• ट्रांसलेशनल हेल्थ साइंस एंड टेक्नोलॉजी इंस्टीट्यूट
  • TRANSLATIONAL HEALTH SCIENCE AND TECHNOLOGY INSTITUTE
    AN INSTITUTE OF BIOTECHNOLOGY RESEARCH AND INNOVATION COUNCIL
    DEPT. OF BIOTECHNOLOGY, MINISTRY OF SCIENCE AND TECHNOLOGY
    GOVT OF INDIA
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Publication

1)      Jayabal Prakash, Venkataprasanna Kannan Sampathkumar, Arumagam Vinothkumar, Santosh Mathapati, Balashanmugam Pannerselvam, Shanmugam Achiraman, and G. Devanand Venkatasubbu. "Fabrication of a Chitosan-Based Wound Dressing Patch for Enhanced Antimicrobial, Hemostatic, and Wound Healing Application." ACS Applied Bio Materials 6.2 (2023): 615-627. (IF:4.03)

2)      Prakash, J.,K. S. Venkataprasanna, and G. Devanand Venkatasubbu. "Investigation on visible light-driven antimicrobial and mechanistic activity of GO/TiO 2 (V–N) nanocomposite against wound pathogens." RSC New Journal of Chemistry 46, no. 27 (2022): 13325-13344. (IF:3.9)

3)      Prakash, J.,Manigandan Venkatesan, G. Bharath, Shoaib Anwer, Pandiyarasan Veluswamy, D. Prema, K. S. Venkataprasanna, and G. Devanand Venkatasubbu. "Investigations on the in-vivo toxicity analysis of reduced graphene oxide/TiO2 nanocomposite in zebrafish embryo and larvae (Danio rerio)." Applied Surface Science 481 (2019): 1360-1369. (IF:7.3)

4)      Prakash, J.,T. Sushil Kumar, K. S. Venkataprasanna, R. Niranjan, M. Kaushik, Debashree Banita Samal, and G. Devanand Venkatasubbu. "PVA/alginate/hydroxyapatite films for controlled release of amoxicillin for the treatment of periodontal defects." Applied Surface Science 495 (2019): 143543.(IF:7.3)

5)      Prakash, J.,D. Prema, K. S. Venkataprasanna, K. Balagangadharan, N. Selvamurugan, and G. Devanand Venkatasubbu. "Nanocomposite chitosan film containing graphene oxide/hydroxyapatite/gold for bone tissue engineering." International Journal of Biological Macromolecules (2020): 154, 62-71.(IF:8.2)

6)      Prakash J., Kannan Sampath Kumar Venkataprasanna, Darmalingam Prema, Sheik Mohideen Sahabudeen Samal Debashree Banita &Gopinath Devanand Venkatasubbu. "Investigation on photo-induced Mechanistic activity of GO/TiO2 hybrid nanocomposite against wound pathogens." Toxicology mechanisms and methods (2020): 30(7), 508-525.(IF:4.0)

7)      Prakash, J.,K. S. Venkataprasanna, G. Bharath, Fawzi Banat, R. Niranjan, and G. Devanand Venkatasubbu. "In-vitro evaluation of electrospun cellulose acetate nanofiber containing Graphene oxide/TiO2/Curcumin for wound healing application." Colloids and Surfaces A: Physicochemical and Engineering Aspects 627 (2021): 127166. (IF:5.5)

8)      Prakash, J.,Venkataprasanna, K. S., Jayaraman, V., Dinesh, S., Bharath, G., Banat, Venkatasubbu, G. D. (2023). Exploring the potential of graphene oxide nanocomposite as a highly efficient photocatalyst for antibiotic degradation and pathogen inactivation. Diamond and Related Materials, 137, 110104.(IF:3.8)

9)      Bharath, G., J. Prakash, K. Rambabu, G. Devanand Venkatasubbu, Ashok Kumar, Seungjun Lee, Jayaraman Theerthagiri, Myong Yong Choi, and Fawzi Banat. "Synthesis of TiO2/RGO with plasmonic Ag nanoparticles for highly efficient photoelectrocatalytic reduction of CO2 to methanol toward the removal of an organic pollutant from the atmosphere." Environmental Pollution 281 (2021): 116990. (IF:9.9)

10)  Venkataprasanna, K. S., J. Prakash, S. Vignesh, G. Bharath, Manigandan Venkatesan, Fawzi Banat, S. Sahabudeen, Saravanan Ramachandran, and G. Devanand Venkatasubbu. "Fabrication of Chitosan/PVA/GO/CuO patch for potential wound healing application." International Journal of Biological Macromolecules 143 (2020): 744-762.(IF:8.2)

11)  Venkataprasanna, K. S., J. Prakash, Santosh S. Mathapati, G. Bharath, Fawzi Banat, and G. Devanand Venkatasubbu. "Development of chitosan/poly (vinyl alcohol)/graphene oxide loaded with vanadium doped titanium dioxide patch for visible light driven antibacterial activity and accelerated wound healing application." International Journal of Biological Macromolecules (2021).(IF:8.2)

12)  Bharath, G., G. Karthikeyan, Anuj Kumar, J. Prakash, Devanand Venkatasubbu, Ashok Kumar Nadda, Vijai Kumar Gupta, Mohammad Abu Haija, and Fawzi Banat. "Surface engineering of Au nanostructures for plasmon-enhanced electrochemical reduction of N2 and CO2 into urea in the visible-NIR region." Applied Energy 318 (2022): 119244.(IF:11.4)

13)  Ravichandran, Siranjeevi, Jeyalakshmi Radhakrishnan, Prakash Jayabal, and G. Devanand Venkatasubbu. "Antibacterial screening studies of electrospun Polycaprolactone nano fibrous mat containing Clerodendrum phlomidis leaves extract." Applied Surface Science 484 (2019): 676-687. (IF:7.3)

14)  Niranjan, R., M. Kaushik, R. Thamarai Selvi, J. Prakash, K. S. Venkataprasanna, D. Prema, Balashanmugam Pannerselvam, and G. Devanand Venkatasubbu. "PVA/SA/TiO2-CUR patch for enhanced wound healing application: In vitro and in vivo analysis." International journal of biological macromolecules 138 (2019): 704717.(IF:8.2)

15)  Haseef, H. M. A., Dinesh, S., Prakash, J., Marvaan, M. S., Madasamy, S., Pannerselvam, B., Venkatasubbu, G. D. (2024). Calcium oxide/silica nanocomposite and L. coromandelica bark incorporated κ-carrageenan/sodium alginate hydrogel for rapid hemostasis. International Journal of Biological Macromolecules, 254,127951.(IF:8.2)

16)  Kumar, A. S., Prema, D., Rao, R. G., Prakash, J., Balashanmugam, P., Devasena, T., & Venkatasubbu, G. D. (2024). Fabrication of poly (lactic-co-glycolic acid)/gelatin electro spun nanofiber patch containing CaCO3/SiO2 nanocomposite and quercetin for accelerated diabetic wound healing. International Journal of Biological Macromolecules, 254, 128060.(IF:8.2)

17)  Baishal, S., Prakash, J., Marvaan, M. S., Sundar, M., Pannerselvam, B., & Venkatasubbu, G. D. (2024). Naringin and graphene oxide incorporated Moringa oleifera gum/poly (vinyl) alcohol patch for enhanced wound healing. International Journal of Biological Macromolecules259, 129198.(IF:8.2)

18)  Prema, D., J. Prakash, S. Vignesh, Pandiyarasan Veluchamy, C. Ramachandran, Debashree Banita Samal, Deog-Hwan Oh, S. Sahabudeen, and G. Devanand Venkatasubbu. "Mechanism of inhibition of graphene oxide/zinc oxide nanocomposite against wound infection causing pathogens." Applied Nanoscience 10, no. 3 (2020): 827-849. (IF: 3.8)

19)  Anusuya, T., J. Prakash, Devesh K. Pathak, Kapil Saxena, Rajesh Kumar, and Vivek Kumar. "Porous graphene network from graphene oxide: Facile self-assembly and temperature dependent structural evolution." Materials Today Communications 26 (2021): 101930. (IF:3.6)

20)  Niranjan, R., M. Kaushik, J. Prakash, K. S. Venkataprasanna, Christy Arpana, Pannerselvam Balashanmugam, and G. Devanand Venkatasubbu. "Enhanced wound healing by PVA/Chitosan/Curcumin patches: In vitro and in vivo study." Colloids and Surfaces B: Biointerfaces 182 (2019): 110339.(IF:5.2)

21)  Binu, N. M., Prema, D., Prakash, J., Balagangadharan, K., Balashanmugam, P., Selvamurugan, N., & Venkatasubbu, G. D. (2021). Folic acid decorated pH sensitive polydopamine coated honeycomb structured nickel oxide nanoparticles for targeted delivery of quercetin to triple negative breast cancer cells. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 630, 127609.(IF:5.5)

22)  Prema, D., Nikita Mariam Binu, J. Prakash, and G. Devanand Venkatasubbu. "Photo induced mechanistic activity of GO/Zn (Cu) O nanocomposite against infectious pathogens: Potential application in wound healing." Photodiagnosis and Photodynamic Therapy 34 (2021): 102291. (IF:3.5)

23)  Sharma, Garvit, D. Prema, K. S. Venkataprasanna, J. Prakash, S. Sahabuddin, and G. Devanand Venkatasubbu. "Photo induced antibacterial activity of CeO2/GO against wound pathogens." Arabian Journal of Chemistry 13, no. 11 (2020): 7680-7694. (IF:6.2)

24)  Venkataprasanna, K. S., J. Prakash, T. Anusuya, and G. Devanand Venkatasubbu. "Size dependent mechanistic activity of titanium dioxide nanoparticles for enhanced fibroblast cell proliferation and anti-bacterial activity." Journal of Sol-Gel Science and Technology 99, no. 3 (2021): 565-575. (IF:2.6)

25)  Rajasekar, P., Rao, G., Kumar, A. S., J. Prakash, Rathinasabapathi, P., & Venkatasubbu, G. D. (2022). Interaction of BSA with graphene oxide: Influence on the bioactivity of graphene oxide. Diamond and Related Materials, 132, 109629.(IF:3.8)

26)  Niranjan, R., M. Kaushik, J. Prakash, K. S. Venkataprasanna, D. Prema, Arpana Christy, Balashanmugam Pannerselvam, and G. Devanand Venkatasubbu. "Chitosan based wound dressing patch loaded with curcumin tagged ZnO nanoparticles for potential wound healing application." Inorganic Chemistry Communications (2023): 110885. (IF:3.4)

27)  Gujjar, Sunil, Anurag Tyagi, Saloni Sainger, Puja Bharti, Vaibhav Nain, Pratibha Sood, Prakash Jayabal et al. "Biocompatible Human Placental Extracellular Matrix Derived Hydrogels." Advanced Biology (2023): 8, 2300349.(IF:3.6)

28)  Rao, R. G., Kumar, A. S., Prema, D., Prakash, J., Balashanmugam, P., & Venkatasubbu, G. D. (2024). GO/CaCO3/SiO2 nanocomposite incorporated Carrageenan/Chitosan injectable hydrogel for enhanced hemostasis. Inorganic Chemistry Communications161, 112024.(IF:3.4)

29)  Hiytesh VK, Sivalingam D, Prakash J, Marvaan MS, Sundar M, Pannerselvam B, Venkatasubbu GD. Accelerated wound healing by PrO2 incorporated PVA/SA fibers. Journal of Industrial and Engineering Chemistry. 2024 Mar 13.(IF:6.1)

30)  Ravichandhran Gobi, Ravi Shanker Babu, M. Usha Rani, K. M. Gothandam, J. Prakash, G. Devanand Venkatasubbu. Investigating the effect of antibacterial cerium oxide nanoparticles embedded in biodegradable PVA/chitosan films for wound healing application: an in-vitro study. Emergent Materials. 2024 Oct 26.(IF:4.3)

2022-2024: Investigation on visible light driven antimicrobial and mechanistic activity of  nanocomposite incorporated polymeric patches for Diabetic wound healing 

1. Awarded International Travel Grant from DST-SERB for presenting papers in the nanomedicine conference -2024, Germany.
2. Awarded SERB-National Post-Doctoral Fellowship (N-PDF) research grant from DST-ANRF-Science and Engineering Research Board under government of India.
3. Society for Materials Chemistry (member) - Chemistry Division, Bhabha Atomic Research Centre .
 
  • PRAKASHJ[AT]THSTI[DOT]RES[DOT]IN