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Nanodrugs alleviate acute kidney injury: Manipulate RONS at kidney
Qiaohui Chen1,2, Yayun Nan3, Yuqi Yang4,5
1Xiangya School of Pharmaceutical Sciences, Central South University, Changsha, Hunan, 410078, PR China.
Abstract:
Currently, there are no clinical drugs available to treat acute kidney injury (AKI). Given the high prevalence and high mortality rate of AKI, the development of drugs to effectively treat AKI is a huge unmet medical need and a research hotspot. Although existing evidence fully demonstrates that reactive oxygen and nitrogen species (RONS) burst at the AKI site is a major contributor to AKI progression, the heterogeneity, complexity, and unique physiological structure of the kidney make most antioxidant and anti-inflammatory small molecule drugs ineffective because of the lack of kidney targeting and side effects. Recently, nanodrugs with intrinsic kidney targeting through the control of size, shape, and surface properties have opened exciting prospects for the treatment of AKI. Many antioxidant nanodrugs have emerged to address the limitations of current AKI treatments. In this review, we systematically summarized for the first time about the emerging nanodrugs that exploit the pathological and physiological features of the kidney to overcome the limitations of traditional small-molecule drugs to achieve high AKI efficacy. First, we analyzed the pathological structural characteristics of AKI and the main pathological mechanism of AKI: hypoxia, harmful substance accumulation-induced RONS burst at the renal site despite the multifactorial initiation and heterogeneity of AKI. Subsequently, we introduced the strategies used to improve renal targeting and reviewed advances of nanodrugs for AKI: nano-RONS-sacrificial agents, antioxidant nanozymes, and nanocarriers for antioxidants and anti-inflammatory drugs. These nanodrugs have demonstrated excellent therapeutic effects, such as greatly reducing oxidative stress damage, restoring renal function, and low side effects. Finally, we discussed the challenges and future directions for translating nanodrugs into clinical AKI treatment.
Insights
New nanodrugs show promise for treating acute kidney injury (AKI) by targeting the kidney and reducing oxidative stress. These advanced therapies offer hope for effective AKI treatment with fewer side effects.
Area of Science:
- Nephrology
- Nanomedicine
- Biomaterials
Background:
- Acute kidney injury (AKI) lacks effective clinical treatments, posing a significant unmet medical need.
- Reactive oxygen and nitrogen species (RONS) burst is a key driver of AKI progression.
- Traditional small molecule drugs struggle with kidney targeting and exhibit side effects.
Purpose of the Study:
- To review emerging nanodrugs for AKI treatment.
- To highlight strategies for enhancing renal targeting of nanotherapeutics.
- To discuss the potential of nanomedicine in overcoming limitations of current AKI therapies.
Main Methods:
- Analysis of AKI's pathological characteristics and mechanisms (hypoxia, RONS burst).
- Review of nanodrug strategies including nano-RONS-sacrificial agents, antioxidant nanozymes, and nanocarriers.
- Examination of nanodrugs' kidney-targeting properties based on size, shape, and surface modifications.
Main Results:
- Nanodrugs demonstrate effective targeting of the kidney, exploiting its pathological features.
- Various nanodrug formulations show significant reduction in oxidative stress and renal damage.
- Therapeutic interventions using nanodrugs result in improved renal function and reduced side effects.
Conclusions:
- Nanodrugs represent a promising therapeutic strategy for AKI, offering improved efficacy and safety.
- Further research and clinical translation are needed to realize the full potential of nanomedicine in AKI treatment.
- Exploiting kidney-specific features is key to developing targeted and effective AKI nanotherapies.
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