Zobrazeno 1 - 10
of 22
pro vyhledávání: '"Merlin Rajesh Lal"'
Autor:
Devendra K. Agrawal, Samad Ahadian, Ajoy Aloysius, P.R. Anil Kumar, Sudha Anjali, Veena B. Antony, S. Arya, Aleksandra Benko, Marco Cícero Bottino, Soumya K. Chandrasekhar, Thomas Chandy, John Lalith Charles Richard, Huizhi Chen, Smitha Chenicheri, Jorge L. Cholula-Díaz, Eva C. Das, Madhusmita Dash, Kevin G. Dsouza, Gregory R.D. Evans, Renjitha Gopurappilly, Lianxian Guo, Gerardo Hernandez-Moreno, Johnson V. John, Maji Jose, Arun Jyothidasan, Ajay Kashi, Gilson Khang, Wooyoup Kim, Manoj Komath, Dae Hoon Lee, Jianqiang Liu, S. Sharareh Mahdavi, João Mano, Shohreh Mashayekhan, Alec McCarthy, David Medina-Cruz, L.P. Merlin Rajesh Lal, Ebrahim Mostafavi, Jahnavi Mudigonda, Eliseu Aldrighi Münchow, Sara Nadine, Anaga Nair, Deepthi S. Rajendran Nair, Rajasekaran Namakkal Soorappan, Himansu Sekhar Nanda, Joshi C. Ouseph, Rakhi Pal, Rakesh Pemmada, Xinsheng Peng, Anitha Radhakrishnan, Abinayaa Rajkumar, Rajesh Ramachandran, Seeram Ramakrishna, null Remya Kommeri, Rajalekshmi Resmi, Prosenjit Saha, Subrata Saha, Ramakrishna Perumal Saravana, Nisha Shankhwar, Chandra P. Sharma, Jeong Eun Song, Isaac Jordão de Souza Araújo, Sreekanth Sreekumaran, Sini Sunny, Ranu Surolia, Puneet Tandon, Nader Tanideh, Alexander M. Tatara, Vicky Subhash Telang, Finosh G. Thankam, Biju B. Thomas, Sabu Thomas, Vinoy Thomas, Saidah Tootla, Linh B. Truong, Aynur Unal, Vineeth M. Vijayan, Liyan Wang, Thomas J. Webster, Alan D. Widgerow, Jingwei Xie, Hui Zhou, Yubin Zhou, Mary E. Ziegler, Marta Zurek-Mortka
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::398851c0577c54af4721557358b1075c
https://doi.org/10.1016/b978-0-12-824064-9.09992-5
https://doi.org/10.1016/b978-0-12-824064-9.09992-5
Autor:
Merlin Rajesh Lal, L.P.
Publikováno v:
In Tissue Engineering 2022:531-553
Publikováno v:
Biomedical materials (Bristol, England). 17(1)
Cryogels, a subset of hydrogels, have recently drawn attention for cartilage tissue engineering due to its inherent microporous architecture and good mechanical properties. In this study a dual crosslinked pullulan-gelatin cryogel (PDAG) scaffold was
Autor:
Devendra K. Agrawal, Swati Agrawal, Nidhi Arora, Ashutosh Bandyopadhyay, Bibrita Bhar, Nandana Bhardwaj, Bhaskar Birru, Hema Bora, John P. Bradford, Soumya K. Chandrasekhar, Thomas Chandy, Subrata K. Das, Santanu Dhara, Abir Dutta, Prachi Hanwatkar, Santanu Hati, Gerardo Hernandez-Moreno, Maji Jose, Sanju P. Joy, Ajay Kashi, Oormila Kovilam, Merlin Rajesh Lal, Biman B. Mandal, A. Maya Nandkumar, Joseph Christakiran Moses, Raghav A. Murthy, Prabha D. Nair, Joshi C. Ouseph, Willi Paul, S.S. Pradeep Kumar, Anitha Radhakrishnan, D.P. Rahul, Vikrant Rai, Vrinda Rajagopal, Ragavi Rajasekaran, Greeshma Ratheesh, Preetam Guha Ray, Trina Roy, Baisakhee Saha, Aditya Sengupta, Chandra P. Sharma, Yogendra Pratap Singh, V.P. Sivadas, Prashant Sonar, Sreekanth Sreekumaran, Finosh G. Thankam, Vinoy Thomas, Aynur Unal, Cedryck Vaquette, Yin Xiao
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::c1c11bb1ce6fdd09152dd657a4e4469b
https://doi.org/10.1016/b978-0-12-821085-7.00021-x
https://doi.org/10.1016/b978-0-12-821085-7.00021-x
Autor:
Merlin Rajesh Lal, Oormila Kovilam
Umbilical cord derived mesenchymal stem cells (UCMSCs) derived from the inner cell mass of the early stage human embryo possess immense regenerative potential owing to their pluripotent nature. This chapter displays a bird’s eye view of various app
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::8747c2d58cbcc3e9024b9200d47ad3f5
https://doi.org/10.1016/b978-0-12-821085-7.00016-6
https://doi.org/10.1016/b978-0-12-821085-7.00016-6
Publikováno v:
Biomedical Materials. 17:015001
Cryogels, a subset of hydrogels, have recently drawn attention for cartilage tissue engineering due to its inherent microporous architecture and good mechanical properties. In this study a dual crosslinked pullulan–gelatin cryogel (PDAG) scaffold w
Publikováno v:
Journal of Biomedical Materials Research Part A. 105:1845-1855
Tissue engineering strategies for cartilage aim to restore the complex biomechanical and biochemical properties of the native cartilage. To mimic the in vivo microenvironment, we developed a novel scaffold based on chitosan-agarose (CHAG scaffold) re
Publikováno v:
Biomedical Materials (17486041); Jan2022, Vol. 17 Issue 1, p1-14, 14p
Autor:
Agrawal, Devendra K., Ahadian, Samad, Aloysius, Ajoy, Anil Kumar, P.R., Anjali, Sudha, Antony, Veena B., Arya, S., Benko, Aleksandra, Bottino, Marco Cícero, Chandrasekhar, Soumya K., Chandy, Thomas, Charles Richard, John Lalith, Chen, Huizhi, Chenicheri, Smitha, Cholula-Díaz, Jorge L., Das, Eva C., Dash, Madhusmita, Dsouza, Kevin G., Evans, Gregory R.D., Gopurappilly, Renjitha, Guo, Lianxian, Hernandez-Moreno, Gerardo, John, Johnson V., Jose, Maji, Jyothidasan, Arun, Kashi, Ajay, Khang, Gilson, Kim, Wooyoup, Komath, Manoj, Lee, Dae Hoon, Liu, Jianqiang, Mahdavi, S. Sharareh, Mano, João, Mashayekhan, Shohreh, McCarthy, Alec, Medina-Cruz, David, Merlin Rajesh Lal, L.P., Mostafavi, Ebrahim, Mudigonda, Jahnavi, Münchow, Eliseu Aldrighi, Nadine, Sara, Nair, Anaga, Nair, Deepthi S. Rajendran, Namakkal Soorappan, Rajasekaran, Nanda, Himansu Sekhar, Ouseph, Joshi C., Pal, Rakhi, Pemmada, Rakesh, Peng, Xinsheng, Radhakrishnan, Anitha, Rajkumar, Abinayaa, Ramachandran, Rajesh, Ramakrishna, Seeram, Remya Kommeri, Resmi, Rajalekshmi, Saha, Prosenjit, Saha, Subrata, Saravana, Ramakrishna Perumal, Shankhwar, Nisha, Sharma, Chandra P., Song, Jeong Eun, de Souza Araújo, Isaac Jordão, Sreekumaran, Sreekanth, Sunny, Sini, Surolia, Ranu, Tandon, Puneet, Tanideh, Nader, Tatara, Alexander M., Telang, Vicky Subhash, Thankam, Finosh G., Thomas, Biju B., Thomas, Sabu, Thomas, Vinoy, Tootla, Saidah, Truong, Linh B., Unal, Aynur, Vijayan, Vineeth M., Wang, Liyan, Webster, Thomas J., Widgerow, Alan D., Xie, Jingwei, Zhou, Hui, Zhou, Yubin, Ziegler, Mary E., Zurek-Mortka, Marta
Publikováno v:
In Tissue Engineering 2022:xix-xxv