Spinel ferrite impregnated mesoporous silica containing a platinum complex
A nanotherapeutic having platinum complexes encapsulated by a nanoformulation containing at least one spinel ferrite of formula CuFe 2 O 4 , NiFe 2 O 4 , CoFe 2 O 4 , and MnFe 2 O 4 deposited on mesoporous silica. A method of preparing the nanotherapeutic that involves mixing a metal(II) salt and a Fe(III) salt with the mesoporous silica nanoparticles to form a powdery mixture, calcining the powdery mixture to form the nanoformulation, and mixing the nanoformulation with the platinum complex. A method for treating cancer with the nanotherapeutic.
1. A nanotherapeutic, comprising:
a nanoformulation, comprising:
mesoporous silica nanoparticles in the form of monodispersed spherical silica having a particle size distribution of about 80 nm; and
spinel ferrite nanoclusters of formula (I)
MFe 2 O 4 (I)
wherein M is at least one transition metal element selected from the group consisting of Cu and Ni;
wherein:
the spinel ferrite nanoclusters are impregnated on the mesoporous silica nanoparticles; and
the spinel ferrite nanoclusters are present in an amount of 25-35 wt % relative to a total weight of the nanoformulation, and
cisplatin encapsulated within pores of the nanoformulation,
wherein the nanoformulation has a cisplatin release at a pH 5 at 37° C. for 72 h of 60-80 wt. % and wherein the pores of the nanoformulation have a pore diameter in a range of 10-25 nm, and the nanoformulation has a pore volume in a range of 0.05 0.3 cm 3 /g, a BET surface area in a range of 15-70 m 2 /g, and a saturation magnetization value in a range of 7-15 emu/g.
2. The nanotherapeutic of claim 1 , wherein the cisplatin is present at a concentration of 0.01-10 mmol/g relative to a total weight of the nanoformulation.
3. The nanotherapeutic of claim 1 , further comprising one or more pharmaceutically acceptable carriers and/or excipients selected from the group consisting of a buffer, an inorganic salt, a fatty acid, a vegetable oil, a synthetic fatty ester, a surfactant, and a polymer.
4. The nanotherapeutic of claim 1 , wherein the spinel ferrite nanoclusters are paramagnetic.