Sains
Malaysiana 49(2)(2020): 429-437
http://dx.doi.org/10.17576/jsm-2020-4902-22
Nasal Fibroblast Conditioned Medium Promotes Cell
Attachment and Migration of Human Respiratory Epithelium
(Medium Terkondisi Hidung Fibroblas Menggalakkan Sel
Lekatan dan Migrasi Sel Epitelium Pernafasan)
ROHAINA CHE MAN1*, YOGESWARAN LOKANATHAN1, RABIATUL ADAWIYAH
RAZALI2, SHIPLU ROY CHOWDURY1, AMINUDDIN BIN SAIM3 & RUSZYMAH BINTI HJ IDRUS2
1Tissue Engineering Centre,
Faculty of Medicine, Universiti Kebangsaan Malaysia Medical Centre, Jalan
Yaacob Latif, Bandar Tun Razak, 56000 Kuala Lumpur, Federal Territory, Malaysia
2Department of Physiology,
Faculty of Medicine, Universiti Kebangsaan Malaysia Medical Centre, Jalan
Yaacob Latif, Bandar Tun Razak, 56000 Kuala Lumpur, Federal Territory, Malaysia
3Ear, Nose & Throat
Consultant Clinic, Ampang Puteri Specialist Hospital, 68000 Ampang, Selangor
Darul Ehsan, Malaysia
Diserahkan: 17 Mac 2019/Diterima:
30 Oktober 2019
ABSTRACT
Endoscopic
sinus surgery (ESS) is a well-known surgical treatment for chronic
rhinosinusitis disease after failed medical and antibiotics treatment.
However, improper wound healing might induce synechiae or adhesion.
Conditioned medium from cultured cells is known to promote wound
healing and potentially able to accelerate wound healing in ESS
and other airway epithelial injuries. This study was to investigate
the effect of human nasal fibroblast conditioned medium on the attachment,
proliferation and migration of respiratory epithelial cells (RECs)
in an in vitro model. RECs and fibroblasts were co-cultured in Defined
Keratinocytes Medium and F-12 and Dulbecco's Modified Eagle's Medium.
Once confluent, the fibroblasts were removed, leaving the colonies of RECs to reach confluency. RECs
and fibroblasts were cultured separately and the conditioned medium
was acquired by culturing fibroblast either in DKSFM or F12: DMEM,
denoted as NFCM_DKSFM and NFCM_FD, respectively. RECs were supplemented
with 20% conditioned medium for attachment, proliferation and migration
assay. The results showed significantly higher cell attachment in
NFCM_DKSFM (3452.77±588.1 cell/cm2) compared to NFCM_FD (2336.1±440.4 cell/cm2) and DKSFM alone (2819.8±509.5 cell/cm2). After 7 days, the specific growth rate was higher
in DKSFM (0.019±5.16×10-4 h-1) compared to NFCM_DKSFM (0.015±8.94×10-4
h-1) and NFCM_FD (0.013±1.03×10-3
h-1). The mean of migration rate was significantly
higher in NFCM_DKSFM (4341.81±385.7 µm2/hr)
compared to NFCM_FD (1803.38±408.1 µm2/hr)
and DKSFM (1933.48±271.9 µm2/hr). Hence,
NFCM_DKSFM supplementation provides suitable culture
conditions for RECs through increased cell attachment and migration,
which suggest that the factors secreted in conditioned medium may play a major role in enhancing
airway epithelial wound healing.
Keywords:
Conditioned culture media; epithelial cells; fibroblast; wound healing
ABSTRAK
Pembedahan sinus endoskopi (ESS) adalah rawatan yang terkenal untuk penyakit
rhinosinusitis kronik selepas kegagalan rawatan perubatan dan antibiotik.
Walau bagaimanapun, penyembuhan luka yang tidak sempurna boleh menyebabkan
synechiae atau lekatan. Medium terkondisi (MT) daripada sel yang dikultur didapati
boleh menggalakkan penyembuhan luka dan berpotensi mempercepatkan
penyembuhan luka disebabkan oleh ESS dan kecederaan lain pada epitelium
saluran pernafasan. Kajian ini adalah untuk mengkaji kesan MT daripada
fibroblas hidung manusia untuk perlekatan, percambahan dan migrasi
sel epitelium pernafasan (RECs) dalam model in vitro. RECs dan fibroblas telah
dibiakkan dalam Defined Keratinocytes Medium (DKSFM) dan F-12 dan Dulbecco's Modified Eagle's Medium
(FD). Selepas konfluen, fibroblas ditanggalkan dan
koloni RECs terus dikultur sehingga padat. RECs dan fibroblas dibiakkan
secara berasingan dan MT diperoleh dengan mengkultur fibroblas sama
ada dalam DKSFM atau FD, dengan dilabelkan sebagai NFCM_DKSFM dan
NFCM_FD. RECs telah ditambah dengan 20% medium terkondisi untuk
perlekatan, percambahan dan migrasi sel. Keputusan menunjukkan perlekatan
sel yang lebih tinggi dalam NFCM_DKSFM (3452.77±588.1 sel/cm2)
berbanding NFCM_FD (2336.1±440.4 sel/cm2) dan
DKSFM sahaja (2819.8±509.5 sel/cm2). Selepas 7
hari dikultur, kadar pertumbuhan khusus adalah lebih tinggi dalam
DKSFM (0.019±5.16×10-4/jam) berbanding NFCM_DKSFM
(0.015±8.94×10-4/jam) dan NFCM_FD (0.013±1.03×10-3/jam).
Purata kadar migrasi sel jauh lebih tinggi dalam NFCM_DKSFM (4341.81±385.7
μm2/jam) berbanding NFCM_FD (1803.38±408.1
μm2/jam) dan DKSFM (1933.48±271.9 μm2/jam).
Oleh itu, penambahan NFCM_DKSFM menyediakan persekitaran yang sesuai
untuk RECs melalui peningkatan perlekatan dan migrasi sel, yang
menunjukkan bahawa faktor yang dirembeskan dalam MT boleh memainkan
peranan utama dalam meningkatkan penyembuhan luka pada epitelium
saluran pernafasan.
Kata kunci: Fibroblas; medium
kultur terkondisi; penyembuhan luka; sel epitelium
RUJUKAN
Akram, K.M., Monica, A.S. & Nicholas, R.F. 2014.
Activin-directed differentiation of human embryonic stem cells differentially
modulates alveolar epithelial wound repair via paracrine mechanism. Stem Cell Discovery 4: 67-82.
Akram, K.M., Sohel,
M., Monica, A.S. & Nicholas, R.F. 2013. Mesenchymal stem cells promote
alveolar epithelial cell wound repair in
vitro through distinct migratory and paracrine mechanisms. Respiratory Research 14: 9. doi: 10.1186/1465-9921-14-9.
Aragona, M., Sophie, D.,
Steffen, R., Sandrine, L., Guilhem, M., Benjamin, D.S. & Cédric,
B. 2017. Defining stem cell dynamics and migration during wound
healing in mouse skin epidermis. Nature Communications 8: 14684.
Cantinieaux, D., Quertainmont,
R., Blacher, S., Rossi, L., Wanet, T., Noël, A., Brook, G.,
Schoenen, J. & Franzen, R. 2013 Conditioned medium from bone
marrow-derived mesenchymal stem cells improves recovery after spinal
cord injury in rats: An original strategy to avoid cell transplantation.
PLoS ONE 8: e69515.
Carroll, M.P., Adeeb, A.B.
& Richard, F.L. 2019. Rhinitis and sinusitis. In Asthma, Allergic and Immunologic Diseases During Pregnancy, edited
by Namazy, J.A.
& Schatz,
M. Switzerland: Springer International Publishing. pp. 61-86.
Carter, A., Nikesh, D.
& Saiful, A.H. 2019. Chronic rhinosinusitis. BMJ 364: 1131.
Chowdhury, S.R.,
Aminuddin, B.S. & Ruszymah, B.H.I. 2012. Effect of supplementation of
dermal fibroblasts conditioned medium on expansion of keratinocytes through
enhancing attachment. Indian Journal of
Experimental Biology 50: 332-339.
Chua, C.C., Geiman, D.E.,
Keller, G.H. & Ladda, R.L. 1985. Induction of collagenase secretion in
human fibroblast cultures by growth promoting factors. Journal of Biological Chemistry 260: 5213-5216.
Dowling, P. & Martin,
C. 2011. Conditioned media from cell lines: A complementary model to clinical
specimens for the discovery of disease‐specific biomarkers. Proteomics 11: 794-804.
Fong, E., Garcia, M.,
Woods, C.M. & Ooi, E. 2017. Hyaluronic acid for post sinus surgery care:
Systematic review and meta-analysis. The
Journal of Laryngology & Otology 131: 2-11.
Fried,
K., Wondossen, S., Christina, L., Ismo, V., Karl, T. & Manuel, P. 2005.
Laminins 2 (α2β1γ1, Lm-211) and 8 (α4β1γ1,
Lm-411) are synthesized and secreted by tooth pulp fibroblasts and
differentially promote neurite outgrowth from trigeminal ganglion sensory
neurons. Experimental Cell Research 307: 329-341.
Ghani,
N.‘I., Aminuddin, B.S., Ruszymah, B.H.I. & Chowdhury, S.R. 2016. Calcium in
dermal fibroblast conditioned medium (DFCM) enhance keratinocytes wound healing in vitro. 6th Malaysian Tissue Engineering and Regenerative Medicine Scientific
Meeting and 2nd Malaysian Stem Cell Meeting, Nov 17-18, Pulau Pinang,
Malaysia.
Goldberg,
B. & Howard, G. 1964. An analysis of collagen secretion by established
mouse fibroblast lines. The Journal of
Cell Biology 22: 227-258.
Gropper,
M.A. & Jeanine, W.K. 2008. The epithelium in acute lung injury/acute
respiratory distress syndrome. Current
Opinion in Critical Care 14: 11-15.
Jaffe,
E.A., Joseph, T.R., Leung, L.K., Mary, J.D., Paula, J.M.L. & Deane, F.M.
1983. Cultured human fibroblasts synthesize and secrete thrombospondin and
incorporate it into extracellular matrix. Proceedings
of the National Academy of Sciences 80: 998-1002.
Kim,
D.W., Kyoung, M.E., Eun, Y.R., Sue, S. & Kim, D.K. 2019. Chronic
rhinosinusitis without nasal polyps in Asian patients shows mixed inflammatory
patterns and neutrophil-related disease severity. Mediators of Inflammation 2019: 7138643.
Kulasingam,
V. & Eleftherios, P.D. 2007. Proteomics analysis of conditioned media from
three breast cancer cell lines a mine for biomarkers and therapeutic targets. Molecular & Cellular Proteomics 6:
1997-2011.
Massey,
C.J. & Ameet, S. 2017. Advances in absorbable biomaterials and nasal
packing. Otolaryngologic Clinics of North
America 42: 813-828.
Mori,
R., Qingcai, W., Kathleen, D.D., Jacek, K.P. & Peter, V.D. 2008. Both
β‐actin and GAPDH are useful reference genes for normalization of
quantitative RT‐PCR in human FFPE tissue samples of prostate cancer. The Prostate 68: 1555-1560.
Ossowski,
L. & Reich, E. 1983. Antibodies to plasminogen activator inhibit human
tumor metastasis. Cell 35: 611-619.
Padma,
D. & Kumar, M.R.B. 2017. Effect of extracellular matrix produced by the
fibroblasts derived from the vitiligo skin on survival and function of
melanocytes. Advanced Science Letters 23: 1904-1909.
Paré,
B., Lydia, T.D., Roxane, P., Nicolas, D. & Francois, G.L. 2016. An
optimized approach to recover secreted proteins from fibroblast
conditioned-media for secretomic analysis. Frontiers
in Cellular Neuroscience 10: 107.
Sahu,
S., Zhihua, Z., Rong, L., Junkai, H., Huifan, S., Gabriele, L., Yanqin, S.
& Melitta, S. 2017. A small organic compound mimicking the L1 cell adhesion
molecule promotes functional recovery after spinal cord injury in zebrafish. Molecular Neurobiology 55: 859-878.
Schultz, G.S. & Annette, W. 2009. Interactions between
extracellular matrix and growth factors in wound healing. Wound Repair and Regeneration 17: 153-162.
Shen,
C., Puchang, L., Tianyu, M., Meixing, Y., Qiao, L., Ting, F., Jinrong, L,
Tingting, Z., Xiaohuan, L. & Hong, L. 2015. Conditioned medium from
umbilical cord mesenchymal stem cells induces migration and angiogenesis. Molecular Medicine Reports 12: 20-30.
Shin,
S.H., Ye, M.K., Hwang, Y.J. & Kim, S.T. 2013. The effect of Asian sand
dust-activated respiratory epithelial cells on activation and migration of
eosinophils. Inhalation Toxicology 25: 633-639.
Slivac,
I., Višnja, B., Kristina, R.ć, Zlatko, K. & Višnja, G.S. 2010.
Influence of different ammonium, lactate and glutamine concentrations on CCO
cell growth. Cytotechnology 62:
585-594.
Stripp,
B.R. & Susan, D.R. 2008. Maintenance and repair of the bronchiolar
epithelium. Proceedings of the American
Thoracic Society 5: 328-333.
Sun,
Y.H., Brian, R., Justin, H.F., Lisa, A.M., Dallas, M.H., Alex, M. & Min, Z.
2011. Airway epithelial wounds in rhesus monkey generate ionic currents that
guide cell migration to promote healing. Journal
of Applied Physiology 111: 1031-1041.
Thorsell,
A., Jonas, F., Fredrik, B., Michael, N., Kaj, B., Peter, S.E. & Ann, W.B.
2008. Proteome analysis of serum-containing conditioned medium from primary
astrocyte cultures. Journal of Proteomics
& Bioinformatics 1: 128-142.
Walter,
M.N.M., Karina, T.W., Fuller, H.R., Sheila, M. & Johnson, W.E.B. 2010.
Mesenchymal stem cell-conditioned medium accelerates skin wound healing: An in vitro study of fibroblast and
keratinocyte scratch assays. Experimental
Cell Research 316: 1271-1281.
Ware,
L.B. & Michael, A.M. 2000. The acute respiratory distress syndrome. New England Journal of Medicine 342:
1334-1349.
Xu,
Y., Hude, Q., Peter, F., Stephanie, G., Mingfu, L., Ceris, B., Edward, K.,
Stafford, D. & Luke, R. 2016. Prevalence and incidence of diagnosed chronic
rhinosinusitis in Alberta, Canada. JAMA
Otolaryngology-Head & Neck Surgery 142: 1063-1069.
Zahm,
J.M., Hervé, K., Hérard, A.L., Fabrice, D., Denis, P., Pascal, S. & Edith,
P. 1997. Cell migration and proliferation during the in vitro wound repair of the respiratory epithelium. Cell Motility and The Cytoskeleton 37:
33-43.
Zahm,
J.M., Pierrot, D., Chevillard, M. & Puchelle, E. 1991. Dynamics of cell
movement during the wound repair of human surface respiratory epithelium. Biorheology 29: 459-465.
*Pengarang untuk
surat-menyurat; email: ruszyidrus@gmail.com
|