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Study summary · Metabolic health, glucose & body composition

How does sulforaphane (SFN) delay fibroblast senescence, and what is the connection between Nrf2 activation, glucose metabolism, and oxidative damage in this process?

In one paragraph

Broccoli Sprout Sulforaphane (Oxid Med Cell Longev 2018, PMID 30595796) — senescence was associated with increased glucose metabolism through glycolysis, leading to mitochondrial dysfunction and oxidative damage. No numeric effect size is reported for Broccoli Sprout Sulforaphane in the source abstract.

Source: Oxid Med Cell Longev 2018, PMID 30595796 ↗ · Research map · How Magellan grades evidence · evidence confidence: low

Oxid Med Cell Longev · 2018 · PMID 30595796 · DOI 10.1155/2018/5642148

Plain-English summary written and published by Magellan Longevity · medical review by Gabriel Radu, DO (physiatrist, NPI 1376861765). We summarize what the paper reported — we did not run this study.

The takeaway

Sulforaphane delays cell aging by reducing sugar uptake and metabolism, which lessens cellular damage.

The question

How does sulforaphane (SFN) delay fibroblast senescence, and what is the connection between Nrf2 activation, glucose metabolism, and oxidative damage in this process?

What they tested

Sulforaphane (SFN) delays fibroblast senescence by activating Nrf2, which in turn curbs cellular glucose uptake and glycolysis, thereby reducing oxidative damage.

How they did it

The study investigated the effects of sulforaphane (SFN) on senescence in human MRC-5 and BJ fibroblasts. Researchers observed changes in glucose metabolism, hexokinase-2 expression, 6-phosphofructo-2-kinase, glucose-6-phosphate dehydrogenase, thioredoxin-interacting protein expression, and clearance of transglutaminase cross-linked proteins.

What they found

SFN activated Nrf2 and delayed senescence in human MRC-5 and BJ fibroblasts. Senescence was associated with increased glucose metabolism through glycolysis, leading to mitochondrial dysfunction and oxidative damage. SFN delayed senescence by decreasing glucose metabolism, exhibiting a caloric restriction mimetic-like activity, and reducing oxidative damage to cell protein and DNA. This was linked to increased thioredoxin-interacting protein, decreased hexokinase-2 and 6-phosphofructo-2-kinase, and increased glucose-6-phosphate dehydrogenase. SFN also enhanced the clearance of transglutaminase cross-linked proteins, which typically increase in senescence.

What it means

Sulforaphane delays fibroblast senescence by curbing cellular glucose uptake and glycolysis, mimicking caloric restriction, and reducing oxidative damage. This mechanism involves the modulation of key enzymes and proteins involved in glucose metabolism and protein clearance.

Limitations

The abstract does not explicitly state any limitations of the study.

Where the published abstract does not list limitations, we say so rather than inventing them. Read the full paper on PubMed before drawing conclusions.

“sulforaphane activates Nrf2 and delays senescence by decreasing glucose metabolism and oxidative damage”— from the published abstract, Oxid Med Cell Longev 2018

The paper at a glance

TitleSulforaphane Delays Fibroblast Senescence by Curbing Cellular Glucose Uptake, Increased Glycolysis, and Oxidative Damage
JournalOxid Med Cell Longev
Year2018
PMID30595796 ↗
DOI10.1155/2018/5642148 ↗
TopicMetabolic health, glucose & body composition

Read the source: PubMed record (authors, abstract, full citation) ↗ · Publisher via doi.org ↗

Where Magellan uses this paper

This citation sits behind the evidence grade on the pages below. Grades are set from the research and are independent of affiliate commissions.

Broccoli Sprout Sulforaphane

Human trials indicate that concentrated broccoli-sprout sulforaphane can modestly lower fasting blood glucose and glycated hemoglobin, most clearly in obese or dysregulated type 2 diabetes and in a subset of people with prediabetes;

Broccoli Sprout Sulforaphane

Sulforaphane is an isothiocyanate phytochemical formed when the plant enzyme myrosinase acts on…

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Research describes the compound or intervention studied. It is not a claim about any specific product.

Molecules & mechanisms in this paper

Each of these is named in the paper’s own words above. Open the monograph for the full mechanism and its other citations.

Cite this page

These citations point at this summary. To cite the original paper with its full author list, use the PubMed record or doi.org.

APA
Magellan Longevity. (2026). How does sulforaphane (SFN) delay fibroblast senescence, and what is the connection between Nrf2 activation, glucose metabolism, and oxidative damage in this process? [Plain-English summary of Oxid Med Cell Longev 2018, PMID 30595796, DOI 10.1155/2018/5642148]. Magellan Longevity. https://magellanlongevity.com/study/d30595796.html
BibTeX
@misc{magellan_d30595796, title = {How does sulforaphane (SFN) delay fibroblast senescence, and what is the connection between Nrf2 activation, glucose metabolism, and oxidative damage in this process?}, author = {{Magellan Longevity}}, year = {2026}, howpublished = {\url{https://magellanlongevity.com/study/d30595796.html}}, note = {Plain-English summary of PubMed PMID 30595796; DOI 10.1155/2018/5642148; Oxid Med Cell Longev 2018. Reviewed by Gabriel Radu, DO}, urldate = {2026-08-11} }
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How this summary was made. Every section above restates what the published abstract of PMID 30595796 reports — the question, the design, the numbers, the authors’ own conclusion and their stated limitations. We do not add claims the paper did not make, and we keep negative and no-effect findings in. Magellan’s evidence grades are set from research like this and never from affiliate commissions.

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Educational information, not medical advice. This is a plain-English summary of published research; it is not a treatment recommendation and nothing here is intended to diagnose, treat, cure, or prevent any disease. Individual studies can be wrong, and a single paper rarely settles a question. Talk to your physician before acting on any research, especially if you are pregnant, nursing, or taking medication.