Durga Ray

@staloysiuscollege.ac.in

Department of Botany and Microbiology,
St. Aloysius College, Jabalpur, MP

RESEARCH INTERESTS

Microbiology, Molecular and Microbial Biological Techniques, Protein Expression, Biological Control
6

Scopus Publications

Scopus Publications

  • Retraction Note: Role of Polyamines in Molecular Regulation and Cross-Talks Against Drought Tolerance in Plants (Journal of Plant Growth Regulation, (2023), 42, 8, (4901-4917), 10.1007/s00344-022-10802-2)
    Samapika Nandy, Saynati Mandal, Santosh Kumar Gupta, Uttpal Anand, Mimosa Ghorai, Avinash Mundhra, Md. Habibur Rahman, Puja Ray, Sicon Mitra, Durga Ray, Milan Kumar Lal, Rahul Kumar Tiwari, Potshangbam Nongdam, Devendra Kumar Pandey, Mahipal S. Shekhawat, Niraj Kumar Jha, Saurabh Kumar Jha, Manoj Kumar, Radha, Javad Sharifi-Rad, Abhijit Dey
    Journal of Plant Growth Regulation, 2025
  • Role of Polyamines in Molecular Regulation and Cross-Talks Against Drought Tolerance in Plants
    Samapika Nandy, Saynati Mandal, Santosh Kumar Gupta, Uttpal Anand, Mimosa Ghorai, Avinash Mundhra, Md. Habibur Rahman, Puja Ray, Sicon Mitra, Durga Ray, Milan Kumar Lal, Rahul Kumar Tiwari, Potshangbam Nongdam, Devendra Kumar Pandey, Mahipal S. Shekhawat, Niraj Kumar Jha, Saurabh Kumar Jha, Manoj Kumar, Radha, Javad Sharifi-Rad, Abhijit Dey
    Journal of Plant Growth Regulation, 2023
  • The soil bacterium, Corynebacterium glutamicum, from biosynthesis of value-added products to bioremediation: A master of many trades
    Durga Ray, Uttpal Anand, Niraj Kumar Jha, Ewa Korzeniewska, Elza Bontempi, Jarosław Proćków, Abhijit Dey
    Environmental Research, 2022
  • Podophyllum hexandrum and its active constituents: Novel radioprotectants
    Uttpal Anand, Protha Biswas, Vinay Kumar, Durga Ray, Puja Ray, Verity I.P. Loake, Ramesh Kandimalla, Anupama Chaudhary, Birbal Singh, Nanda Kishore Routhu, Zhe-Sheng Chen, Jarosław Proćków, Abhijit Dey
    Biomedicine and Pharmacotherapy, 2022
    Human exposure to radiation has expanded considerably in recent years, due to a wide range of medical, agricultural, and industrial applications. Despite its beneficial utilities, radiation is also known to have a deleterious effect on cells and tissues, largely through the creation of free radicals, which cause severe damage to biological systems through processes such as DNA double/single-strand fragmentation, protein modification, and upregulation of lipid peroxidation pathways. In addition, radiation damages genetic material while inducing hereditary genotoxicity. Developing measures to counter radiation-induced damage is thus considered to be of significant importance. Considering the inherent capability of plants to survive radiative conditions, certain plants and natural compounds have been the subject of investigations to explore and harness their natural radioprotective abilities. Podophyllum hexandrum, an Indian medicinal plant with several known traditional phytotherapeutic uses, is considered in particular to be of immense therapeutic importance. Recent studies have been conducted to validate its radioprotective potential alongside discovering its protective mechanisms following γ-radiation-induced mortality and disorder in both mice and human cells. These findings show that Podophyllum and its constituents/natural compounds protect the lungs, gastrointestinal tissues, hemopoietic system, and testis by inducing DNA repair pathways, apoptosis inhibition, free radical scavenging, metal chelation, anti-oxidation and anti-inflammatory mechanisms. In this review, we have provided an updated, comprehensive summary of ionizing radiations and their impacts on biological systems, highlighting the mechanistic and radioprotective role of natural compounds from Podophyllum hexandrum.
  • Biotechnological interventions of in vitro propagation and production of valuable secondary metabolites in Stevia rebaudiana
    Shahnawaz, Devendra Kumar Pandey, Merinashwari Konjengbam, Padmanabh Dwivedi, Prabhjot Kaur, Vijay Kumar, Durga Ray, Puja Ray, Romaan Nazir, Harmeet Kaur, Sidharth Parida, Abhijit Dey
    Applied Microbiology and Biotechnology, 2021
  • Bacosides from Bacopa monnieri extract: An overview of the effects on neurological disorders
    Samarpita Banerjee, Uttpal Anand, Suchhanda Ghosh, Durga Ray, Puja Ray, Samapika Nandy, Ganpat Dewaji Deshmukh, Vijay Tripathi, Abhijit Dey
    Phytotherapy Research, 2021
    From ancient history, complementary and alternative medicines have played a significant role as holistic therapeutic treatments of various human diseases including cancer, diabetes, neurological diseases, and skin problems. One Indian medicinal plant (herb), Bacopa monnieri has been used in many parts of the world as such medicine, particularly for the treatment of various neurological disorders. It is well known as a potent “tonic for the human brain,” which serves as a memory enhancer. Multiple studies proved that this herb contains a plethora of potential bioactive, phytochemical compounds with synergistic properties. The main purpose of the present review is to shed light on the use of Bacopa monnieri and its active principles (bacosides) in the management of neurological disorders. Furthermore, the signaling pathways modulated by bacosides have been critically discussed in this review. Moreover, we have critically summarized the present knowledge of this perennial creeping herb based upon the literature mining from different scientific engines.