Inorganic Nanovehicle Targets Tumor in an Orthotopic Breast Cancer Model

Неорганический нанопереносчик нацеливается на опухоль в ортотопической модели рака молочной железы
Goeun Choi, Oh‐Joon Kwon, Yeonji Oh, Chae‐Ok Yun, Jin‐Ho Choy
2014-03-21

apoptosis inductionlayered double hydroxidesmethotrexate-LDH nanohybridorthotopic breast cancer modeltumor-targeted drug delivery
The clinical efficacy of conventional chemotherapeutic agent, methotrexate (MTX), can be limited by its very short plasma half-life, the drug resistance, and the high dosage required for cancer cell suppression. In this study, a new drug delivery system is proposed to overcome such limitations. To realize such a system, MTX was intercalated into layered double hydroxides (LDHs), inorganic drug delivery vehicle, through a co-precipitation route to produce a MTX-LDH nanohybrid with an average particle size of approximately 130 nm. Biodistribution studies in mice bearing orthotopic human breast tumors revealed that the tumor-to-liver ratio of MTX in the MTX-LDH-treated-group was 6-fold higher than that of MTX-treated-one after drug treatment for 2 hr. Moreover, MTX-LDH exhibited superior targeting effect resulting in high antitumor efficacy inducing a 74.3% reduction in tumor volume compared to MTX alone, and as a consequence, significant survival benefits. Annexin-V and propidium iodine dual staining and TUNEL analysis showed that MTX-LDH induced a greater degree of apoptosis than free MTX. Taken together, our data demonstrate that a new MTX-LDH nanohybrid exhibits a superior efficacy profile and improved distribution compared to MTX alone and has the potential to enhance therapeutic efficacy via inhibition of tumor proliferation and induction of apoptosis.
1
Apoptosis assays showed that MTX-LDH induced substantially greater tumor-cell apoptosis than free MTX.
2
In mice with orthotopic human breast tumors, MTX-LDH produced a tumor-to-liver MTX ratio sixfold higher than free MTX after two hours.
3
MTX-LDH reduced tumor volume by 74.3% compared with MTX alone and provided significant survival benefits.
4
Methotrexate was intercalated into layered double hydroxides, producing an inorganic MTX-LDH nanohybrid with an average particle size of approximately 130 nm.
5
The MTX-LDH nanohybrid improved tumor distribution and therapeutic efficacy by inhibiting tumor proliferation and promoting apoptosis.

MTX-LDH nanohybrid inorganic drug-delivery vehicle in mice bearing orthotopic human breast tumors

Tumor-targeting biodistribution and antitumor efficacy, including tumor growth inhibition and apoptosis induction, compared with free methotrexate

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2014-03-21
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Goeun Choi
Oh‐Joon Kwon
Yeonji Oh
Chae‐Ok Yun
Jin‐Ho Choy
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