Page 39 - GTM-4-1
P. 39

Global Translational Medicine                                   Phytonanotherapy in cancer and diabetes care



               anticancer activity. Nanoscale Adv. 2023;5(16):4149-4157.     doi: 10.1016/j.heliyon.2020.e03536
               doi: 10.1039/D3NA00313B                         38.  Radheshyam JB, Tripathi S, Singh R, et al. Recent studies
                                                                  on  phytomedicine  used  in  diabetic  disorder.  J  Pharm
            27.  Halkai KR, Mudda JA, Shivanna V, Patil V, Rathod V,
               Halkai R. Cytotoxicity evaluation of fungal-derived silver   Pharmacol. 2022;10:159-172.
               nanoparticles on human gingival fibroblast cell line: An      doi: 10.17265/2328-2150/2022.05.002
               in vitro study. J Conserv Dent. 2019;22(2):160.
                                                               39.  Deng W, Wang H, Wu B, Zhang X. Selenium-layered
            28.  Ogidi  CO,  Oyetayo  VO,  Akinyele  BJ.  Wild Medicinal   nanoparticles serving for oral delivery of phytomedicines
               Mushrooms: Potential Applications in Phytomedicine and   with hypoglycemic activity to synergistically potentiate the
               Functional Foods. An Introduction to Mushroom. London:   antidiabetic effect. Acta Pharm Sin B. 2019;9(1):74-86.
               Intechopen; 2020. p. 118-i26.
                                                                  doi: 10.1016/j.apsb.2018.09.009
            29.  Zheng X, Yang X, Lin J, Song F, Shao Y. Low curcumin   40.  Govindan  N,  Vairaprakasam  K,  Chinnasamy  C,
               concentration enhances the anticancer effect of 5-fluorouracil   Sivalingam  T, Mohammed MK. Green synthesis of
               against colorectal cancer. Phytomedicine. 2021;85:153547.
                                                                  Zn-doped Catharanthus roseus nanoparticles for enhanced
               doi: 10.1016/j.phymed.2021.153547                  anti-diabetic activity. Mater Adv. 2020;1(9):3460-3465.
            30.  Naqvi SA, Ali S, Sherazi TA, et al. Antioxidant, antibacterial,      doi: 10.1039/D0MA00698J
               and anticancer activities of bitter gourd fruit extracts at   41.  Nagaraja S, Ahmed SS, Bharathi DR, et al. Green synthesis
               three different cultivation stages. J Chem. 2020;2020:1.
                                                                  and characterization of silver nanoparticles of  Psidium
               doi: 10.1155/2020/7394751                          guajava  leaf extract and evaluation for its antidiabetic
                                                                  activity. Molecules. 2022;27(14):4336.
            31.  Zhu Z, Cui L, Yang J,  et al. Anticancer effects of asiatic
               acid against doxorubicin-resistant breast cancer cells via      doi: 10.3390/molecules27144336
               an AMPK-dependent pathway  in vitro.  Phytomedicine.   42.  Jobie FN, Ranjbar M, Moghaddam AH, Kiani M. Green
               2021;92:153737.
                                                                  synthesis of zinc oxide nanoparticles using  Amygdalus
               doi: 10.1016/j.phymed.2021.153737                  scoparia Spach stem bark extract and their applications as
                                                                  an  alternative  antimicrobial,  anticancer,  and  anti-diabetic
            32.  Samuel MS, Ravikumar M, John J A, et al. A review on green
               synthesis of nanoparticles and their diverse biomedical and   agent. Adv Powder Technol. 2021;32(6):2043-2052.
               environmental applications. Catalysts. 2022;12(5):459.     doi: 10.1016/j.apt.2021.04.014
               doi: 10.3390/catal12050459                      43.  Hamza  RZ,  Al-Salmi  FA,  El-Shenawy  NS.  Zinc  oxide
                                                                  nanoparticles with green tea extract complex in the pancreas
            33.  Jiang Z, Li L, Huang H, He W, Ming W. Progress in laser   of rats against monosodium glutamate toxicity. J Basic Clin
               ablation and biological synthesis processes: “Top-Down”
               and “Bottom-Up” approaches for the green synthesis of Au/  Physiol Pharmacol. 2020;32(5):979-985.
               Ag nanoparticles. Int J Mol Sci. 2022;23(23):14658.     doi: 10.1515/jbcpp-2020-0164
               doi: 10.3390/ijms232314658                      44.  Sidorowicz A, Fais G, Casula M, et al. Nanoparticles from
                                                                  microalgae and their biomedical applications. Mar Drugs.
            34.  Patwekar M, Sehar N, Patwekar F,  et al. Novel immune
               checkpoint targets: A  promising therapy for cancer   2023;21(6):352.
               treatments. Int Immunopharmacol. 2024;126:111186.  doi: 10.3390/md21060352
               doi: 10.1016/j.intimp.2023.111186               45.  Yosri N, Khalifa SA, Guo Z, Xu B, Zou X, El-Seedi HR. Marine
                                                                  organisms:  Pioneer  natural  sources  of  polysaccharides/
            35.  Shabani L, Kasaee SR, Chelliapan S, et al. An investigation
               into green synthesis of Ru template gold nanoparticles and   proteins for green synthesis of nanoparticles and their potential
               the in vitro photothermal effect on the MCF-7 human breast   applications. Int J Biol Macromol. 2021;193:1767-1798.
               cancer cell line. Appl Phys A. 2023;129(8):564.     doi: 10.1016/j.ijbiomac.2021.10.229
               doi: 10.1007/s00339-023-06832-6                 46.  Venkatesan J, Anil S, Kim SK, Shim MS. Seaweed
                                                                  polysaccharide-based nanoparticles: Preparation and
            36.  Lopes  J, Lopes D, Pereira‐Silva M,  et.al Macrophage
               cell membrane‐cloaked nanoplatforms for biomedical   applications for drug delivery. Polymers. 2016;8(2):30.
               applications. Small Methods. 2022;6(8):2200289.     doi: 10.3390/polym8020030
               doi: 10.1002/smtd.202200289                     47.  Rai PK, Kumar V, Lee S, et al. Nanoparticle-plant interaction:
                                                                  Implications in energy, environment, and agriculture.
            37.  Sukardima, Ervina M. The recent use of Swietenia mahagoni
               (L.) Jacq. as antidiabetes type 2 phytomedicine: A systematic   Environ Int. 2018;119:1-9.
               review. Heliyon. 2020;6(3):e03536.                 doi: 10.1016/j.envint.2018.06.012


            Volume 4 Issue 1 (2025)                         31                              doi: 10.36922/gtm.5840
   34   35   36   37   38   39   40   41   42   43   44