1.A Meta-analysis of Randomized Placebo-controlled Trials on the Effects of Probiotics for Autism Spectrum Disorders
Ping-Wen HUANG ; Shun-Chin LIANG ; Cheuk-Kwan SUN ; Yu-Shian CHENG ; Kuo-Chuan HUNG
Clinical Psychopharmacology and Neuroscience 2025;23(4):560-571
Objective:
The current meta-analysis aimed at updating evidence regarding the therapeutic potential of probiotics against autism spectrum disorder (ASD) symptoms and identifying outcome confounders.
Methods:
Following PRISMA guidelines, randomized placebo-controlled trials retrieved from PubMed, Embase, Cochrane CENTRAL, and ScienceDirect were analyzed for effect size of primary outcomes (i.e., overall behavioral symptom changes) expressed as standardized mean difference (SMD) and odds ratios (ORs) for continuous and categorical variables, respectively, with 95% confidence interval (CI).
Results:
Meta-analysis of eight studies (465 participants, mean age: 6.03, range: 1.5−45, female: 17.4%) revealed total ASD symptom improvements in the probiotic group compared to placebos (SMD: −0.19, 95% CI: −0.38 to −0.01, p = 0.04, I2 = 0%, eight studies, 465 participants, certainty of evidence [COE]: low). Subgroup analyses showed probiotics-associated improvements only in studies recruiting predominantly preschool children (SMD: −0.30, 95% CI:−0.59 to −0.01, p = 0.04, three studies, 191 participants) or those using probiotics for over three months (SMD:−0.39, 95% CI: −0.73 to −0.06, p = 0.04, three studies, 144 participants) without difference between multipleand single-strain probiotics. No difference was noted in overall dropouts between individuals treated with probiotics and those taking placebos (OR: 0.98, p = 0.94, eight studies, I2 = 0%, 464 participants, COE: low). Despite a low risk of bias in most studies, COE was deemed low from limited trials and inconsistencies on sensitivity analysis.
Conclusion
The current study showed an association between probiotics use and an improvement in ASD symptoms, mainly in those aged below six or over three-month treatments. More large-scale investigations are warranted to support our findings.
2.Infusion of Human Mesenchymal Stem Cells Improves Regenerative Niche in Thioacetamide-Injured Mouse Liver
Ying-Hsien KAO ; Yu-Chun LIN ; Po-Huang LEE ; Chia-Wei LIN ; Po-Han CHEN ; Tzong-Shyuan TAI ; Yo-Chen CHANG ; Ming-Huei CHOU ; Chih-Yang CHANG ; Cheuk-Kwan SUN
Tissue Engineering and Regenerative Medicine 2020;17(5):671-682
BACKGROUND:
This study investigated whether xenotransplantation of human Wharton’s jelly-derived mesenchymal stem cells (WJ-MSCs) reduces thioacetamide (TAA)-induced mouse liver fibrosis and the underlying molecular mechanism.
METHODS:
Recipient NOD/SCID mice were injected intraperitoneally with TAA twice weekly for 6 weeks before initial administration of WJ-MSCs. Expression of regenerative and pro-fibrogenic markers in mouse fibrotic livers were monitored post cytotherapy. A hepatic stallate cell line HSC-T6 and isolated WJ-MSCs were used for in vitro adhesion, migration and mechanistic studies.
RESULTS:
WJ-MSCs were isolated from human umbilical cords by an explant method and characterized by flow cytometry. A single infusion of WJ-MSCs to TAA-treated mice significantly reduced collagen deposition and ameliorated liver fibrosis after 2-week therapy. In addition to enhanced expression of hepatic regenerative factor, hepatocyte growth factor, and PCNA proliferative marker, WJ-MSC therapy significantly blunted pro-fibrogenic signals, including Smad2, RhoA, ERK. Intriguingly, reduction of plasma fibronectin (pFN) in fibrotic livers was noted in MSC-treated mice. In vitro studies further demonstrated that suspending MSCs triggered pFN degradation, soluble pFN conversely retarded adhesion of suspending MSCs onto type I collagen-coated surface, whereas pFN coating enhanced WJ-MSC migration across mimicked wound bed. Moreover, pretreatment with soluble pFN and conditioned medium from MSCs with pFN strikingly attenuated the response of HSC-T6 cells to TGF-b1-stimulation in Smad2 phosphorylation and RhoA upregulation.
CONCLUSION
These findings suggest that cytotherapy using WJ-MSCs may modulate hepatic pFN deposition for a better regenerative niche in the fibrotic livers and may constitute a useful anti-fibrogenic intervention in chronic liver diseases.
3.Infusion of Human Mesenchymal Stem Cells Improves Regenerative Niche in Thioacetamide-Injured Mouse Liver
Ying-Hsien KAO ; Yu-Chun LIN ; Po-Huang LEE ; Chia-Wei LIN ; Po-Han CHEN ; Tzong-Shyuan TAI ; Yo-Chen CHANG ; Ming-Huei CHOU ; Chih-Yang CHANG ; Cheuk-Kwan SUN
Tissue Engineering and Regenerative Medicine 2020;17(5):671-682
BACKGROUND:
This study investigated whether xenotransplantation of human Wharton’s jelly-derived mesenchymal stem cells (WJ-MSCs) reduces thioacetamide (TAA)-induced mouse liver fibrosis and the underlying molecular mechanism.
METHODS:
Recipient NOD/SCID mice were injected intraperitoneally with TAA twice weekly for 6 weeks before initial administration of WJ-MSCs. Expression of regenerative and pro-fibrogenic markers in mouse fibrotic livers were monitored post cytotherapy. A hepatic stallate cell line HSC-T6 and isolated WJ-MSCs were used for in vitro adhesion, migration and mechanistic studies.
RESULTS:
WJ-MSCs were isolated from human umbilical cords by an explant method and characterized by flow cytometry. A single infusion of WJ-MSCs to TAA-treated mice significantly reduced collagen deposition and ameliorated liver fibrosis after 2-week therapy. In addition to enhanced expression of hepatic regenerative factor, hepatocyte growth factor, and PCNA proliferative marker, WJ-MSC therapy significantly blunted pro-fibrogenic signals, including Smad2, RhoA, ERK. Intriguingly, reduction of plasma fibronectin (pFN) in fibrotic livers was noted in MSC-treated mice. In vitro studies further demonstrated that suspending MSCs triggered pFN degradation, soluble pFN conversely retarded adhesion of suspending MSCs onto type I collagen-coated surface, whereas pFN coating enhanced WJ-MSC migration across mimicked wound bed. Moreover, pretreatment with soluble pFN and conditioned medium from MSCs with pFN strikingly attenuated the response of HSC-T6 cells to TGF-b1-stimulation in Smad2 phosphorylation and RhoA upregulation.
CONCLUSION
These findings suggest that cytotherapy using WJ-MSCs may modulate hepatic pFN deposition for a better regenerative niche in the fibrotic livers and may constitute a useful anti-fibrogenic intervention in chronic liver diseases.
4.Nerve growth factor upregulates sirtuin 1 expression in cholestasis: a potential therapeutic target
Ming Shian TSAI ; Po Huang LEE ; Cheuk Kwan SUN ; Ting Chia CHIU ; Yu Chun LIN ; I Wei CHANG ; Po Han CHEN ; Ying Hsien KAO
Experimental & Molecular Medicine 2018;50(1):e426-
This study investigated the regulatory role of nerve growth factor (NGF) in sirtuin 1 (SIRT1) expression in cholestatic livers. We evaluated the expression of NGF and its cognate receptors in human livers with hepatolithiasis and the effects of NGF therapy on liver injury and hepatic SIRT1 expression in a bile duct ligation (BDL) mouse model. Histopathological and molecular analyses showed that the hepatocytes of human diseased livers expressed NGF, proNGF (a precursor of NGF), TrkA and p75NTR, whereas only p75NTR was upregulated in hepatolithiasis, compared with non-hepatolithiasis livers. In the BDL model without NGF therapy, p75NTR, but not TrkA antagonism, significantly deteriorated BDL-induced liver injury. By contrast, the hepatoprotective effect of NGF was abrogated only by TrkA and not by p75NTR antagonism in animals receiving NGF therapy. Intriguingly, a positive correlation between hepatic SIRT1 and NGF expression was found in human livers. In vitro studies demonstrated that NGF upregulated SIRT1 expression in mouse livers and human Huh-7 and rodent hepatocytes. Both NGF and proNGF induced protective effects against hydrogen peroxide-induced cytotoxicity in Huh-7 cells, whereas inhibition of TrkA and p75NTR activity prevented oxidative cell death. Mechanistically, NGF, but not proNGF, upregulated SIRT1 expression in human Huh-7 and rodent hepatocytes via nuclear factor (NF)-κB activity, whereas NGF-induced phosphoinositide-3 kinase/Akt, extracellular signal–regulated kinase and NF-κB signaling and SIRT1 activity were involved in its hepatoprotective effects against oxidative injury. These findings suggest that pharmacological manipulation of the NGF/SIRT1 axis might serve as a novel approach for the treatment of cholestatic disease.
Animals
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Bile Ducts
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Cell Death
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Cholestasis
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Hepatocytes
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Humans
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Hydrogen
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In Vitro Techniques
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Ligation
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Liver
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Mice
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Nerve Growth Factor
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Phosphotransferases
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Rodentia
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Sirtuin 1

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