#Autophagy in🐭#LimbIschemia 1/2

AMPK or Sestrin as potential autophagic regulators

Dr. Mattia Scalabrin & Scott Bowen lab AJP CellPhys 2022
https://journals.physiology.org/doi/abs/10.1152/ajpcell.00174.2022

Which tissue does autophagy occur in (likely #SkeletalMuscle based on Western blot)? And its functional impacts?

#Autophagy in🐭#LimbIschemia 2/2

Evidence on autophagy induced by ischemia/#Hypoxia in #EndothelialCell, and its stimulatory effects on #Angiogenesis

Dr. Joo-Won Jeong lab Cell Death Dis 2020
https://www.nature.com/articles/s41419-020-02849-4

Temporal analysis of skeletal muscle remodeling post hindlimb ischemia reveals intricate autophagy regulation | American Journal of Physiology-Cell Physiology

Hind limb ischemia (HLI) is the most severe form of peripheral arterial disease, associated with a substantial reduction of limb blood flow that impairs skeletal muscle homeostasis to promote functional disability. The molecular regulators of HLI-induced muscle perturbations remain poorly defined. This study investigated whether changes in the molecular catabolic-autophagy signaling network were linked to temporal remodeling of skeletal muscle in HLI. HLI was induced in mice via hindlimb ischemia (femoral artery ligation) and confirmed by Doppler echocardiography. Experiments were terminated at time points defined as early- (7 days; n = 5) or late- (28 days; n = 5) stage HLI. Ischemic and nonischemic (contralateral) limb muscles were compared. Ischemic versus nonischemic muscles demonstrated overt remodeling at early-HLI but normalized at late-HLI. Early-onset fiber atrophy was associated with excessive autophagy signaling in ischemic muscle; protein expression increased for Beclin-1, LC3, and p62 (P < 0.05) but proteasome-dependent markers were reduced (P < 0.05). Mitophagy signaling increased in early-stage HLI that aligned with an early and sustained loss of mitochondrial content (P < 0.05). Upstream autophagy regulators, Sestrins, showed divergent responses during early-stage HLI (Sestrin2 increased while Sestrin1 decreased; P < 0.05) in parallel to increased AMP-activated protein kinase (AMPK) phosphorylation (P < 0.05) and lower antioxidant enzyme expression. No changes were found in markers for mechanistic target of rapamycin complex 1 signaling. These data indicate that early activation of the sestrin-AMPK signaling axis may regulate autophagy to stimulate rapid and overt muscle atrophy in HLI, which is normalized within weeks and accompanied by recovery of muscle mass. A complex interplay between Sestrins to regulate autophagy signaling during early-to-late muscle remodeling in HLI is likely.

American Journal of Physiology-Cell Physiology

Apold1, a #EndothelialCell-enriched gene, in pathological #Angiogenesis
#LimbIschemia ⏬Reperfusion (3 dpi🤓)-> An arteriogenic defect?
#Stroke ⏫border zone vascularization at day 21 but not day 7
Tumor ⏫Nonproductive angiogenesis-> more non-perfusable endothelial channels

Apold1 KO⏬EC Proliferation-How😁

@bohaceklab & Katrien de Bock bioRxiv 2022
https://www.biorxiv.org/content/10.1101/2022.12.02.518829v1

Also very interesting, Apold1 KO->⏫KLF2 & KLF4 in EC

Apold1 is recently identified as an ascending aortic EC-enriched gene (vs descending aorta/carotid artery)
Dr. Thomas Quertermous lab bioXRiv 2022
https://www.biorxiv.org/content/10.1101/2022.05.18.492517v1.full

Are Apold1 KO mice ready for #Atherosclerosis/#Aneurysm?

Cell Encapsulator made as PLLA/PLGA (50:50) electrospun porous (750 nm) scaffold

⏫👤Cardiac mesenchymal cell survival (1 mo in vivo) & #Exosome secretion

Implanted locally->⏫🐭#Limbischemia & #MyocardialInfarction

Dr. David Lundy lab J Controlled Release 2022
https://www.sciencedirect.com/science/article/pii/S0168365922007350