In vitro elution characteristics of gentamicin-impregnated Polymethylmethacrylate: premixed with a second powder vs. liquid Lyophilization. 2021

Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
Department of Orthopedics, Faculty of Medicine, Prince of Songkla University, Hat Yai, Songkhla, 90110, Thailand.

BACKGROUND Antibiotic-loaded bone cement, or antibiotic-impregnated polymethylmethacrylate (PMMA), were developed to prevent and treat bone and joint infections. Gentamicin is an antibiotic that is commonly used in combination with PMMA; however, gentamicin powder is hard to obtain in many countries. This study aimed to evaluate the elution characteristics of gentamicin-impregnated PMMA made with lyophilized liquid gentamicin, compared with PMMA; which is made from commercial gentamicin powder. METHODS The experimental sample was divided into 2 groups: the gentamicin power group (PG-PMMA) and the lyophilized liquid gentamicin group (LG-PMMA). Ten cement spacers were prepared in each group. These were produced by mixing gentamicin powder, or lyophilized liquid gentamicin, with a powder polymer before adding the liquid monomer (2 g of gentamicin and 40 g of PMMA). The volume and surface area of the antibiotic-impregnated cement spacers were 50 cm3 and 110 cm2, respectively. Each spacer was immersed in phosphate-buffered saline, which was changed daily under sterile conditions. The solutions were collected to measure the level of gentamicin using the enzyme multiplied immunoassay technique (EMIT), at days 1, 2, 3, 4, 5, 6, 7, 14, 21, 28, 35 and 42. RESULTS The collections from both groups had high concentrations of gentamicin on day 1 (113.63 ± 23.42 mg/dL in LG-PMMA and 61.7 ±8.37 mg/dL in PG-PMMA), but experienced a continuous decrease over time. The PMMA spacers from both groups could release gentamicin for up to 6 weeks (3.28 ± 1.17 mg/dL in LG-PMMA and 1.21 ± 0.28 mg/dL in PG-PMMA). However, there were significantly higher levels of gentamicin concentrations in the LG-PMMA group compared to the PG-PMMA group at all time points (P< 0.05). CONCLUSIONS Gentamicin-impregnated PMMA made with lyophilized liquid gentamicin had approximately a two times higher rate of antibiotic elution in preliminary in vitro studies, as compared with PMMA made with premixed gentamicin powder.

UI MeSH Term Description Entries
D011208 Powders Substances made up of an aggregation of small particles, as that obtained by grinding or trituration of a solid drug. In pharmacy it is a form in which substances are administered. (From Dorland, 28th ed) Powder
D001843 Bone Cements Adhesives used to fix prosthetic devices to bones and to cement bone to bone in difficult fractures. Synthetic resins are commonly used as cements. A mixture of monocalcium phosphate, monohydrate, alpha-tricalcium phosphate, and calcium carbonate with a sodium phosphate solution is also a useful bone paste. Bone Cement,Bone Glues,Bone Pastes,Bone Glue,Bone Paste,Cement, Bone,Cements, Bone,Glue, Bone,Glues, Bone,Paste, Bone,Pastes, Bone
D005612 Freeze Drying Method of tissue preparation in which the tissue specimen is frozen and then dehydrated at low temperature in a high vacuum. This method is also used for dehydrating pharmaceutical and food products. Lyophilization,Drying, Freeze,Dryings, Freeze,Freeze Dryings,Lyophilizations
D005839 Gentamicins A complex of closely related aminoglycosides obtained from MICROMONOSPORA purpurea and related species. They are broad-spectrum antibiotics, but may cause ear and kidney damage. They act to inhibit PROTEIN BIOSYNTHESIS. Gentamicin Sulfate (USP),Gentamycin,G-Myticin,Garamycin,Gentacycol,Gentamicin,Gentamicin Sulfate,Gentamycins,Gentavet,Genticin,G Myticin,GMyticin,Sulfate, Gentamicin
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000900 Anti-Bacterial Agents Substances that inhibit the growth or reproduction of BACTERIA. Anti-Bacterial Agent,Anti-Bacterial Compound,Anti-Mycobacterial Agent,Antibacterial Agent,Antibiotics,Antimycobacterial Agent,Bacteriocidal Agent,Bacteriocide,Anti-Bacterial Compounds,Anti-Mycobacterial Agents,Antibacterial Agents,Antibiotic,Antimycobacterial Agents,Bacteriocidal Agents,Bacteriocides,Agent, Anti-Bacterial,Agent, Anti-Mycobacterial,Agent, Antibacterial,Agent, Antimycobacterial,Agent, Bacteriocidal,Agents, Anti-Bacterial,Agents, Anti-Mycobacterial,Agents, Antibacterial,Agents, Antimycobacterial,Agents, Bacteriocidal,Anti Bacterial Agent,Anti Bacterial Agents,Anti Bacterial Compound,Anti Bacterial Compounds,Anti Mycobacterial Agent,Anti Mycobacterial Agents,Compound, Anti-Bacterial,Compounds, Anti-Bacterial
D014640 Vancomycin Antibacterial obtained from Streptomyces orientalis. It is a glycopeptide related to RISTOCETIN that inhibits bacterial cell wall assembly and is toxic to kidneys and the inner ear. AB-Vancomycin,Diatracin,VANCO-cell,Vanco Azupharma,Vanco-saar,Vancocin,Vancocin HCl,Vancocine,Vancomicina Abbott,Vancomicina Chiesi,Vancomicina Combino Phar,Vancomicina Norman,Vancomycin Hexal,Vancomycin Hydrochloride,Vancomycin Lilly,Vancomycin Phosphate (1:2),Vancomycin Phosphate (1:2), Decahydrate,Vancomycin Sulfate,Vancomycin-ratiopharm,Vancomycine Dakota,Hydrochloride, Vancomycin,Sulfate, Vancomycin
D019904 Polymethyl Methacrylate Polymerized methyl methacrylate monomers which are used as sheets, moulding, extrusion powders, surface coating resins, emulsion polymers, fibers, inks, and films (From International Labor Organization, 1983). This material is also used in tooth implants, bone cements, and hard corneal contact lenses. PMMA,Polymethylmethacrylate,Acron,Acrylic Bone Cement,CMW Bone Cement,Implast,Kallocryl K,Lucite,Methyl Acrylic Plastic,Palacos R,Palavit,Perspex,Plexiglas,Plexiglass,Poly(methyl methacrylate),Polymethyl Methacrylate, Isostatic,Polymethyl Methacrylate, Simplex Opaque,Polymethyl Methacrylate, Surgical Simplex Bone Cement, Ammonium Salt,Polymethyl Methacrylate, Surgical Simplex P,Polymethyl Methacrylate, Syndiostatic,Polymethylmetacrylate,Sol,Superacryl,Isostatic Polymethyl Methacrylate,Methacrylate, Polymethyl,Methacrylate, Syndiostatic Polymethyl,Syndiostatic Polymethyl Methacrylate

Related Publications

Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
March 1998, American journal of orthopedics (Belle Mead, N.J.),
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
May 1990, Orthopedics,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
May 1996, The Veterinary record,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
July 2017, Journal of materials science. Materials in medicine,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
January 2000, Veterinary surgery : VS,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
January 2003, Veterinary surgery : VS,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
June 2014, Acta microbiologica et immunologica Hungarica,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
December 1988, The Veterinary record,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
February 2007, American journal of veterinary research,
Wongthawat Liawrungrueang, and Suwipa Ungphaiboon, and Arnurai Jitsurong, and Natnicha Ingviya, and Boonsin Tangtrakulwanich, and Varah Yuenyongviwat
January 2012, The Iowa orthopaedic journal,
Copied contents to your clipboard!