2026
1. Dutta, S., & Padinhateeri, R. (2026).
Polymer simulations of chromatin: connecting 3D organization and dynamics to function.
Current Opinion in Genetics & Development, 96, 102429.
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2025
2. Mukherjee, S., Sengupta, D., Sulkshane, P., Modak, A., Singh, S., Manna, S., Paul, A., Shaw, R., Devi, J., Masurkar, S., Bera, R., & Maji, S.K. (2025).
Phase separation as a concentrating mechanism of protein/peptide hormones for secretory granule storage.
bioRxiv.
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3. Polisetty, S.D., Dutta, S., Vadnala, R.N., Notani, D., Padinhateeri, R., & Sanyal, K. (2025).
Organization principles of dynamic three-dimensional genome architecture associated with centromere clustering states.
Proceedings of the National Academy of Sciences, 122(50), e2520310122.
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4. Kadam, S., Sahoo, S., Kumar, P.B., & Padinhateeri, R. (2025).
Dynamical properties of chromatin provide insights into key folding principles.
Biophysical Journal, 124(19), 3189–3205.
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5. Aman, A., Hoskote, A., Jadhav, K.S., & Aggarwal, B. (2025).
Comparative analysis of brain volumetric measurements between contrast-enhanced and non-contrast MRI images.
Neuroscience Letters, 848, 138118.
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6. Patel, K., & Maji, S.K. (2025).
Are amyloid-based materials conducive to tissue engineering?
Trends in Biotechnology, In Press.
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7. Gahlot, N., Shaw, R., Wahi, R., Patel, K., & Maji, S.K. (2025).
Optimizing the cell number and size for tumor spheroid modeling using amyloid hydrogel.
ChemBioChem, 26(23), e202400595.
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8. Shaw, R., Patel, K., Chimthanawala, N.M.A., Sathaye, S., & Maji, S.K. (2025).
Peptide-based functional amyloid hydrogel enhances wound healing in normal and diabetic rat models.
Advanced Healthcare Materials, 14(9), 2403560.
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9. Kumar, D., Tiwari, A.R., & Namboothiri, I.N.N. (2025).
Curcumin as a cinnamoyl transfer reagent via C–C(CO) bond scissoring in the microwave-assisted reaction with hydroxy-p-QMs.
Journal of Organic Chemistry, 90(28).
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10. Sakunthala, A., & Maji, S.K. (2025).
Deciphering the seed size-dependent cellular internalization mechanism for α-synuclein fibrils.
Biochemistry, 64(2), 377–400.
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2024
11. Manivannan, V., Inamdar, M.M., & Padinhateeri, R. (2024).
Role of diffusion and reaction of the constituents in spreading of histone modification marks.
PLoS Computational Biology, 20(7), e1012235.
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12. Datta, D., Navalkar, A., Sakunthala, A., et al. (2024).
Nucleo-cytoplasmic environment modulates spatiotemporal p53 phase separation.
Science Advances, 10(50), eads0427.
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13. Ahlawat, S., Mehra, S., Gowda, C., Maji, S.K., & Agarwal, V. (2024).
Solid-state NMR assignment of α-synuclein polymorph prepared from helical intermediate.
Biomolecular NMR Assignments, 18, 1–8.
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14. Mukherjee, S., Poudyal, M., Dave, K., Kadu, P., & Maji, S.K. (2024).
Protein misfolding and amyloid nucleation through liquid–liquid phase separation (Review).
Chemical Society Reviews.
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2023
15. Poudyal, M., Patel, K., Gadhe, L., et al. (2023).
Intermolecular interactions underlie protein/peptide phase separation irrespective of sequence and structure at crowded milieu.
Nature Communications, 14, 6199.
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16. Mahato, J., Mukherjee, R., Bose, A., et al. (2023).
Sensitized emission imaging allows nanoscale surface polarity mapping of α-synuclein amyloid fibrils.
ACS Chemical Neuroscience.
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17. Kadam, S., Kumari, K., Manivannan, V., et al. (2023).
Predicting scale-dependent chromatin polymer properties from systematic coarse-graining.
Nature Communications, 14(1), 4108.
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18. Mukherjee, S., Sakunthala, A., Gadhe, L., et al. (2023).
Liquid–liquid phase separation of α-synuclein.
Journal of Molecular Biology, 435(1), 167713.
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2022
19. Poudyal, M., Sakunthala, A., Mukherjee, S., Gadhe, L., & Maji, S.K. (2022).
Phase separation and other forms of α-synuclein self-assembly.
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