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Open synthetic biology

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Open synthetic biology is a theoretical framework supporting a global ecosystem of responsible and capable research scientists working collaboratively on synthetic biology application development projects to reduce cost, time, and risks of developing new synthetic biology applications (including
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Its general principle is that participating research scientists agree to share research, data, findings and results with the open synthetic biology community and the public generally. The Open SynBio community will set standards and expectations of the participants and their "science to market"
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process and the community will work collaboratively with downstream stakeholders (e.g., investors and business advisors) to ensure public safety and general availability of new synthetic biology applications.
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is the idea that scientific knowledge and data should be openly accessible through common rights licensing to enable the rapid development of safe, effective and commercially viable
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A Knowledge Perspective of Strategic Alliances and Management of Biopharmaceutical Innovation: Evolving Research Paradigms, University of Waterloo
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open synthetic biology therapeutics) from the inception of primary science to applications reaching market readiness and commercial viability.
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is the idea that scientific research should be openly shared to enable massive collaboration (e.g., the
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donated several artificial gene sequences into an open-access repository run by the
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Open Source Synthetic Biology: Problems and Solutions, Seton Hall Law
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Open Source Synthetic Biology Could Mean Inexpensive Permanent Cures
385: 356: 331: 386:"Novel constitutions? New regimes of openness in synthetic biology" 49: 268: 72: 476: 306:Tufts Center for the study of Drug Development 267:One example of open synthetic biology is when 201: 383: 208: 194: 456: 355: 438: 329: 477: 434:Synthetic Biology Open Language Visual 55:Registry of Standard Biological Parts 13: 441:"Bioengineers look beyond patents" 376: 332:"Bioengineers look beyond patents" 308:. Tufts University. Archived from 14: 501: 21:Part of a series of articles on 323: 294: 285: 235:Its foundational concepts are 1: 330:Ledford, Heidi (2013-07-04). 278: 36:Synthetic biological circuits 384:Hilgartner, Stephen (2012). 7: 262: 230: 10: 506: 101:Artificial gene synthesis 439:Ledford, Heidi (2013). 112:Mycoplasma laboratorium 45:Synthetic gene database 221:Open synthetic biology 182:Do-it-yourself biology 177:Open synthetic biology 402:10.1057/biosoc.2012.5 151:Expanded genetic code 136:Nucleic acid analogue 273:BioBricks Foundation 83:Synthetic immunology 348:2013Natur.499...16L 146:Unnatural base pair 241:Bermuda Principles 106:Synthetic genomics 485:Synthetic biology 225:synthetic biology 218: 217: 141:Xeno nucleic acid 29:Synthetic biology 23: 497: 470: 460: 413: 370: 369: 359: 327: 321: 320: 318: 317: 298: 292: 289: 249:Polymath Project 210: 203: 196: 92:Artificial cells 19: 16: 15: 505: 504: 500: 499: 498: 496: 495: 494: 475: 474: 473: 458:10.1038/499016a 451:(7456): 16–17. 379: 377:Further reading 374: 373: 357:10.1038/499016a 342:(7456): 16–17. 328: 324: 315: 313: 300: 299: 295: 291:1996, Rev. 2003 290: 286: 281: 265: 233: 214: 12: 11: 5: 503: 493: 492: 487: 472: 471: 436: 431: 426: 421: 415: 414: 396:(2): 188–207. 380: 378: 375: 372: 371: 322: 293: 283: 282: 280: 277: 264: 261: 232: 229: 227:applications. 216: 215: 213: 212: 205: 198: 190: 187: 186: 185: 184: 179: 174: 166: 165: 161: 160: 159: 158: 153: 148: 143: 138: 130: 129: 123: 122: 121: 120: 115: 108: 103: 95: 94: 88: 87: 86: 85: 80: 75: 67: 66: 64:Genome editing 60: 59: 58: 57: 52: 47: 39: 38: 32: 31: 25: 24: 9: 6: 4: 3: 2: 502: 491: 488: 486: 483: 482: 480: 468: 464: 459: 454: 450: 446: 442: 437: 435: 432: 430: 427: 425: 422: 420: 417: 416: 411: 407: 403: 399: 395: 391: 387: 382: 381: 367: 363: 358: 353: 349: 345: 341: 337: 333: 326: 312:on 2014-11-21 311: 307: 303: 297: 288: 284: 276: 274: 270: 260: 256: 252: 250: 246: 242: 238: 228: 226: 222: 211: 206: 204: 199: 197: 192: 191: 189: 188: 183: 180: 178: 175: 173: 170: 169: 168: 167: 163: 162: 157: 154: 152: 149: 147: 144: 142: 139: 137: 134: 133: 132: 131: 128: 125: 124: 119: 116: 114: 113: 109: 107: 104: 102: 99: 98: 97: 96: 93: 90: 89: 84: 81: 79: 76: 74: 71: 70: 69: 68: 65: 62: 61: 56: 53: 51: 48: 46: 43: 42: 41: 40: 37: 34: 33: 30: 27: 26: 22: 18: 17: 490:Open science 448: 444: 393: 390:BioSocieties 389: 339: 335: 325: 314:. Retrieved 310:the original 305: 296: 287: 266: 257: 253: 245:Open science 237:open science 234: 220: 219: 176: 164:Other topics 110: 78:Gene therapy 20: 156:Mirror life 127:Xenobiology 479:Categories 316:2015-04-26 279:References 467:0028-0836 410:1745-8552 118:Protocell 366:23823774 263:Examples 239:and the 231:Concepts 50:BioBrick 344:Bibcode 172:Hazards 465:  445:Nature 408:  364:  336:Nature 269:DNA2.0 73:CRISPR 463:ISSN 406:ISSN 362:PMID 453:doi 449:499 398:doi 352:doi 340:499 481:: 461:. 447:. 443:. 404:. 392:. 388:. 360:. 350:. 338:. 334:. 304:. 275:. 243:. 469:. 455:: 412:. 400:: 394:7 368:. 354:: 346:: 319:. 209:e 202:t 195:v

Index

Synthetic biology
Synthetic biological circuits
Synthetic gene database
BioBrick
Registry of Standard Biological Parts
Genome editing
CRISPR
Gene therapy
Synthetic immunology
Artificial cells
Artificial gene synthesis
Synthetic genomics
Mycoplasma laboratorium
Protocell
Xenobiology
Nucleic acid analogue
Xeno nucleic acid
Unnatural base pair
Expanded genetic code
Mirror life
Hazards
Open synthetic biology
Do-it-yourself biology
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synthetic biology
open science
Bermuda Principles
Open science

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