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Hire Tuyelee D.
India
USD 30 /hr
Scientific Researcher with 5+ Years of experience in academic publishing, and blog writting
Profile Summary
Subject Matter Expertise
Services
Writing
Medical Writing,
Copywriting,
Creative Writing,
General Proofreading & Editing
Research
Fact Checking,
Gap Analysis,
Scientific and Technical Research,
Systematic Literature Review,
Secondary Data Collection
Consulting
Scientific and Technical Consulting
Work Experience
Assistant Professor
Chandigarh University
- Present ![]()
PhD student
Presidency University
July 2019 - June 2024 ![]()
Education
Masters degree (Botany)
IEEE
- Present ![]()
M. Sc in botany
University of North Bengal
January 2014 - August 2016
Certifications
- Certification details not provided.
Publications
JOURNAL ARTICLE
Tuyelee Das, Ashish Prasad (2026). Rice stripe virus and the problem with dicing . Plant Science.
Tuyelee Das, Samapika Nandy, Tabarak Malik, Abhijit Dey (2024). Quantitative assessment of paclitaxel in Taxus wallichiana zucc. bark using HPTLC densitometry: Insights for germplasm selection and toxicological studies . Biocatalysis and Agricultural Biotechnology.
Tuyelee Das, Devendra Kumar Pandey, Mahipal S. Shekhawat, Abhijit Dey, Tabarak Malik (2023). Quantification of Tissue-Specific Paclitaxel in Himalayan Yew Using HPTLC-Densitometric Analysis, Assessment of Toxicological Activity, and Tissue-Specific Evaluation of Antioxidant Activity . ACS Omega.
Pandey, D.K., Katoch, K., Das, T., Majumder, M., Dhama, K., Mane, A.B., Gopalakrishnan, A.V., Dey, A.(2023). Approaches for in vitro propagation and production of plumbagin in Plumbago spp . Applied Microbiology and Biotechnology.
Pandey, D.K., Katoch, K., Das, T., Majumder, M., Dhama, K., Mane, A.B., Gopalakrishnan, A.V., Dey, A.(2023). Approaches for in vitro propagation and production of plumbagin in Plumbago spp . Applied Microbiology and Biotechnology.
Pandey, D.K., Katoch, K., Das, T., Majumder, M., Dhama, K., Mane, A.B., Gopalakrishnan, A.V., Dey, A.(2023). Approaches for in vitro propagation and production of plumbagin in Plumbago spp . Applied Microbiology and Biotechnology.
Mandal, S., Das, T., Nandy, S., Ghorai, M., Saha, S.C., Gopalakrishnan, A.V., Kumar, M., Radha, Ghosh, A., Mukerjee, N., et al.(2023). Biotechnological and endophytic-mediated production of centellosides in Centella asiatica . Applied Microbiology and Biotechnology. 107. (2-3). p. 473-489.
Mandal, S., Das, T., Nandy, S., Ghorai, M., Saha, S.C., Gopalakrishnan, A.V., Kumar, M., Radha, Ghosh, A., Mukerjee, N., et al.(2023). Biotechnological and endophytic-mediated production of centellosides in Centella asiatica . Applied Microbiology and Biotechnology. 107. (2-3). p. 473-489.
Das, T., Nandy, S., Ghosh, A., Chandran, D., Sharma, A.K., Dhama, K., Dey, A.(2023). Efficacy of smallpox approved tecovirimat (Tpoxx) drug against Monkeypox: current update and futuristic prospects . International journal of surgery (London, England). 109. (5). p. 1528-1530.
Mandal, S., Das, T., Nandy, S., Ghorai, M., Saha, S.C., Gopalakrishnan, A.V., Kumar, M., Radha, Ghosh, A., Mukerjee, N., et al.(2023). Biotechnological and endophytic-mediated production of centellosides in Centella asiatica . Applied Microbiology and Biotechnology. 107. (2-3). p. 473-489.
Das, T., Nandy, S., Ghosh, A., Chandran, D., Sharma, A.K., Dhama, K., Dey, A.(2023). Efficacy of smallpox approved tecovirimat (Tpoxx) drug against Monkeypox: current update and futuristic prospects . International journal of surgery (London, England). 109. (5). p. 1528-1530.
Das, T., Nandy, S., Ghosh, A., Chandran, D., Sharma, A.K., Dhama, K., Dey, A.(2023). Efficacy of smallpox approved tecovirimat (Tpoxx) drug against Monkeypox: current update and futuristic prospects . International journal of surgery (London, England). 109. (5). p. 1528-1530.
Das, T., Anand, U., Pal, T., Mandal, S., Kumar, M., Radha, Gopalakrishnan, A.V., Lastra, J.M.P.D.L., Dey, A.(2023). Exploring the potential of CRISPR/Cas genome editing for vegetable crop improvement: An overview of challenges and approaches . Biotechnology and Bioengineering. 120. (5). p. 1215-1228.
Das, T., Anand, U., Pal, T., Mandal, S., Kumar, M., Radha, Gopalakrishnan, A.V., Lastra, J.M.P.D.L., Dey, A.(2023). Exploring the potential of CRISPR/Cas genome editing for vegetable crop improvement: An overview of challenges and approaches . Biotechnology and Bioengineering. 120. (5). p. 1215-1228.
Das, T., Anand, U., Pal, T., Mandal, S., Kumar, M., Radha, Gopalakrishnan, A.V., Lastra, J.M.P.D.L., Dey, A.(2023). Exploring the potential of CRISPR/Cas genome editing for vegetable crop improvement: An overview of challenges and approaches . Biotechnology and Bioengineering. 120. (5). p. 1215-1228.
Dutta, T., Das, T., Gopalakrishnan, A.V., Saha, S.C., Ghorai, M., Nandy, S., Kumar, M., Radha, Ghosh, A., Mukerjee, N., et al.(2023). Mangiferin: the miraculous xanthone with diverse pharmacological properties . Naunyn-Schmiedeberg's Archives of Pharmacology. 396. (5). p. 851-863.
Dutta, T., Das, T., Gopalakrishnan, A.V., Saha, S.C., Ghorai, M., Nandy, S., Kumar, M., Radha, Ghosh, A., Mukerjee, N., et al.(2023). Mangiferin: the miraculous xanthone with diverse pharmacological properties . Naunyn-Schmiedeberg's Archives of Pharmacology. 396. (5). p. 851-863.
Dutta, T., Das, T., Gopalakrishnan, A.V., Saha, S.C., Ghorai, M., Nandy, S., Kumar, M., Radha, Ghosh, A., Mukerjee, N., et al.(2023). Mangiferin: the miraculous xanthone with diverse pharmacological properties . Naunyn-Schmiedeberg's Archives of Pharmacology. 396. (5). p. 851-863.
Das, T., Prasad, A., Dey, A.(2023). Mycoviral gene-incorporating phytopathogenic fungi: a biocontrol agent . Trends in Plant Science.
Das, T., Prasad, A., Dey, A.(2023). Mycoviral gene-incorporating phytopathogenic fungi: a biocontrol agent . Trends in Plant Science.
Das, T., Prasad, A., Dey, A.(2023). Mycoviral gene-incorporating phytopathogenic fungi: a biocontrol agent . Trends in Plant Science.
Tudu, C.K., Bandyopadhyay, A., Kumar, M., Radha, Das, T., Nandy, S., Ghorai, M., Gopalakrishnan, A.V., Proćków, J., Dey, A.(2023). Unravelling the pharmacological properties of cryptolepine and its derivatives: a mini-review insight . Naunyn-Schmiedeberg's Archives of Pharmacology. 396. (2). p. 229-238.
Tudu, C.K., Bandyopadhyay, A., Kumar, M., Radha, Das, T., Nandy, S., Ghorai, M., Gopalakrishnan, A.V., Proćków, J., Dey, A.(2023). Unravelling the pharmacological properties of cryptolepine and its derivatives: a mini-review insight . Naunyn-Schmiedeberg's Archives of Pharmacology. 396. (2). p. 229-238.
Tudu, C.K., Bandyopadhyay, A., Kumar, M., Radha, Das, T., Nandy, S., Ghorai, M., Gopalakrishnan, A.V., Proćków, J., Dey, A.(2023). Unravelling the pharmacological properties of cryptolepine and its derivatives: a mini-review insight . Naunyn-Schmiedeberg's Archives of Pharmacology. 396. (2). p. 229-238.
Tuyelee Das(2022). In vitro propagation and secondary metabolite production in Gloriosa superba L . Applied Microbiology and Biotechnology. 106. (17). p. 5399--5414. Springer Science and Business Media {LLC}
Tuyelee Das(2022). Naturally-Occurring Bioactives in Oral Cancer: Preclinical and Clinical Studies, Bottlenecks and Future Directions . Frontiers in Bioscience-Scholar. 14. (3). p. 24. {IMR} Press
Tuyelee Das(2022). Promising botanical-derived monoamine oxidase (MAO) inhibitors: pharmacological aspects and structure-activity studies . South African Journal of Botany. 146. p. 127--145. Elsevier {BV}
Tuyelee Das(2022). Unravelling the multi-faceted regulatory role of polyamines in plant biotechnology, transgenics and secondary metabolomics . Applied Microbiology and Biotechnology. 106. (3). p. 905--929. Springer Science and Business Media {LLC}
Nandy, S., Das, T., Tudu, C.K., Mishra, T., Ghorai, M., Gadekar, V.S., Anand, U., Kumar, M., Behl, T., Shaikh, N.K., et al.(2022). Unravelling the multi-faceted regulatory role of polyamines in plant biotechnology, transgenics and secondary metabolomics . Applied Microbiology and Biotechnology. 106. (3). p. 905-929.
Nandy, S., Das, T., Tudu, C.K., Mishra, T., Ghorai, M., Gadekar, V.S., Anand, U., Kumar, M., Behl, T., Shaikh, N.K., et al.(2022). Unravelling the multi-faceted regulatory role of polyamines in plant biotechnology, transgenics and secondary metabolomics . Applied Microbiology and Biotechnology. 106. (3). p. 905-929.
Nandy, S., Das, T., Tudu, C.K., Mishra, T., Ghorai, M., Gadekar, V.S., Anand, U., Kumar, M., Behl, T., Shaikh, N.K., et al.(2022). Unravelling the multi-faceted regulatory role of polyamines in plant biotechnology, transgenics and secondary metabolomics . Applied Microbiology and Biotechnology. 106. (3). p. 905-929.
Sanyal, R., Nandi, S., Pandey, S., Das, T., Kaur, P., Konjengbam, M., Kant, N., Rahman, M.H., Mundhra, A., Kher, M.M., et al.(2022). In vitro propagation and secondary metabolite production in Gloriosa superba L . Applied Microbiology and Biotechnology. 106. (17). p. 5399-5414.
Sanyal, R., Nandi, S., Pandey, S., Das, T., Kaur, P., Konjengbam, M., Kant, N., Rahman, M.H., Mundhra, A., Kher, M.M., et al.(2022). In vitro propagation and secondary metabolite production in Gloriosa superba L . Applied Microbiology and Biotechnology. 106. (17). p. 5399-5414.
Sanyal, R., Nandi, S., Pandey, S., Das, T., Kaur, P., Konjengbam, M., Kant, N., Rahman, M.H., Mundhra, A., Kher, M.M., et al.(2022). In vitro propagation and secondary metabolite production in Gloriosa superba L . Applied Microbiology and Biotechnology. 106. (17). p. 5399-5414.
Das, T., Saha, S.C., Sunita, K., Majumder, M., Ghorai, M., Mane, A.B., Prasanth, D.A., Kumar, P., Pandey, D.K., Al-Tawaha, A.R., et al.(2022). Promising botanical-derived monoamine oxidase (MAO) inhibitors: pharmacological aspects and structure-activity studies . South African Journal of Botany. 146. p. 127-145.
Das, T., Saha, S.C., Sunita, K., Majumder, M., Ghorai, M., Mane, A.B., Prasanth, D.A., Kumar, P., Pandey, D.K., Al-Tawaha, A.R., et al.(2022). Promising botanical-derived monoamine oxidase (MAO) inhibitors: pharmacological aspects and structure-activity studies . South African Journal of Botany. 146. p. 127-145.
Das, T., Saha, S.C., Sunita, K., Majumder, M., Ghorai, M., Mane, A.B., Prasanth, D.A., Kumar, P., Pandey, D.K., Al-Tawaha, A.R., et al.(2022). Promising botanical-derived monoamine oxidase (MAO) inhibitors: pharmacological aspects and structure-activity studies . South African Journal of Botany. 146. p. 127-145.
Butnariu, M., Quispe, C., Sharifi-Ra, J., Pons-Fuste, E., Lopez-Jorne, P., Zam, W., Das, T., Dey, A., Kumar, M., Pentea, M., et al.(2022). Naturally-Occurring Bioactives in Oral Cancer: Preclinical and Clinical Studies, Bottlenecks and Future Directions . Frontiers in Bioscience - Scholar. 14. (3).
Butnariu, M., Quispe, C., Sharifi-Ra, J., Pons-Fuste, E., Lopez-Jorne, P., Zam, W., Das, T., Dey, A., Kumar, M., Pentea, M., et al.(2022). Naturally-Occurring Bioactives in Oral Cancer: Preclinical and Clinical Studies, Bottlenecks and Future Directions . Frontiers in Bioscience - Scholar. 14. (3).
Butnariu, M., Quispe, C., Sharifi-Ra, J., Pons-Fuste, E., Lopez-Jorne, P., Zam, W., Das, T., Dey, A., Kumar, M., Pentea, M., et al.(2022). Naturally-Occurring Bioactives in Oral Cancer: Preclinical and Clinical Studies, Bottlenecks and Future Directions . Frontiers in Bioscience - Scholar. 14. (3).
Tuyelee Das(2021). Therapeutic strategies to overcome taxane resistance in cancer . Drug Resistance Updates. 55. p. 100754. Elsevier {BV}
Das, T., Anand, U., Pandey, S.K., Ashby, C.R., Assaraf, Y.G., Chen, Z.-S., Dey, A.(2021). Therapeutic strategies to overcome taxane resistance in cancer . Drug Resistance Updates. 55.
Das, T., Anand, U., Pandey, S.K., Ashby, C.R., Assaraf, Y.G., Chen, Z.-S., Dey, A.(2021). Therapeutic strategies to overcome taxane resistance in cancer . Drug Resistance Updates. 55.
Das, T., Anand, U., Pandey, S.K., Ashby, C.R., Assaraf, Y.G., Chen, Z.-S., Dey, A.(2021). Therapeutic strategies to overcome taxane resistance in cancer . Drug Resistance Updates. 55.
Tuyelee Das(2020). Fungal endophytes: Futuristic tool in recent research area of phytoremediation . South African Journal of Botany. 134. p. 285--295. Elsevier {BV}
Nandy, S., Das, T., Tudu, C.K., Pandey, D.K., Dey, A., Ray, P.(2020). Fungal endophytes: Futuristic tool in recent research area of phytoremediation . South African Journal of Botany. 134. p. 285-295.
Nandy, S., Das, T., Tudu, C.K., Pandey, D.K., Dey, A., Ray, P.(2020). Fungal endophytes: Futuristic tool in recent research area of phytoremediation . South African Journal of Botany. 134. p. 285-295.
Nandy, S., Das, T., Tudu, C.K., Pandey, D.K., Dey, A., Ray, P.(2020). Fungal endophytes: Futuristic tool in recent research area of phytoremediation . South African Journal of Botany. 134. p. 285-295.
BOOK
Biswas, P., Mandal, S., Das, T., Dey, S., Ghorai, M., Bhattacharya, S., Ghosh, A., Nongdam, P., Kumar, V., Al-Tawaha, A.R., et al.(2023). Generation of biofuels from rice straw and its future perspectives . Green Approach to Alternative Fuel for a Sustainable Future. p. 25-33.
BOOK CHAPTER
Biswas, P., Mandal, S., Das, T., Dey, S., Ghorai, M., Bhattacharya, S., Ghosh, A., Nongdam, P., Kumar, V., Al-Tawaha, A.R., et al.(2023). Generation of biofuels from rice straw and its future perspectives . Green Approach to Alternative Fuel for a Sustainable Future. p. 25-33.
Biswas, P., Mandal, S., Das, T., Dey, S., Ghorai, M., Bhattacharya, S., Ghosh, A., Nongdam, P., Kumar, V., Al-Tawaha, A.R., et al.(2023). Generation of biofuels from rice straw and its future perspectives . Green Approach to Alternative Fuel for a Sustainable Future. p. 25-33.
Hasan, I., Das, T., Ghorai, M., Al-Tawaha, A.R., Bursal, E., Swamy, M.K., Nongdam, P., Shekhawat, M.S., Pandey, D.K., Dey, A.(2023). Sheep Polypore (Polyporus confluens) . Mushrooms: Nutraceuticals and Functional Foods. p. 322-329.
Hasan, I., Das, T., Ghorai, M., Al-Tawaha, A.R., Bursal, E., Swamy, M.K., Nongdam, P., Shekhawat, M.S., Pandey, D.K., Dey, A.(2023). Sheep Polypore (Polyporus confluens) . Mushrooms: Nutraceuticals and Functional Foods. p. 322-329.
Hasan, I., Das, T., Ghorai, M., Al-Tawaha, A.R., Bursal, E., Swamy, M.K., Nongdam, P., Shekhawat, M.S., Pandey, D.K., Dey, A.(2023). Sheep Polypore (Polyporus confluens) . Mushrooms: Nutraceuticals and Functional Foods. p. 322-329.
Tuyelee Das, Tuyelee Das, Samapika Nandy, Devendra Kumar Pandey, Abdel Rahman Al-Tawaha, Mallappa Kumara Swamy, Vinay Kumar, Potshangbam Nongdam, Abhijit Dey(2022). An update on paclitaxel treatment in breast cancer . Paclitaxel. p. 287--308. Elsevier
Jain, V., Ghorai, M., Das, T., Dey, A.(2022). Anticancerous Compounds from Bryophytes: Recent Advances with Special Emphasis on Bis(bi)benzyls . Reference Series in Phytochemistry. p. 1-25.
Jain, V., Ghorai, M., Das, T., Dey, A.(2022). Anticancerous Compounds from Bryophytes: Recent Advances with Special Emphasis on Bis(bi)benzyls . Reference Series in Phytochemistry. p. 1-25.
Jain, V., Ghorai, M., Das, T., Dey, A.(2022). Anticancerous Compounds from Bryophytes: Recent Advances with Special Emphasis on Bis(bi)benzyls . Reference Series in Phytochemistry. p. 1-25.
Sanyal, R., Paul, A.D., Das, T., Dewanjee, S., Al-Tawaha, A.R., Bursal, E., Biswas, P., Kumar, M., Radha, Nandy, S., et al.(2022). Atractylodes lancea (Thunb.) DC.: Ethnobotany, Phytochemistry, Pharmacological Attributes, and Safety Profile . Medicinal Plants of the Asteraceae Family: Traditional Uses, Phytochemistry and Pharmacological Activities. p. 89-101.
Sanyal, R., Paul, A.D., Das, T., Dewanjee, S., Al-Tawaha, A.R., Bursal, E., Biswas, P., Kumar, M., Radha, Nandy, S., et al.(2022). Atractylodes lancea (Thunb.) DC.: Ethnobotany, Phytochemistry, Pharmacological Attributes, and Safety Profile . Medicinal Plants of the Asteraceae Family: Traditional Uses, Phytochemistry and Pharmacological Activities. p. 89-101.
Sanyal, R., Paul, A.D., Das, T., Dewanjee, S., Al-Tawaha, A.R., Bursal, E., Biswas, P., Kumar, M., Radha, Nandy, S., et al.(2022). Atractylodes lancea (Thunb.) DC.: Ethnobotany, Phytochemistry, Pharmacological Attributes, and Safety Profile . Medicinal Plants of the Asteraceae Family: Traditional Uses, Phytochemistry and Pharmacological Activities. p. 89-101.
Tuyelee Das(2022). CRISPR/Cas Genome Editing in Engineering Plant Secondary Metabolites of Therapeutic Benefits . Metabolic Engineering in Plants. p. 187--208. Springer Nature Singapore
Das, T., Ghorai, M., Pandey, D.K., Radha, Thakur, M., Rathour, S., Al-Tawaha, A.R., Bursal, E., Kumar, V., Nongdam, P., et al.(2022). CRISPR/Cas Genome Editing in Engineering Plant Secondary Metabolites of Therapeutic Benefits . Metabolic Engineering in Plants. p. 187-208.
Das, T., Ghorai, M., Pandey, D.K., Radha, Thakur, M., Rathour, S., Al-Tawaha, A.R., Bursal, E., Kumar, V., Nongdam, P., et al.(2022). CRISPR/Cas Genome Editing in Engineering Plant Secondary Metabolites of Therapeutic Benefits . Metabolic Engineering in Plants. p. 187-208.
Das, T., Ghorai, M., Pandey, D.K., Radha, Thakur, M., Rathour, S., Al-Tawaha, A.R., Bursal, E., Kumar, V., Nongdam, P., et al.(2022). CRISPR/Cas Genome Editing in Engineering Plant Secondary Metabolites of Therapeutic Benefits . Metabolic Engineering in Plants. p. 187-208.
Tuyelee Das(2022). Fungal endophytes as biostimulants of secondary metabolism in plants: a sustainable agricultural practice for medicinal crops . New and Future Developments in Microbial Biotechnology and Bioengineering. p. 283--314. Elsevier
Das, T., Dey, A., Pandey, D.K., Panwar, J.S., Nandy, S.(2022). Fungal endophytes as biostimulants of secondary metabolism in plants: a sustainable agricultural practice for medicinal crops . New and Future Developments in Microbial Biotechnology and Bioengineering: Sustainable Agriculture: Microorganisms as Biostimulants. p. 283-314.
Das, T., Dey, A., Pandey, D.K., Panwar, J.S., Nandy, S.(2022). Fungal endophytes as biostimulants of secondary metabolism in plants: a sustainable agricultural practice for medicinal crops . New and Future Developments in Microbial Biotechnology and Bioengineering: Sustainable Agriculture: Microorganisms as Biostimulants. p. 283-314.
Das, T., Dey, A., Pandey, D.K., Panwar, J.S., Nandy, S.(2022). Fungal endophytes as biostimulants of secondary metabolism in plants: a sustainable agricultural practice for medicinal crops . New and Future Developments in Microbial Biotechnology and Bioengineering: Sustainable Agriculture: Microorganisms as Biostimulants. p. 283-314.
Tuyelee Das(2022). Halophilic, Acidophilic, Alkaliphilic, Metallophilic, and Radioresistant Fungi: Habitats and Their Living Strategies . Extremophilic Fungi. p. 171--193. Springer Nature Singapore
Tuyelee Das(2022). Modulation of Physiological and Molecular Switches in Thermophilic Fungi: A Brief Outlook . Extremophilic Fungi. p. 97--110. Springer Nature Singapore
Das, T., Ghorai, M., Anand, U., Ghosh, A., Nongdam, P., Shekhawat, M.S., Pandey, D.K., Dey, A.(2022). Nano-adjuvants as Effective Next-Generation Antimicrobial Agents . Nanotechnology in the Life Sciences. p. 183-192.
Das, T., Ghorai, M., Anand, U., Ghosh, A., Nongdam, P., Shekhawat, M.S., Pandey, D.K., Dey, A.(2022). Nano-adjuvants as Effective Next-Generation Antimicrobial Agents . Nanotechnology in the Life Sciences. p. 183-192.
Das, T., Ghorai, M., Anand, U., Ghosh, A., Nongdam, P., Shekhawat, M.S., Pandey, D.K., Dey, A.(2022). Nano-adjuvants as Effective Next-Generation Antimicrobial Agents . Nanotechnology in the Life Sciences. p. 183-192.
Tuyelee Das(2022). Physiology and Molecular Biology of Psychrotrophic Fungi: An Insight . Extremophilic Fungi. p. 129--139. Springer Nature Singapore
Tuyelee Das(2022). Piezophilic Fungi: Sources of Novel Natural Products with Preclinical and Clinical Significance . Extremophilic Fungi. p. 523--545. Springer Nature Singapore
Tuyelee Das(2022). Plant Essential Oils for Combating Antimicrobial Resistance via Re-potentiating the Fading Antibiotic Arsenal . Antimicrobial Resistance. p. 419--485. Springer Nature Singapore
Das, T., Nandy, S., Mukherjee, A., Nongdam, P., Dey, A.(2022). Plant Essential Oils for Combating Antimicrobial Resistance via Re-potentiating the Fading Antibiotic Arsenal . Antimicrobial Resistance: Underlying Mechanisms and Therapeutic Approaches. p. 419-485.
Das, T., Nandy, S., Mukherjee, A., Nongdam, P., Dey, A.(2022). Plant Essential Oils for Combating Antimicrobial Resistance via Re-potentiating the Fading Antibiotic Arsenal . Antimicrobial Resistance: Underlying Mechanisms and Therapeutic Approaches. p. 419-485.
Das, T., Nandy, S., Mukherjee, A., Nongdam, P., Dey, A.(2022). Plant Essential Oils for Combating Antimicrobial Resistance via Re-potentiating the Fading Antibiotic Arsenal . Antimicrobial Resistance: Underlying Mechanisms and Therapeutic Approaches. p. 419-485.
Das, T., Nandy, S., Pandey, D.K., Al-Tawaha, A.R., Swamy, M.K., Kumar, V., Nongdam, P., Dey, A.(2021). An update on paclitaxel treatment in breast cancer . Paclitaxel: Sources, Chemistry, Anticancer Actions, and Current Biotechnology. p. 287-308.
Das, T., Nandy, S., Pandey, D.K., Al-Tawaha, A.R., Swamy, M.K., Kumar, V., Nongdam, P., Dey, A.(2021). An update on paclitaxel treatment in breast cancer . Paclitaxel: Sources, Chemistry, Anticancer Actions, and Current Biotechnology. p. 287-308.
Tuyelee Das(2021). Asthma-Induced Inflammatory Responses and Reversal by Botanicals . Medicinal Plants for Lung Diseases. p. 103--125. Springer Singapore
Das, T., Nandy, S., Dey, A.(2021). Asthma-Induced Inflammatory Responses and Reversal by Botanicals . Medicinal Plants for Lung Diseases: A Pharmacological and Immunological Perspective. p. 103-125.
Das, T., Nandy, S., Pandey, D.K., Al-Tawaha, A.R., Swamy, M.K., Kumar, V., Nongdam, P., Dey, A.(2021). An update on paclitaxel treatment in breast cancer . Paclitaxel: Sources, Chemistry, Anticancer Actions, and Current Biotechnology. p. 287-308.
Das, T., Nandy, S., Dey, A.(2021). Asthma-Induced Inflammatory Responses and Reversal by Botanicals . Medicinal Plants for Lung Diseases: A Pharmacological and Immunological Perspective. p. 103-125.
Das, T., Nandy, S., Dey, A.(2021). Asthma-Induced Inflammatory Responses and Reversal by Botanicals . Medicinal Plants for Lung Diseases: A Pharmacological and Immunological Perspective. p. 103-125.
Swamy, M.K., Das, T., Nandy, S., Mukherjee, A., Pandey, D.K., Dey, A.(2021). Endophytes for the production of anticancer drug, paclitaxel . Paclitaxel: Sources, Chemistry, Anticancer Actions, and Current Biotechnology. p. 203-228.
Swamy, M.K., Das, T., Nandy, S., Mukherjee, A., Pandey, D.K., Dey, A.(2021). Endophytes for the production of anticancer drug, paclitaxel . Paclitaxel: Sources, Chemistry, Anticancer Actions, and Current Biotechnology. p. 203-228.
Swamy, M.K., Das, T., Nandy, S., Mukherjee, A., Pandey, D.K., Dey, A.(2021). Endophytes for the production of anticancer drug, paclitaxel . Paclitaxel: Sources, Chemistry, Anticancer Actions, and Current Biotechnology. p. 203-228.
Das, T., Tudu, C.K., Nandy, S., Pandey, D.K., Dey, A.(2021). Role of fungal metabolites as biopesticides: An emerging trend in sustainable agriculture . Volatiles and Metabolites of Microbes. p. 385-407.
Das, T., Tudu, C.K., Nandy, S., Pandey, D.K., Dey, A.(2021). Role of fungal metabolites as biopesticides: An emerging trend in sustainable agriculture . Volatiles and Metabolites of Microbes. p. 385-407.
Das, T., Tudu, C.K., Nandy, S., Pandey, D.K., Dey, A.(2021). Role of fungal metabolites as biopesticides: An emerging trend in sustainable agriculture . Volatiles and Metabolites of Microbes. p. 385-407.
Tuyelee Das(2021). Role of fungal metabolites as biopesticides: an emerging trend in sustainable agriculture . Volatiles and Metabolites of Microbes. p. 385--407. Elsevier
Tuyelee Das, Tuyelee Das, Champa Keya Tudu, Samapika Nandy, Devendra Kumar Pandey, Abhijit Dey(2021). Role of fungal metabolites as biopesticides: an emerging trend in sustainable agriculture . Volatiles and Metabolites of Microbes. p. 385--407. Elsevier