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February 20, 2026Pathophysiology2 citationsOpen Access

Hypertension and Diabetes Cooperatively Drive HSP90 Activation, HSP70 Suppression, and Left Ventricular Interstitial Expansion: Relevance to Maladaptive Myocardial Remodeling

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ASA. P. SklifasovskayaМБМ. Л. БлагонравовAMAzova Mm

Key Result

Comorbid hypertension and diabetes caused a 25.9-fold rise in HSP90 mRNA and 3.7-fold protein increase, with a 14.71% reduction in HSP70 and 9.43% stromal expansion in LV tissue.

Key Points

  • The study aims to explore how hypertension and diabetes influence the expression of heat shock proteins HSP70 and HSP90 in heart cells.
  • Conducted on 25 male rats divided into five groups with different health conditions.
  • Assessed HSP70 and HSP90 levels using immunohistochemistry and RT-qPCR.
  • Quantified interstitial expansion in heart tissue through morphometric analysis.
  • HSP90 was significantly upregulated in all pathological groups, especially in diabetes.
  • In the comorbid group, HSP90 mRNA expression increased 25.93-fold.
  • HSP70 was suppressed in the presence of both hypertension and diabetes, indicating a maladaptive response.

Structured PICO

P
Population
25 male rats, including 38-week-old Wistar-Kyoto (WKY) rats and spontaneously hypertensive rats (SHR), divided into models of isolated arterial hypertension, long-term arterial hypertension (57-week-old), streptozotocin-induced diabetes mellitus, and comorbid hypertension with diabetes.
I
Intervention
Streptozotocin-induced insulin-dependent diabetes mellitus (65 mg/kg, i.p.) for 30 days in spontaneously hypertensive rats (AH+DM group) or Wistar-Kyoto rats (DM group).
C
Comparator
Control group of 38-week-old Wistar-Kyoto (WKY) rats without hypertension or diabetes.
O
Outcome
Expression profiles of HSP70 and HSP90 in left ventricular cardiomyocytes (protein expression by immunohistochemistry and mRNA levels by RT-qPCR) and interstitial stromal volume fraction (%).surrogate

Comorbid hypertension and diabetes synergistically upregulate HSP90 and suppress HSP70 in the myocardium, driving maladaptive structural remodeling and interstitial expansion.

Abstract

Background: Arterial hypertension (AH) and insulin-dependent diabetes mellitus (DM) are major comorbid risk factors for accelerated myocardial damage, yet the behavior of key stress-adaptive heat shock proteins HSP70 and HSP90 under combined stress remains unclear. This study aimed to characterize the expression profiles of HSP70 and HSP90 in left ventricular cardiomyocytes during isolated and comorbid AH and DM, and to evaluate their association with structural remodeling and expansion of interstitial elements. Methods: The study was conducted in accordance with the European Convention for the Protection of Vertebrate Animals (ethical approval No. 26, RUDN Institute of Medicine, 18 February 2021) on 25 male rats divided into five groups (n = 5 each): control—38-week-old Wistar–Kyoto (WKY) rats; AH—38-week-old spontaneously hypertensive rats (SHR); long-term AH—57-week-old SHR; DM—38-week-old WKY rats with streptozotocin-induced insulin-dependent DM (65 mg/kg, i.p.); AH+DM—38-week-old SHR with STZ-induced DM. After 30 days of DM, left ventricular (LV) tissue was analyzed by immunohistochemistry (IHC) for HSP70/HSP90 protein expression and by RT-qPCR for mRNA levels. Increased stromal elements in myocardium were quantified morphometrically as interstitial stromal volume fraction (%) on hematoxylin and eosin-stained sections. Results: HSP90 was significantly upregulated in all pathological groups. The most pronounced increase occurred in isolated DM, with a 4.0-fold rise in HSP90-positive area (21.80% vs. 5.45% in control) and a 1.82-fold increase in mRNA. In the AH+DM group, HSP90 mRNA expression was extremely elevated (25.93-fold), accompanied by a 3.7-fold increase in protein. In contrast, HSP70 protein was elevated only in the 38-week AH group (27.68% vs. 19.70% control, p ≤ 0.05), remained unchanged in isolated DM (19.50%), and was significantly reduced in AH+DM (14.71%, p ≤ 0.05), despite a modest 1.64-fold mRNA upregulation in DM. Morphometric analysis revealed progressive expansion of interstitial elements, most severe in AH+DM (9.43% stromal volume vs. 4.81% in control, p ≤ 0.05). Conclusions: Comorbid AH and DM provoke synergistic HSP90 upregulation, while HSP70 expression is markedly suppressed, indicating a shift from an adaptive to a maladaptive cellular-stress response. The imbalance between HSP90 and HSP70 may represent a key molecular mechanism underlying accelerated structural and functional deterioration of the myocardium in cardiometabolic comorbidity.

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Cite This Study

Sklifasovskaya et al. (2026) studied this question. Comorbid hypertension and diabetes caused a 25.9-fold rise in HSP90 mRNA and 3.7-fold protein increase, with a 14.71% reduction in HSP70 and 9.43% stromal expansion in LV tissue.

synapsesocial.com/papers/6997fa90ad1d9b11b3453d47https://doi.org/10.3390/pathophysiology33010019
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