OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Maternal fructose drives placental uric acid production leading to adverse fetal outcomes
Zeenat A. Shyr, Alysha Thompson, Maggie Chi, et al.
Scientific Reports (2016) Vol. 6, Iss. 1
Open Access | Times Cited: 44

Showing 1-25 of 44 citing articles:

Asymptomatic hyperuricaemia: a silent activator of the innate immune system
Leo A. B. Joosten, Tania O. Crişan, Petter Bjornstad, et al.
Nature Reviews Rheumatology (2019) Vol. 16, Iss. 2, pp. 75-86
Open Access | Times Cited: 228

Tolerable upper intake level for dietary sugars
Dominique Turck, Torsten Bohn, Jacqueline Castenmiller, et al.
EFSA Journal (2022) Vol. 20, Iss. 2
Open Access | Times Cited: 83

Impact of dietary carbohydrate type and protein–carbohydrate interaction on metabolic health
Jibran A. Wali, Annabelle J. Milner, Alison W. S. Luk, et al.
Nature Metabolism (2021) Vol. 3, Iss. 6, pp. 810-828
Closed Access | Times Cited: 66

The impact of dietary fructose on gut permeability, microbiota, abdominal adiposity, insulin signaling and reproductive function
Ceren Güney, Nur Banu Bal, Fatma Akar
Heliyon (2023) Vol. 9, Iss. 8, pp. e18896-e18896
Open Access | Times Cited: 24

Determining the metabolic effects of dietary fat, sugars and fat-sugar interaction using nutritional geometry in a dietary challenge study with male mice
Jibran A. Wali, Duan Ni, Harrison J. W. Facey, et al.
Nature Communications (2023) Vol. 14, Iss. 1
Open Access | Times Cited: 23

Current WHO recommendation to reduce free sugar intake from all sources to below 10% of daily energy intake for supporting overall health is not well supported by available evidence
Ruolin Yan, Chi Bun Chan, Jimmy Chun Yu Louie
American Journal of Clinical Nutrition (2022) Vol. 116, Iss. 1, pp. 15-39
Open Access | Times Cited: 35

Uterine Fluid in Pregnancy: A Biological and Clinical Outlook
Ying Zhang, Qiang Wang, Hongmei Wang, et al.
Trends in Molecular Medicine (2017) Vol. 23, Iss. 7, pp. 604-614
Closed Access | Times Cited: 56

Excess maternal fructose consumption impairs hippocampal function in offspring via epigenetic modification of BDNF promoter
Mirai Yamazaki, Hiroya Yamada, Eiji Munetsuna, et al.
The FASEB Journal (2018) Vol. 32, Iss. 5, pp. 2549-2562
Open Access | Times Cited: 55

Perinatal Nutrition and Programmed Risk for Neuropsychiatric Disorders: A Focus on Animal Models
Madison DeCapo, Jacqueline R. Thompson, Geoffrey A. Dunn, et al.
Biological Psychiatry (2018) Vol. 85, Iss. 2, pp. 122-134
Open Access | Times Cited: 50

Placental Metabolomics for Assessment of Sex-specific Differences in Fetal Development During Normal Gestation
Michelle Saoi, Katherine M. Kennedy, Wajiha Gohir, et al.
Scientific Reports (2020) Vol. 10, Iss. 1
Open Access | Times Cited: 47

Maternal High-Fructose Intake Induces Multigenerational Activation of the Renin-Angiotensin-Aldosterone System
Ho Yeong Seong, Hyun Min Cho, Min-A Kim, et al.
Hypertension (2019) Vol. 74, Iss. 3, pp. 518-525
Open Access | Times Cited: 42

The Impact of Gut Microbiome on Maternal Fructose Intake-Induced Developmental Programming of Adult Disease
Chien‐Ning Hsu, Hong‐Ren Yu, Julie Y.H. Chan, et al.
Nutrients (2022) Vol. 14, Iss. 5, pp. 1031-1031
Open Access | Times Cited: 20

Sucrose consumption alters steroid and dopamine signalling in the female rat brain
Daniel J. Tobiansky, George V Kachkovski, Reilly T. Enos, et al.
Journal of Endocrinology (2020) Vol. 245, Iss. 2, pp. 231-246
Closed Access | Times Cited: 28

The role of metabolism in cardiac development
Haruko Nakano, Atsushi Nakano
Current topics in developmental biology/Current Topics in Developmental Biology (2024), pp. 201-243
Closed Access | Times Cited: 3

Maternal Malnutrition and Elevated Disease Risk in Offspring
Kent L. Thornburg, Amy M. Valent
Nutrients (2024) Vol. 16, Iss. 16, pp. 2614-2614
Open Access | Times Cited: 3

Fructose during pregnancy provokes fetal oxidative stress: The key role of the placental heme oxygenase-1
Silvia Rodrigo, Lourdes Rodríguez, Paola Otero, et al.
Molecular Nutrition & Food Research (2016) Vol. 60, Iss. 12, pp. 2700-2711
Open Access | Times Cited: 25

Expression of placental glucose transporter proteins in pregnancies complicated by fetal growth disorders
Paweł Jan Stanirowski, Michał Lipa, Dorota Bomba‐Opoń, et al.
Advances in protein chemistry and structural biology (2020), pp. 95-131
Closed Access | Times Cited: 21

Prenatal interventions for fetal growth restriction in animal models: A systematic review
Ignacio Valenzuela, Mari Kinoshita, Johannes van der Merwe, et al.
Placenta (2022) Vol. 126, pp. 90-113
Closed Access | Times Cited: 13

An elevation in serum uric acid precedes the development of preeclampsia
Takahiko Nakagawa, Duk‐Hee Kang, Richard J. Johnson
Hypertension Research (2023) Vol. 46, Iss. 3, pp. 809-811
Open Access | Times Cited: 8

Metabolic environment in vivo as a blueprint for differentiation and maturation of human stem cell-derived cardiomyocytes
Rolf H. Slaats, Verena Schwach, Robert Passier
Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease (2020) Vol. 1866, Iss. 10, pp. 165881-165881
Open Access | Times Cited: 18

Maternal fructose consumption downregulates hippocampal catalase expression via DNA methylation in rat offspring
Genki Mizuno, Eiji Munetsuna, Hiroya Yamada, et al.
Nutrition Research (2021) Vol. 92, pp. 40-48
Closed Access | Times Cited: 15

Maternal High-Fat Diet Consumption and Chronic Hyperandrogenemia Are Associated With Placental Dysfunction in Female Rhesus Macaques
Kelly Kuo, Victoria H. J. Roberts, Jessica E. Gaffney, et al.
Endocrinology (2019) Vol. 160, Iss. 8, pp. 1937-1949
Open Access | Times Cited: 17

Fructose Consumption During Pregnancy Influences Milk Lipid Composition and Offspring Lipid Profiles in Guinea Pigs
Erin Vanessa LaRae Smith, Rebecca M. Dyson, Mary J. Berry, et al.
Frontiers in Endocrinology (2020) Vol. 11
Open Access | Times Cited: 15

Maternal Fructose Diet-Induced Developmental Programming
Michael D. Thompson, Brian J. DeBosch
Nutrients (2021) Vol. 13, Iss. 9, pp. 3278-3278
Open Access | Times Cited: 13

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