A
nanopharmaceutical drug delivery system utilizes tiny particles to target specific cells in the body.
纳米药物递送系统利用微小粒子精确地将药物送达人体特定细胞。
Nanoparticles are being researched for their potential to improve cancer treatments with minimal side effects.
纳米颗粒因其可能以最小副作用改善癌症治疗而受到研究。
A
nanopharmaceutical vaccine can provide a strong and long-lasting immunity against viral diseases.
纳米制药疫苗能提供强大且持久的病毒疾病免疫保护。
The development of nanocarriers enables targeted drug release at the site of inflammation.
纳米载体使得药物能在炎症部位实现定向释放。
Nanopharmaceuticals are designed to evade the immune system, allowing them to reach affected tissues more effectively.
纳米药物被设计成能避开免疫系统,从而更有效地到达受影响的组织。
The synthesis of gold nanoparticles is a common technique in the
nanopharmaceutical field.
金纳米颗粒的合成是纳米制药领域常见的技术。
Nanoparticles can be functionalized with specific drugs, improving their efficacy in treating neurological disorders.
纳米颗粒可以通过修饰携带特定药物,提高治疗神经退行性疾病的效果。
Clinical trials are ongoing for a new
nanopharmaceutical that can treat Alzheimer's disease.
针对阿尔茨海默病的新纳米药物正在临床试验中。
Nanotechnology holds promise for creating personalized medicine by tailoring drugs to individual patients' genetic profiles.
纳米科技有可能通过定制药物以适应个人患者的基因组,实现个性化医疗。
The evaluation of
nanopharmaceutical stability under different storage conditions is crucial for its successful implementation.
评估纳米药物在不同存储条件下的稳定性对于其成功应用至关重要。
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