SinoBioData Academic Portal
HJ
Verified CAS / Academic Author2 Decoded Studies

Prof. HE Jingjing

Affiliated Hospital of Integrated Traditional Chinese and Western Medicine, Nanjing University of Chinese Medicine

Research Publications & English Decoded Briefs

Showing 2 publications
Stem Cell Research & Therapy2024DOI: 10.1186/s13287-024-03647-x

Amelioration of diabetic nephropathy in mice by a single intravenous injection of human mesenchymal stromal cells at early and later disease stages is associated with restoration of autophagy

Background and aims Mesenchymal stromal cells (MSCs) a potentially effective disease-modulating therapy for diabetic nephropathy (DN) but their clinical translation has been hampered by incomplete understanding of the optimal timing of administration and in vivo mechanisms of action. This study aimed to elucidate the reno-protective potency and associated mechanisms of single intravenous injections of human umbilical cord-derived MSCs (hUC-MSCs) following shorter and longer durations of diabetes. Methods A streptozotocin (STZ)-induced model of diabetes and DN was established in C57BL/6 mice. In groups of diabetic animals, human (h)UC-MSCs or vehicle were injected intravenously at 8 or 16 weeks after STZ along with vehicle-injected non-diabetic animals. Diabetes-related kidney abnormalities was analyzed 2 weeks later by urine and serum biochemical assays, histology, transmission electron microscopy and immunohistochemistry. Serum concentrations of pro-inflammatory and pro-fibrotic cytokines were quantified by ELISA. The expression of autophagy-related proteins within the renal cortices was investigated by immunoblotting. Bio-distribution of hUC-MSCs in kidney and other organs was evaluated in diabetic mice by injection of fluorescent-labelled cells. Results Compared to non-diabetic controls, diabetic mice had increases in urine albumin creatinine ratio (uACR), mesangial matrix deposition, podocyte foot process effacement, glomerular basement membrane thickening and interstitial fibrosis as well as reduced podocyte numbers at both 10 and 18 weeks after STZ. Early (8 weeks) hUC-MSC injection was associated with reduced uACR and improvements in multiple glomerular and renal interstitial abnormalities as well as reduced serum IL-6, TNF-α, and TGF-β1 compared to vehicle-injected animals. Later (16 weeks) hUC-MSC injection also resulted in reduction of diabetes-associated renal abnormalities and serum TGF-β1 but not of serum IL-6 and TNF-α. At both time-points, the kidneys of vehicle-injected diabetic mice had higher ratio of p-mTOR to mTOR, increased abundance of p62, lower abundance of ULK1 and Atg12, and reduced ratio of LC3B to LC3A compared to non-diabetic animals, consistent with diabetes-associated suppression of autophagy. These changes were largely reversed in the kidneys of hUC-MSC-injected mice. In contrast, neither early nor later hUC-MSC injection had effects on blood glucose and body weight of diabetic animals. Small numbers of CM-Dil-labeled hUC-MSCs remained detectable in kidneys, lungs and liver of diabetic mice at 14 days after intravenous injection. Conclusions Single intravenous injections of hUC-MSCs ameliorated glomerular abnormalities and interstitial fibrosis in a mouse model of STZ-induced diabetes without affecting hyperglycemia, whether administered at relatively short or longer duration of diabetes. At both time-points, the reno-protective effects of hUC-MSCs were associated with reduced circulating TGF-β1 and restoration of intra-renal autophagy.

Chinese Traditional and Herbal Drugs2026DOI: 10.7501/j.issn.0253-2670.2026.16.20261614

Mechanistic Investigation of the Iridoid Fraction from Morinda officinalis in the Treatment of Aging-Related Sarcopenia via the PI3K/Akt/mTOR Signaling Pathway

Aging-related sarcopenia remains a clinical challenge due to limited effective interventions. This study systematically evaluated the therapeutic potential of the iridoid fraction from Morinda officinalis and elucidated its mechanism via the PI3K/Akt/mTOR pathway. Using monotropein and deacetylasperulosidic acid as markers, extraction was optimized with 60% ethanol under heated reflux, yielding the highest iridoid content. Purification employed H103 macroporous resin with water as eluent, achieving maximal recovery. In vitro, the fraction significantly ameliorated D-galactose-induced C2C12 myotube atrophy (P < 0.001) and promoted myotube differentiation (P < 0.05, 0.01, 0.001), as evidenced by MYHC expression. In vivo, D-galactose-accelerated aging mice treated with the fraction exhibited increased limb grip strength and hindlimb muscle mass-to-body weight ratio (P < 0.05, 0.01, 0.001), along with expanded cross-sectional area of tibialis anterior and gastrocnemius muscles (P < 0.01, 0.001). Transcriptomic and network pharmacology analyses implicated the PI3K/Akt pathway. Western blotting and qRT-PCR confirmed upregulation of key proteins and genes (PIK3CA, AKT1, mTOR) in the pathway (P < 0.05, 0.01, 0.001), while the PI3K inhibitor LY294002 reversed these effects (P < 0.05). These findings demonstrate that the iridoid fraction from M. officinalis mitigates aging-related sarcopenia through PI3K/Akt/mTOR signaling, providing a promising candidate for clinical translation.