研究目的
To develop biocompatible gold nanorod conjugates for preclinical biomedical research, focusing on their application in molecular and optoacoustic imaging, quantitative sensing of biological substrates, and photothermal therapy.
研究成果
The study successfully developed biocompatible gold nanorod conjugates with strong molecular targeting capabilities and long-term stability in vivo. These conjugates are suitable for preclinical applications, including molecular and optoacoustic imaging, quantitative sensing, and photothermal therapy. The novel protocol for conjugation enhances the efficiency and stability of the conjugates, making them promising for targeted cancer therapy and imaging.
研究不足
The study acknowledges the need for improvement in conjugation processes for large-scale manufacturing of highly concentrated conjugates with strong affinity toward biochemical and physiological conditions. The technical constraints include the complexity of the conjugation process and potential areas for optimization in the stability and specificity of the conjugates.
1:Experimental Design and Method Selection:
The study involved the synthesis of gold nanorods using a seed-mediated method, followed by surface modification with 16-mercaptohexadecanoic acid and metoxy-poly(ethylene glycol)-thiol, and conjugation with the monoclonal antibody HER2. The physical chemistry properties of the conjugates were monitored through optical and zeta-potential measurements.
2:The physical chemistry properties of the conjugates were monitored through optical and zeta-potential measurements.
Sample Selection and Data Sources:
2. Sample Selection and Data Sources: The conjugates were tested on different cell lines (BT-474, MCF7, MCF10, MDCK, and fibroblast) and in vivo in mice with tumors overexpressing HER2/neu receptor.
3:List of Experimental Equipment and Materials:
Equipment included a Beckman 530 or Thermo Scientific Evolution 201 spectrophotometer for UV/VIS spectrometry, a high performance particle sizer for zeta-potential measurements, and a plate spectrophotometer for LDH and MTT assays. Materials included gold nanorods, various chemicals for surface modification, and cell culture reagents.
4:Experimental Procedures and Operational Workflow:
The workflow involved the synthesis of gold nanorods, their surface modification, conjugation with HER2 antibody, and testing in vitro and in vivo for targeting efficiency, cytotoxicity, and stability.
5:Data Analysis Methods:
Data analysis included optical density measurement, zeta-potential analysis, cytotoxicity assays (LDH release and MTT assay), and silver staining for visualization of binding.
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