Delivery of MSCs with a Hybrid β-Sheet Peptide Hydrogel Consisting IGF-1C Domain and D-Form Peptide for Acute Kidney Injury Therapy

39 Pages Posted: 18 Nov 2019

See all articles by Hongfeng Wang

Hongfeng Wang

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

Yuna Shang

Nankai University - State Key Laboratory of Medicinal Chemical Biology

Xiaoniao Chen

Government of the People's Republic of China - Department of Ophthalmology

Zhongyan Wang

Nankai University - State Key Laboratory of Medicinal Chemical Biology

Dashuai Zhu

Nankai University - School of Medicine

Yue Liu

Nankai University - School of Medicine

Chuyue Zhang

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

Pu Chen

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

Jie Wu

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

Lingling Wu

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

Deling Kong

Nankai University - State Key Laboratory of Medicinal Chemical Biology

Zhimou Yang

Nankai University - State Key Laboratory of Medicinal Chemical Biology

Zongjin Li

Nankai University - School of Medicine

Xiangmei Chen

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

Abstract

By providing an appropriate microenvironment, synthetic biomaterials have been progressively successful in stem cell-based tissue regeneration by enhancing the engraftment and survival of transplanted cells. The designs with bioactive motifs to influence cell behavior and with D-form amino acid to modulate scaffold stability will be critical for the development and optimization of self-assembling biomimetic hydrogel scaffolds for stem cell therapy. In this study, we linked naphthalene (Nap) covalently conjugated a short D-form peptide (Nap-DFDFG) to C domain of insulin-like growth factor-1 (IGF-1C) as a functional peptide-based scaffold. Our purpose is to provide a functional self-assembling peptide hydrogel with encapsulated human placenta derived mesenchymal stem cells (hP-MSCs) and thereby to enhance the therapeutic efficiency of hP-MSCs in murine acute kidney injury (AKI) model. Our results revealed that a typical β-sheet conformation was confirmed and this self-assembling peptide hydrogel exhibited higher affinity with IGF-1 receptor. Furthermore, this hydrogel could provide a favorable niche for hP-MSCs and thereby ameliorate renal function in an AKI model by promoting cell survival and angiogenesis. In conclusion, by covalently linking the desired functional group to D-form peptide to create a functional hydrogel, this self-assembling β-sheet peptide hydrogel will serve as a promising platform for future tissue-engineering and stem cell therapy.

Keywords: Self-assembly, β-sheet, Hydrogel, D-form peptide, C domain of insulin-like growth factor (IGF-1C), Mesenchymal stem cells (MSCs), Acute kidney injures (AKI), Regenerative medicine

Suggested Citation

Wang, Hongfeng and Shang, Yuna and Chen, Xiaoniao and Wang, Zhongyan and Zhu, Dashuai and Liu, Yue and Zhang, Chuyue and Chen, Pu and Wu, Jie and Wu, Lingling and Kong, Deling and Yang, Zhimou and Li, Zongjin and Chen, Xiangmei, Delivery of MSCs with a Hybrid β-Sheet Peptide Hydrogel Consisting IGF-1C Domain and D-Form Peptide for Acute Kidney Injury Therapy. Available at SSRN: https://ssrn.com/abstract=3485132 or http://dx.doi.org/10.2139/ssrn.3485132

Hongfeng Wang (Contact Author)

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

China

Yuna Shang

Nankai University - State Key Laboratory of Medicinal Chemical Biology

Haihe Education Park
38 Tongyan Road
Tianjin, 300353
China

Xiaoniao Chen

Government of the People's Republic of China - Department of Ophthalmology

China

Zhongyan Wang

Nankai University - State Key Laboratory of Medicinal Chemical Biology

Haihe Education Park
38 Tongyan Road
Tianjin, 300353
China

Dashuai Zhu

Nankai University - School of Medicine

Tianjin
China

Yue Liu

Nankai University - School of Medicine

Tianjin
China

Chuyue Zhang

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

China

Pu Chen

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

China

Jie Wu

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

China

Lingling Wu

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases

China

Deling Kong

Nankai University - State Key Laboratory of Medicinal Chemical Biology

Haihe Education Park
38 Tongyan Road
Tianjin, 300353
China

Zhimou Yang

Nankai University - State Key Laboratory of Medicinal Chemical Biology ( email )

Haihe Education Park
38 Tongyan Road
Tianjin, 300353
China

Zongjin Li

Nankai University - School of Medicine ( email )

Tianjin
China

Xiangmei Chen

Government of the People's Republic of China - Beijing Key Laboratory of Kidney Diseases ( email )

China

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