ofThorium in mammalian systems is presented.