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Minimal active domain of human salivary histatin 1 is efficacious in promoting acute skin wound healing
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Xiao-Xuan Lei1, 2, , Liu Hang-Hang Cheng1, 2, , Hai-Yan Lin3, , Yu Yang4, Yun-Yu Lu5, Meng-Ru Pang2, Yun-Qing Dong2, Floris J. Bikker6, Tymour Forouzanfar1, Biao Cheng2, *, Gang Wu1, 7, *
Military Medical Research | 2023, 10(4) : 563 - 566
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Military Medical Research | 2023, 10(4): 563-566
LETTER TO THE EDITOR
Minimal active domain of human salivary histatin 1 is efficacious in promoting acute skin wound healing
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Xiao-Xuan Lei1, 2, , Liu Hang-Hang Cheng1, 2, , Hai-Yan Lin3, , Yu Yang4, Yun-Yu Lu5, Meng-Ru Pang2, Yun-Qing Dong2, Floris J. Bikker6, Tymour Forouzanfar1, Biao Cheng2, *, Gang Wu1, 7, *
Affiliations
  • 1Department of Oral and Maxillofacial Surgery/Pathology, Amsterdam UMC and Academic Center for Dentistry Amsterdam (ACTA), Vrije Universiteit Amsterdam, Amsterdam Movement Science, 1081HV Amsterdam, The Netherlands
  • 2Department of Burn and Plastic Surgery, General Hospital of Southern Theater Command, Guangzhou 510030, China
  • 3Savaid Stomatology School, Hangzhou Medical College, Hangzhou 310053, China
  • 4Department of Plastic Surgery, the Third Affiliated Hospital of Guangzhou Medical University, Guangzhou 510140, China
  • 5Hangzhou Huibo Science and Technology Co. LTD, Hangzhou 311217, China
  • 6Department of Oral Biochemistry, Academic Center for Dentistry Amsterdam (ACTA), University of Amsterdam (UvA) and Vrije Universiteit Amsterdam (VU), 1081LA Amsterdam, The Netherlands
  • 7Department of Oral Cell Biology, Academic Center for Dentistry Amsterdam (ACTA), University of Amsterdam (UvA) and Vrije Universiteit Amsterdam (VU), Gustav Mahlerlaan 3004, 1081LA Amsterdam, The Netherlands
Published: 2023-08-10 doi: 10.1186/s40779-022-00398-9
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Histatin 1  /  Minimal active domain  /  Acute skin wound  /  Inflammatory response  /  Oxidative stress
Xiao-Xuan Lei, Liu Hang-Hang Cheng, Hai-Yan Lin, Yu Yang, Yun-Yu Lu, Meng-Ru Pang, Yun-Qing Dong, Floris J. Bikker, Tymour Forouzanfar, Biao Cheng, Gang Wu. Minimal active domain of human salivary histatin 1 is efficacious in promoting acute skin wound healing[J]. Military Medical Research, 2023 , 10 (4) : 563 -566 . DOI: 10.1186/s40779-022-00398-9
Dear Editor,
The skin barrier can be impaired by acute skin wounds, which may lead to a series of complications. It is essential to accelerate wound healing and rapidly restore the structural integrity and functionality of skin. One of the promising bioactive agents is human salivary histatin 1 (Hst1), a 38-amino acid histidine-rich peptide that functions to maintain the homeostasis of oral mucosa with a cellular mechanism of promoting the adhesion, spreading, migration of epithelial cells and thus re-epithelialization[1]. In recent years, Hst1 has been shown to be effective against various skin-related cell types, such as fibroblasts, myo-fibroblasts, keratinocytes and endothelial cells. In our latest in vivo study, Hst1 not only promotes angiogenesis, re-epithelialization and collagen production, but also suppresses inflammation, thereby significantly accelerating acute skin wound healing in mice[2]. All these studies show that Hst1 is a potent bioactive agent for accelerating acute skin wound healing.
However, in the field of synthetic therapeutic peptides, those with 15 or fewer amino acids are preferred due to high production/purification yields and low cost[3]. In previous studies, we have identified a 13-amino acid minimal active domain of Hst1 (Hst1-MAD, amino acid sequence: SHREFPFYGDYGS), which shows comparable efficacy in promoting the migration of epithelial cells[4] and skin dermal fibroblasts[5]. However, hitherto, the in vivo effect of Hst1-MAD on acute wound healing has not been investigated. In this study, we aimed to systematically assess the therapeutic efficacy of Hst1-MAD on promoting acute skin wound healing in C57BL/6 mice. Twenty-seven mice were randomly divided into three treatment groups: 1) control (no treatment, negative control, n=9); 2) 10 μmol/L Hst1 (positive control, n=9); and 3) 1 μmol/L Hst1-MAD (n=9). A round full-thickness wound of 1 cm-in-diameter was surgically created on the dorsal skin of each mouse. On days 3, 5 and 10 post-surgeries, the wounds were photographed and the healing percentage was gauged using ImageJ software. Thereafter, the wounds and surrounding tissues were retrieved, fixed and subjected to a series of histological, immunohistochemical and immunofluorescent staining and Western blotting to quantitatively assess angiogenesis, re-epithelialization, collagen expression, inflammatory response and oxidative stress.
Our results showed that the wound healing percentages in the 10 μmol/L Hst1 group (P=0.049) and 1 μmol/L Hst1-MAD group (P=0.014) were significantly higher than that of control group on day 3 post-surgery (Fig. 1a, b). On day 5 post-surgery, Hst1-MAD showed a slightly better healing efficacy than Hst1, but there is no statistical difference (Fig. 1b). The collagen expression level (P=0.036, Fig. 1c), the surface area of CD31-positive blood vessels (P=0.005, Fig. 1d) and the vascular endothelial growth factor (VEGF) expression level (P=0.022, Fig. 1d) in the 1 μmol/L Hst1-MAD group were significantly higher than those in the control group. The expression intensities of two major epidermal tight proteins, claudin 1 (P=0.039) and claudin 2 (P=0.032) in the 1 μmol/L Hst1-MAD group were significantly higher than those in the control group (Fig. 1e). In addition, the expression level of claudin 2 in the 1 μmol/L Hst1-MAD group (P=0.044, Fig. 1e) was significantly higher than that in the 10 μmol/L Hst1 group. However, 10 μmol/L Hst1 was significantly superior in the expression levels of collagen (P=0.030, Fig. 1c) and claudin 1 (P=0.031, Fig. 1e) than in the control group. Immunofluorescence double staining showed that the ratios of M2 (pro-wound healing) to M1 macrophages (pro-inflammatory) in the 1 μmol/L Hst1-MAD group (P=0.011) and 10 μmol/L Hst1 group (P=0.013) were significantly higher than that in the control group (Fig. 1f). Western blotting analysis revealed that 1 μmol/L Hst1-MAD significantly increased the expression level of NAD(P)H quinone oxidoreductase 1 (NQO1; antioxidative enzyme, P<0.001), and reduced the expression levels of pro-inflammatory cytokines, such as tumor necrosis factor-α (TNF-α, P=0.045), interleukin-6 (IL-6, P=0.036) and macrophage inflammatory protein-1β (MIP-1β, P=0.003; Fig. 1g).
In conclusion, we found that 1 μmol/L Hst1-MAD could significantly promote the acute skin wound healing processes in vivo by enhancing wound healing, reepithelialization, collagen deposition, angiogenesis and the expression of tight junction proteins. Furthermore, Hst1-MAD could create a pro-wound healing microenvironment by not only significantly promoting the M2 polarization of macrophages and the expression of endogenous antioxidant, but also suppressing the expression of a series of pro-inflammatory cytokines (Fig. 1h). All these findings indicated a promising application potential in managing acute wound healing. The underlying molecular mechanisms remain to be investigated. Large animal studies are still needed to further confirm the potential for clinical application of Hst1-MAD.
Hst1: Histatin 1; Hst1-MAD: A 13-amino acid minimal active domain of Hst1; IL-6: Interleukin-6; MIP-1β: Macrophage inflammatory protein-1β; NQO1: NAD(P)H quinone oxidoreductase1; TNF-α: Tumor necrosis factor-α; VEGF: Vascular endothelial growth factor.
Not applicable.
BC, GW, TF, FJB, and XXL contributed to conception and design of the study. XXL, LHHC, HYL, YY, YYL, MRP, and YQD performed the study. XXL organized the database. XXL and GW carried out the data analysis and wrote the manuscript. All authors contributed to manuscript revision, read and approved the submitted version.
Not applicable.
The animal study was reviewed and approved by the Animal Care Committee of General Hospital of Southern Theater Command (2020102003).
Not applicable.
The authors declare that they have no competing interests.
1Department of Oral and Maxillofacial Surgery/Pathology, Amsterdam UMC and Academic Center for Dentistry Amsterdam (ACTA), Vrije Universiteit Amsterdam, Amsterdam Movement Science, 1081HV Amsterdam, The Netherlands. 2Department of Burn and Plastic Surgery, General Hospital of Southern Theater Command, Guangzhou 510030, China. 3Savaid Stomatology School, Hangzhou Medical College, Hangzhou 310053, China. 4Department of Plastic Surgery, the Third Affiliated Hospital of Guangzhou Medical University, Guangzhou 510140, China. 5Hangzhou Huibo Science and Technology Co. LTD, Hangzhou 311217, China. 6Department of Oral Biochemistry, Academic Center for Dentistry Amsterdam (ACTA), University of Amsterdam (UvA) and Vrije Universiteit Amsterdam (VU), 1081LA Amsterdam, The Netherlands. 7Department of Oral Cell Biology, Academic Center for Dentistry Amsterdam (ACTA), University of Amsterdam (UvA) and Vrije Universiteit Amsterdam (VU), Gustav Mahlerlaan 3004, 1081LA Amsterdam, The Netherlands.
  • This research was funded by the National Natural Science Foundation of China(82172223)
  • National Key Research and Development Plan of China(2017YFC1103301)
  • Military Medical Innovation Special Projects(18CXZ029)
  • Key Research and Development Plan of Zhejiang Province(2021C04013)
1.
Oppenheim FG, Xu T, McMillian FM, Levitz SM, Diamond RD, Offner GD, et al. Histatins, a novel family of histidine-rich proteins in human parotid secretion. Isolation, characterization, primary structure, and fungistatic effects on Candida albicans. J Biol Chem. 1988;263(16):7472-7.
2.
Lei X, Cheng L, Lin H, Pang M, Yao Z, Chen C, et al. Human salivary histatin-1 is more efficacious in promoting acute skin wound healing than acellular dermal matrix paste. Front Bioeng Biotechnol. 2020;8:999.
3.
Bray BL. Large-scale manufacture of peptide therapeutics by chemical synthesis. Nat Rev Drug Discov. 2003;2(7):587-93.
4.
Oudhoff MJ, Kroeze KL, Nazmi K, van den Keijbus PAM, Van ‘t Hof W, Fernandez-Borja M, et al. Structure-activity analysis of histatin, a potent wound healing peptide from human saliva: cyclization of histatin potentiates molar activity 1,000-fold. FASEB J. 2009;23(11):3928-35.
5.
Boink MA, Roffel S, Nazmi K, van Montfrans C, Bolscher JGM, Gefen A, et al. The influence of chronic wound extracts on inflammatory cytokine and histatin stability. PLoS ONE. 2016;11(3):e0152613.
Year 2023 volume 10 Issue 4
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doi: 10.1186/s40779-022-00398-9
  • Online Date:2025-11-27
  • Published:2023-08-10
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This research was funded by the National Natural Science Foundation of China(82172223)
National Key Research and Development Plan of China(2017YFC1103301)
Military Medical Innovation Special Projects(18CXZ029)
Key Research and Development Plan of Zhejiang Province(2021C04013)
Affiliations
    1Department of Oral and Maxillofacial Surgery/Pathology, Amsterdam UMC and Academic Center for Dentistry Amsterdam (ACTA), Vrije Universiteit Amsterdam, Amsterdam Movement Science, 1081HV Amsterdam, The Netherlands
    2Department of Burn and Plastic Surgery, General Hospital of Southern Theater Command, Guangzhou 510030, China
    3Savaid Stomatology School, Hangzhou Medical College, Hangzhou 310053, China
    4Department of Plastic Surgery, the Third Affiliated Hospital of Guangzhou Medical University, Guangzhou 510140, China
    5Hangzhou Huibo Science and Technology Co. LTD, Hangzhou 311217, China
    6Department of Oral Biochemistry, Academic Center for Dentistry Amsterdam (ACTA), University of Amsterdam (UvA) and Vrije Universiteit Amsterdam (VU), 1081LA Amsterdam, The Netherlands
    7Department of Oral Cell Biology, Academic Center for Dentistry Amsterdam (ACTA), University of Amsterdam (UvA) and Vrije Universiteit Amsterdam (VU), Gustav Mahlerlaan 3004, 1081LA Amsterdam, The Netherlands

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表12种不同金属材料的力学参数

Family
属数
Number of
genus
种数
Number of
species
占总种数比例
Percentage of
total species (%)

Genus
种数
Number of
species
占总种数比例
Percentage of total
species (%)
鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78
小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39
多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39
红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87
小菇属 Mycena 11 5.26
光柄菇属 Pluteus 5 2.39
红菇属 Russula 17 8.13
栓菌属 Trametes 5 2.39
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