NANOCOMPOSITE BASED ON HYDROXYAPATITE AND SILVER WITH ANTIBACTERIAL ACTIVITY
DOI:
https://doi.org/10.24193/subbchem.2023.3.01Keywords:
hydroxyapatite, silver nanoparticles, nanocomposite, antibacterial activity, pathogensAbstract
A nanocomposite made from hydroxyapatite (HAP) and silver nanoparticles (AgNPs), namely HAP-4.5 wt% AgNPs, is reported. HAP was prepared using a wet precipitation technique, and AgNPs were made by reducing silver nitrate with glucose in basic medium. HAP, AgNPs and HAP-4.5 wt% AgNPs composite were characterized by X-ray diffraction (XRD), SEM - energy dispersive X-ray spectroscopy (EDS) and different imagistic methods: TEM and AFM. The antibacterial effect of the HAP-4.5 wt% AgNPs nanocomposite was tested using diffusion technique in nutritive agar on two pathogenic species, one Gram-negative (Salmonella typhimurium) and one Gram-positive (Bacillus cereus) and promising results were obtained. This hydroxyapatite-silver nanocomposite can be employed as a potential antimicrobial coating for dental and orthopedic implants, or they can be utilized such as bone cements in clinical procedures.
References
R. Gaynes, Emerg. Infect. Dis., 2017, 23(5), 849-853.
R. Urban-Chmiel; A. Marek; D. Stępień-Pyśniak; K. Wieczorek; M. Dec; A. Nowaczek; J. Osek; Antibiotics (Basel, Switzerland), 2022, 11(8), 1079.
D.G.J. Larsson; C.-F. Flach; Nat. Rev. Microbiol., 2022, 20(5), 257-269.
E. Urnukhsaikhan; B.-E Bold; A. Gunbileg; N. Sukhbaatar; T. Mishig-Ochir; Sci. Rep., 2021, 11(1), 21047.
S.A. Ahmad; S.S. Das; A. Khatoon; M.T. Ansari; M. Afzal; M.S. Hasnain; A.K. Nayak; Mater. Sci. Technol., 2020, 3, 756-769.
S. Rajeshkumar; C. Malarkodi; M.Vanaja; G. Annadurai; J. Mol. Struct., 2016, 1116, 165-173.
M. Bhat; B. Chakraborty; R.S. Kumar; A.I. Almansou; N. Arumugam; D.Kotresha; S. Pallavi, S. Dhanyakumara; K. Shashiraj; S. Nayaka; J. King Saud Univ. Sci., 2021, 33, 101296.
M.M.N. El-Dein; Z.A.M. Baka; M.I. Abou-Dobara; A.K. El-Sayed; M.M. El-Zahed; J. Microbiol. Biotechnol. Food Sci., 2021, 10, 648–656.
J.S. Gabriel; V.A.M. Gonzaga; A.L. Poli; C.C. Schmitt; Carbohydr. Polym., 2017, 171, 202-210.
G.A. Bhaduri; R. Little; R.B. Khomane; S.U. Lokhande; B.D. Kulkarni; B.G. Mendis; L. Šiller; J. Photochem. Photobiol. A: Chemistry, 2013, 258, 1-9.
M. Mohammadlou; Maghsoudi H; H. Jafarizadeh-Malmiri; Int. Food. Res. J., 2016, 23(2), 446-463.
S. Kaviya; J. Santhanalakshmi; B. Viswanathan; J. Muthumary; K. Srinivasan; Spectrochim. Acta A Mol. Biomol. Spectrosc., 2011, 79(3), 594-598.
N.G. Mlalila; H.S. Swai; A. Hilonga; D.M. Kadam; Nanotechnol. Sci. Appl., 2017, 10, 1-9.
S. Ullah Khan; T.A. Saleh; A. Wahab; M.H. Ullah Khan; D. Khan; W. Ullah Khan; A. Rahim; S. Kamal; F. Ullah Khan; S. Fahad; Int. J. Nanomed., 2018, 13, 733-762.
M. Zahoor; N. Nazir; M. Iftikhar; S. Naz; I. Zekker; J. Burlakovs; F. Uddin; A.W. Kamran; A. Kallistova; N. Pimenov; F.A. Khan; Water, 2021, 13(16), 2216.
P.R. More; S. Pandit; A. Filippis; G. Franci; I. Mijakovic; M. Galdiero; Microorganisms, 2023,11(2), 369.
Y. Yang; X. Chen; N. Zhang; B. Sun; K. Wang; Y. Zhang; L. Zhu; Water Research, 2022, 218, 118452.
A. Luceri; R. Francese; D. Lembo; M. Ferraris; C. Balagna; Microorganisms, 2023,11(3), 629.
T. Bruna; F. Maldonado-Bravo; P. Jara; N. Caro; Int. J. Mol. Sci., 2021, 22(13), 7202.
H.A. Hemeg; Int. J. Nanomed., 2017, 12, 8211-8225.
P. Sukdeb; Y.K. Tak; J.M. Song; Appl. Environ. Microbiol., 2007, 73(6),1712-1720.
M.F. Anwar; D. Yadav; S. Jain; S. Kapoor; S. Rastogi; I. Arora; M. Samim; Int. J. Nanomed., 2016, 11, 147-158.
J.Y. Cheon; S.J. Kim; Y.H. Rhee; O.H. Kwon, W.H. Park; Int. J. Nanomed., 2019, 14, 2773-2780.
G. Zhao; S.E. Stevens; Biometals, 1998, 11, 27-32.
M. Ema, H. Okuda, M. Gamo, K. Honda; Reprod. Toxicol., 2017, 67,149-164.
F.J. Osonga; A. Akgul; I. Yazgan; A. Akgul; G.B. Eshun; L. Sakhaee; O.A. Sadik; Molecules, 2020, 25(11), 2682.
P. Phatai; N. Prachumrak; S. Kamonwannasit; A. Kamcharoen; W. Roschat; S. Phewphong; C.M. Futalan; P. Khemthong; T. Butburee; S. Youngjan; J.C. Millare; O. Prasitnok; Sustainability, 2022, 14, 11756.
A. Nenen; M. Maureira; M. Neira; S.L. Orellana; C. Covarrubias; I. Moreno-Villoslada; Ceram. Int., 2022, 48(23), A, 34750-34759.
V. Stanić; S. Dimitrijević; J. Antić-Stanković; M. Mitrić; B Jokić; I. B. Plećaš; S. Raičević; Appl. Surf. Sci., 2010, 256(20), 6083-6089.
S. Kamonwannasit; C.M. Futalan; P. Khemthong; T. Butburee; A. Karaphun; P. Phatai; J. Sol-Gel Sci. Technol., 2020, 96, 452-463.
T. Tithito; S. Sillapaprayoon; W. Pimtong; J. Thongbunchoo; N. Charoenphandhu; N. Krishnamra; A. Lert-Itthiporn; W. Maneeprakorn; W. Pon-On; Nanomaterials (Basel), 2023, 13(2), 255.
S. Sprio; M. Dapporto; L. Preti; E. Mazzoni; M.R. Iaquinta; F. Martini; M. Tognon; N.M. Pugno; E. Revisto; L. Visai; A. Tampieri; Front. Mater., 2020, 7, 224.
A. Z. Alshemary; A. E. Pazarceviren; T. Aysen; E. Zafer; RSC Advances, 2016, 6(72), 68058-68071.
P.N. Lim; L. Chang; E.S. Thian; Nanomedicine, 2015, 11(6) 1331-1344.
R. Ahmadi; S. Izanloo; J. Mech. Behav. Biomed. Mater., 2022, 126, 105075.
F.A.C. Andrade; L.C. de Oliveira Vercik; F.J. Monteiro; E.C. da Silva Rigo; Ceram. Int., 2016, 42(2), 2271-2280.
P.N. Silva-Holguín; S.Y. Reyes-López; Dose-Response, 2020,18(3).
S. Jadalanagan; K. Deshmukh; S.R. Ramanan; M. Kowshik; Appl. Nanosci., 2014, 4(2), 133-141.
A. Mocanu; G. Furtos; S. Rapuntean; O. Horovitz; C. Flore; C. Garbo; A. Danisteanu; G. Rapuntean; C. Prejemrean; M. Tomoaia-Cotisel; Appl. Surf. Sci., 2014, 298, 225-235.
S. Elbasuney; G.S. El-Sayyad; S.M. Radwan; M. A. Correa-Duarte; J. Inorg. Organomet. Polym., 2022, 32, 4559-4575.
S. L. Iconaru; D. Predoi; C.S. Ciobanu; M. Motelica-Heino; R. Guegan; C. Bleotu; Coatings, 2022, 12, 341.
L.F.B. Nogueira; M.A. Eufrásio Cruz; G.J. Aguilar; D.R. Tapia-Blácido; M.E. da Silva Ferreira; B.C. Maniglia; M. Bottini; P. Ciancaglini; A.P. Ramos; Int. J. Mol. Sci., 2022, 23(13), 7277.
Y. Zhang; V.J. Reddy; S.Y. Wong; X. Li; B. Su; S. Ramakrishna; C.T. Lim; Tissue Eng. Part A., 2010, 16(6), 1949-1960.
J. P. Monte; A. Fontes; S. Beate; S. Santos; G.A.L. Pereira; G. Pereira; Mater. Lett., 2023, 338, 134027.
R. Choubey; R. Chouhan; A.K. Bajpai; J. Bajpai; S.K. Singh, Int. J. Polym. Mater. Polym.; 2021, 70 (11), 782-796.
F. Liu; X. Wang; T. Chen; N. Zhang; Q. Wei; J. Tian; Y. Wang; C. Ma; Y. Lu, J. Adv. Res.; 2020, 21, 91-102.
R.K. Saini; L.P. Bagri; A.K. Bajpa; Colloids Surf. B, 2019, 177, 211-218.
C. Garbo; M. Sindilaru; A. Carlea; Gh. Tomoaia; V. Almasan; I. Petean; A. Mocanu; O. Horovitz; M. Tomoaia-Cotisel; Part. Sci. Technol., 2017, 35(1), 29.
Gh. Tomoaia; A. Mocanu; I. Vida-Simiti; N. Jumate; L.-D. Bobos; O. Soritau; M. Tomoaia-Cotisel; Mater. Sci. Eng. C, 2014, 37(1), 37- 47.
D. Oltean-Dan; G.-B. Dogaru; M. Tomoaia-Cotisel; D. Apostu; A. Mester; H.-R.-C. Benea; M.-Gh. Paiusan; E.-M. Jianu; A. Mocanu; R. Balint; C.-O. Popa; C. Berce; G.-I. Bodizs; A.-M. Toader; Gh. Tomoaia; Int. J. of Nanomed., 2019, 14, 5799-5816.
Gh. Tomoaia; O. Soritau; M. Tomoaia-Cotisel; L.-B. Pop; A. Mocanu; O. Horovitz; L.-D. Bobos; Powder Technol., 2013, 107, 23899.
A. Mocanu; R.D. Pasca; Gh. Tomoaia; C. Garbo; P.T. Frangopol; O. Horovitz; M. Tomoaia-Cotisel; Int. J. Nanomed., 2013, 8, 3867-3874.
D. Oltean-Dan; G.-B. Dogaru; E.-M. Jianu; S. Riga; M. Tomoaia-Cotisel; A. Mocanu; L. Barbu-Tudoran; Gh. Tomoaia; Micromachines; 2021, 12, 1352.
A. Mocanu; O. Cadar; P.T. Frangopol; I. Petean; Gh. Tomoaia, G.-A. Paltinean; Cs.P. Racz, O. Horovitz; M. Tomoaia-Cotisel; R. Soc. Open. Sci., 2021, 8(1), 201785.
A. Avram; T. Frentiu; O. Horovitz; A. Mocanu; F. Goga; M. Tomoaia-Cotisel; STUDIA UBB Chemia, 2017, 62(4), 93-104.
T. Theivasanthi; M. Alagar; Nano Biomed. Eng., 2012, 4, 58-65.
A. Mocanu; R. Balint; C. Garbo; l. Timis; I. Petean; O. Horovitz; M. Tomoaia-Cotisel, STUDIA UBB Chemia, 2017, 62, 2(1), 95-103.
Zs. Pap; E. Karácsonyi; L. Baia; L.-C. Pop; V. Danciu; K. Hernádi; K. Mogyorósi; A. Dombi; Phys. Status Solidi B, 2012, 12, 2592-2595.
E. Karácsonyi; L. Baia; A. Dombi; V. Danciu; K. Mogyorósi; L.-C. Pop; G. Kovács; V. Coșoveanu; A. Vulpoi; S. Simon; Zs. Pap; Catal. Today, 2013, 208, 19-27.
S. Sfaelou; L.-C. Pop; O. Monfort; V. Dracopoulos; P. Lianos; Int. J. Hydrog. Energy., 2016, 41, 5902–5907.
M. Popa; L.C. Pop; G. Schmerber; C. Bouillet; O. Ersen; Appl. Surf. Sci., 2021, 562, 150159.
A.I. Cadiş; L.E. Mureșan; I. Perhaița; L. C. Pop; K. Saszet; L. Barbu‑Tudoran; G. Borodi; J. Nanopart. Res., 2022, 24, 74.
E.-Z.Kedves; C. Fodor; Á. Fazekas; I. Székely; Á. Szamosvölgyi; A. Sápi; Z. Kónya; L.C. Pop; L. Baia; Z. Pap; Appl. Surf. Sci., 2023, 624,156914.
U.V. Zdrenghea; Gh. Tomoaia; D.-V. Pop-Toader; A. Mocanu; O. Horovitz; M. Tomoaia-Cotisel; Comb. Chem. High Throughput Screen., 2011, 14(4), 237-247.
L.Z. Racz; G.-A. Paltinean; I. Petean; Gh. Tomoaia; L. C. Pop; G. Arghir; E. Levei; A. Mocanu; Cs.-P. Racz; M. Tomoaia-Cotisel; STUDIA UBB Chemia, 2022, 67(3), 61-74.
Cs.-P. Racz; L.Z. Racz; C.G. Floare; Gh. Tomoaia; O. Horovitz; S. Riga; I. Kacso; Gh. Borodi; M. Sarkozi; A. Mocanu; C. Roman; M. Tomoaia-Cotisel; Food. Hydrocoll., 2023, 139, 1088547.
M. Tomoaia-Cotisel; A. Tomoaia-Cotisel; T. Yupsanis; Gh. Tomoaia; I. Balea; A. Mocanu; Cs-P. Racz; Rev. Roum. Chim., 2006, 51(12), 1181-1185.
O. Horovitz; Gh. Tomoaia; A. Mocanu; T. Yupsanis; M. Tomoaia-Cotisel; Gold Bull., 2007, 40(4), 295-304.
O. Monfort; L.-C. Pop; S. Sfaelou; T. Plecenik; T. Roch; V. Dracopoulos; E. Stathatos; G. Plesch; P. Lianos; Chem. Eng. J., 2016, 286, 91-97.
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