atg7 -Based Autophagy Activation Reverses Doxorubicin-Induced Cardiotoxicity

Author:

Wang Yong123ORCID,Lu Xiaoguang124,Wang Xiaoping3ORCID,Qiu Qi125,Zhu Ping12,Ma Lin3,Ma Xiao12ORCID,Herrmann Joerg2,Lin Xueying12,Wang Wei3,Xu Xiaolei12ORCID

Affiliation:

1. Biochemistry and Molecular Biology (Y.W., X. Lu, Q.Q., P.Z., X.M., X. Lin, X.X.), Mayo Clinic, Rochester, MN.

2. Cardiovascular Medicine (Y.W., X. Lu, Q.Q., P.Z., X.M., J.H., X. Lin, X.X.), Mayo Clinic, Rochester, MN.

3. School of Traditional Chinese Medicine (Y.W., X.W., L.M., W.W.), Beijing University of Chinese Medicine, China.

4. Dongzhimen Hospital (X. Lu), Beijing University of Chinese Medicine, China.

5. Institute of Clinical Pharmacology, Beijing Anzhen Hospital, Capital Medical University, China (Q.Q.).

Abstract

Rationale: Anthracycline-induced cardiotoxicity (AIC) is a major side effect that limits the use of anthracyclines as effective chemotherapeutics. No mechanism-based therapy is available when cardiac function deteriorates. Objective: We aim to elucidate the dynamic autophagic defects in AIC and to identify a mechanism-based therapy via both genetic and pharmacological studies. Method and Results: Through phenotyping an adult AIC zebrafish model, we detected a biphasic response in autophagy: activation in the early stage and suppression in the later phase that is characterized by a decline in cardiac function. We conducted conditional genetic studies with atg7 , which encodes a rate-limiting autophagy core protein, and found that atg7 overexpression leads to therapeutic effects in the late phase but deleterious effects in the early phase of adult AIC. We then assessed the therapeutic effects of 37 Food and Drug Administration–approved autophagy activators using an embryonic AIC zebrafish model and identified spironolactone, pravastatin, and minoxidil as top-ranking drugs. We demonstrated the therapeutic efficacy of these Food and Drug Administration–approved autophagy activators in the adult AIC model and confirmed that these drugs exert therapeutic effects in the late phase but not in the early AIC phase. Finally, we demonstrated that the time-dependent therapeutic effects are conserved in a mouse AIC model and that spironolactone and rapamycin activated autophagy in an Atg7-dependent fashion. Conclusions: Our findings suggest that atg7-based autophagy activation is an effective therapeutic avenue to reversing the decline in cardiac function in AIC, highlighting the time-dependent nature of autophagy-based therapy.

Funder

Mayo Foundation for Medical Education and Research

Major New Drug Discovery award from the Ministry of Science and Technology, China

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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