Biography and Research Information
OverviewAI-generated summary
Ankita Chalke's research focuses on the molecular mechanisms underlying bone metabolism and loss, particularly in the context of radiation exposure and hormonal influences. Her recent work investigates the role of sirtuin-3 in promoting osteoclast maturation and bone resorption, mediated by mitochondrial reactive oxygen species production following ionizing radiation. Additionally, she has explored the protective effects of estrogens on bone mass by examining their impact on NAD+ metabolism in osteoclasts. Chalke collaborates with researchers at the University of Arkansas for Medical Sciences, including Ha-Neui Kim, Benjamin M. Stronach, Aaron Warren, and Ana I. Coelho, with whom she has co-authored multiple publications. Her scholarly contributions include two publications and two citations, with an h-index of 1, indicating recent activity in the field.
Metrics
- h-index: 1
- Publications: 2
- Citations: 2
Selected Publications
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Estrogens protect bone mass by inhibiting NAD <sup>+</sup> metabolism in osteoclasts (2025)
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Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure (2025)
Collaboration Network
Top Collaborators
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Estrogens protect bone mass by inhibiting NAD <sup>+</sup> metabolism in osteoclasts
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Sirtuin-3 promotes osteoclast maturation and bone loss by regulating mitochondrial ROS production during ionizing radiation exposure
- Estrogens protect bone mass by inhibiting NAD <sup>+</sup> metabolism in osteoclasts
- Estrogens protect bone mass by inhibiting NAD <sup>+</sup> metabolism in osteoclasts
- Estrogens protect bone mass by inhibiting NAD <sup>+</sup> metabolism in osteoclasts
- Estrogens protect bone mass by inhibiting NAD <sup>+</sup> metabolism in osteoclasts
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