Affiliation:
1. Department of Pharmacology, ISF College of Pharmacy, Moga-142001, Punjab India
2. Affiliated to IK Gujral Punjab Technical University, Jalandhar, Punjab, India
3. Department of Pharmaceutics
(School of Pharmacy), H.N.B. Garhwal University, Srinagar - 246174, Garhwal (Uttarakhand), India
Abstract
Abstract:
Autophagy is a self-destructive cellular process that removes essential metabolites and
waste from inside the cell to maintain cellular health. Mitophagy is the process by which autophagy
causes disruption inside mitochondria and the total removal of damaged or stressed mitochondria,
hence enhancing cellular health. The mitochondria are the powerhouses of the cell, performing essential
functions such as ATP (adenosine triphosphate) generation, metabolism, Ca2+ buffering, and signal
transduction. Many different mechanisms, including endosomal and autophagosomal transport, bring
these substrates to lysosomes for processing. Autophagy and endocytic processes each have distinct
compartments, and they interact dynamically with one another to complete digestion. Since mitophagy
is essential for maintaining cellular health and using genetics, cell biology, and proteomics techniques,
it is necessary to understand its beginning, particularly in ubiquitin and receptor-dependent signalling
in injured mitochondria. Despite their similar symptoms and emerging genetic foundations, Alzheimer's
disease (AD), Parkinson's disease (PD), Huntington's disease (HD), and amyotrophic lateral
sclerosis (ALS) have all been linked to abnormalities in autophagy and endolysosomal pathways associated
with neuronal dysfunction. Mitophagy is responsible for normal mitochondrial turnover and,
under certain physiological or pathological situations, may drive the elimination of faulty mitochondria.
Due to their high energy requirements and post-mitotic origin, neurons are especially susceptible
to autophagic and mitochondrial malfunction. This article focused on the importance of autophagy and
mitophagy in neurodegenerative illnesses and how they might be used to create novel therapeutic approaches
for treating a wide range of neurological disorders.
Publisher
Bentham Science Publishers Ltd.
Subject
Pharmacology,General Neuroscience
Cited by
1 articles.
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